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Mazza M, Biondi-Zoccai G, Lisci FM, Brisi C, Sfratta G, Rossi S, Traversi G, Gaetani E, Pola R, Morini S, Romagnoli E, Simeoni B, Covino M, Marano G. The Brain-Heart Axis: An Umbrella Review on Impact of Psychiatric Disease on Incidence, Management, and Outlook of Cardiovascular Disease. Life (Basel) 2024; 14:919. [PMID: 39202662 PMCID: PMC11355298 DOI: 10.3390/life14080919] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/03/2024] [Revised: 07/16/2024] [Accepted: 07/22/2024] [Indexed: 09/03/2024] Open
Abstract
Psychiatric conditions, such as depression, anxiety, bipolar disorder, and schizophrenia, are increasingly recognized as significant risk factors for cardiovascular disease (CVD). This review systematically analyzes evidence from various databases to provide a comprehensive understanding of the impact of psychiatric illnesses on the incidence, management, and prognosis of CVD. Key findings suggest a bidirectional relationship between psychiatric disorders and CVD, indicating that mental health conditions can predispose individuals to CVD, while CVD can exacerbate or trigger psychiatric symptoms. The review explores the underlying mechanisms of these associations, including behavioral factors, stress responses, and medication side effects. It also examines the challenges in managing CVD patients with comorbid psychiatric conditions, emphasizing the importance for integrated care approaches. This review underscores the necessity of considering mental health as an integral component of cardiovascular care and calls for further research to develop tailored management strategies for these complex conditions, ultimately aiming to improve patient outcomes and quality of life. This comprehensive analysis provides valuable insights for future investigations and guides clinicians in optimizing care for patients with both psychiatric and cardiovascular conditions.
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Affiliation(s)
- Marianna Mazza
- Unit of Psychiatry, Fondazione Policlinico Universitario A. Gemelli IRCCS, 00168 Rome, Italy
- Department of Neurosciences, Università Cattolica del Sacro Cuore, 00168 Rome, Italy
| | - Giuseppe Biondi-Zoccai
- Department of Medical-Surgical Sciences and Biotechnologies, Sapienza University of Rome, 04100 Latina, Italy
- Maria Cecilia Hospital, GVM Care & Research, 48033 Cotignola, Italy
| | - Francesco Maria Lisci
- Unit of Psychiatry, Fondazione Policlinico Universitario A. Gemelli IRCCS, 00168 Rome, Italy
- Department of Neurosciences, Università Cattolica del Sacro Cuore, 00168 Rome, Italy
| | - Caterina Brisi
- Unit of Psychiatry, Fondazione Policlinico Universitario A. Gemelli IRCCS, 00168 Rome, Italy
- Department of Neurosciences, Università Cattolica del Sacro Cuore, 00168 Rome, Italy
| | - Greta Sfratta
- Unit of Psychiatry, Fondazione Policlinico Universitario A. Gemelli IRCCS, 00168 Rome, Italy
- Department of Neurosciences, Università Cattolica del Sacro Cuore, 00168 Rome, Italy
| | - Sara Rossi
- Unit of Psychiatry, Fondazione Policlinico Universitario A. Gemelli IRCCS, 00168 Rome, Italy
- Department of Neurosciences, Università Cattolica del Sacro Cuore, 00168 Rome, Italy
| | - Gianandrea Traversi
- Unit of Medical Genetics, Department of Laboratory Medicine, Ospedale Isola Tiberina-Gemelli Isola, 00186 Rome, Italy;
| | - Eleonora Gaetani
- Department of Translational Medicine and Surgery, Fondazione Policlinico Universitario A. Gemelli IRCCS, Università Cattolica del Sacro Cuore, 00168 Rome, Italy
- Unit of Internal Medicine, Cristo Re Hospital, 00167 Rome, Italy
| | - Roberto Pola
- Section of Internal Medicine and Thromboembolic Diseases, Department of Internal Medicine, Fondazione Policlinico Universitario A. Gemelli IRCCS, Università Cattolica del Sacro Cuore, 00168 Rome, Italy
| | - Sofia Morini
- Department of Cardiovascular Sciences, Fondazione Policlinico Universitario A. Gemelli IRCCS, 00168 Rome, Italy
| | - Enrico Romagnoli
- Department of Cardiovascular Sciences, Fondazione Policlinico Universitario A. Gemelli IRCCS, 00168 Rome, Italy
| | - Benedetta Simeoni
- Emergency Department, Fondazione Policlinico Universitario A. Gemelli IRCCS, 00168 Rome, Italy
| | - Marcello Covino
- Emergency Department, Fondazione Policlinico Universitario A. Gemelli IRCCS, 00168 Rome, Italy
| | - Giuseppe Marano
- Unit of Psychiatry, Fondazione Policlinico Universitario A. Gemelli IRCCS, 00168 Rome, Italy
- Department of Neurosciences, Università Cattolica del Sacro Cuore, 00168 Rome, Italy
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Zhu F, Guo J, Zheng W. Associations between sarcopenia and depression in middle-aged and older adults: the moderating effect of smoking. Sci Rep 2024; 14:15187. [PMID: 38956420 PMCID: PMC11219743 DOI: 10.1038/s41598-024-65343-3] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/22/2024] [Accepted: 06/19/2024] [Indexed: 07/04/2024] Open
Abstract
The aim of this study were to estimate associations of sarcopenic status with depressive symptoms. We used mixed-effects linear model to estimate longitudinal association between sarcopenic status and rate of change in 10-item Center for Epidemiologic Studies Depression (CES-D) scores, and used Cox regression model to estimate the association between sarcopenic status and incident depression (CES-D ≥ 10). Stratification analyses were performed when the interactions between sarcopenic status and covariates were significant. A total of 6522 participants were ultimately included. After adjusting for covariates, participants with possible sarcopenia (β = 0.117; 95% CI 0.067 to 0.166; P < 0.001) and sarcopenia (β: 0.093; 95% CI 0.027-0.159; P < 0.001) had a faster increase in CES-D scores compared with normal individuals. Interactions between smoking and sarcopenic status were significant (Pinteraction < 0.05). We found significantly positive associations of sarcopenic status with CES-D scores in nonsmokers, but not in current and past smokers. Besides, compared with normal participants, those with possible sarcopenia (HR 1.15; 95% CI 1.05 to 1.27) and sarcopenia (HR 1.28; 95% CI 1.12 to 1.46) (Ptrend < 0.001) had elevated risks of incident depression. Sarcopenia is associated with a faster increase in CES-D scores and increased risks of depression among Chinese middle-aged and older adults. Stronger associations between sarcopenia and trajectory of CES-D scores were found in nonsmokers than in smokers.
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Affiliation(s)
- Feiyun Zhu
- School of Public Health, Zhejiang Chinese Medical University, Office 412, 548# Bingjiang District, Hangzhou, 310053, Zhejiang, China
| | - Jing Guo
- Zhejiang Provincial Key Laboratory of Precision Diagnosis and Therapy for Major Gynecological Diseases, Women's Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang, China
| | - Weijun Zheng
- School of Public Health, Zhejiang Chinese Medical University, Office 412, 548# Bingjiang District, Hangzhou, 310053, Zhejiang, China.
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Le Heron C, Horne KL, MacAskill MR, Livingstone L, Melzer TR, Myall D, Pitcher T, Dalrymple-Alford J, Anderson T, Harrison S. Cross-Sectional and Longitudinal Association of Clinical and Neurocognitive Factors With Apathy in Patients With Parkinson Disease. Neurology 2024; 102:e209301. [PMID: 38830182 DOI: 10.1212/wnl.0000000000209301] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 06/05/2024] Open
Abstract
BACKGROUND AND OBJECTIVES A robust understanding of the natural history of apathy in Parkinson disease (PD) is foundational for developing effective clinical management tools. However, large longitudinal studies are lacking while the literature is inconsistent about even cross-sectional associations. We aimed to determine the longitudinal predictors of apathy development in a large cohort of people with PD and its cross-sectional associations and trajectories over time, using sophisticated Bayesian modeling techniques. METHODS People with PD followed up in the longitudinal New Zealand Parkinson's progression project were included. Apathy was defined using the neuropsychiatric inventory subscale ≥4, and analyses were also repeated using a less stringent cutoff of ≥1. Both MoCA and comprehensive neuropsychological testing were used as appropriate to the model. Depression was assessed using the hospital anxiety and depression scale. Cross-sectional Bayesian regressions were conducted, and a multistate predictive model was used to identify factors that predict the initial onset of apathy in nonapathetic PD, while also accounting for the competing risk of death. The relationship between apathy presence and mortality was also investigated. RESULTS Three hundred forty-six people with PD followed up for up to 14 years across a total of 1,392 sessions were included. Apathy occurrence did not vary significantly across the disease course (disease duration odds ratio [OR] = 0.55, [95% CI 0.28-1.12], affecting approximately 11% or 22% of people at any time depending on the NPI cutoff used. Its presence was associated with a significantly higher risk of death after controlling for all other factors (hazard ratio [HR] = 2.92 [1.50-5.66]). Lower cognition, higher depression levels, and greater motor severity predicted apathy development in those without motivational deficits (HR [cognition] = 0.66 [0.48-0.90], HR [depression] = 1.45 [1.04-2.02], HR [motor severity] = 1.37 [1.01-1.86]). Cognition and depression were also associated with apathy cross-sectionally, along with male sex and possibly lower dopaminergic therapy level, but apathy still occurred across the full spectrum of each variable (OR [cognition] = 0.58 [0.44-0.76], OR [depression] = 1.43 [1.04-1.97], OR [female sex] = 0.45 [0.22-0.92], and OR [levodopa equivalent dose] = 0.78 [0.59-1.04]. DISCUSSION Apathy occurs across the PD time course and is associated with higher mortality. Depressive symptoms and cognitive impairment in particular predict its future development in those with normal motivation.
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Affiliation(s)
- Campbell Le Heron
- From the Department of Medicine (C.L.H., M.R.M., T.R.M., T.P., J.D.-A., T.A., S.H.), University of Otago, Christchurch; New Zealand Brain Research Institute (C.L.H., K.-L.H., M.R.M., L.L., T.R.M., D.M., T.P., J.D.-A., T.A.), Christchurch; Department of Neurology (C.L.H., T.A.), Christchurch Hospital; and Department of Psychology (C.L.H., J.D.-A.), Speech and Hearing, University of Canterbury, Christchurch, New Zealand
| | - Kyla-Louise Horne
- From the Department of Medicine (C.L.H., M.R.M., T.R.M., T.P., J.D.-A., T.A., S.H.), University of Otago, Christchurch; New Zealand Brain Research Institute (C.L.H., K.-L.H., M.R.M., L.L., T.R.M., D.M., T.P., J.D.-A., T.A.), Christchurch; Department of Neurology (C.L.H., T.A.), Christchurch Hospital; and Department of Psychology (C.L.H., J.D.-A.), Speech and Hearing, University of Canterbury, Christchurch, New Zealand
| | - Michael R MacAskill
- From the Department of Medicine (C.L.H., M.R.M., T.R.M., T.P., J.D.-A., T.A., S.H.), University of Otago, Christchurch; New Zealand Brain Research Institute (C.L.H., K.-L.H., M.R.M., L.L., T.R.M., D.M., T.P., J.D.-A., T.A.), Christchurch; Department of Neurology (C.L.H., T.A.), Christchurch Hospital; and Department of Psychology (C.L.H., J.D.-A.), Speech and Hearing, University of Canterbury, Christchurch, New Zealand
| | - Leslie Livingstone
- From the Department of Medicine (C.L.H., M.R.M., T.R.M., T.P., J.D.-A., T.A., S.H.), University of Otago, Christchurch; New Zealand Brain Research Institute (C.L.H., K.-L.H., M.R.M., L.L., T.R.M., D.M., T.P., J.D.-A., T.A.), Christchurch; Department of Neurology (C.L.H., T.A.), Christchurch Hospital; and Department of Psychology (C.L.H., J.D.-A.), Speech and Hearing, University of Canterbury, Christchurch, New Zealand
| | - Tracy R Melzer
- From the Department of Medicine (C.L.H., M.R.M., T.R.M., T.P., J.D.-A., T.A., S.H.), University of Otago, Christchurch; New Zealand Brain Research Institute (C.L.H., K.-L.H., M.R.M., L.L., T.R.M., D.M., T.P., J.D.-A., T.A.), Christchurch; Department of Neurology (C.L.H., T.A.), Christchurch Hospital; and Department of Psychology (C.L.H., J.D.-A.), Speech and Hearing, University of Canterbury, Christchurch, New Zealand
| | - Daniel Myall
- From the Department of Medicine (C.L.H., M.R.M., T.R.M., T.P., J.D.-A., T.A., S.H.), University of Otago, Christchurch; New Zealand Brain Research Institute (C.L.H., K.-L.H., M.R.M., L.L., T.R.M., D.M., T.P., J.D.-A., T.A.), Christchurch; Department of Neurology (C.L.H., T.A.), Christchurch Hospital; and Department of Psychology (C.L.H., J.D.-A.), Speech and Hearing, University of Canterbury, Christchurch, New Zealand
| | - Toni Pitcher
- From the Department of Medicine (C.L.H., M.R.M., T.R.M., T.P., J.D.-A., T.A., S.H.), University of Otago, Christchurch; New Zealand Brain Research Institute (C.L.H., K.-L.H., M.R.M., L.L., T.R.M., D.M., T.P., J.D.-A., T.A.), Christchurch; Department of Neurology (C.L.H., T.A.), Christchurch Hospital; and Department of Psychology (C.L.H., J.D.-A.), Speech and Hearing, University of Canterbury, Christchurch, New Zealand
| | - John Dalrymple-Alford
- From the Department of Medicine (C.L.H., M.R.M., T.R.M., T.P., J.D.-A., T.A., S.H.), University of Otago, Christchurch; New Zealand Brain Research Institute (C.L.H., K.-L.H., M.R.M., L.L., T.R.M., D.M., T.P., J.D.-A., T.A.), Christchurch; Department of Neurology (C.L.H., T.A.), Christchurch Hospital; and Department of Psychology (C.L.H., J.D.-A.), Speech and Hearing, University of Canterbury, Christchurch, New Zealand
| | - Tim Anderson
- From the Department of Medicine (C.L.H., M.R.M., T.R.M., T.P., J.D.-A., T.A., S.H.), University of Otago, Christchurch; New Zealand Brain Research Institute (C.L.H., K.-L.H., M.R.M., L.L., T.R.M., D.M., T.P., J.D.-A., T.A.), Christchurch; Department of Neurology (C.L.H., T.A.), Christchurch Hospital; and Department of Psychology (C.L.H., J.D.-A.), Speech and Hearing, University of Canterbury, Christchurch, New Zealand
| | - Samuel Harrison
- From the Department of Medicine (C.L.H., M.R.M., T.R.M., T.P., J.D.-A., T.A., S.H.), University of Otago, Christchurch; New Zealand Brain Research Institute (C.L.H., K.-L.H., M.R.M., L.L., T.R.M., D.M., T.P., J.D.-A., T.A.), Christchurch; Department of Neurology (C.L.H., T.A.), Christchurch Hospital; and Department of Psychology (C.L.H., J.D.-A.), Speech and Hearing, University of Canterbury, Christchurch, New Zealand
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Le HT, Honma K, Annaka H, Sun S, Nomura T. Effectiveness of Problem-Solving Therapy in Improving Patient Mental Health, Function, Quality of Life, and Mortality Post-Stroke: A Systematic Review. Behav Sci (Basel) 2024; 14:446. [PMID: 38920778 PMCID: PMC11201169 DOI: 10.3390/bs14060446] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/12/2024] [Revised: 05/08/2024] [Accepted: 05/20/2024] [Indexed: 06/27/2024] Open
Abstract
Problem-solving therapy (PST) is a potential psychological intervention aimed at preventing and treating psychological issues in stroke patients, although its efficacy is not clearly established. This systematic review assessed the effectiveness of PST in improving mental health, functioning, quality of life, and mortality in this population. Six databases were searched for literature indexed through March 2024, including the Cochrane Library, PubMed, Scopus, CINAHL, NeuroBITE, and OTseeker. This review (CRD42023483757) followed the PRISMA guidelines and the Cochrane Library Handbook, utilizing the RoB 2 tool and GRADE system to assess the quality of the evidence. It included eight randomized controlled trials (RCTs) involving 1249 patients with stroke. Among them, five RCTs showed that PST might improve depression. Additionally, individual RCTs demonstrated the efficacy of PST in addressing patient anxiety, apathy, and coping. With respect to mental health, PST might affect patient quality of life and mortality. However, the results of four RCTs demonstrated no effect of PST on patient functioning. The quality of evidence for the outcomes ranged from very low to high. PST may improve mental health, quality of life, and mortality in patients with stroke.
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Affiliation(s)
- Ha Thi Le
- Graduate School, Niigata University of Health and Welfare, Niigata 950-3198, Japan;
- Rehabilitation Department, Haiduong Medical Technical University, Haiduong 03117, Vietnam
| | - Kenta Honma
- Department of Occupational Therapy, Faculty of Rehabilitation, Niigata University of Health and Welfare, Niigata 950-3198, Japan; (K.H.); (H.A.); (T.N.)
| | - Hiroki Annaka
- Department of Occupational Therapy, Faculty of Rehabilitation, Niigata University of Health and Welfare, Niigata 950-3198, Japan; (K.H.); (H.A.); (T.N.)
| | - Shunxiang Sun
- Graduate School, Niigata University of Health and Welfare, Niigata 950-3198, Japan;
| | - Tomonori Nomura
- Department of Occupational Therapy, Faculty of Rehabilitation, Niigata University of Health and Welfare, Niigata 950-3198, Japan; (K.H.); (H.A.); (T.N.)
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Voorend CGN, van Buren M, Berkhout-Byrne NC, Kerckhoffs APM, van Oevelen M, Gussekloo J, Richard E, Bos WJW, Mooijaart SP. Apathy Symptoms, Physical and Cognitive Function, Health-Related Quality of Life, and Mortality in Older Patients With CKD: A Longitudinal Observational Study. Am J Kidney Dis 2024; 83:162-172.e1. [PMID: 37741610 DOI: 10.1053/j.ajkd.2023.07.021] [Citation(s) in RCA: 1] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/23/2023] [Revised: 07/14/2023] [Accepted: 07/24/2023] [Indexed: 09/25/2023]
Abstract
RATIONALE & OBJECTIVE Apathy reflects diminished motivation, goal-directed behavior, and emotions, as well as less engagement in social interactions. Apathy overlaps with depression and is associated with cognitive decline. In the older individuals with chronic kidney disease (CKD), both depression and cognitive impairments are common, but apathy symptoms have been underreported. We investigated the occurrence of apathy symptoms and their associations with physical and cognitive functioning, health-related quality of life (HRQoL), and mortality in older patients with CKD. STUDY DESIGN Prospective observational cohort study. SETTING & PARTICIPANTS 180 outpatients aged≥65 years with estimated glomerular filtration rate≤20mL/min/1.73m2 from 5 Dutch nephrology centers. EXPOSURE Apathy symptoms at baseline were considered present when a Geriatric Depression Scale's 3-item apathy subscale score was≥2 points. OUTCOME Physical and cognitive functioning, HRQoL (assessed in annual geriatric assessments), and 4-year mortality. ANALYTICAL APPROACH Linear regression for cross-sectional associations, linear regression models for longitudinal associations, and Cox regression models for mortality over 4 years of observation. RESULTS Apathy symptoms were present in 64 patients (36%; 67% men; median age 75.5 years), of whom 32 (50%) had no depressive symptoms. At baseline, the presence of apathy symptoms was associated with significantly more frailty, more functional dependence, less physical capacity, lower visuoconstructive performance, worse delayed recall, and lower HRQoL scores. The presence of apathy symptoms at baseline was also associated with a higher mortality risk (hazard ratio, 2.3 [95% CI, 1.3-4.2], P=0.005 adjusted for age, sex, and high education level), but not with changes in physical and cognitive functioning or HRQoL during the follow-up period. LIMITATIONS Risk of selection bias and residual confounding. CONCLUSIONS Apathy symptoms were highly prevalent and associated with concurrent lower physical and cognitive status, lower HRQoL, and increased mortality. These findings highlight apathy as a potentially important clinical phenotype in older CKD patients. PLAIN-LANGUAGE SUMMARY We observed that older kidney patients often present apathy symptoms, such as less motivation, fewer goal-directed behaviors, fewer emotions, and less social engagement. Prior research has not extensively described apathy in kidney disease. We investigated the link between apathy symptoms and poor outcomes. We measured physical functioning, cognitive functioning, and quality of life. We learned that one-third of our older kidney patients showed symptoms of apathy, only half of whom had symptoms of depression. Patients with apathy symptoms showed lower quality of life and lower physical and cognitive performance. They also had a higher risk of death. These findings highlight the need for awareness of apathy symptoms in older kidney patients.
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Affiliation(s)
- Carlijn G N Voorend
- Department of Internal Medicine (Nephrology), Leiden University Medical Center, Leiden, the Netherlands.
| | - Marjolijn van Buren
- Department of Internal Medicine (Nephrology), Leiden University Medical Center, Leiden, the Netherlands; Department of Internal Medicine, Haga Hospital, The Hague, the Netherlands
| | - Noeleen C Berkhout-Byrne
- Department of Internal Medicine (Nephrology), Leiden University Medical Center, Leiden, the Netherlands
| | - Angèle P M Kerckhoffs
- Department of Internal Medicine and Geriatrics, Jeroen Bosch Hospital, Den Bosch, the Netherlands
| | - Mathijs van Oevelen
- Department of Internal Medicine (Nephrology), Leiden University Medical Center, Leiden, the Netherlands
| | - Jacobijn Gussekloo
- Department of Gerontology and Geriatrics, Leiden University Medical Center, Leiden, the Netherlands; Department of Public Health and Primary Care, Leiden University Medical Center, Leiden, the Netherlands
| | - Edo Richard
- Department of Neurology, Donders Institute for Brain, Cognition and Behaviour, Radboud University Medical Center, Nijmegen, the Netherlands
| | - Willem Jan W Bos
- Department of Internal Medicine (Nephrology), Leiden University Medical Center, Leiden, the Netherlands; Department of Internal Medicine, St. Antonius Hospital, Nieuwegein, the Netherlands
| | - Simon P Mooijaart
- Department of Gerontology and Geriatrics, Leiden University Medical Center, Leiden, the Netherlands
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Zhang H, Feng Y, Lv H, Tang S, Peng Y. The prevalence of apathy in stroke patients: A systematic review and meta-analysis. J Psychosom Res 2023; 173:111478. [PMID: 37651842 DOI: 10.1016/j.jpsychores.2023.111478] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 05/17/2023] [Revised: 08/17/2023] [Accepted: 08/24/2023] [Indexed: 09/02/2023]
Abstract
BACKGROUND Apathy is a frequent neuropsychiatric disorder in stroke patients. However, its prevalence rates have conflicting results across studies. This meta-analysis aimed to estimate the overall prevalence of apathy in stroke patients from 1990 to 2022. METHODS PubMed, Web of Science, Embase and PsycINFO were systematically searched to identify relevant articles published from January 1, 1990 to October 29, 2022. Literature quality was assessed with the National Institutes of Health Study Quality Assessment Tool. The pooled prevalence, subgroup analyses and meta-regression were calculated by STATA 16.0. RESULTS A total of 39 observational studies involving 5168 stroke patients were eligible for this meta-analysis. The pooled prevalence of apathy in stroke patients was 33.0% (95% CI, 27.6-38.4). Subgroup analyses showed that the pooled prevalence of apathy among stroke patients was higher in Japan (36.6%), China (33.7%) and Turkey (63.5%) compared to that in other countries (30.2%). The pooled prevalence of apathy was higher in ischemic stroke samples (36.1%) than in hemorrhagic stroke samples (14.4%). The pooled prevalence of apathy measured with the Apathy Evaluation Scale (38.3%) was the highest in stroke patients. Meta-regression presented that higher literature quality was significantly associated with lower prevalence, while stroke severity, mean age and female percentage were not significantly associated with the prevalence of apathy in stroke patients. CONCLUSION Our findings revealed that the overall prevalence of apathy in stroke patients was 33.0% based on the current evidence. Furthermore, the prevalence was significantly correlated with countries, stroke subtypes, apathy criteria, and literature quality.
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Affiliation(s)
- Hanrui Zhang
- Department of Acupuncture and Rehabilitation, Affiliated Hospital of Nanjing University of Chinese Medicine, Nanjing, China
| | - Yaoting Feng
- Department of Acupuncture and Rehabilitation, Affiliated Hospital of Nanjing University of Chinese Medicine, Nanjing, China
| | - Hequn Lv
- Department of Acupuncture and Rehabilitation, Affiliated Hospital of Nanjing University of Chinese Medicine, Nanjing, China
| | - Shaowen Tang
- Department of Epidemiology and Biostatistics, School of Public Health, Nanjing Medical University, Nanjing, China
| | - Yongjun Peng
- Department of Acupuncture and Rehabilitation, Affiliated Hospital of Nanjing University of Chinese Medicine, Nanjing, China.
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Harrison F, Mortby ME, Mather KA, Sachdev PS, Brodaty H. Apathy as a determinant of health behaviors in older adults: Implications for dementia risk reduction. ALZHEIMER'S & DEMENTIA (AMSTERDAM, NETHERLANDS) 2023; 15:e12505. [PMID: 38026759 PMCID: PMC10668002 DOI: 10.1002/dad2.12505] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Received: 02/18/2023] [Revised: 08/04/2023] [Accepted: 10/10/2023] [Indexed: 12/01/2023]
Abstract
INTRODUCTION Long-term improvements in physical inactivity and other behavioral risk factors are integral to dementia risk reduction; however, sustained behavior change is challenging. Apathy, depression, and fatigue may impact engagement in health behaviors, but their presentation overlaps. This study investigates whether these symptoms are differentially associated with multiple health behaviors. METHODS In 1037 community-dwelling older adults without dementia (aged 70-90, 55% women), regression analyses examined apathy, depression, and fatigue as predictors of health behaviors (physical activity, diet, alcohol, smoking) and a behavioral risk index. RESULTS Apathy was associated with reduced physical activity and alcohol use, and one or multiple behavioral risk factors. No or inconsistent relations were found between depression or fatigue and health behaviors. DISCUSSION Apathy is relevant to multiple health behaviors and should be considered when designing health promotion for older adults, including interventions for dementia risk reduction. Findings highlight the importance of distinguishing apathy from comorbid symptoms. Highlights Novel theory-based perspective on behavioural risk factors for dementia.Higher apathy predicted less physical activity and alcohol use, and increased odds of lifestyle risk factors.Depressive symptoms were not associated with any health behavior.Apathy may be a determinant of multiple health behaviors in older adults, distinct from depression and fatigue.Considering apathy in precision prevention of dementia appears warranted.
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Affiliation(s)
- Fleur Harrison
- Centre for Healthy Brain Ageing (CHeBA)Discipline of Psychiatry & Mental HealthFaculty of Medicine & Health, UNSW SydneySydneyNew South WalesAustralia
| | - Moyra E. Mortby
- School of Psychology, UNSW SydneySydneyNew South WalesAustralia
- Neuroscience Research AustraliaSydneyNew South WalesAustralia
- UNSW Ageing Futures Institute, UNSW SydneySydneyNew South WalesAustralia
| | - Karen A. Mather
- Centre for Healthy Brain Ageing (CHeBA)Discipline of Psychiatry & Mental HealthFaculty of Medicine & Health, UNSW SydneySydneyNew South WalesAustralia
- Neuroscience Research AustraliaSydneyNew South WalesAustralia
| | - Perminder S. Sachdev
- Centre for Healthy Brain Ageing (CHeBA)Discipline of Psychiatry & Mental HealthFaculty of Medicine & Health, UNSW SydneySydneyNew South WalesAustralia
- NeuroPsychiatric InstitutePrince of Wales HospitalRandwickNew South WalesAustralia
| | - Henry Brodaty
- Centre for Healthy Brain Ageing (CHeBA)Discipline of Psychiatry & Mental HealthFaculty of Medicine & Health, UNSW SydneySydneyNew South WalesAustralia
- Older People's Mental Health ServicePrince of Wales HospitalRandwickNew South WalesAustralia
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Robinson RG, Jorge RE, Starkstein SE. Poststroke Depression: An Update. J Neuropsychiatry Clin Neurosci 2023; 36:22-35. [PMID: 37559511 DOI: 10.1176/appi.neuropsych.21090231] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 08/11/2023]
Abstract
The presence of neuropsychiatric disorders after stroke has been recognized for more than 100 years, but controlled systematic studies did not begin until the 1970s. The most clinically important advances, however, have been in the treatment and prevention of poststroke depression (PSD). Recent meta-analyses of randomized controlled trials (RCTs) for the treatment of PSD have demonstrated the efficacy of antidepressants. Similarly, RCTs for the prevention of PSD have shown that antidepressants significantly decrease the incidence of PSD compared with placebo. Early treatment of PSD with antidepressants also appears to enhance both physical and cognitive recovery from stroke and may increase survival up to 10 years. Genetic and epigenetic variations, white matter disease, cerebrovascular deregulation, altered neuroplasticity, and changes in glutamate neurotransmission may be relevant etiological factors.
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Affiliation(s)
- Robert G Robinson
- Department of Psychiatry, Carver College of Medicine, University of Iowa, Iowa City (Robinson); Mental Health Service Line, Michael E. DeBakey Veterans Affairs Medical Center, and Division of Neuropsychiatry, Department of Psychiatry and Behavioral Sciences, Baylor College of Medicine, Houston (Jorge); Department of Psychiatry, University of Western Australia, Perth, Australia (Starkstein)
| | - Ricardo E Jorge
- Department of Psychiatry, Carver College of Medicine, University of Iowa, Iowa City (Robinson); Mental Health Service Line, Michael E. DeBakey Veterans Affairs Medical Center, and Division of Neuropsychiatry, Department of Psychiatry and Behavioral Sciences, Baylor College of Medicine, Houston (Jorge); Department of Psychiatry, University of Western Australia, Perth, Australia (Starkstein)
| | - Sergio E Starkstein
- Department of Psychiatry, Carver College of Medicine, University of Iowa, Iowa City (Robinson); Mental Health Service Line, Michael E. DeBakey Veterans Affairs Medical Center, and Division of Neuropsychiatry, Department of Psychiatry and Behavioral Sciences, Baylor College of Medicine, Houston (Jorge); Department of Psychiatry, University of Western Australia, Perth, Australia (Starkstein)
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9
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Lu Y, Zhang R, Zheng Q. Depression and sarcopenia: a Mendelian randomization analysis. Psychiatr Genet 2023; 33:145-151. [PMID: 37463392 DOI: 10.1097/ypg.0000000000000346] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 07/20/2023]
Abstract
BACKGROUND The association between depression and sarcopenia has been reported in observational studies but the causality of depression on sarcopenia remained unknown. We aimed to assess the causal effect between major depressive disorder (MDD) and sarcopenia using the two-sample Mendelian randomization (MR) method. METHODS A set of genetics instruments were used for analysis, derived from publicly available genetic summary data. Clinically, appendicular lean mass (ALM) and low hand grip strength (LHGS) have been widely used for the diagnosis of sarcopenia. Inverse-variance weighted method, weighted median method, MR-Egger, MR Pleiotropy RESidual Sum and Outlier test were used for the bidirectional MR analyses. RESULTS No evidence for an effect of MDD on sarcopenia risk was found. MDD was not associated with ALM [effect = -0.17 (-0.60 to 0.27), P = 0.449] and LHGS [effect = 0.24 (-0.46 to 0.93), P = 0.506]. Sarcopenia was not associated with MDD [ALM: odds ratio (OR) = 0.999 (0.996-1.001), P = 0.374; LHGS: OR = 0.999 (0.996-1.002), P = 0.556]. CONCLUSION MDD and Sarcopenia might mutually have no causal effect on each other.
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Affiliation(s)
- Yehong Lu
- Department of Orthopedics, 2nd Affiliated Hospital, School of Medicine, Zhejiang University
- Orthopedics Research Institute of Zhejiang University, Hangzhou, Zhejiang, China
| | - Ruijie Zhang
- Department of Orthopedics, 2nd Affiliated Hospital, School of Medicine, Zhejiang University
- Orthopedics Research Institute of Zhejiang University, Hangzhou, Zhejiang, China
| | - Qiang Zheng
- Department of Orthopedics, 2nd Affiliated Hospital, School of Medicine, Zhejiang University
- Orthopedics Research Institute of Zhejiang University, Hangzhou, Zhejiang, China
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10
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Renn BN, Sams N, Areán PA, Raue PJ. A low-intensity behavioral intervention for depression in older adults delivered by lay coaches: proof-of-concept trial. Aging Ment Health 2023; 27:1403-1410. [PMID: 35694856 PMCID: PMC9741665 DOI: 10.1080/13607863.2022.2084709] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 07/21/2021] [Accepted: 05/27/2022] [Indexed: 12/14/2022]
Abstract
OBJECTIVES A broader workforce is necessary to expand U.S. geriatric mental health services. We examined (1) feasibility of training undergraduate students to deliver Do More, Feel Better (DMFB), an evidence-informed program for depression; and (2) feasibility, acceptability, and outcomes in a single-arm proof-of-concept trial. METHOD In Study 1, we taught DMFB to 18 upper-level undergraduate students and assessed fidelity using role plays. In Study 2, four students delivered six weekly DMFB sessions to 12 community-dwelling older adults (M = 66.83 years old, SD = 10.39) with depression (PHQ ≥ 10). Patient outcomes were change in pre- to post-treatment depressive symptoms, disability, and the target mechanism of increased activity. RESULTS Fidelity was high in the course (Study 1; 82.4% of role plays rated as 'passing') and the trial (Study 2; 100% of 24 sessions rated as 'passing'). The majority (83.3%) of patients were retained and evidenced statistically and clinically significant improvement in depressive symptoms (Hamilton Rating Scale for Depression [HAM-D]), disability (World Health Organization's Disability Assessment Schedule 2.0 [WHODAS 2.0], and activity (Behavioral Activation for Depression Scale [BADS]). CONCLUSION It is feasible to train bachelor's-level students to deliver a brief, structured intervention for depression. Future research should consider implementation strategies and stakeholder feedback.
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Affiliation(s)
- Brenna N Renn
- Department of Psychology, University of Nevada, Las Vegas, NV, USA
- Department of Psychiatry and Behavioral Sciences, University of Washington, Seattle, WA, USA
| | - Nichole Sams
- Department of Psychiatry and Behavioral Sciences, University of Washington, Seattle, WA, USA
| | - Patricia A Areán
- Department of Psychiatry and Behavioral Sciences, University of Washington, Seattle, WA, USA
| | - Patrick J Raue
- Department of Psychiatry and Behavioral Sciences, University of Washington, Seattle, WA, USA
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11
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Patel R, Arisoyin AE, Okoronkwo OU, Aruoture S, Okobi OE, Nwankwo M, Okobi E, Okobi F, Momodu OE. Trends and Factors Associated With the Mortality Rate of Depressive Episodes: An Analysis of the CDC Wide-Ranging Online Data for Epidemiological Research (WONDER) Database. Cureus 2023; 15:e41627. [PMID: 37565131 PMCID: PMC10410604 DOI: 10.7759/cureus.41627] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Accepted: 07/09/2023] [Indexed: 08/12/2023] Open
Abstract
Background Depressive episodes are associated with increased mortality rates across the United States. Recognizing the relationship between depression and physical health, understanding the contributing factors, and addressing disparities are critical in reducing mortality rates and improving the overall well-being of individuals experiencing depressive episodes. Continued research, public health efforts, and collaborative approaches are essential to tackle this complex public health concern effectively. Studying the mortality rate trends of depressive episodes along with other related factors will help enhance the understanding of the condition, which, in turn, will assist in reducing mortality rates in the vulnerable population. Methodology Data from the CDC Wide-Ranging Online Data for Epidemiologic Research (WONDER) database on the Underlying Cause of Death were examined to identify individuals who experienced fatal outcomes related to depressive episodes from 1999 to 2020. The WONDER database refers to the online system used by the CDC to make its various resources accessible to the public and public health experts. CDC WONDER offers access to a broader range of information on public health. Results A total of 13,290 individuals who died from depressive episodes between 1999 and 2020 were identified. Data analysis revealed an overall mortality rate of 0.20 per 100,000 individuals during the specified period. The highest mortality rates were observed in the years 2003 (0.28), 2001 (0.27), and 1999 (0.27). The analysis revealed significant disparities in mortality rates among different demographic groups. Older adults, females, specific racial groups, including Whites and African Americans, and specific geographic areas, including the Midwest, Northeast, South, and West, exhibited higher mortality rates associated with depressive episodes. Conclusions The study identified that older individuals, females, Whites, and African Americans, as well as certain geographic regions, exhibited an increased likelihood of mortality related to depressive episodes. These findings highlight the importance of understanding the complex interplay between mental health and mortality. The findings emphasize the importance of addressing disparities in mental health outcomes among different demographic groups. Identifying vulnerable populations can inform targeted interventions and resources to address the elevated mortality risk.
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Affiliation(s)
- Radhey Patel
- Psychiatry and Behavioral Sciences, Avalon University School of Medicine, Willemstad, CUW
| | | | - Obiaku U Okoronkwo
- School of Medicine, Kwame Nkrumah University of Science and Technology, Kumasi, GHA
| | - Shaw Aruoture
- Psychiatry, Behavioral Hospital of Bellaire, Houston, USA
| | - Okelue E Okobi
- Family Medicine, Medficient Health Systems, Laurel, USA
- Family Medicine, Lakeside Medical Center, Belle Glade, USA
| | - Mirian Nwankwo
- Neonatology, Peter Lougheed Centre, Alberta Health Services, Alberta, CAN
| | - Emeka Okobi
- Dentistry, Ahmadu Bello University Teaching Hospital, Abuja, NGA
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12
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Li H, Cui L, Wang M, Liao M, Li JB, Ouyang F, Mei T, Zen H, Fan Y. Apathy is associated with striatal atrophy and cognitive impairment in cerebral small vessel disease. J Affect Disord 2023; 328:39-46. [PMID: 36775253 DOI: 10.1016/j.jad.2023.02.004] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 08/25/2022] [Revised: 01/20/2023] [Accepted: 02/01/2023] [Indexed: 02/12/2023]
Abstract
BACKGROUND Apathy has been considered a common neuropsychiatric symptom and an important contributor to cognitive impairment in cerebral small vessel disease (SVD). However, the mechanism leading to apathy in SVD and the process whereby apathy promotes cognitive impairments remain largely unknown. We aimed to explore the relationship between apathy, cognition, and structural changes of deep grey matter (DGM) in SVD patients. METHODS Participants were screened for SVD, completed assessments of apathy cognition, underwent magnetic resonance imaging (MRI) scanning, and then stratified into apathy and non-apathy groups. We used region of interest (ROI)-based, voxel-based volume, and vertex-based shape analyses to compare DGM structures between study groups. Using linear regression analysis, we examined the association between apathy, structural changes, and cognition, followed by a mediation analysis of these factors. RESULTS A total of sixty-four SVD participants were included, with thirty in the apathy group and thirty-four in the non-apathy group. Intergroup comparison showed significantly lower volumes in bilateral caudate, right putamen, and pallidum and smaller vertex-based shapes in the right caudate and pallidum in participants with apathy compared to those without apathy. Apathy was associated with the striatal atrophy (i.e., lower volumes and smaller shape) and independently contributed to cognitive impairments in SVD. However, the above structural differences did not mediate the association between apathy and cognitive impairments. CONCLUSION These results highlight the important role of striatal atrophy in apathy in SVD and call for additional studies to explore the relationship between apathy, cognition, and DGM.
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Affiliation(s)
- Hao Li
- Department of Neurology, The First Affiliated Hospital, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Diagnosis and Treatment of Major Neurological Diseases, National Key Clinical Department and Key Discipline of Neurology, No.58 Zhongshan Road 2, Guangzhou 510080, China; Department of Neurology, Radboud University Medical Center, Donders Institute for Brain, Cognition and Behavior, Nijmegen, the Netherlands
| | - Liqian Cui
- Department of Neurology, The First Affiliated Hospital, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Diagnosis and Treatment of Major Neurological Diseases, National Key Clinical Department and Key Discipline of Neurology, No.58 Zhongshan Road 2, Guangzhou 510080, China.
| | - Meng Wang
- Department of Radiology, The First Affiliated Hospital, Sun Yat-sen University, No.58 Zhongshan Road 2, Guangzhou 510080, China
| | - Mengshi Liao
- Department of Neurology, The First Affiliated Hospital, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Diagnosis and Treatment of Major Neurological Diseases, National Key Clinical Department and Key Discipline of Neurology, No.58 Zhongshan Road 2, Guangzhou 510080, China
| | - Jin Biao Li
- Department of Neurology, The First Affiliated Hospital, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Diagnosis and Treatment of Major Neurological Diseases, National Key Clinical Department and Key Discipline of Neurology, No.58 Zhongshan Road 2, Guangzhou 510080, China
| | - Fubing Ouyang
- Department of Neurology, The First Affiliated Hospital, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Diagnosis and Treatment of Major Neurological Diseases, National Key Clinical Department and Key Discipline of Neurology, No.58 Zhongshan Road 2, Guangzhou 510080, China
| | - Ting Mei
- Department of Cognitive Neuroscience, Donders Institute for Brain, Cognition and Behaviour, Radboud University Nijmegen Medical Centre, Nijmegen, the Netherlands
| | - Huixing Zen
- Department of Neurology, The First Affiliated Hospital, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Diagnosis and Treatment of Major Neurological Diseases, National Key Clinical Department and Key Discipline of Neurology, No.58 Zhongshan Road 2, Guangzhou 510080, China
| | - Yuhua Fan
- Department of Neurology, The First Affiliated Hospital, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Diagnosis and Treatment of Major Neurological Diseases, National Key Clinical Department and Key Discipline of Neurology, No.58 Zhongshan Road 2, Guangzhou 510080, China.
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13
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Jiang S, Zhang H, Fang Y, Yin D, Dong Y, Chao X, Gong X, Wang J, Sun W. Altered Resting-State Brain Activity and Functional Connectivity in Post-Stroke Apathy: An fMRI Study. Brain Sci 2023; 13:brainsci13050730. [PMID: 37239202 DOI: 10.3390/brainsci13050730] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/08/2023] [Revised: 04/07/2023] [Accepted: 04/20/2023] [Indexed: 05/28/2023] Open
Abstract
Apathy is a common neuropsychiatric disease after stroke and is linked to a lower quality of life while undergoing rehabilitation. However, it is still unknown what are the underlying neural mechanisms of apathy. This research aimed to explore differences in the cerebral activity and functional connectivity (FC) of subjects with post-stroke apathy and those without it. A total of 59 individuals with acute ischemic stroke and 29 healthy subjects with similar age, sex, and education were recruited. The Apathy Evaluation Scale (AES) was used to evaluate apathy at 3 months after stroke. Patients were split into two groups-PSA (n = 21) and nPSA (n = 38)-based on their diagnosis. The fractional amplitude of low-frequency fluctuation (fALFF) was used to measure cerebral activity, as well as region-of-interest to region-of-interest analysis to examine functional connectivity among apathy-related regions. Pearson correlation analysis between fALFF values and apathy severity was performed in this research. The values of fALFF in the left middle temporal regions, right anterior and middle cingulate regions, middle frontal region, and cuneus region differed significantly among groups. Pearson correlation analysis showed that the fALFF values in the left middle temporal region (p < 0.001, r = 0.66) and right cuneus (p < 0.001, r = 0.48) were positively correlated with AES scores in stroke patients, while fALFF values in the right anterior cingulate (p < 0.001, r = -0.61), right middle frontal gyrus (p < 0.001, r = -0.49), and middle cingulate gyrus (p = 0.04, r = -0.27) were negatively correlated with AES scores in stroke patients. These regions formed an apathy-related subnetwork, and functional connectivity analysis unveiled that altered connectivity was linked to PSA (p < 0.05). This research found that abnormalities in brain activity and FC in the left middle temporal region, right middle frontal region, right cuneate region, and right anterior and middle cingulate regions in stroke patients were associated with PSA, revealing a possible neural mechanism and providing new clues for the diagnosis and treatment of PSA.
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Affiliation(s)
- Shiyi Jiang
- Stroke Center & Department of Neurology, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 230001, China
| | - Hui Zhang
- Department of Gastroenterology, Zhongshan Hospital of Traditional Chinese Medicine, Zhongshan 528400, China
| | - Yirong Fang
- Stroke Center & Department of Neurology, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 230001, China
| | - Dawei Yin
- Department of Radiology, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 230001, China
| | - Yiran Dong
- Stroke Center & Department of Neurology, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 230001, China
| | - Xian Chao
- Stroke Center & Department of Neurology, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 230001, China
| | - Xiuqun Gong
- Department of Neurology, The First Affiliated Hospital of Anhui University of Science and Technology, Huainan First People's Hospital, Huainan 232000, China
| | - Jinjing Wang
- Department of Neurology, Nanjing Jinling Hospital, Affiliated Hospital of Medical School, Nanjing University, Nanjing 210033, China
| | - Wen Sun
- Stroke Center & Department of Neurology, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 230001, China
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14
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Murphy RP, Reddin C, Rosengren A, Judge C, Hankey GJ, Ferguson J, Alvarez-Iglesias A, Oveisgharan S, Wasay M, McDermott C, Iversen HK, Lanas F, Al-Hussain F, Czlonkowska A, Oguz A, Ogunniyi A, Damasceno A, Xavier D, Avezum A, Wang X, Langhorne P, Yusuf S, O'Donnell M. Depressive Symptoms and Risk of Acute Stroke: INTERSTROKE Case-Control Study. Neurology 2023; 100:e1787-e1798. [PMID: 36889922 PMCID: PMC10136021 DOI: 10.1212/wnl.0000000000207093] [Citation(s) in RCA: 4] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/09/2022] [Accepted: 01/10/2023] [Indexed: 03/10/2023] Open
Abstract
BACKGROUND AND OBJECTIVES Depression has been reported to be a risk factor of acute stroke, based largely on studies in high-income countries. In the INTERSTROKE study, we explored the contribution of depressive symptoms to acute stroke risk and 1-month outcome across regions of the world, within subpopulations and by stroke type. METHODS The INTERSTROKE is an international case-control study of risk factors of first acute stroke, conducted in 32 countries. Cases were patients with CT- or MRI-confirmed incident acute hospitalized stroke, and controls were matched for age, sex, and within sites. Standardized questions asked about self-reported depressive symptoms during the previous 12 months and the use of prescribed antidepressant medications were recorded. Multivariable conditional logistic regression was used to determine the association of prestroke depressive symptoms with acute stroke risk. Adjusted ordinal logistic regression was used to explore the association of prestroke depressive symptoms with poststroke functional outcome, measured with the modified Rankin scale at 1 month after stroke. RESULTS Of 26,877 participants, 40.4% were women, and the mean age was 61.7 ± 13.4 years. The prevalence of depressive symptoms within the last 12 months was higher in cases compared with that in controls (18.3% vs 14.1%, p < 0.001) and differed by region (p interaction <0.001), with lowest prevalence in China (6.9% in controls) and highest in South America (32.2% of controls). In multivariable analyses, prestroke depressive symptoms were associated with greater odds of acute stroke (odds ratio [OR] 1.46, 95% CI 1.34-1.58), which was significant for both intracerebral hemorrhage (OR 1.56, 95% CI 1.28-1.91) and ischemic stroke (OR 1.44, 95% CI 1.31-1.58). A larger magnitude of association with stroke was seen in patients with a greater burden of depressive symptoms. While preadmission depressive symptoms were not associated with a greater odds of worse baseline stroke severity (OR 1.02, 95% CI 0.94-1.10), they were associated with a greater odds of poor functional outcome at 1 month after acute stroke (OR 1.09, 95% CI 1.01-1.19). DISCUSSION In this global study, we recorded that depressive symptoms are an important risk factor of acute stroke, including both ischemic and hemorrhagic stroke. Preadmission depressive symptoms were associated with poorer functional outcome, but not baseline stroke severity, suggesting an adverse role of depressive symptoms in poststroke recovery.
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Affiliation(s)
- Robert P Murphy
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom.
| | - Catriona Reddin
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Annika Rosengren
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Conor Judge
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Graeme J Hankey
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - John Ferguson
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Alberto Alvarez-Iglesias
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Shahram Oveisgharan
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Mohammad Wasay
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Clodagh McDermott
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Helle Klingenberg Iversen
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Fernando Lanas
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Fawaz Al-Hussain
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Anna Czlonkowska
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Aytekin Oguz
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Adesola Ogunniyi
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Albertino Damasceno
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Denis Xavier
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Alvaro Avezum
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Xingyu Wang
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Peter Langhorne
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Salim Yusuf
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
| | - Martin O'Donnell
- From the HRB Clinical Research Facility Galway (R.P.M., C.R., C.J., J.F., A.A.-I., C.M., M.O.D.), School of Medicine, NUI Galway; Wellcome Trust-HRB (C.R., C.J.), Irish Clinical Academic Training, Galway, Ireland; Sahlgrenska University Hospital and Sahlgrenska Academy (A.R.), University of Gothenburg, Sweden; Population Health Research Institute (C.J., S.Y., M.O.D.), Hamilton Health Sciences and McMaster University, Ontario, Canada; School of Medicine and Pharmacology (G.J.H.), The University of Western Australia, Perth, Washington; Rush Alzheimer Disease Research Center (S.O.), Rush University Medical Center, Chicago, IL; Aga Khan University (M.W.), Karachi, Pakistan; Department of Neurology (H.K.I.), Rigshospitalet, University of Copenhagen; Health and Medical Sciences (H.K.I.), University of Copenhagen, Blegdamsvej 9, Denmark; Faculty of Medicine (F.L.), Universidad de La Frontera, Temuco, Chile; King Saud University (F.A.-H.), Riyadh, Saudi Arabia; Institute of Psychiatry and Neurology (A.C.), Warsaw, Poland; Department of Internal Medicine (Aytekin Oguz), Faculty of Medicine, Istanbul Medeniyet University, Turkey; Division of Cardiovascular Medicine (Adesola Ogunniyi), Department of Medicine, University College Hospital, Ibadan, Nigeria; Eduardo Mondlane University (A.D.), Maputo, Mozambique; St John's Medical College and Research Institute (D.X.), Bangalore, India; Instituto Dante Pazzanese de Cardiologia (A.A.), Sao Paulo, Brazil; Laboratory of Human Genetics (X.W.), Beijing Hypertension League Institute, China; and Academic Section of Geriatric Medicine (P.L.), Glasgow Royal Infirmary, University of Glasgow, United Kingdom
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15
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Wouts L, Marijnissen RM, Oude Voshaar RC, Beekman ATF. Strengths and Weaknesses of the Vascular Apathy Hypothesis: A Narrative Review. Am J Geriatr Psychiatry 2023; 31:183-194. [PMID: 36283953 DOI: 10.1016/j.jagp.2022.09.016] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 07/06/2022] [Revised: 09/12/2022] [Accepted: 09/27/2022] [Indexed: 10/07/2022]
Abstract
The vascular apathy hypothesis states that cerebral small vessel disease (CSVD) can cause apathy, even when no other symptoms of CSVD are present. In order to examine this hypothesis, the objectives of this narrative review are to evaluate the evidence for a pathophysiological mechanism linking CSVD to apathy and to examine whether CSVD can be a sole cause of apathy. The nature of the CSVD-apathy relationship was evaluated using the Bradford Hill criteria as a method for research on the distinction between association and causation. Pathological, neuroimaging, and behavioral studies show that CSVD can cause lesions in the reward network, which causes an apathy syndrome. Studies in healthy older individuals, stroke patients and cognitively impaired persons consistently show an association between CSVD markers and apathy, although studies in older persons suffering from depression are inconclusive. A biological gradient is confirmed, as well as a temporal relationship, although the evidence for the latter is still weak. The specificity of this causal relationship is low given there often are other contributing factors in CSVD patients with apathy, particularly depression and cognitive deterioration. Differentiating between vascular apathy and other apathy syndromes on the basis of clinical features is not yet possible, while in-depth knowledge about differences in the prognosis and efficacy of treatment options for apathy caused by CSVD and other apathy syndromes is lacking. Since we cannot differentiate between etiologically different apathy syndromes as yet, it is premature to use the term vascular apathy which would suggest a distinct clinical apathy syndrome.
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Affiliation(s)
- Lonneke Wouts
- Department of Old Age Psychiatry (L.W.), Pro Persona Mental Health Institute, Nijmegen, the Netherlands; Department of Psychiatry (L.W., R.M.M., R.C.O.), University Medical Center Groningen (UMCG), Groningen, the Netherlands.
| | - Radboud M Marijnissen
- Department of Psychiatry (L.W., R.M.M., R.C.O.), University Medical Center Groningen (UMCG), Groningen, the Netherlands
| | - Richard C Oude Voshaar
- Department of Psychiatry (L.W., R.M.M., R.C.O.), University Medical Center Groningen (UMCG), Groningen, the Netherlands
| | - Aartjan T F Beekman
- Department of Psychiatry (A.T.F.B.), Amsterdam UMC, Vrije Universiteit, and GGZinGeest, Amsterdam, the Netherlands
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16
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Aubignat M, Roussel M, Aarabi A, Lamy C, Andriuta D, Tasseel-Ponche S, Makki M, Godefroy O, Roussel M, Barbay M, Canaple S, Lamy C, Leclercq C, Arnoux A, Despretz-Wannepain S, Despretz P, Berrissoul H, Picard C, Diouf M, Loas G, Deramond H, Taillia H, Ardisson AE, Nédélec-Ciceri C, Bonnin C, Thomas-Anterion C, Vincent-Grangette F, Varvat J, Quaglino V, Beaunieux H, Moroni C, Martens-Chazelles A, Batier-Monperrus S, Monteleone C, Costantino V, Theunssens E. Poststroke apathy: Major role of cognitive, depressive and neurological disorders over imaging determinants. Cortex 2023; 160:55-66. [PMID: 36745966 DOI: 10.1016/j.cortex.2022.12.012] [Citation(s) in RCA: 2] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/30/2022] [Revised: 10/11/2022] [Accepted: 12/01/2022] [Indexed: 01/19/2023]
Abstract
Apathy occurs in approximately one third of people after stroke. Despite its frequency and functional consequences, the determinants of apathy have only been partially defined. The major difficulty lies in disentangling the reduction in activity due to apathy itself from those secondary to comorbidities, such as depression, sensorimotor deficits, and cognitive impairment. Here, we aimed to examine the prevalence of apathy, identify confounding sources of hypoactivity, and define its neuroimaging determinants using multivariate voxel lesion symptom-mapping (mVLSM) analyses. We assessed apathy in a subgroup (n = 325, mean age: 63.8 ± 10.5 years, 91.1% ischemic stroke) of the GRECogVASC cohort using the validated Behavioral Dysexecutive Syndrome Inventory, interpreted using GREFEX criteria, as well as confounding factors (depression, anxiety, severity of the neurological deficit, and gait disorders). mVLSM analysis was used to define neuroimaging determinants and was repeated after controlling for confounding factors. Apathy was present for 120 patients (36.9%, 95% CI: 31.7-42.2). Stepwise linear regression identified three factors associated with apathy: depressive symptoms (R2 = .3, p = .0001), cognitive impairment (R2 = .015, p = .02), and neurological deficit (R2 = .110, p = .0001). Accordingly, only 9 (7.5%) patients had apathy without a confounding factor, i.e., isolated apathy. In conventional VLSM analysis, apathy was associated with a large number of subcortical lesions that were no longer considered after controlling for confounding factors. Strategic site analysis identified five regions associated with isolated apathy: the F3 orbitalis pars, left amygdala, left thalamus, left pallidum, and mesencephalon. mVLSM analysis identified four strategic sites associated with apathy: the right corticospinal tract (R2 = .11; p = .0001), left frontostriatal tract (R2 = .11; p = .0001), left thalamus (R2 = .04; p = .0001), and left amygdala (R2 = .01; p = .013). These regions remained significant after controlling for confounding factors but explained a lower amount of variance. These findings indicate that poststroke apathy is more strongly associated with depression, neurological deficit, and cognitive impairment than with stroke lesions locations, at least using VLSM analysis.
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Affiliation(s)
- Mickael Aubignat
- Department of Neurology, Amiens University Hospital, Amiens, France
| | - Martine Roussel
- Department of Neurology, Amiens University Hospital, Amiens, France; Laboratory of Functional Neurosciences (UR UPJV 4559), Jules Verne University of Picardie, Amiens, France
| | - Ardalan Aarabi
- Laboratory of Functional Neurosciences (UR UPJV 4559), Jules Verne University of Picardie, Amiens, France
| | - Chantal Lamy
- Department of Neurology, Amiens University Hospital, Amiens, France; Laboratory of Functional Neurosciences (UR UPJV 4559), Jules Verne University of Picardie, Amiens, France
| | - Daniela Andriuta
- Department of Neurology, Amiens University Hospital, Amiens, France; Laboratory of Functional Neurosciences (UR UPJV 4559), Jules Verne University of Picardie, Amiens, France
| | - Sophie Tasseel-Ponche
- Laboratory of Functional Neurosciences (UR UPJV 4559), Jules Verne University of Picardie, Amiens, France; Departments of Rehabilitation, Amiens University Hospital, Amiens, France
| | - Malek Makki
- Laboratory of Functional Neurosciences (UR UPJV 4559), Jules Verne University of Picardie, Amiens, France
| | - Olivier Godefroy
- Department of Neurology, Amiens University Hospital, Amiens, France; Laboratory of Functional Neurosciences (UR UPJV 4559), Jules Verne University of Picardie, Amiens, France.
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17
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van der Klei VMGTH, Poortvliet RKE, Bogaerts JMK, Blom JW, Mooijaart SP, Teh R, Muru‐Lanning M, Palapar L, Kingston A, Robinson L, Kerse N, Gussekloo J. Vascular disease and apathy symptoms in the very old: A cross-sectional and longitudinal meta-analysis of individual participant data. Int J Geriatr Psychiatry 2022; 37:10.1002/gps.5831. [PMID: 36317267 PMCID: PMC9828503 DOI: 10.1002/gps.5831] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 05/06/2022] [Accepted: 10/16/2022] [Indexed: 01/12/2023]
Abstract
OBJECTIVES Previous findings suggest a vascular foundation underlying apathy, but transdiagnostic and prospective evidence on vascular apathy is scarce. This study examines the association between vascular disease and the presence and development of apathy symptoms in the very old. METHODS Four cohorts of the Towards Understanding Longitudinal International older People Studies (TULIPS)-consortium were included in a two-staged, individual participant data meta-analysis using generalized linear mixed models. Vascular disease was defined as a history of any clinical atherosclerotic pathology (angina pectoris, myocardial infarction, intermittent claudication, transient ischemic attack, stroke or related surgeries) and was related to apathy symptoms as repeatedly measured by the Geriatric Depression Scale (GDS-3A ≥2) over a maximum of 5 years. RESULTS Of all 1868 participants (median age 85 years old), 53.9% had vascular disease and 44.3% experienced apathy symptoms. Participants with vascular disease had a 76% higher risk of apathy symptoms at baseline (odds ratio (OR) 1.76, 95% confidence interval (CI) 1.32-2.35), irrespective of depressive symptoms and only partially explained by stroke. Conversely, there was no association of vascular disease with the occurrence of apathy symptoms longitudinally, both in those with apathy at baseline (OR 1.00, 95% CI 0.84-1.20) and without (OR 0.96, 95% CI 0.84-1.09). CONCLUSIONS Vascular disease in the very old is associated with apathy symptoms cross-sectionally, but not proven longitudinally, independent of depressive symptoms. These findings query a vascular cause underlying apathy symptoms. However, the consistency of our cross-sectional findings in direction and magnitude across the TULIPS-consortium do emphasize international relevance of the interplay of vascular factors and apathy in advanced age, which meaning needs further unravelling.
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Affiliation(s)
| | | | - Jonathan M. K. Bogaerts
- Department of Public Health and Primary CareLeiden University Medical CenterLeidenThe Netherlands
| | - Jeanet W. Blom
- Department of Public Health and Primary CareLeiden University Medical CenterLeidenThe Netherlands
| | - Simon P. Mooijaart
- Department of Gerontology and GeriatricsLeiden University Medical CenterLeidenThe Netherlands
| | - Ruth Teh
- School of Population HealthUniversity of AucklandAucklandNew Zealand
| | - Marama Muru‐Lanning
- School of Population HealthUniversity of AucklandAucklandNew Zealand
- James Henare Māori Research CentreUniversity of AucklandAucklandNew Zealand
| | - Leah Palapar
- School of Population HealthUniversity of AucklandAucklandNew Zealand
| | - Andrew Kingston
- Population Health Sciences InstituteFaculty of Medical SciencesNewcastle UniversityCampus for Ageing and VitalityNewcastle Upon TyneUK
| | - Louise Robinson
- Population Health Sciences InstituteFaculty of Medical SciencesNewcastle UniversityCampus for Ageing and VitalityNewcastle Upon TyneUK
| | - Ngaire Kerse
- School of Population HealthUniversity of AucklandAucklandNew Zealand
| | - Jacobijn Gussekloo
- Department of Gerontology and GeriatricsLeiden University Medical CenterLeidenThe Netherlands
- Department of Public Health and Primary CareLeiden University Medical CenterLeidenThe Netherlands
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18
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Klimiec-Moskal E, Pera J, Słowik A, Dziedzic T. Various courses of early post-stroke apathy symptoms are associated with different outcomes. Eur J Clin Invest 2022; 52:e13833. [PMID: 35842831 DOI: 10.1111/eci.13833] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 06/07/2022] [Revised: 07/12/2022] [Accepted: 07/14/2022] [Indexed: 11/27/2022]
Affiliation(s)
| | - Joanna Pera
- Department of Neurology, Jagiellonian University Medical College, Krakow, Poland
| | - Agnieszka Słowik
- Department of Neurology, Jagiellonian University Medical College, Krakow, Poland
| | - Tomasz Dziedzic
- Department of Neurology, Jagiellonian University Medical College, Krakow, Poland
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19
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Wu Y, Jin S, Guo J, Zhu Y, Chen L, Huang Y. The Economic Burden Associated with Depressive Symptoms among Middle-Aged and Elderly People with Chronic Diseases in China. INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH 2022; 19:12958. [PMID: 36232268 PMCID: PMC9566659 DOI: 10.3390/ijerph191912958] [Citation(s) in RCA: 11] [Impact Index Per Article: 3.7] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Figures] [Subscribe] [Scholar Register] [Received: 08/25/2022] [Revised: 10/03/2022] [Accepted: 10/06/2022] [Indexed: 06/16/2023]
Abstract
Coexisting physical diseases and depressive symptoms exacerbate morbidity and disability, but their incremental economic burden remains unclear. We used cross-sectional data from the China Health and Retirement Longitudinal Study (CHARLS) survey in 2018 to estimate the economic burden associated with depressive symptoms among middle-aged and elderly people with chronic diseases. A multivariable regression model was used to assess the annual health care utilization, expenditures, and productivity loss of depressive symptoms among people with 12 common chronic diseases. We found that depressive symptoms were associated with higher incremental economic burdens, as the total health care costs increased by 3.1% to 85.0% and annual productivity loss increased by 1.6% to 90.1%. Those with cancer or malignant tumors had the largest economic burden associated with depressive symptoms, with CNY 17,273.7 additional annual health care costs and a loss of CNY 2196.2 due to additional annual productivity loss. The effect of depressive symptoms on the economic burden of patients with chronic conditions did not increase by the number of chronic conditions. Considering the high economic burden associated with depressive symptoms among patients with chronic conditions, it is important to consider the mental health of patients in chronic disease treatment and management.
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Affiliation(s)
- Yun Wu
- Department of Health Policy and Management, School of Public Health, Sun Yat-sen University, 74, Zhongshan 2nd Road, Guangzhou 510030, China
| | - Sihui Jin
- Department of Health Policy and Management, School of Public Health, Sun Yat-sen University, 74, Zhongshan 2nd Road, Guangzhou 510030, China
| | - Jianwei Guo
- Department of Health Policy and Management, School of Public Health, Sun Yat-sen University, 74, Zhongshan 2nd Road, Guangzhou 510030, China
| | - Yi Zhu
- Department of Epidemiology and Health Statistics, School of Public Health, Huazhong University of Science and Technology, 1037 Luoyu Road, Hongshan District, Wuhan 430074, China
| | - Lijin Chen
- Department of Health Policy and Management, School of Public Health, Sun Yat-sen University, 74, Zhongshan 2nd Road, Guangzhou 510030, China
| | - Yixiang Huang
- Department of Health Policy and Management, School of Public Health, Sun Yat-sen University, 74, Zhongshan 2nd Road, Guangzhou 510030, China
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20
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Hu J, Zheng X, Shi G, Guo L. Associations of multiple chronic disease and depressive symptoms with incident stroke among Chinese middle-aged and elderly adults: a nationwide population-based cohort study. BMC Geriatr 2022; 22:660. [PMID: 35953770 PMCID: PMC9373457 DOI: 10.1186/s12877-022-03329-4] [Citation(s) in RCA: 6] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/01/2021] [Accepted: 07/18/2022] [Indexed: 11/10/2022] Open
Abstract
BACKGROUND With the population aging, multiple chronic diseases, depressive symptoms, and stroke are increasingly common among middle-aged and elderly adults worldwide. This study aimed to explore the independent associations of multiple chronic diseases and depressive symptoms as well as their combination with incident stroke in a prospective cohort of Chinese middle-aged and elderly adults, and to sensitively estimate the association between each type of chronic disease and incident stroke. METHODS This study used data from the China Health and Retirement Longitudinal Study (CHARLS). A total of 8389 participants meeting the inclusion criteria at baseline (between 2011 and 2012) survey were included, and 7108 eligible participants completed the follow-up survey over 8 years (Wave 4, in 2018). Questionnaire information, physical examination, and clinical and biochemical measurements were collected. RESULTS The mean (SD) age at baseline was 58.5 (± 9.1) years. Multiple chronic disease and depressive symptoms were independently associated with incident stroke. After adjusting for control variables, patients having 1 type of chronic disease and depressive symptoms were at 1.943 (95% CI = 1.166-3.238) times higher risk of incident stroke than those without chronic disease and depressive symptoms, and patients having at least 2 types of chronic diseases and depressive symptoms were at 3.000 (95% CI = 1.846-4.877) times higher risk of incident stroke; the magnitudes of the associations increased by the numbers of having chronic diseases and depressive symptoms. Sensitivity analyses incorporating all five types of chronic disease (i.e., hypertension, dyslipidemia, heart disease, diabetes, and chronic kidney disease) showed that the magnitude of the associations between hypertension and incident stroke was most significant. CONCLUSIONS We identified significant independent and combined longitudinal associations of multiple chronic diseases and depressive symptoms with incident stroke, and the combined associations reflected a dose-response relationship. The association between hypertension and incident stroke was strongest among the five chronic diseases.
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Affiliation(s)
- Jingyang Hu
- Department of Medical Statistics and Epidemiology, School of Public Health, Sun Yat-sen University, Guangzhou, 510080, People's Republic of China
| | - Xinyu Zheng
- Cerebrovascular Disease Department, Zhuhai People's Hospital Medical Group, 519000, Zhuhai, People's Republic of China
| | - Guangduoji Shi
- Cerebrovascular Disease Department, Zhuhai People's Hospital Medical Group, 519000, Zhuhai, People's Republic of China
| | - Lan Guo
- Cerebrovascular Disease Department, Zhuhai People's Hospital Medical Group, 519000, Zhuhai, People's Republic of China.
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21
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Yu L, Chen Y, Wang N, Xu K, Wu C, Liu T, Fu C. Association Between Depression and Risk of Incident Cardiovascular Diseases and Its Sex and Age Modifications: A Prospective Cohort Study in Southwest China. Front Public Health 2022; 10:765183. [PMID: 35433580 PMCID: PMC9005795 DOI: 10.3389/fpubh.2022.765183] [Citation(s) in RCA: 10] [Impact Index Per Article: 3.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/26/2021] [Accepted: 03/08/2022] [Indexed: 01/12/2023] Open
Abstract
To examine possible associations between depression and cardiovascular disease (CVD) incidence and whether demographic factors modified those associations in the Chinese population. This prospective cohort study comprised 7,735 adults aged 18 years or older in Guizhou, China from 2010 to 2020. The Patient Health Questionnaire-9 (PHQ-9) was used to measure the prevalence of depression. Cox proportional hazard models were used to estimated hazard ratios (HRs) and 95% confidence intervals (95%CIs) of depression and incident CVD. We identified 215 CVD cases (including 28 acute myocardial infarction (AMI) and 197 stroke cases) during an average follow-up of 7.07 years. In the multivariable-adjusted model, baseline PHQ-9 score was associated with incident CVD, AMI, and stroke. The HR per 1-SD increase for PHQ-9 score was 1.14 (95%CI: 1.03, 1.26) for CVD, 1.26 (95%CI: 1.01, 1.57) for AMI, and 1.12 (95%CI: 1.01, 1.25) for stroke. Compared with participants without depression, those with any mild or more advanced depression had a higher risk of incident CVD (HR: 1.69, 95%CI: 1.08, 2.64) and AMI (HR: 3.36, 95%CI: 1.17, 10.56). Associations between depression with CVD and stroke were suggested to be even stronger among women and participants aged <65 years (P for interaction <0.05). The effect of depression on stroke tended to be preserved in non-smokers. Depression was associated with a higher risk of incident CVD, AMI, and stroke in adults of Southwest, China, particularly in women, participants aged <65 years, and non-smokers. These findings highlighted the importance and urgency of depression healthcare.
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Affiliation(s)
- Lisha Yu
- Guizhou Center for Disease Control and Prevention, Guiyang, China
| | - Yun Chen
- School of Public Health, Key Laboratory of Public Health Safety, National Health Commission Key Laboratory of Health Technology Assessment, Fudan University, Shanghai, China
| | - Na Wang
- School of Public Health, Key Laboratory of Public Health Safety, National Health Commission Key Laboratory of Health Technology Assessment, Fudan University, Shanghai, China
| | - Kelin Xu
- School of Public Health, Key Laboratory of Public Health Safety, National Health Commission Key Laboratory of Health Technology Assessment, Fudan University, Shanghai, China
| | - Chenghan Wu
- Guizhou Center for Disease Control and Prevention, Guiyang, China
| | - Tao Liu
- Guizhou Center for Disease Control and Prevention, Guiyang, China
| | - Chaowei Fu
- School of Public Health, Key Laboratory of Public Health Safety, National Health Commission Key Laboratory of Health Technology Assessment, Fudan University, Shanghai, China
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22
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Survival in Korean Patients with Frontotemporal Dementia Syndrome: Association with Behavioral Features and Parkinsonism. J Clin Med 2022; 11:jcm11082260. [PMID: 35456351 PMCID: PMC9025342 DOI: 10.3390/jcm11082260] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/04/2022] [Revised: 04/14/2022] [Accepted: 04/15/2022] [Indexed: 02/05/2023] Open
Abstract
We investigated the survival time of each clinical syndrome of frontotemporal dementia (FTD) and the impacts of behavioral and motor features on survival of FTD. A total of 216 patients with FTD [82 behavioral variant FTD (bvFTD), 78 semantic variant primary progressive aphasia (svPPA), 43 non-fluent/agrammatic variant PPA (nfvPPA), 13 FTD-motor neuron disease (MND)] were enrolled from 16 centers across Korea. Behaviors and parkinsonism were assessed using the Frontal Behavioral Inventory and Unified Parkinson’s Disease Rating Scale Part III, respectively. The Kaplan–Meier method was used for the survival analysis and the Cox proportional hazards model was applied for analysis of the effect of behavioral and motor symptoms on survival, after controlling vascular risk factors and cancer. An overall median survival of FTD was 12.1 years. The survival time from onset was shortest for FTD-MND and longest for svPPA. The median survival time of patients with bvFTD was unavailable but likely comparable to that of patients with nfvPPA. In the bvFTD group, negative behavioral symptoms and akinetic rigidity were significantly associated with survival. In the nfvPPA group, the presence of dysarthria had a negative impact on survival. These findings provide useful information to clinicians planning for care.
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23
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Zhu C, Wang J, Wang J, Zhong Q, Huang Y, Chen Y, Lian Z. Associations between depressive symptoms and sleep duration for predicting cardiovascular disease onset: A prospective cohort study. J Affect Disord 2022; 303:1-9. [PMID: 35104466 DOI: 10.1016/j.jad.2022.01.106] [Citation(s) in RCA: 4] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 11/28/2021] [Revised: 01/26/2022] [Accepted: 01/28/2022] [Indexed: 01/22/2023]
Abstract
BACKGROUND The joint effects of depressive symptoms and sleep on the risk of cardiovascular disease (CVD) are not well understood. The purpose of this study was to assess the combined impact of depressive symptoms and sleep duration on the incidence of CVD among middle-aged and older Chinese individuals. METHODS Data were from the China Health and Longitudinal Study conducted in 2013, 2015, and 2018. A total of 9595 participants aged ≥ 45 years without a history of CVD in 2013 were included. Depressive symptoms were measured using the 10-item Center for Epidemiological Studies Depression scale (elevated depressive symptoms cutoff ≥ 10). Average sleep duration was self-reported. Logistic regression analyses adjusted for age, sex, marital status, education and other potential confounders were conducted. RESULTS In total, 1072 (11.2%) participants reported CVD incidents over the 5-year period. Elevated depressive symptoms (OR = 1.49, 95% CI = 1.30-1.72) and short sleep duration (OR = 1.21, 95% CI = 1.05-1.40) were independently associated with an increased CVD risk in the fully adjusted model. Individuals with short sleep duration/low depressive symptoms (OR = 1.34, 95% CI = 1.12-1.60), short sleep duration/elevated depressive symptoms (OR = 1.70, 95% CI = 1.41-2.50), or long sleep duration/elevated depressive symptoms (OR = 2.13, 95% CI = 1.38-3.27) were more likely to develop CVD than those with normal sleep duration/low depressive symptoms. LIMITATIONS Depressive symptoms and sleep duration were self-reported. CONCLUSIONS A stronger risk of CVD was found when depressive symptoms and short or long sleep durations occurred together, suggesting that an integrated approach to sleep and depressive symptoms might be a feasible strategy for the prevention of CVD.
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Affiliation(s)
- Chunsu Zhu
- Fujian Cancer Hospital, Fujian Medical University Cancer Hospital, No. 420, Fuma Road, Jinan, Fuzhou 350014, China
| | - Jianmin Wang
- Fujian Cancer Hospital, Fujian Medical University Cancer Hospital, No. 420, Fuma Road, Jinan, Fuzhou 350014, China
| | - Jiaxue Wang
- Department of Pharmacy, Guizhou Provincial People's Hospital, Guiyang, China
| | - Qiaofeng Zhong
- Fujian Cancer Hospital, Fujian Medical University Cancer Hospital, No. 420, Fuma Road, Jinan, Fuzhou 350014, China
| | - Yongying Huang
- Fujian Cancer Hospital, Fujian Medical University Cancer Hospital, No. 420, Fuma Road, Jinan, Fuzhou 350014, China
| | - Ying Chen
- Fujian Cancer Hospital, Fujian Medical University Cancer Hospital, No. 420, Fuma Road, Jinan, Fuzhou 350014, China
| | - Zhiwei Lian
- Fujian Cancer Hospital, Fujian Medical University Cancer Hospital, No. 420, Fuma Road, Jinan, Fuzhou 350014, China.
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24
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Greenfield L, Mathews S, Toukhsati SR. Anhedonia and anergia predict mortality in older Australians living in residential aged care. Aging Ment Health 2022; 26:614-622. [PMID: 33459050 DOI: 10.1080/13607863.2021.1872491] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 10/22/2022]
Abstract
OBJECTIVES Depression is common in older adults and is linked to morbidity and mortality. The aim of this study was to investigate whether specific symptoms of depression (dysphoria, anhedonia and anergia) predicted mortality in older Australian Aged Care residents. METHODS Eighty older adults (M = 83.16 ± 7.14) without cognitive impairment residing in 14 Residential Aged Care facilities located in Melbourne, Australia, completed the 15-item Geriatric Depression Scale-Short Form (GDS-15) and the Standardized Mini Mental State Examination. Residential Aged Care facilities provided the primary end-point of all-cause mortality at follow-up (M = 5.4 years ± 0.1). RESULTS Univariate Kaplan-Meier survival curves and Cox Proportional Hazards regression analyses were used to evaluate whether symptoms of depression predicted all-cause mortality, with known prognostic factors controlled. The results indicated that anhedonia (Hazard Ratio = 2.931 [95% CI 1.278-6.722], p = .011) and anergia (Hazard Ratio = 2.783 [95% CI 1.065-7.276], p = .037) were associated with almost a threefold increased risk of mortality in older adults living in RAC in adjusted analyses. Dysphoria did not predict mortality. CONCLUSIONS These findings advance understanding of the mortality risks of anhedonia and anergia in an understudied population. Symptoms of anhedonia and anergia should be targeted for screening in older adults living in Aged Care to increase the detection and potential for referral to treatment for depressive presentation.
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Affiliation(s)
- L Greenfield
- Department of Cardiology, Austin Health, Heidelberg, VIC, Australia.,The Cairnmillar Institute, VIC, Australia
| | - S Mathews
- Department of Cardiology, Austin Health, Heidelberg, VIC, Australia
| | - S R Toukhsati
- Department of Cardiology, Austin Health, Heidelberg, VIC, Australia.,School of Science, Psychology and Sport, Federation University Australia, Berwick, VIC, Australia.,Faculty of Medicine, Dentistry and Health Sciences, University of Melbourne, Parkville, VIC, Australia
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25
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Li Z, Tong X, Ma Y, Bao T, Yue J. Prevalence of depression in patients with sarcopenia and correlation between the two diseases: systematic review and meta-analysis. J Cachexia Sarcopenia Muscle 2022; 13:128-144. [PMID: 34997702 PMCID: PMC8818614 DOI: 10.1002/jcsm.12908] [Citation(s) in RCA: 47] [Impact Index Per Article: 15.7] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 02/18/2021] [Revised: 10/02/2021] [Accepted: 11/29/2021] [Indexed: 02/05/2023] Open
Abstract
BACKGROUND Depression may be the most common cause of emotional distress later in life and can significantly reduce the quality of life in elderly individuals. Sarcopenia is a syndrome characterized by the continuous loss of skeletal muscle mass and decreased strength and function. In recent years, many studies have shown a correlation between sarcopenia and depression. The present study aimed to investigate the prevalence of depression among individuals with sarcopenia and to ascertain whether sarcopenia is independently associated with depression. METHODS We systematically searched the PubMed, Embase, and Google Scholar databases for papers on sarcopenia published up to 31 August 2021. We reviewed the literature on the number of individuals with sarcopenia, the number of individuals with both sarcopenia and depression, and the odds ratio (OR) of sarcopenia to depression. Statistical analyses were performed using Meta-DiSc 1.4 software and Stata version 12.0. RESULTS Nineteen articles met the inclusion criteria for review: nine reported both prevalence and ORs, four described prevalence only, and six detailed the ORs only. Regarding prevalence, there were 1476 cases of sarcopenia and 364 of depression in the selected studies; the mean age of the patients was 75.5 years, and the overall prevalence of depression was 0.28 [95% confidence interval (CI): 0.21-0.36]. Significant heterogeneity was noted (P < 0.001; I2 = 92.2%). In the case of ORs, there were 16 869 subjects with a mean age of 73 years; the overall adjusted OR between sarcopenia and depression was 1.57 (95% CI: 1.32-1.86). Significant heterogeneity was noted in the adjusted ORs (P < 0.001; I2 = 75.1%). CONCLUSIONS The prevalence of depression in patients with sarcopenia was high relatively, and there was a correlation between sarcopenia and depression.
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Affiliation(s)
- Zhenzhen Li
- Health Management Center, National Clinical Research Center for Geriatrics, West China Hospital/West China School of Medicine, Sichuan University, Chengdu, China
| | - Xiang Tong
- Department of Respiratory and Critical Care Medicine, West China Hospital/West China School of Medicine, Sichuan University, Chengdu, China
| | - Yao Ma
- Department of Geriatrics and National Clinical Research Center for Geriatrics, West China Hospital/West China School of Medicine, Sichuan University, Chengdu, Sichuan, China
| | - Ting Bao
- Health Management Center, National Clinical Research Center for Geriatrics, West China Hospital/West China School of Medicine, Sichuan University, Chengdu, China
| | - Jirong Yue
- Department of Geriatrics and National Clinical Research Center for Geriatrics, West China Hospital/West China School of Medicine, Sichuan University, Chengdu, Sichuan, China
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26
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Lozupone M, D'Urso F, Copetti M, Sardone R, Arcuti S, Castellana F, Galizia I, Lofano L, Veneziani F, Piccininni C, Barulli MR, Grasso A, Battista P, Tortelli R, Capozzo R, Griseta C, Doricchi F, Quaranta N, Resta E, Daniele A, Seripa D, Solfrizzi V, Bellomo A, Logroscino G, Panza F. The diagnostic accuracy of late-life depression is influenced by subjective memory complaints and educational level in an older population in Southern Italy. Psychiatry Res 2022; 308:114346. [PMID: 34953202 DOI: 10.1016/j.psychres.2021.114346] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 06/30/2020] [Revised: 11/29/2021] [Accepted: 12/15/2021] [Indexed: 11/18/2022]
Abstract
The prevalence of late-life depression (LLD) depends on the study sample, measurements, and diagnostic approaches. We estimated the 30 item-Geriatric Depression Scale (GDS-30) accuracy against the gold standard LLD diagnosis made with the Semi-structured Clinical Diagnostic Interview for DSM-IV-TR Axis I Disorders, focusing on the prevalence of a late-life major depressive disorder (MDD), in a population-based sample of 843 subjects aged>65 years, subdivided into three groups: normal cognition, subjective memory complaints, and mild cognitive impairment. At the optimal cut-off score (≥4), the GDS-30 showed 65.1% sensitivity and 68.4% specificity for LLD (63% and 66% for late-life MDD, respectively). Using the standard cut-off score (≥10), the GDS-30 specificity reached 91.2%, while sensitivity dropped to 37.7%, indicating a lower screening accuracy [area under the curve(AUC):0.728, 95% confidence interval(CI):0.67-0-78]. The GDS-30 performance was associated with educational level, but not with age, gender, cognition, apathy, and somatic/psychiatric multimorbidity. For subjective memory complaints subjects, at the optimal cut-off score (≥7), the GDS-30 showed better discrimination performances (AUC=0.792,95%CI:0.60-0.98), but again the educational level affected the diagnostic performance. In subjective memory complaints subjects, symptom-based scales like the GDS-30 may feature a better performance for diagnosing depression in older age, but the GDS-30 seems to require adjustment to the patient's educational level.
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Affiliation(s)
- Madia Lozupone
- Population Health Unit - "Salus in Apulia Study", National Institute of Gastroenterology and Research Hospital IRCCS "S. De Bellis", Castellana Grotte, Bari, Italy; Neurodegenerative Disease Unit, Department of Basic Medicine, Neuroscience, and Sense Organs, University of Bari "Aldo Moro", Bari, Italy.
| | - Francesca D'Urso
- Psychiatric Unit, Department of Clinical and Experimental Medicine, University of Foggia, Foggia, Italy
| | - Massimiliano Copetti
- Biostatistics Unit, Fondazione IRCCS "Casa Sollievo della Sofferenza", San Giovanni Rotondo, Foggia, Italy
| | - Rodolfo Sardone
- Population Health Unit - "Salus in Apulia Study", National Institute of Gastroenterology and Research Hospital IRCCS "S. De Bellis", Castellana Grotte, Bari, Italy
| | - Simona Arcuti
- Biostatistics Unit, Fondazione IRCCS "Casa Sollievo della Sofferenza", San Giovanni Rotondo, Foggia, Italy
| | - Fabio Castellana
- Population Health Unit - "Salus in Apulia Study", National Institute of Gastroenterology and Research Hospital IRCCS "S. De Bellis", Castellana Grotte, Bari, Italy
| | - Ilaria Galizia
- Psychiatric Unit, Department of Basic Medicine, Neuroscience, and Sense Organs, University of Bari "Aldo Moro", Bari, Italy
| | - Lucia Lofano
- Psychiatric Unit, Department of Basic Medicine, Neuroscience, and Sense Organs, University of Bari "Aldo Moro", Bari, Italy
| | - Federica Veneziani
- Psychiatric Unit, Department of Basic Medicine, Neuroscience, and Sense Organs, University of Bari "Aldo Moro", Bari, Italy
| | - Carla Piccininni
- Psychiatric Unit, Department of Clinical and Experimental Medicine, University of Foggia, Foggia, Italy
| | - Maria Rosaria Barulli
- Department of Clinical Research in Neurology, Center for Neurodegenerative Diseases and the Aging Brain, University of Bari "Aldo Moro", "Pia Fondazione Cardinale G. Panico", Tricase, Lecce, Italy
| | - Alessandra Grasso
- Population Health Unit - "Salus in Apulia Study", National Institute of Gastroenterology and Research Hospital IRCCS "S. De Bellis", Castellana Grotte, Bari, Italy
| | | | - Rosanna Tortelli
- Department of Clinical Research in Neurology, Center for Neurodegenerative Diseases and the Aging Brain, University of Bari "Aldo Moro", "Pia Fondazione Cardinale G. Panico", Tricase, Lecce, Italy
| | - Rosa Capozzo
- Department of Clinical Research in Neurology, Center for Neurodegenerative Diseases and the Aging Brain, University of Bari "Aldo Moro", "Pia Fondazione Cardinale G. Panico", Tricase, Lecce, Italy
| | - Chiara Griseta
- Population Health Unit - "Salus in Apulia Study", National Institute of Gastroenterology and Research Hospital IRCCS "S. De Bellis", Castellana Grotte, Bari, Italy
| | - Fabrizio Doricchi
- Global Brain Health Institute, University of California, San Francisco, USA
| | - Nicola Quaranta
- Otolaryngology Unit, Department of Basic Medicine, Neuroscience, and Sense Organs, University of Bari "Aldo Moro", Bari, Italy
| | - Emanuela Resta
- Translational Medicine & Management of Health Systems, University of Foggia, Foggia, Italy
| | - Antonio Daniele
- Institute of Neurology, Catholic University of Sacred Heart, Rome, Italy; Institute of Neurology, Fondazione Policlinico Universitario A. Gemelli IRCCS, Rome, Italy
| | - Davide Seripa
- Geriatric Unit, Fondazione IRCCS "Casa Sollievo della Sofferenza", San Giovanni Rotondo, Foggia, Italy; Hematology and Stem Cell Transplant Unit, Vito Fazzi Hospital, ASL Lecce, Lecce, Italy
| | - Vincenzo Solfrizzi
- "Cesare Frugoni" Internal and Geriatric Medicine and Memory Unit, University of Bari "Aldo Moro", Bari, Italy
| | - Antonello Bellomo
- Psychiatric Unit, Department of Clinical and Experimental Medicine, University of Foggia, Foggia, Italy
| | - Giancarlo Logroscino
- Neurodegenerative Disease Unit, Department of Basic Medicine, Neuroscience, and Sense Organs, University of Bari "Aldo Moro", Bari, Italy; Department of Clinical Research in Neurology, Center for Neurodegenerative Diseases and the Aging Brain, University of Bari "Aldo Moro", "Pia Fondazione Cardinale G. Panico", Tricase, Lecce, Italy.
| | - Francesco Panza
- Population Health Unit - "Salus in Apulia Study", National Institute of Gastroenterology and Research Hospital IRCCS "S. De Bellis", Castellana Grotte, Bari, Italy; Dipartimento di Psicologia, Sapienza University of Rome, Rome, Italy; Laboratorio di Neuropsicologia dell'Attenzione, Fondazione Santa Lucia IRCCS, Neurorehabilitation Hospital, Rome, Italy.
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27
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Chen X, Han P, Yu X, Zhang Y, Song P, Liu Y, Liu J, Tang J, Zhang Y, Zhao Y, Zheng J, Chu L, Wang HB, Guo Q. Sarcopenia and coronary heart disease synergistically increase the risk of new onset depressive symptoms in older adults. BMC Geriatr 2021; 21:731. [PMID: 34952569 PMCID: PMC8709956 DOI: 10.1186/s12877-021-02710-z] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/18/2020] [Accepted: 12/10/2021] [Indexed: 12/02/2022] Open
Abstract
Background Coronary heart disease (CHD), sarcopenia and depression are common disorders that markedly impair quality of life and impose a huge financial burden on society. They are also frequently comorbid, exacerbating condition and worsening prognosis. This study aimed to investigate the additive effects of CHD and sarcopenia on the risk of new onset depressive symptoms in older adults. Methods The prospective cohort study comprised 897 Chinese community-dwelling participants who were aged 60 years and older (386 men; mean age 66.9 ± 5.9 years) without depressive symptoms at baseline, recruited from Chadian of Tianjin, China. Sarcopenia was defined according to the Asian Working Group for Sarcopenia (AWGS) criteria. CHD was identified via medical records or new diagnosed by at least two physicians. Depressive symptoms were assessed using the Geriatric Depression Scale (GDS) ≥11. Longitudinal data on new onset depressive symptoms were collected up to 12 months after baseline. Results We found that 103 (11.5%) of the 897 participants without depressive symptoms at baseline had developed depressive symptoms. Participants were classified into mutually exclusive groups based on sarcopenia status and CHD: normal, CHD alone, sarcopenia alone, and co-occurring groups. A logistic regression showed that the CHD alone [odd ratios (OR) = 1.78, 95% confidence interval (CI) = 1.05–3.02], sarcopenia alone (OR = 2.79, 95% CI = 1.26–6.22), and co-occurring (OR = 7.19, 95% CI = 2.75–18.81) had higher risk of depressive symptoms than the normal group after adjusting for the covariates. Conclusions CHD and sarcopenia synergistically increase the risk of new onset depressive symptoms in older adults. Thus, older adults may require early detection, and appropriate interventions should be implemented.
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Affiliation(s)
- Xiaoyu Chen
- Department of Rehabilitation Medicine, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, 1500 Zhouyuan Road, Pudong New District, Shanghai, 201318, China.,Department of Rehabilitation Medicine, Tianjin Medical University, Tianjin, 300070, China
| | - Peipei Han
- Department of Rehabilitation Medicine, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, 1500 Zhouyuan Road, Pudong New District, Shanghai, 201318, China
| | - Xing Yu
- Department of Rehabilitation Medicine, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, 1500 Zhouyuan Road, Pudong New District, Shanghai, 201318, China
| | - Yuanyuan Zhang
- Department of Rehabilitation Medicine, Tianjin Medical University, Tianjin, 300070, China
| | - Peiyu Song
- Department of Rehabilitation Medicine, Tianjin Medical University, Tianjin, 300070, China
| | - Yuewen Liu
- Department of Rehabilitation Medicine, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, 1500 Zhouyuan Road, Pudong New District, Shanghai, 201318, China
| | - Jinghuan Liu
- Department of Rehabilitation Medicine, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, 1500 Zhouyuan Road, Pudong New District, Shanghai, 201318, China
| | - Jiawei Tang
- Department of Rehabilitation Medicine, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, 1500 Zhouyuan Road, Pudong New District, Shanghai, 201318, China
| | - Yisong Zhang
- Department of Rehabilitation Medicine, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, 1500 Zhouyuan Road, Pudong New District, Shanghai, 201318, China
| | - Yong Zhao
- Department of Rehabilitation Medicine, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, 1500 Zhouyuan Road, Pudong New District, Shanghai, 201318, China
| | - Jiejiao Zheng
- Department of Rehabilitation Medicine, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, 1500 Zhouyuan Road, Pudong New District, Shanghai, 201318, China
| | - Lixi Chu
- Department of Rehabilitation Medicine, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, 1500 Zhouyuan Road, Pudong New District, Shanghai, 201318, China
| | - Hong Bing Wang
- Department of Rehabilitation Medicine, Shanghai Fourth Rehabilitation Hospital, Shanghai, 200040, China.
| | - Qi Guo
- Department of Rehabilitation Medicine, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, 1500 Zhouyuan Road, Pudong New District, Shanghai, 201318, China.
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28
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Washida K, Kitajima E, Tanaka T, Ikeda S, Chiba T, Noda K, Yoshimoto T, Fukuma K, Saito S, Ihara M. A Nationwide Multi-Center Questionnaire Survey on the Real-World State and Clinical Management of Poststroke Dementia in Japan. J Alzheimers Dis 2021; 84:1103-1114. [PMID: 34633324 PMCID: PMC8673533 DOI: 10.3233/jad-215006] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/20/2022]
Abstract
Background: Poststroke dementia (PSD) is a serious problem for stroke survivors. However, there is still limited data on the real-world state and clinical management of PSD worldwide, and several countries already have a super-aged society. Objective: We conducted a nationwide questionnaire survey to examine the real-world state and management of PSD in Japan. Methods: A survey was conducted in the top 500 Japanese hospitals regarding the number of stroke patients treated between July 2018 and August 2019. Thirteen questions regarding PSD were mailed to doctors responsible for stroke management. Results: Responses were obtained from 251 hospitals (50.2%). The chief doctors responsible for stroke management answered the questionnaires. The median numbers of patients admitted annually with stroke in the departments of neurology and neurosurgery in the hospitals were 281.0 (interquartile range [IQR], 231.8–385.3) and 253.5 (IQR, 210.0–335.3), respectively, and most hospitals were acute care hospitals. Executive dysfunction was the most common cognitive dysfunction (10.9%), followed by amnesia (9.5%) and apathy (4.1%). Surprisingly, many stroke survivors lived alone at home (23.7%). Montreal Cognitive Assessment was significantly uncommon compared to Mini-Mental State Examination (p < 0.01). Furthermore, objective evaluation tests for behavioral and psychological symptoms of dementia were not often performed. Cognitive rehabilitation treatments were performed more often and earlier than drug treatments. The first drug of choice for PSD was predominantly donepezil (79.1%), followed by galantamine (6.1%), cilostazol (4.9%), memantine (2.5%), and rivastigmine (1.8%). Conclusion: Our study provides real-world evidence for the state of clinical practice related to PSD in Japan.
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Affiliation(s)
- Kazuo Washida
- Department of Neurology, National Cerebral and Cardiovascular Center, Osaka, Japan
| | - Erika Kitajima
- Department of Neurology, National Cerebral and Cardiovascular Center, Osaka, Japan.,Department of Medical Engineering, Faculty of Healthcare Sciences, Himeji Dokkyo University, Hyogo, Japan
| | - Tomotaka Tanaka
- Department of Neurology, National Cerebral and Cardiovascular Center, Osaka, Japan
| | - Shuhei Ikeda
- Department of Neurology, National Cerebral and Cardiovascular Center, Osaka, Japan
| | - Tetsuya Chiba
- Department of Neurology, National Cerebral and Cardiovascular Center, Osaka, Japan
| | - Kotaro Noda
- Department of Neurology, National Cerebral and Cardiovascular Center, Osaka, Japan
| | - Takeshi Yoshimoto
- Department of Neurology, National Cerebral and Cardiovascular Center, Osaka, Japan
| | - Kazuki Fukuma
- Department of Neurology, National Cerebral and Cardiovascular Center, Osaka, Japan
| | - Satoshi Saito
- Department of Neurology, National Cerebral and Cardiovascular Center, Osaka, Japan
| | - Masafumi Ihara
- Department of Neurology, National Cerebral and Cardiovascular Center, Osaka, Japan
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29
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Oude Voshaar RC, Aprahamian I, Borges MK, van den Brink RHS, Marijnissen RM, Hoogendijk EO, van Munster B, Jeuring HW. Excess mortality in depressive and anxiety disorders: The Lifelines Cohort Study. Eur Psychiatry 2021; 64:e54. [PMID: 34462033 PMCID: PMC8446070 DOI: 10.1192/j.eurpsy.2021.2229] [Citation(s) in RCA: 21] [Impact Index Per Article: 5.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 02/07/2023] Open
Abstract
Background To examine the mortality risk of current and life-time depressive as well as anxiety disorders, whether this risk is moderated by sex or age, and whether this risk can be explained by lifestyle and/or somatic health status. Methods A cohort study (Lifelines) including 141,377 participants (18–93 years) which were followed-up regarding mortality for 8.6 years (range 3.0–13.7). Baseline depressive and anxiety disorders according to Diagnostic and Statistical Manual of Mental Disorders, fourth edition criteria were assessed with the Mini International Neuropsychiatric Interview and lifetime diagnoses by self-report. All-cause mortality was retrieved from Statistics Netherlands. Cox-regression was applied to calculate proportional hazard ratios, adjusted for lifestyle (physical activity, alcohol use, smoking, and body mass index) and somatic health status (multimorbidity and frailty) in different models. Results The mortality rate of depressive and anxiety disorders was conditional upon age but not on sex. Only in people below 60 years, current depressive and anxiety disorders were associated with mortality. Only depressive disorder and panic disorder independently predicted mortality when all mental disorders were included simultaneously in one overall model (hazard ratio [HR] = 2.18 [95% confidence intervals (CI): 1.56–3.05], p < 0.001 and HR = 2.39 [95% CI: 1.15–4.98], p = 0.020). Life-time depressive and anxiety disorders, however, were independent of each other associated with mortality. Associations hardly changed when adjusted for lifestyle characteristics but decreased substantially when adjusted for somatic health status (in particular physical frailty). Conclusions In particular, depressive disorder is associated with excess mortality in people below 60 years, independent of their lifestyle. This effect seems partly explained by multimorbidity and frailty, which suggest that chronic disease management of depression-associated somatic morbidity needs to be (further) improved.
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Affiliation(s)
- R C Oude Voshaar
- Department of Psychiatry, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands
| | - I Aprahamian
- Faculty of Medicine of Jundiaí, Internal Medicine Department, Group of Investigation on Multimorbidity and Mental Health in Aging (GIMMA), Jundiaí, Brazil
| | - M K Borges
- Department of Psychiatry, Universidade Federal do Paraná, Curitiba, Brazil
| | - R H S van den Brink
- Department of Psychiatry, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands
| | - R M Marijnissen
- Department of Psychiatry, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands
| | - E O Hoogendijk
- Department of Epidemiology and Data Science, Amsterdam Public Health research institute, Amsterdam UMC - location VU University Medical Center, Amsterdam, The Netherlands
| | - B van Munster
- Department of Internal Medicine and Geriatrics, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands
| | - H W Jeuring
- Department of Psychiatry, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands
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30
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Boesten RH, Geleijnse JM, Kromhout D, Ottenheim NR, Giltay EJ. Depressive symptoms and dispositional optimism in relation to mortality in older post-myocardial infarction patients. JOURNAL OF AFFECTIVE DISORDERS REPORTS 2021. [DOI: 10.1016/j.jadr.2021.100132] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/27/2022] Open
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31
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Saleh Y, Le Heron C, Petitet P, Veldsman M, Drew D, Plant O, Schulz U, Sen A, Rothwell PM, Manohar S, Husain M. Apathy in small vessel cerebrovascular disease is associated with deficits in effort-based decision making. Brain 2021; 144:1247-1262. [PMID: 33734344 PMCID: PMC8240747 DOI: 10.1093/brain/awab013] [Citation(s) in RCA: 24] [Impact Index Per Article: 6.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/01/2020] [Revised: 10/23/2020] [Accepted: 11/04/2020] [Indexed: 11/16/2022] Open
Abstract
Patients with small vessel cerebrovascular disease frequently suffer from apathy, a debilitating neuropsychiatric syndrome, the underlying mechanisms of which remain to be established. Here we investigated the hypothesis that apathy is associated with disrupted decision making in effort-based decision making, and that these alterations are associated with abnormalities in the white matter network connecting brain regions that underpin such decisions. Eighty-two patients with MRI evidence of small vessel disease were assessed using a behavioural paradigm as well as diffusion weighted MRI. The decision-making task involved accepting or rejecting monetary rewards in return for performing different levels of physical effort (hand grip force). Choice data and reaction times were integrated into a drift diffusion model that framed decisions to accept or reject offers as stochastic processes approaching a decision boundary with a particular drift rate. Tract-based spatial statistics were used to assess the relationship between white matter tract integrity and apathy, while accounting for depression. Overall, patients with apathy accepted significantly fewer offers on this decision-making task. Notably, while apathetic patients were less responsive to low rewards, they were also significantly averse to investing in high effort. Significant reductions in white matter integrity were observed to be specifically related to apathy, but not to depression. These included pathways connecting brain regions previously implicated in effort-based decision making in healthy people. The drift rate to decision parameter was significantly associated with both apathy and altered white matter tracts, suggesting that both brain and behavioural changes in apathy are associated with this single parameter. On the other hand, depression was associated with an increase in the decision boundary, consistent with an increase in the amount of evidence required prior to making a decision. These findings demonstrate altered effort-based decision making for reward in apathy, and also highlight dissociable mechanisms underlying apathy and depression in small vessel disease. They provide clear potential brain and behavioural targets for future therapeutic interventions, as well as modelling parameters that can be used to measure the effects of treatment at the behavioural level.
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Affiliation(s)
- Youssuf Saleh
- Nuffield Department of Clinical Neurosciences, University of Oxford, Level 6, West Wing, John Radcliffe Hospital, Oxford, OX3 9DU, UK.,Department of Experimental Psychology, University of Oxford, Anna Watts Building, Radcliffe Observatory Quarter, Oxford, OX2 6GG, UK
| | - Campbell Le Heron
- Nuffield Department of Clinical Neurosciences, University of Oxford, Level 6, West Wing, John Radcliffe Hospital, Oxford, OX3 9DU, UK.,New Zealand Brain Research Institute, Christchurch 8011, New Zealand.,Department of Medicine, University of Otago, Christchurch 8011, New Zealand
| | - Pierre Petitet
- Department of Experimental Psychology, University of Oxford, Anna Watts Building, Radcliffe Observatory Quarter, Oxford, OX2 6GG, UK
| | - Michele Veldsman
- Department of Experimental Psychology, University of Oxford, Anna Watts Building, Radcliffe Observatory Quarter, Oxford, OX2 6GG, UK
| | - Daniel Drew
- Department of Experimental Psychology, University of Oxford, Anna Watts Building, Radcliffe Observatory Quarter, Oxford, OX2 6GG, UK
| | - Olivia Plant
- Department of Experimental Psychology, University of Oxford, Anna Watts Building, Radcliffe Observatory Quarter, Oxford, OX2 6GG, UK
| | - Ursula Schulz
- Nuffield Department of Clinical Neurosciences, University of Oxford, Level 6, West Wing, John Radcliffe Hospital, Oxford, OX3 9DU, UK
| | - Arjune Sen
- Nuffield Department of Clinical Neurosciences, University of Oxford, Level 6, West Wing, John Radcliffe Hospital, Oxford, OX3 9DU, UK.,Oxford Epilepsy Research Group, NIHR Biomedical Research Centre, Nuffield Department of Clinical Neurosciences, John Radcliffe Hospital, Oxford, OX3 9DU, UK
| | - Peter M Rothwell
- Nuffield Department of Clinical Neurosciences, University of Oxford, Level 6, West Wing, John Radcliffe Hospital, Oxford, OX3 9DU, UK.,Wolfson Centre for Prevention of Stroke and Dementia, Nuffield Dept Clinical Neurosciences, University of Oxford, UK
| | - Sanjay Manohar
- Department of Experimental Psychology, University of Oxford, Anna Watts Building, Radcliffe Observatory Quarter, Oxford, OX2 6GG, UK
| | - Masud Husain
- Nuffield Department of Clinical Neurosciences, University of Oxford, Level 6, West Wing, John Radcliffe Hospital, Oxford, OX3 9DU, UK.,Department of Experimental Psychology, University of Oxford, Anna Watts Building, Radcliffe Observatory Quarter, Oxford, OX2 6GG, UK.,NIHR Oxford Biomedical Research Centre, Oxford, UK.,Wellcome Centre for Integrative Neuroimaging, University of Oxford, UK
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Imaoka M, Nakao H, Nakamura M, Tazaki F, Hida M, Omizu T, Imai R, Takeda M. Associations between depressive symptoms and geriatric syndromes in community-dwelling older adults in Japan: A cross-sectional study. Prev Med Rep 2021; 22:101353. [PMID: 33767949 PMCID: PMC7980056 DOI: 10.1016/j.pmedr.2021.101353] [Citation(s) in RCA: 7] [Impact Index Per Article: 1.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/04/2020] [Revised: 02/05/2021] [Accepted: 02/27/2021] [Indexed: 01/12/2023] Open
Abstract
Depressive symptoms are associated with frailty in community-dwelling older adults. AWGS’s new sarcopenia definition is not associated with depressive symptoms. Depressive symptoms may be associated with J-CHS-defined frailty. Among geriatric syndromes, only frailty may be associated with depressive symptoms.
It is estimated that 7.2% of community-dwelling older adults worldwide have major depression. Therefore, this study aimed to investigate the relationship between geriatric syndromes and depressive symptoms. Data were obtained from the Kaizuka Dementia Prevention Study 2018 and 2019, which was a community-based health check conducted in collaboration with the Osaka Kawasaki Rehabilitation University (Kaizuka City Office) and Cognitive Reserve Research Center in Osaka, Japan. The participants comprised 363 older adults (mean age 73.6 ± 6.6 years; women = 75.8%) who participated in a community-based health check. Depressive symptoms were assessed using the 15-item Geriatric Depression Scale (GDS-15). Depressive symptoms were defined as a GDS-15 score of ≥ 5. Furthermore, geriatric syndromes in participants—such as frailty, sarcopenia, and locomotive syndrome—were assessed. There was a 28.1% prevalence of depressive symptoms. In a logistic regression analysis with depressive symptoms as the dependent variable, both pre-frailty (odds ratio [OR] 1.85, 95% confidence interval [CI] 1.09–3.01) and frailty (OR 5.45, 95% CI 2.23–13.31) were found to be significantly higher in the depressive group. There were no significant differences in sarcopenia and locomotive syndrome between the depressive groups. Our findings suggest that depressive symptoms are associated with frailty and pre-frailty in community-dwelling older adults in Japan. Physical frailty should be evaluated in depressed individuals and may contribute to the prioritization of clinical evaluation of geriatric syndromes.
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Affiliation(s)
- Masakazu Imaoka
- Department of Rehabilitation, Osaka Kawasaki Rehabilitation University, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan.,Cognitive Reserve Research Center, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan.,Department of Comprehensive Rehabilitation, Osaka Prefecture University, 3-7-30, Habikino, Habikino, Osaka 583-8555, Japan.,Department of Preventive Gerontology, National Center for Geriatrics and Gerontology, 7-430 Morioka, Obu, Aichi 474-8511, Japan
| | - Hidetoshi Nakao
- Department of Rehabilitation, Osaka Kawasaki Rehabilitation University, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan.,Cognitive Reserve Research Center, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan
| | - Misa Nakamura
- Department of Rehabilitation, Osaka Kawasaki Rehabilitation University, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan.,Cognitive Reserve Research Center, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan
| | - Fumie Tazaki
- Department of Rehabilitation, Osaka Kawasaki Rehabilitation University, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan.,Cognitive Reserve Research Center, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan
| | - Mitsumasa Hida
- Department of Rehabilitation, Osaka Kawasaki Rehabilitation University, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan.,Cognitive Reserve Research Center, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan
| | - Tomoko Omizu
- Department of Rehabilitation, Kansai University of Welfare Sciences. 3-11-1 Asahigaoka, Kasihara, Osaka 582-0026, Japan
| | - Ryota Imai
- Department of Rehabilitation, Osaka Kawasaki Rehabilitation University, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan
| | - Masatoshi Takeda
- Department of Rehabilitation, Osaka Kawasaki Rehabilitation University, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan.,Cognitive Reserve Research Center, 158 Mizuma, Kaizuka, Osaka 597-0104, Japan
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Abstract
Apathy is a reduction in goal-directed activity in the cognitive, behavioral, emotional, or social domains of a patient’s life and occurs in one out of three patients after stroke. Despite this, apathy is clinically under-recognized and poorly understood. This overview provides a contemporary introduction to apathy in stroke for researchers and practitioners, covering topics including diagnosis, neurobiological mechanisms, associated consequences, and potential treatments for apathy. Apathy is often misdiagnosed as other post-stroke conditions such as depression. Accurate differential diagnosis of apathy, which manifests as reductions in initiative, and depression, which manifests as negative emotionality, is important as it informs prognosis. Research on the neurobiology of apathy suggests that there are few consistent associations between stroke lesion location and the development of apathy. These may be resolved by adopting a network neuroscience approach, which models apathy as a pathology arising from structural or functional damage to brain networks underlying motivated behavior. Importantly, networks can be affected by physiological changes related to stroke, including the acute infarct but also diaschisis and neurodegeneration. Aside from neurobiological changes, apathy is also associated with other negative outcome measures such as functional disability, cognitive impairment, and emotional distress, suggesting that apathy is indicative of a worse prognosis following stroke. Unfortunately, high-quality trials aimed at treating apathy are scarce. Antidepressants may have limited effects on apathy. Acetylcholine and dopamine pharmacotherapy, behavioral interventions, and transcranial magnetic stimulation may be more promising avenues for treatment.
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Affiliation(s)
- Jonathan Tay
- Stroke Research Group, Department of Clinical Neurosciences, University of Cambridge, Cambridge, UK
| | - Robin G Morris
- Department of Psychology, King's College London, London, UK
| | - Hugh S Markus
- Stroke Research Group, Department of Clinical Neurosciences, University of Cambridge, Cambridge, UK
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Tay J, Morris RG, Tuladhar AM, Husain M, de Leeuw FE, Markus HS. Apathy, but not depression, predicts all-cause dementia in cerebral small vessel disease. J Neurol Neurosurg Psychiatry 2020; 91:953-959. [PMID: 32651249 PMCID: PMC7476304 DOI: 10.1136/jnnp-2020-323092] [Citation(s) in RCA: 21] [Impact Index Per Article: 4.2] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 02/24/2020] [Revised: 05/29/2020] [Accepted: 06/02/2020] [Indexed: 01/01/2023]
Abstract
OBJECTIVE To determine whether apathy or depression predicts all-cause dementia in small vessel disease (SVD) patients. METHODS Analyses used two prospective cohort studies of SVD: St. George's Cognition and Neuroimaging in Stroke (SCANS; n=121) and Radboud University Nijmegen Diffusion Tensor and Magnetic Resonance Cohort (RUN DMC; n=352). Multivariate Cox regressions were used to predict dementia using baseline apathy and depression scores in both datasets. Change in apathy and depression was used to predict dementia in a subset of 104 participants with longitudinal data from SCANS. All models were controlled for age, education and cognitive function. RESULTS Baseline apathy scores predicted dementia in SCANS (HR 1.49, 95% CI 1.05 to 2.11, p=0.024) and RUN DMC (HR 1.05, 95% CI 1.01 to 1.09, p=0.007). Increasing apathy was associated with dementia in SCANS (HR 1.53, 95% CI 1.08 to 2.17, p=0.017). In contrast, baseline depression and change in depression did not predict dementia in either dataset. Including apathy in predictive models of dementia improved model fit. CONCLUSIONS Apathy, but not depression, may be a prodromal symptom of dementia in SVD, and may be useful in identifying at-risk individuals.
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Affiliation(s)
- Jonathan Tay
- Department of Clinical Neurosciences, University of Cambridge, Cambridge, UK
| | - Robin G Morris
- Department of Psychology, Kings College London, London, UK
| | - Anil M Tuladhar
- Department of Neurology, Donders Institute for Brain, Cognition and Behaviour, Radboud University Medical Center, Nijmegen, The Netherlands
| | - Masud Husain
- Nuffield Department of Clinical Neurosciences, University of Oxford, Oxford, UK
| | - Frank-Erik de Leeuw
- Department of Neurology, Donders Institute for Brain, Cognition and Behaviour, Radboud University Medical Center, Nijmegen, The Netherlands
| | - Hugh S Markus
- Department of Clinical Neurosciences, University of Cambridge, Cambridge, UK
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Reichardt LA, Aarden JJ, van Seben R, van der Schaaf M, Engelbert RHH, van der Esch M, Twisk JWR, Bosch JA, Buurman BM. Motivational factors mediate the association of general self-efficacy and performance outcomes in acutely hospitalised older patients. Age Ageing 2020; 49:837-842. [PMID: 32453822 PMCID: PMC7444668 DOI: 10.1093/ageing/afaa076] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/07/2019] [Indexed: 01/31/2023] Open
Abstract
Objectives To study (i) the association of general self-efficacy (GSE) on the course of subjective (i.e. basic and instrumental activities of daily living (ADLs and IADLs) and objective physical performance outcomes (short physical performance battery (SPPB)) among older persons from discharge up to 3 months post-discharge and (ii) the extent to whether motivational factors such as depressive symptoms, apathy and fatigue mediate this association. Methods Prospective multi-centre cohort of acutely hospitalised patients aged ≥70 (Hospital-ADL study). Structural equation modelling was used to analyse the structural relationships. Results The analytic sample included 236 acutely hospitalised patients. GSE had a significant total effect on the course of subjective and objective performance outcomes (ADLs: β = −0.21, P < 0.001, IADLs: β = −0.24, P < 0.001 and SPPB: β = 0.17, P < 0.001). However, when motivational factors as mediator were included into the same model, motivational factors (IADLs: β = 0.51, P < 0.001; SPPB: β = 0.49, P < 0.001) but not GSE remained significantly associated with IADLs (β = −0.06, P = 0.16) and SPPB (β = 0.002, P = 0.97). Motivational factors partially mediated the relationship between GSE and ADLs (β = −0.09, P = 0.04). The percentage of mediation was 55, 74 and 99% for ADLs, IADLs and SPPB, respectively. Conclusions Motivational factors and GSE are both associated with subjective and objective performance outcomes. However, the relationship between GSE and subjective and objective performance outcomes was highly mediated by motivational factors. Taken together, this suggests that GSE is important to being physically active but not sufficient to becoming more physical active in acutely hospitalised older patients; motivation is important to improving both subjective and objective performance.
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Affiliation(s)
- Lucienne A Reichardt
- Department of Internal Medicine, Section of Geriatric Medicine, Amsterdam Public Health Research Institute, Amsterdam University Medical Centers, Academic Medical Center, Amsterdam, the Netherlands
| | - Jesse J Aarden
- Department of Rehabilitation, Amsterdam Movement Sciences, Amsterdam University Medical Centers, Academic Medical Center, Amsterdam, the Netherlands
- ACHIEVE - Center of Applied Research, Faculty of Health, Amsterdam University of Applied Sciences, Amsterdam, the Netherlands
| | - Rosanne van Seben
- Department of Internal Medicine, Section of Geriatric Medicine, Amsterdam Public Health Research Institute, Amsterdam University Medical Centers, Academic Medical Center, Amsterdam, the Netherlands
| | - Marike van der Schaaf
- Department of Rehabilitation, Amsterdam Movement Sciences, Amsterdam University Medical Centers, Academic Medical Center, Amsterdam, the Netherlands
| | - Raoul H H Engelbert
- Department of Rehabilitation, Amsterdam Movement Sciences, Amsterdam University Medical Centers, Academic Medical Center, Amsterdam, the Netherlands
- ACHIEVE - Center of Applied Research, Faculty of Health, Amsterdam University of Applied Sciences, Amsterdam, the Netherlands
| | - Martin van der Esch
- ACHIEVE - Center of Applied Research, Faculty of Health, Amsterdam University of Applied Sciences, Amsterdam, the Netherlands
- Reade, Center for Rehabilitation and Rheumatology/Amsterdam Rehabilitation Research Center, Amsterdam, the Netherlands
| | - Jos W R Twisk
- Department of Epidemiology and Biostatistics, Amsterdam University of Medical Centers, Vrije Universiteit Amsterdam, Amsterdam, the Netherlands
| | - Jos A Bosch
- Department of Clinical Psychology, University of Amsterdam, Amsterdam, the Netherlands
- Department of Psychology, Section of Psychology, Amsterdam University Medical Centers, Academic Medical Center, Amsterdam, the Netherlands
| | - Bianca M Buurman
- Department of Internal Medicine, Section of Geriatric Medicine, Amsterdam Public Health Research Institute, Amsterdam University Medical Centers, Academic Medical Center, Amsterdam, the Netherlands
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Working status is related to post stroke/TIA cognitive decline: data from the TABASCO study. J Stroke Cerebrovasc Dis 2020; 29:105019. [PMID: 32807434 DOI: 10.1016/j.jstrokecerebrovasdis.2020.105019] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/10/2020] [Revised: 05/26/2020] [Accepted: 06/01/2020] [Indexed: 11/24/2022] Open
Abstract
BACKGROUND AND AIMS Occupational status may influence physical and mental post-stroke outcomes. We aimed to evaluate the association between occupational status and type, or engagement in social and family activities, neuroimaging measures and cognitive decline (CD) in a prospective cohort of stroke patients. METHODS We included 273 first-ever stroke survivors at working age. All patients underwent 3T MRI at admission, as well as clinical and cognitive assessments at admission, 6, 12 and 24 months thereafter. RESULTS Ninty nine (36.3%) of the participants were unemployed prior to the stroke. Age, sex, work type, other comorbidities, stroke severity or location were not associated with return to work. Patients who returned to work (87.4%) had better cognitive results and less depressive symptoms than those who retired after the event. Pre-stroke unemployment was associated with diabetes mellitus, hypertension, dyslipidemia, depression, poorer cognitive scores and brain atrophy. During the follow-up, 11% developed CD. CD was more common among previously unemployed than employed participants (19.2% vs. 6.3%, p = 0.001). Multiple regression adjusted for risk factors, revealed that pre-stroke unemployment was an independent predictor of CD (HR, 3.0; 95% CI: 1.06-8.44). Furthermore, engagement in mentally stimulating jobs decreased the risk for CD. CONCLUSIONS Pre-stroke unemployment and post-stroke work disruption were each associated with depression and poorer cognitive performance up to two years post-stroke, as well as with brain atrophy at admission. Retirement after the stroke may increase the risk of developing CD. These results highlight the importance of continued employment in preserving cognitive abilities among stroke survivors.
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Tubbs JD, Ding J, Baum L, Sham PC. Immune dysregulation in depression: Evidence from genome-wide association. Brain Behav Immun Health 2020; 7:100108. [PMID: 34589869 PMCID: PMC8474691 DOI: 10.1016/j.bbih.2020.100108] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/08/2020] [Accepted: 07/12/2020] [Indexed: 12/15/2022] Open
Abstract
A strong body of evidence supports a role for immune dysregulation across many psychiatric disorders including depression, the leading cause of global disability. Recent progress in the search for genetic variants associated with depression provides the opportunity to strengthen our current understanding of etiological factors contributing to depression and generate novel hypotheses. Here, we provide an overview of the literature demonstrating a role for immune dysregulation in depression, followed by a detailed discussion of the immune-related genes identified by the most recent genome-wide meta-analysis of depression. These genes represent strong evidence-based targets for future basic and translational research which aims to understand the role of the immune system in depression pathology and identify novel points for therapeutic intervention.
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Affiliation(s)
- Justin D. Tubbs
- Department of Psychiatry, The University of Hong Kong, Hong Kong
| | - Jiahong Ding
- Department of Psychiatry, The University of Hong Kong, Hong Kong
| | - Larry Baum
- Department of Psychiatry, The University of Hong Kong, Hong Kong
- State Key Laboratory of Brain and Cognitive Sciences, The University of Hong Kong, Hong Kong
| | - Pak C. Sham
- Department of Psychiatry, The University of Hong Kong, Hong Kong
- State Key Laboratory of Brain and Cognitive Sciences, The University of Hong Kong, Hong Kong
- Centre for PanorOmic Sciences, The University of Hong Kong, Hong Kong
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Factors Associated with Step Numbers in Acutely Hospitalized Older Adults: The Hospital-Activities of Daily Living Study. J Am Med Dir Assoc 2020; 22:425-432. [PMID: 32713773 DOI: 10.1016/j.jamda.2020.06.027] [Citation(s) in RCA: 14] [Impact Index Per Article: 2.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/10/2020] [Revised: 05/20/2020] [Accepted: 06/09/2020] [Indexed: 12/14/2022]
Abstract
OBJECTIVES To determine the number of steps taken by older patients in hospital and 1 week after discharge; to identify factors associated with step numbers after discharge; and to examine the association between functional decline and step numbers after discharge. DESIGN Prospective observational cohort study conducted in 2015-2017. SETTING AND PARTICIPANTS Older adults (≥70 years of age) acutely hospitalized for at least 48 hours at internal, cardiology, or geriatric wards in 6 Dutch hospitals. METHODS Steps were counted using the Fitbit Flex accelerometer during hospitalization and 1 week after discharge. Demographic, somatic, physical, and psychosocial factors were assessed during hospitalization. Functional decline was determined 1 month after discharge using the Katz activities of daily living index. RESULTS The analytic sample included 188 participants [mean age (standard deviation) 79.1 (6.7)]. One month postdischarge, 33 out of 174 participants (19%) experienced functional decline. The median number of steps was 656 [interquartile range (IQR), 250-1146] at the last day of hospitalization. This increased to 1750 (IQR 675-4114) steps 1 day postdischarge, and to 1997 (IQR 938-4098) steps 7 days postdischarge. Age [β = -57.93; 95% confidence interval (CI) -111.15 to -4.71], physical performance (β = 224.95; 95% CI 117.79-332.11), and steps in hospital (β = 0.76; 95% CI 0.46-1.06) were associated with steps postdischarge. There was a significant association between step numbers after discharge and functional decline 1 month after discharge (β = -1400; 95% CI -2380 to -420; P = .005). CONCLUSIONS AND IMPLICATIONS Among acutely hospitalized older adults, step numbers double 1 day postdischarge, indicating that their capacity is underutilized during hospitalization. Physical performance and physical activity during hospitalization are key to increasing the number of steps postdischarge. The number of steps 1 week after discharge is a promising indicator of functional decline 1 month after discharge.
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Bertens AS, Foster-Dingley JC, van der Grond J, Moonen JEF, van der Mast RC, Rius Ottenheim N. Lower Blood Pressure, Small-Vessel Disease, and Apathy in Older Persons With Mild Cognitive Deficits. J Am Geriatr Soc 2020; 68:1811-1817. [PMID: 32353168 PMCID: PMC7496130 DOI: 10.1111/jgs.16465] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/15/2020] [Revised: 03/13/2020] [Accepted: 03/17/2020] [Indexed: 11/29/2022]
Abstract
BACKGROUND In older persons, both high and low blood pressure (BP) levels are associated with symptoms of apathy. Population characteristics, such as burden of cerebral small-vessel disease (CSVD), may underlie these apparently contradictory findings. We aimed to explore, in older persons, whether the burden of CSVD affects the association between BP and apathy. DESIGN Cross-sectional study. SETTING Primary care setting, the Netherlands. PARTICIPANTS Community-dwelling older persons (mean age = 80.7 years; SD = 4.1 years) with mild cognitive deficits and using antihypertensive treatment, participating in the baseline measurement of the magnetic resonance imaging substudy (n = 210) of the Discontinuation of Antihypertensive Treatment in the Elderly Study Leiden. MEASUREMENTS During home visits, BP was measured in a standardized way and apathy was assessed with the Apathy Scale (range = 0-42). Stratified linear regression analyses were performed according to the burden of CSVD. A higher burden of CSVD was defined as 2 or more points on a compound CSVD score (range = 0-3 points), defined as presence of white matter hyperintensities (greater than median), any lacunar infarct, and/or two or more microbleeds. RESULTS In the entire population, those with a lower systolic and those with a lower diastolic BP had more symptoms of apathy (β = -.35 [P = .01] and β = -.66 [P = .02], respectively). In older persons with a higher burden of CSVD (n = 50 [24%]), both lower systolic BP (β = -.64, P = .02) and lower diastolic BP (β = -1.6, P = .01) were associated with more symptoms of apathy, whereas no significant association was found between BP and symptoms of apathy in older persons with a lower burden of CSVD (n = 160). CONCLUSIONS Particularly in older persons with a higher burden of CSVD, lower BP was associated with more symptoms of apathy. Adequate BP levels for optimal psychological functioning may vary across older populations with a different burden of CSVD. J Am Geriatr Soc 68:1811-1817, 2020.
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Affiliation(s)
- Anne Suzanne Bertens
- Department of Psychiatry, Leiden University Medical Center, Leiden, The Netherlands.,Department of Radiology, Leiden University Medical Center, Leiden, The Netherlands
| | | | - Jeroen van der Grond
- Department of Radiology, Leiden University Medical Center, Leiden, The Netherlands
| | - Justine E F Moonen
- Department of Psychiatry, Leiden University Medical Center, Leiden, The Netherlands.,AMC Medical Research B.V., Amsterdam, The Netherlands
| | - Roos C van der Mast
- Department of Psychiatry, Leiden University Medical Center, Leiden, The Netherlands.,Department of Psychiatry, Collaborative Antwerp Psychiatric Research Institute (CAPRI)-University of Antwerp, Antwerp, Belgium
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Tay J, Lisiecka-Ford DM, Hollocks MJ, Tuladhar AM, Barrick TR, Forster A, O'Sullivan MJ, Husain M, de Leeuw FE, Morris RG, Markus HS. Network neuroscience of apathy in cerebrovascular disease. Prog Neurobiol 2020; 188:101785. [PMID: 32151533 DOI: 10.1016/j.pneurobio.2020.101785] [Citation(s) in RCA: 26] [Impact Index Per Article: 5.2] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/10/2019] [Revised: 02/26/2020] [Accepted: 03/03/2020] [Indexed: 01/15/2023]
Abstract
Apathy is a reduction in motivated goal-directed behavior (GDB) that is prevalent in cerebrovascular disease, providing an important opportunity to study the mechanistic underpinnings of motivation in humans. Focal lesions, such as those seen in stroke, have been crucial in developing models of brain regions underlying motivated behavior, while studies of cerebral small vessel disease (SVD) have helped define the connections between brain regions supporting such behavior. However, current lesion-based models cannot fully explain the neurobiology of apathy in stroke and SVD. To address this, we propose a network-based model which conceptualizes apathy as the result of damage to GDB-related networks. A review of the current evidence suggests that cerebrovascular disease-related pathology can lead to network changes outside of initially damaged territories, which may propagate to regions that share structural or functional connections. The presentation and longitudinal trajectory of apathy in stroke and SVD may be the result of these network changes. Distinct subnetworks might support cognitive components of GDB, the disruption of which results in specific symptoms of apathy. This network-based model of apathy may open new approaches for investigating its underlying neurobiology, and presents novel opportunities for its diagnosis and treatment.
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Affiliation(s)
- Jonathan Tay
- Department of Clinical Neurosciences, University of Cambridge, Cambridge, UK.
| | | | - Matthew J Hollocks
- Department of Clinical Neurosciences, University of Cambridge, Cambridge, UK
| | - Anil M Tuladhar
- Department of Neurology, Donders Institute for Brain, Cognition and Behaviour, Radboud University Nijmegen Medical Centre, Nijmegen, the Netherlands
| | - Thomas R Barrick
- Neuroscience Research Centre, Molecular and Clinical Sciences Research Institute, St. George's University of London, London, UK
| | - Anne Forster
- Academic Unit of Elderly Care and Rehabilitation, University of Leeds, Leeds, UK
| | - Michael J O'Sullivan
- University of Queensland Centre for Clinical Research, University of Queensland Australia, Brisbane, Australia
| | - Masud Husain
- Nuffield Department of Clinical Neurosciences & Department of Experimental Psychology, University of Oxford, Oxford, UK
| | - Frank-Erik de Leeuw
- Department of Neurology, Donders Institute for Brain, Cognition and Behaviour, Radboud University Nijmegen Medical Centre, Nijmegen, the Netherlands
| | - Robin G Morris
- Department of Psychology, King's College London, London, UK
| | - Hugh S Markus
- Department of Clinical Neurosciences, University of Cambridge, Cambridge, UK
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Burell G. Dangerous depression in cardiac patients: What can we do about it? Eur J Prev Cardiol 2020; 27:473-477. [DOI: 10.1177/2047487319879787] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 11/16/2022]
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Wouts L, van Kessel M, Beekman AT, Marijnissen RM, Oude Voshaar RC. Empirical support for the vascular apathy hypothesis: A structured review. Int J Geriatr Psychiatry 2020; 35:3-11. [PMID: 31617249 PMCID: PMC6916153 DOI: 10.1002/gps.5217] [Citation(s) in RCA: 26] [Impact Index Per Article: 5.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 04/29/2019] [Accepted: 09/15/2019] [Indexed: 01/02/2023]
Abstract
OBJECTIVES A systematic review of the relationship between subclinical small vessel disease (SSVD) in the general population and apathy to examine the hypothesis that apathy has a vascular basis. METHODS We searched for studies on associations between apathy and SSVD, operationalized as white matter hyperintensities (WMH) or white matter diffusivity changes, lacunar infarcts, cerebral microbleeds, decreasing cortical thickness, and perivascular spaces, while also peripheral proxies for SSVD were considered, operationalized as ankle brachial pressure index (ABI), intima media thickness, arterial stiffness, cardio-femoral pulse wave velocity, hypertension, or cardiovascular disease. Only eligible retrospective and prospective observational studies conducted in the general population were included. RESULTS The 14 studies eligible for review examined the associations between apathy and hypertension (3), ABI (1), arterial stiffness (1), cardiovascular disease (2), WMH (3), white matter diffusivity (2), cerebral microbleeds (1), or cortical thickness (3). Arterial stiffness and white matter diffusivity were not related to apathy, while the associations with cortical thickness were contradictory. Cross-sectional studies in the general population did find evidence of apathy being associated with WMH, CM, cardiovascular disease, hypertension, and ABI, and cardiovascular disease was prospectively associated with apathy. The methodologies of the studies reviewed were too heterogeneous to perform meta-analyses. CONCLUSIONS Although more prospective evidence is needed and vascular depression needs to be controlled for, cardiovascular disease, hypertension, and ABI as proxies for SSVD, and WMH and cerebral microbleeds as direct measures of SSVD have been found to be associated with apathy in the general population, supporting the hypothesis of vascular apathy.
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Affiliation(s)
- Lonneke Wouts
- Pro PersonaMental Health InstituteThe Netherlands,Department of PsychiatryUniversity Medical Center Groningen (UMCG)GroningenThe Netherlands
| | | | - Aartjan T.F. Beekman
- GGZinGeestMental Health InstituteAmsterdamThe Netherlands,Department of PsychiatryAmsterdam University Medical CentreAmsterdamThe Netherlands
| | - Radboud M. Marijnissen
- Pro PersonaMental Health InstituteThe Netherlands,Department of PsychiatryUniversity Medical Center Groningen (UMCG)GroningenThe Netherlands
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Li H, Zheng D, Li Z, Wu Z, Feng W, Cao X, Wang J, Gao Q, Li X, Wang W, Hall BJ, Xiang YT, Guo X. Association of Depressive Symptoms With Incident Cardiovascular Diseases in Middle-Aged and Older Chinese Adults. JAMA Netw Open 2019; 2:e1916591. [PMID: 31800066 PMCID: PMC6902756 DOI: 10.1001/jamanetworkopen.2019.16591] [Citation(s) in RCA: 136] [Impact Index Per Article: 22.7] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 12/18/2022] Open
Abstract
IMPORTANCE The prevalence of depressive symptoms among older adults has become an increasingly important public health priority. Elevated depressive symptoms are well documented among elderly people with cardiovascular disease (CVD), but studies conducted among Chinese adults are scarce. OBJECTIVE To estimate the association between depressive symptoms and incident CVD among middle-aged and older Chinese adults. DESIGN, SETTING, AND PARTICIPANTS The China Health and Retirement Longitudinal Study is an ongoing nationally representative prospective cohort study that was initiated in 2011. This cohort study included 12 417 middle-aged and older Chinese adults without heart disease and stroke at baseline. Statistical analysis was conducted from April 25, 2018, to December 13, 2018. EXPOSURE Depressive symptoms were assessed using the validated 10-item of Center for Epidemiologic Studies Depression Scale. MAIN OUTCOMES AND MEASURES Incident CVD (ie, self-reported physician-diagnosed heart disease and stroke combined) was followed-up from June 1, 2011, to June 31, 2015. The Center for Epidemiologic Studies Depression Scale total score ranges from 0 to 30, with a score of 12 or more indicating elevated depressive symptoms. RESULTS Of the 12 417 participants (mean [SD] age at baseline, 58.40 [9.51] years), 6113 (49.2%) were men. During the 4 years of follow-up, 1088 incident CVD cases were identified. Elevated depressive symptoms were independently associated with an increased CVD risk (adjusted hazard ratio, 1.39; 95% CI, 1.22-1.58) after adjusting for age, sex, residence, marital status, educational level, smoking status, drinking status, systolic blood pressure, and body mass index; history of diabetes, hypertension, dyslipidemia, and chronic kidney disease; and use of hypertension medications, diabetes medications, and lipid-lowering therapy. Of the 10 individual depressive symptoms measured by the Center for Epidemiologic Studies Depression Scale, only 2 symptoms, restless sleep (adjusted hazard ratio, 1.21; 95% CI, 1.06-1.39) and loneliness (adjusted hazard ratio, 1.21; 95% CI, 1.02-1.44), were significantly associated with incident CVD. CONCLUSIONS AND RELEVANCE Elevated depressive symptoms overall and 2 individual symptoms (restless sleep and loneliness) were significantly associated with incident CVD among middle-aged and older Chinese adults.
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Affiliation(s)
- Haibin Li
- Department of Epidemiology and Health Statistics, Capital Medical University School of Public Health, Beijing, China
- Beijing Municipal Key Laboratory of Clinical Epidemiology, Capital Medical University, Beijing, China
| | - Deqiang Zheng
- Department of Epidemiology and Health Statistics, Capital Medical University School of Public Health, Beijing, China
- Beijing Municipal Key Laboratory of Clinical Epidemiology, Capital Medical University, Beijing, China
| | - Zhiwei Li
- Department of Epidemiology and Health Statistics, Capital Medical University School of Public Health, Beijing, China
- Beijing Municipal Key Laboratory of Clinical Epidemiology, Capital Medical University, Beijing, China
| | - Zhiyuan Wu
- Department of Epidemiology and Health Statistics, Capital Medical University School of Public Health, Beijing, China
- Beijing Municipal Key Laboratory of Clinical Epidemiology, Capital Medical University, Beijing, China
| | - Wei Feng
- Department of Epidemiology and Health Statistics, Capital Medical University School of Public Health, Beijing, China
- Beijing Municipal Key Laboratory of Clinical Epidemiology, Capital Medical University, Beijing, China
| | - Xue Cao
- Department of Epidemiology and Health Statistics, Capital Medical University School of Public Health, Beijing, China
| | - Jiaxin Wang
- Department of Epidemiology and Health Statistics, Capital Medical University School of Public Health, Beijing, China
| | - Qi Gao
- Department of Epidemiology and Health Statistics, Capital Medical University School of Public Health, Beijing, China
- Beijing Municipal Key Laboratory of Clinical Epidemiology, Capital Medical University, Beijing, China
| | - Xia Li
- Department of Mathematics and Statistics, La Trobe University, Melbourne, Victoria, Australia
| | - Wei Wang
- Global Health and Genomics, Edith Cowan University School of Medical Health Sciences, Perth, Western Australia, Australia
| | - Brian J. Hall
- Global and Community Mental Health Research Group, Department of Psychology, University of Macau, Macao SAR, China
- Health, Behavior, and Society, Johns Hopkins Bloomberg School of Public Health, Baltimore, Maryland
| | - Yu-Tao Xiang
- Unit of Psychiatry, Institute of Translational Medicine, Faculty of Health Sciences, University of Macau, Macao SAR, China
- Center for Cognition and Brain Sciences, University of Macau, Macao SAR, China
| | - Xiuhua Guo
- Department of Epidemiology and Health Statistics, Capital Medical University School of Public Health, Beijing, China
- Beijing Municipal Key Laboratory of Clinical Epidemiology, Capital Medical University, Beijing, China
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Gillespie SL, Anderson CM, Zhao S, Tan Y, Kline D, Brock G, Odei J, O'Brien E, Sims M, Lazarus SA, Hood DB, Williams KP, Joseph JJ. Allostatic load in the association of depressive symptoms with incident coronary heart disease: The Jackson Heart Study. Psychoneuroendocrinology 2019; 109:104369. [PMID: 31307010 PMCID: PMC7232849 DOI: 10.1016/j.psyneuen.2019.06.020] [Citation(s) in RCA: 44] [Impact Index Per Article: 7.3] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 03/08/2019] [Revised: 06/24/2019] [Accepted: 06/28/2019] [Indexed: 12/16/2022]
Abstract
African Americans are at heightened risk for coronary heart disease (CHD), with biologic pathways poorly understood. We examined the role of allostatic load (AL) in the association of depressive symptoms with incident CHD among 2,670 African American men and women in the prospective Jackson Heart Study. Depressive symptoms were quantified using the Center for Epidemiologic Studies Depression Scale (CES-D). Incident CHD was ascertained by self-report, death certificate survey, and adjudicated medical record surveillance. Baseline AL was quantified using biologic parameters of metabolic, cardiovascular, immune, and neuroendocrine subsystems and as a combined meta-factor. Sequential models adjusted for demographic, socioeconomic, and behavioral covariates, stratified to examine differences by sex. Greater depressive symptomatology was associated with greater metabolic, cardiovascular, and immune AL (p-values≤0.036) and AL meta-factor z-scores (p = 0.007), with findings driven by observations among females. Each 1-point increase in baseline depressive symptomatology, and 1-SD increase in metabolic AL, neuroendocrine AL, and AL meta-factor z-scores was associated with 3.3%, 88%, 39%, and 130% increases in CHD risk, respectively (p-values <0.001). Neuroendocrine AL and AL meta-factor scores predicted incident CHD among males but not females in stratified analyses. Metabolic AL partially mediated the association of depressive symptoms with incident CHD (5.79% mediation, p = 0.044), a finding present among females (p = 0.016) but not males (p = 0.840). Among African American adults, we present novel findings of an association between depressive symptomatology and incident CHD, partially mediated by metabolic AL. These findings appear to be unique to females, an important consideration in the design of targeted interventions for CHD prevention.
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Affiliation(s)
- Shannon L Gillespie
- Martha S. Pitzer Center for Women, Children, & Youth, College of Nursing, The Ohio State University, Columbus, OH, United States.
| | - Cindy M Anderson
- Martha S. Pitzer Center for Women, Children, & Youth, College of Nursing, The Ohio State University, Columbus, OH, United States
| | - Songzhu Zhao
- Department of Bioinformatics, College of Medicine, The Ohio State University, Columbus, OH, United States
| | - Yubo Tan
- Department of Bioinformatics, College of Medicine, The Ohio State University, Columbus, OH, United States
| | - David Kline
- Department of Bioinformatics, College of Medicine, The Ohio State University, Columbus, OH, United States
| | - Guy Brock
- Department of Bioinformatics, College of Medicine, The Ohio State University, Columbus, OH, United States
| | - James Odei
- Division of Biostatistics, College of Public Health, The Ohio State University, Columbus, OH, United States
| | - Emily O'Brien
- Duke Clinical Research Institute and Department of Population Health Sciences, Duke University School of Medicine, Durham, NC, United States
| | - Mario Sims
- Department of Medicine, University of Mississippi Medical Center, Jackson, MS, United States
| | - Sophie A Lazarus
- Department of Psychology, The Ohio State University, United States
| | - Darryl B Hood
- Division of Environmental Health Sciences, College of Public Health, The Ohio State University, Columbus, OH, United States
| | - Karen Patricia Williams
- Martha S. Pitzer Center for Women, Children, & Youth, College of Nursing, The Ohio State University, Columbus, OH, United States
| | - Joshua J Joseph
- Division of Endocrinology, Diabetes & Metabolism, The Ohio State University Wexner Medical Center, Columbus, OH, United States
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van Bussel EF, Richard E, Busschers WB, Steyerberg EW, van Gool WA, Moll van Charante EP, Hoevenaar-Blom MP. A cardiovascular risk prediction model for older people: Development and validation in a primary care population. J Clin Hypertens (Greenwich) 2019; 21:1145-1152. [PMID: 31294917 PMCID: PMC6772108 DOI: 10.1111/jch.13617] [Citation(s) in RCA: 10] [Impact Index Per Article: 1.7] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/13/2019] [Revised: 04/18/2019] [Accepted: 05/03/2019] [Indexed: 12/01/2022]
Abstract
Cardiovascular risk prediction is mainly based on traditional risk factors that have been validated in middle‐aged populations. However, associations between these risk factors and cardiovascular disease (CVD) attenuate with increasing age. Therefore, for older people the authors developed and internally validated risk prediction models for fatal and non‐fatal CVD, (re)evaluated the predictive value of traditional and new factors, and assessed the impact of competing risks of non‐cardiovascular death. Post hoc analyses of 1811 persons aged 70‐78 year and free from CVD at baseline from the preDIVA study (Prevention of Dementia by Intensive Vascular care, 2006‐2015), a primary care‐based trial that included persons free from dementia and conditions likely to hinder successful long‐term follow‐up, were performed. In 2017‐2018, Cox‐regression analyses were performed for a model including seven traditional risk factors only, and a model to assess incremental predictive ability of the traditional and eleven new factors. Analyses were repeated accounting for competing risk of death, using Fine‐Gray models. During an average of 6.2 years of follow‐up, 277 CVD events occurred. Age, sex, smoking, and type 2 diabetes mellitus were traditional predictors for CVD, whereas total cholesterol, HDL‐cholesterol, and systolic blood pressure (SBP) were not. Of the eleven new factors, polypharmacy and apathy symptoms were predictors. Discrimination was moderate (concordance statistic 0.65). Accounting for competing risks resulted in slightly smaller predicted absolute risks. In conclusion, we found, SBP, HDL, and total cholesterol no longer predict CVD in older adults, whereas polypharmacy and apathy symptoms are two new relevant predictors. Building on the selected risk factors in this study may improve CVD prediction in older adults and facilitate targeting preventive interventions to those at high risk.
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Affiliation(s)
- Emma F van Bussel
- Department of General Practice, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands
| | - Edo Richard
- Department of Neurology, Donderds Centre for Brain, Behaviour and Cognition, Radboud University Medical Center, Nijmegen, The Netherlands.,Department of Neurology, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands
| | - Wim B Busschers
- Department of General Practice, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands
| | - Ewout W Steyerberg
- Department of Biomedical Data Sciences, LUMC, Leiden, The Netherlands.,Department of Public Health, Erasmus MC, Rotterdam, The Netherlands
| | - Willem A van Gool
- Department of Neurology, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands
| | - Eric P Moll van Charante
- Department of General Practice, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands
| | - Marieke P Hoevenaar-Blom
- Department of Neurology, Donderds Centre for Brain, Behaviour and Cognition, Radboud University Medical Center, Nijmegen, The Netherlands.,Department of Neurology, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands
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Yao H, Mizoguchi Y, Monji A, Yakushiji Y, Takashima Y, Uchino A, Yuzuriha T, Hashimoto M. Low-Grade Inflammation Is Associated with Apathy Indirectly via Deep White Matter Lesions in Community-Dwelling Older Adults: The Sefuri Study. Int J Mol Sci 2019; 20:ijms20081905. [PMID: 30999680 PMCID: PMC6514652 DOI: 10.3390/ijms20081905] [Citation(s) in RCA: 12] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/09/2019] [Accepted: 04/15/2019] [Indexed: 01/22/2023] Open
Abstract
Low-grade inflammation is implicated in the pathogenesis of atherosclerosis, metabolic syndrome, and apathy as a form of vascular depression. We analyzed the brain magnetic resonance imaging findings in 259 community-dwelling older adults (122 men and 137 women, with a mean age of 68.4 years). The serum concentrations of high-sensitivity C-reactive protein (hsCRP) were measured by a quantitative enzyme-linked immunosorbent assay. Logistic regression analysis revealed that the log10 hsCRP value and the presence of a metabolic syndrome were independently associated with confluent but not punctate deep white matter lesions (DWMLs). Path analysis based on structural equation modeling (SEM) indicated that the direct path from the log10 hsCRP to the DWMLs was significant (β = 0.119, p = 0.039). The direct paths from the metabolic syndrome to the log10 hsCRP and to the DWMLs were also significant. The direct path from the DWMLs to apathy (β = −0.165, p = 0.007) was significant, but the direct path from the log10 hsCRP to apathy was not significant. Inflammation (i.e., elevated serum hsCRP levels) was associated with DWMLs independent of common vascular risk factors, while DWMLs were associated with apathy. The present analysis with SEM revealed the more realistic scheme that low-grade inflammation was associated with apathy indirectly via DWMLs in community-dwelling older adults.
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Affiliation(s)
- Hiroshi Yao
- Division of Clinical Research, National Hospital Organization Hizen Psychiatric Center, Saga 842-0192, Japan.
| | - Yoshito Mizoguchi
- Department of Psychiatry, Faculty of Medicine, Saga University, Saga 849-8501, Japan.
| | - Akira Monji
- Department of Psychiatry, Faculty of Medicine, Saga University, Saga 849-8501, Japan.
| | - Yusuke Yakushiji
- Division of Neurology, Department of Internal Medicine, Faculty of Medicine, Saga University, Saga 849-8501, Japan.
| | - Yuki Takashima
- Division of Clinical Research, National Hospital Organization Hizen Psychiatric Center, Saga 842-0192, Japan.
| | - Akira Uchino
- Department of Diagnostic Radiology, Saitama Medical University International Medical Center, Saitama 350-1298, Japan.
| | - Takefumi Yuzuriha
- Division of Clinical Research, National Hospital Organization Hizen Psychiatric Center, Saga 842-0192, Japan.
| | - Manabu Hashimoto
- Division of Clinical Research, National Hospital Organization Hizen Psychiatric Center, Saga 842-0192, Japan.
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Depression is Associated With Sarcopenia Due to Low Muscle Strength: Results From the ELSA-Brasil Study. J Am Med Dir Assoc 2018; 20:1641-1646. [PMID: 30409492 DOI: 10.1016/j.jamda.2018.09.020] [Citation(s) in RCA: 38] [Impact Index Per Article: 5.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/14/2018] [Revised: 09/17/2018] [Accepted: 09/19/2018] [Indexed: 12/11/2022]
Abstract
OBJECTIVES To investigate the association of sarcopenia and its defining components with depression in Brazilian middle-aged and older adults. DESIGN Cross-sectional study. SETTING AND PARTICIPANTS This analysis included 5927 participants from the ELSA-Brasil Study second data collection, aged 55 years and older, with complete data for exposure, outcome, and covariates. MEASURES Muscle mass was evaluated by bioelectrical impedance analysis and muscle strength by hand-grip strength. Sarcopenia was defined according to the Foundation for the National Institutes of Health (FNIH) criteria. Depression was assessed using the Clinical Interview Scheduled Revised (CIS-R). Information on sociodemographic characteristics, lifestyle, and clinical comorbidities were also obtained. RESULTS The frequencies of sarcopenia, presarcopenia, low muscle mass, low muscle strength, and low muscle strength without loss of muscle mass was 1.9%, 18.8%, 20.7%, 4.8%, and 2.9%, respectively. After adjustment for sociodemographic characteristics, clinical conditions, and lifestyle factors, depression was associated with sarcopenia (odds ratio [OR] = 2.23, 95% confidence interval [CI] = 1.11-4.48, P = .024) and low muscle strength (OR = 1.94, 95% CI = 1.20-3.15, P = .007), but it was not associated with presarcopenia, low muscle mass, and low muscle strength without loss of muscle mass. CONCLUSIONS Depression is associated with sarcopenia defined by the FNIH criteria mainly because of its association with weakness. Future studies are needed to clarify the temporal relationship between both conditions.
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van Dalen JW, van Wanrooij LL, Moll van Charante EP, Brayne C, van Gool WA, Richard E. Association of Apathy With Risk of Incident Dementia: A Systematic Review and Meta-analysis. JAMA Psychiatry 2018; 75:1012-1021. [PMID: 30027214 PMCID: PMC6233800 DOI: 10.1001/jamapsychiatry.2018.1877] [Citation(s) in RCA: 77] [Impact Index Per Article: 11.0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 01/05/2023]
Abstract
IMPORTANCE Fear of dementia is pervasive in older people with cognitive concerns. Much research is devoted to finding prognostic markers for dementia risk. Studies suggest apathy in older people may be prodromal to dementia and could be a relevant, easily measurable predictor of increased dementia risk. However, evidence is fragmented and methods vary greatly between studies. OBJECTIVE To systematically review and quantitatively synthesize the evidence for an association between apathy in dementia-free older individuals and incident dementia. DATA SOURCES Two reviewers conducted a systematic search of Medline, Embase, and PsychINFO databases. STUDY SELECTION Inclusion criteria were (1) prospective cohort studies, (2) in general populations or memory clinic patients without dementia, (3) with clear definitions of apathy and dementia, and (4) reporting on the association between apathy and incident dementia. DATA EXTRACTION AND SYNTHESIS PRISMA and MOOSE guidelines were followed. Data were extracted by 1 reviewer and checked by a second. MAIN OUTCOMES AND MEASURES Main outcomes were pooled crude risk ratios, maximally adjusted reported hazard ratios (HR), and odds ratios (OR) using DerSimonian-Laird random effects models. RESULTS The mean age of the study populations ranged from 69.2 to 81.9 years (median, 71.6 years) and the percentage of women ranged from 35% to 70% (median, 53%). After screening 2031 titles and abstracts, 16 studies comprising 7365 participants were included. Apathy status was available for 7299 participants. Studies included populations with subjective cognitive concerns (n = 2), mild cognitive impairment (n = 11), cognitive impairment no dementia (n = 1), or mixed cognitive and no cognitive impairment (n = 2). Apathy was present in 1470 of 7299 participants (20.1%). Follow-up ranged from 1.2 to 5.4 years. In studies using validated apathy definitions (n = 12), the combined risk ratio of dementia for patients with apathy was 1.81 (95% CI, 1.32-2.50; I2 = 76%; n = 12), the hazard ratio was 2.39 (95% CI, 1.27-4.51; I2 = 90%; n = 7), and the odds ratio was 17.14 (95% CI, 1.91-154.0; I2 = 60%; n = 2). Subgroup analyses, meta-regression, and individual study results suggested the association between apathy and dementia weakened with increasing follow-up time, age, and cognitive impairment. Meta-regression adjusting for apathy definition and follow-up time explained 95% of heterogeneity in mild cognitive impairment. CONCLUSIONS AND RELEVANCE Apathy was associated with an approximately 2-fold increased risk of dementia in memory clinic patients. Moderate publication bias may have inflated some of these estimates. Apathy deserves more attention as a relevant, cheap, noninvasive, and easily measureable marker of increased risk of incident dementia with high clinical relevance, particularly because these vulnerable patients may forgo health care.
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Affiliation(s)
- Jan Willem van Dalen
- Department of Neurology, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands,Donders Brain Institute, Department of Neurology, Radboud University Medical Center, University of Nijmegen, Nijmegen, the Netherlands
| | - Lennard L. van Wanrooij
- Department of Neurology, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands
| | - Eric P. Moll van Charante
- Department of General Practice, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands
| | - Carol Brayne
- Institute of Public Health, University of Cambridge, Cambridge, United Kingdom
| | - Willem A. van Gool
- Department of Neurology, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands
| | - Edo Richard
- Department of Neurology, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands,Donders Brain Institute, Department of Neurology, Radboud University Medical Center, University of Nijmegen, Nijmegen, the Netherlands
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