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Rosano A, Bicaj M, Cillerai M, Ponzano M, Cabona C, Gemelli C, Caponnetto C, Pardini M, Signori A, Uccelli A, Schenone A, Ferraro PM. Psychological resilience is protective against cognitive deterioration in motor neuron diseases. Amyotroph Lateral Scler Frontotemporal Degener 2024; 25:717-725. [PMID: 39138961 DOI: 10.1080/21678421.2024.2385690] [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: 01/24/2024] [Revised: 07/14/2024] [Accepted: 07/22/2024] [Indexed: 08/15/2024]
Abstract
OBJECTIVES Recent studies suggest that psychological resilience (PR) is associated with more well-preserved cognition in healthy subjects (HS), but an investigation of such phenomenon in patients with motor neuron diseases (MNDs) is still lacking. The aim of our study was therefore to evaluate PR and its relationship with baseline cognitive/behavioral and mood symptoms, as well as longitudinal cognitive functioning, in MNDs. METHODS 94 MND patients and 87 demographically matched HS were enrolled. PR was assessed using the Connor-Davidson Resilience Scale (CD-RISC). Patients were further evaluated both at baseline and every 6 months for cognitive/behavioral disturbances using the Edinburgh Cognitive and Behavioral ALS Screen (ECAS), and for mood symptoms using the Hospital Anxiety and Depression Scale (HADS). CD-RISC scores were compared between patients and HS using the Mann-Whitney U test, and regression models were applied to evaluate the role of CD-RISC scores in predicting baseline cognitive/behavioral and mood measures, as well as longitudinal cognitive performances, in MND patients. RESULTS MND cases showed significantly greater PR compared to HS (p from <0.001 to 0.02). In MNDs, higher PR levels were significant predictors of both greater cognitive performance (p from 0.01 to 0.05) and milder mood symptoms (p from <0.001 to 0.04) at baseline, as well as less severe memory decline (p from 0.001 to 0.04) longitudinally. CONCLUSIONS PR is an important protective factor against the onset and evolution of cognitive/mood disturbances in MNDs, suggesting the usefulness of resilience enhancement psychological interventions to prevent or delay cognitive and mood disorders in these neurodegenerative conditions.
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Affiliation(s)
- Andrea Rosano
- Department of Neurology, IRCCS Ospedale Policlinico San Martino, Genoa, Italy
| | - Manuel Bicaj
- Department of Neurology, IRCCS Ospedale Policlinico San Martino, Genoa, Italy
| | - Marta Cillerai
- Department of Neuroscience, Rehabilitation, Ophthalmology, Genetics, Maternal and Child Health (DINOGMI), University of Genoa, Genoa, Italy
| | - Marta Ponzano
- Department of Health Sciences (DISSAL), University of Genoa, Genoa, Italy
| | - Corrado Cabona
- Department of Neurophysiology, IRCCS Ospedale Policlinico San Martino, Genoa, Italy, and
| | - Chiara Gemelli
- Department of Neurology, IRCCS Ospedale Policlinico San Martino, Genoa, Italy
| | - Claudia Caponnetto
- Department of Neurology, IRCCS Ospedale Policlinico San Martino, Genoa, Italy
| | - Matteo Pardini
- Department of Neurology, IRCCS Ospedale Policlinico San Martino, Genoa, Italy
- Department of Neuroscience, Rehabilitation, Ophthalmology, Genetics, Maternal and Child Health (DINOGMI), University of Genoa, Genoa, Italy
| | - Alessio Signori
- Department of Health Sciences (DISSAL), University of Genoa, Genoa, Italy
| | | | - Angelo Schenone
- Department of Neurology, IRCCS Ospedale Policlinico San Martino, Genoa, Italy
- Department of Neuroscience, Rehabilitation, Ophthalmology, Genetics, Maternal and Child Health (DINOGMI), University of Genoa, Genoa, Italy
| | - Pilar M Ferraro
- Department of Neurology, IRCCS Ospedale Policlinico San Martino, Genoa, Italy
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Mavroudis I, Kazis D, Kamal FZ, Gurzu IL, Ciobica A, Pădurariu M, Novac B, Iordache A. Understanding Functional Neurological Disorder: Recent Insights and Diagnostic Challenges. Int J Mol Sci 2024; 25:4470. [PMID: 38674056 PMCID: PMC11050230 DOI: 10.3390/ijms25084470] [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: 03/04/2024] [Revised: 04/10/2024] [Accepted: 04/15/2024] [Indexed: 04/28/2024] Open
Abstract
Functional neurological disorder (FND), formerly called conversion disorder, is a condition characterized by neurological symptoms that lack an identifiable organic purpose. These signs, which can consist of motor, sensory, or cognitive disturbances, are not deliberately produced and often vary in severity. Its diagnosis is predicated on clinical evaluation and the exclusion of other medical or psychiatric situations. Its treatment typically involves a multidisciplinary technique addressing each of the neurological symptoms and underlying psychological factors via a mixture of medical management, psychotherapy, and supportive interventions. Recent advances in neuroimaging and a deeper exploration of its epidemiology, pathophysiology, and clinical presentation have shed new light on this disorder. This paper synthesizes the current knowledge on FND, focusing on its epidemiology and underlying mechanisms, neuroimaging insights, and the differentiation of FND from feigning or malingering. This review highlights the phenotypic heterogeneity of FND and the diagnostic challenges it presents. It also discusses the significant role of neuroimaging in unraveling the complex neural underpinnings of FND and its potential in predicting treatment response. This paper underscores the importance of a nuanced understanding of FND in informing clinical practice and guiding future research. With advancements in neuroimaging techniques and growing recognition of the disorder's multifaceted nature, the paper suggests a promising trajectory toward more effective, personalized treatment strategies and a better overall understanding of the disorder.
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Affiliation(s)
- Ioannis Mavroudis
- Department of Neuroscience, Leeds Teaching Hospitals, NHS Trust, Leeds LS2 9JT, UK;
- Faculty of Medicine, Leeds University, Leeds LS2 9JT, UK
| | - Dimitrios Kazis
- Third Department of Neurology, Aristotle University of Thessaloniki, 541 24 Thessaloniki, Greece;
| | - Fatima Zahra Kamal
- Higher Institute of Nursing Professions and Health Technical (ISPITS), Marrakech 40000, Morocco
- Laboratory of Physical Chemistry of Processes and Materials, Faculty of Sciences and Techniques, Hassan First University, Settat 26000, Morocco
| | - Irina-Luciana Gurzu
- Faculty of Medicine, University of Medicine and Pharmacy “Grigore T. Popa”, 700115 Iasi, Romania (A.I.)
| | - Alin Ciobica
- Department of Biology, Faculty of Biology, Alexandru Ioan Cuza University of Iasi, Carol I Avenue 20th A, 700505 Iasi, Romania
- Center of Biomedical Research, Romanian Academy, Iasi Branch, Teodor Codrescu 2, 700481 Iasi, Romania
- Academy of Romanian Scientists, 3 Ilfov, 050044 Bucharest, Romania
- Preclinical Department, Apollonia University, Păcurari Street 11, 700511 Iasi, Romania
| | - Manuela Pădurariu
- “Socola” Institute of Psychiatry, Șoseaua Bucium 36, 700282 Iasi, Romania;
| | - Bogdan Novac
- Faculty of Medicine, University of Medicine and Pharmacy “Grigore T. Popa”, 700115 Iasi, Romania (A.I.)
| | - Alin Iordache
- Faculty of Medicine, University of Medicine and Pharmacy “Grigore T. Popa”, 700115 Iasi, Romania (A.I.)
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Cheng CH, Hsu CH, Sie JR, Tsay SL, Tung HH. The Relationship Between Resilience and Health-Related Quality of Life Among Heart Failure Patients in New York Heart Association Functional Classes II and III. J Nurs Res 2024; 32:e312. [PMID: 38271064 DOI: 10.1097/jnr.0000000000000594] [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: 01/27/2024] Open
Abstract
BACKGROUND Heart failure is an intense, unpredictable, and stressful chronic disease caused by the decline in cardiac pumping function. The influence of heart failure affects patients not only in terms of physical capabilities but also in terms of their emotional and social dimensions, with patients in different functional classes experiencing different levels of effect. Although resilience and health-related quality of life have been studied in populations with heart failure, the scholarly understanding of different functional classes is limited. PURPOSE This study was designed to investigate the relationship between resilience and health-related quality of life among patients with heart failure in different physical functional classes in Taiwan. METHODS A cross-sectional design was applied to study patients with heart failure in northern Taiwan. Two structured questionnaires, including the Resilience Scale for Adults and the 12-item Short Form Health Survey, were used to assess resilience and health-related quality of life. New York Heart Association functional class was used to determine physical function status, and canonical correlation analysis was used to determine the weight of each resilience and quality-of-life domain for the different functional classes. RESULTS The 100 participants had an average age of 65.52 years. Slightly over half (56%) were classified as Functional Class II. A group difference in health-related quality of life was observed. Personal strength (rs = .759) and social competence (rs = -.576) were found to influence the resilience and emotional role dimension of quality of life (rs = -.996) in the Functional Class II group. In addition, family cohesion (rs = -.922), dominant resilience, physical function (rs = .467), and bodily pain (rs = .465) were found to influence quality of life in the Functional Class III group. CONCLUSIONS/IMPLICATIONS FOR PRACTICE The efficacy of measures taken to increase resilience to heart failure varied in patients in different functional classes. Functional Class II individuals were better able to manage the disease using their personal strength, whereas Functional Class III individuals relied more heavily on family support and assistance for this effort. Furthermore, participant feelings about quality of life also varied by functional class, with physical function and bodily pain taking on significantly more importance for Functional Class III individuals.
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Affiliation(s)
- Ching-Hui Cheng
- MSN, RN, Deputy Chief of Cardiac Nursing Department, Heart Center, Cheng-Hsin General Hospital, Taiwan, ROC
| | - Ching-Hwa Hsu
- PhD, RN, NP, Assistant Professor, School of Nursing, College of Medicine, Chang Gung University, Taiwan, ROC
| | - Jia-Rong Sie
- MSN, RN, NP, Doctoral Student, Department of Nursing, National Yang Ming Chiao Tung University, and Nurse Practitioner, Department of Emergency Medicine, National Taiwan University Hospital, Taiwan, ROC
| | - Shiow-Luan Tsay
- PhD, RN, APN, Professor, College of Nursing & Health Sciences, Da-Yeh University, Taiwan, ROC
| | - Heng-Hsin Tung
- PhD, RN, FNP, DNP, Distinguished Professor, Department of Nursing, National Yang Ming Chiao Tung University, and Adjunct Nursing Consultant, Tungs' Taichung MetroHarbor Hospital, Taiwan, ROC
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de Vroege L, van Dijl TL, Woudstra-de Jong JE, Videler AC, Kop WJ. Personality traits related to cognitive functioning in patients with functional neurological disorder. J Clin Exp Neuropsychol 2023; 45:1014-1023. [PMID: 38623749 DOI: 10.1080/13803395.2024.2335599] [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: 07/05/2023] [Accepted: 02/04/2024] [Indexed: 04/17/2024]
Abstract
Cognitive symptoms are prevalent in patients with functional neurological disorder (FND). Several studies have suggested that personality traits such as neuroticism may play a pivotal role in the development of FND. FND has also been associated with alexithymia: patients with FND report difficulties in identifying, analyzing, and verbalizing emotions. Whether or not alexithymia and other personality traits are associated with cognitive symptomatology in patients with FND is unknown. In the current study, we explored whether the Big Five personality model factors (neuroticism, extraversion, openness, agreeableness, and conscientiousness) and alexithymia were associated with cognitive functioning in FND. Twenty-three patients with FND were assessed using a neuropsychological assessment and questionnaire assessment to explore personality traits (Neuroticism-Extraversion-Openness Five-Factor Inventory) and alexithymia (Bermond-Vorst Alexithymia Questionnaire). The results indicated that high conscientiousness was associated with lower planning scores (ρ = -0.52, p = .012) and high scores on alexithymia were associated with lower scores on verbal memory scores (ρ = -0.46, p = .032) and lower sustained attention scores (ρ = -0.45, p = .046). The results did not remain significant after controlling for multiple testing. The preliminary results of our study suggest that personality and cognitive symptomatology in patients with FND are topics that should be further explored in future studies, as cognitive symptomology can affect treatment results.
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Affiliation(s)
- Lars de Vroege
- Clinical Centre of Excellence for Body, Mind, and Health, GGz Breburg, Tilburg, The Netherlands
- Tranzo department, Tilburg School of Social and Behavioral Sciences, Tilburg University, Tilburg, The Netherlands
| | - Timothy L van Dijl
- Clinical Centre of Excellence for Body, Mind, and Health, GGz Breburg, Tilburg, The Netherlands
- Tranzo department, Tilburg School of Social and Behavioral Sciences, Tilburg University, Tilburg, The Netherlands
- Department of Medical and Clinical Psychology, Center of Research on Psychological disorders and Somatic diseases (CoRPS), Tilburg University, Tilburg, The Netherlands
| | | | - Arjan C Videler
- Clinical Centre of Excellence for Body, Mind, and Health, GGz Breburg, Tilburg, The Netherlands
- Tranzo department, Tilburg School of Social and Behavioral Sciences, Tilburg University, Tilburg, The Netherlands
- Personacura, Clinical Centre of Excellence for Personality and Developmental Disorders in Older Adults, GGz Breburg, Tilburg, The Netherlands
| | - Willem J Kop
- Clinical Centre of Excellence for Body, Mind, and Health, GGz Breburg, Tilburg, The Netherlands
- Department of Medical and Clinical Psychology, Center of Research on Psychological disorders and Somatic diseases (CoRPS), Tilburg University, Tilburg, The Netherlands
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Rivera-Picón C, Benavente-Cuesta MH, Quevedo-Aguado MP, Juárez-Vela R, Martinez-Tofe J, Sánchez-González JL, Rodríguez-Muñoz PM. Influence of state of health and personality factors of resilience and coping in healthy subjects and those with diabetes. Front Public Health 2023; 11:1074613. [PMID: 36935663 PMCID: PMC10017435 DOI: 10.3389/fpubh.2023.1074613] [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: 10/19/2022] [Accepted: 02/14/2023] [Indexed: 03/06/2023] Open
Abstract
Introduction Currently, the most common chronic metabolic disease in our society is Diabetes Mellitus. The diagnosis of Diabetes Mellitus supposes an impact for the patient, since it requires a modification in the lifestyle, which demands a great capacity for adaptation and modification of habits. The aim of the study was to determine whether personality factors and health status influence resilience and coping strategies in a sample of healthy and diabetic subjects. Methodology The sample included a total of 401 subjects (201 patients with Diabetes and 200 without pathology). The instruments applied for data collection were: Sociodemographic data questionnaire, the Resilience Scale, the Coping Strategies Questionnaire and The "Big Five" factor taxonomy. The data collection period was approximately 2 years (between February 2018 and January 2020). Results Certain personality factors, such as Emotional Stability, Integrity, Conscientiousness and Extraversion, were positively related to Resilience. Additionally, Emotional Stability, Integrity, and Extraversion were positively associated with Rational Coping. On the other hand, emotional stability, agreeableness and extraversion were negatively related to emotional coping. In relation to health status, the absence of pathology is related to the use of rational strategies more than to the diagnosis of diabetes. Therefore, the participants in this study present different psychological patterns depending on personality and health status. Conclusions The present study shows that the subjects of the sample present different psychological patterns depending on Personality and health status.
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Affiliation(s)
- Cristina Rivera-Picón
- Faculty of Health Sciences, Nursing, Pontifical University of Salamanca, Salamanca, Spain
| | | | | | - Raúl Juárez-Vela
- Nursing Department, Faculty of Health Sciences, Research Group GRUPAC, University of La Rioja, Logroño, Spain
| | - Jesús Martinez-Tofe
- Nursing Department, Faculty of Health Sciences, Research Group GRUPAC, University of La Rioja, Logroño, Spain
| | | | - Pedro Manuel Rodríguez-Muñoz
- Faculty of Nursing and Physiotherapy, University of Salamanca, Salamanca, Spain
- Department of Nursing, Instituto Maimónides de Investigación Biomédica de Córboda, Córdona, Spain
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Usta Sağlam NG, Aksoy Poyraz C, Doğan D, Erhan B. Suicidal ideation, post-traumatic stress disorder, and depression in traumatic spinal cord injury: What resilience tells us. J Spinal Cord Med 2023; 46:309-316. [PMID: 35593735 PMCID: PMC9987751 DOI: 10.1080/10790268.2022.2039856] [Citation(s) in RCA: 3] [Impact Index Per Article: 3.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 10/18/2022] Open
Abstract
OBJECTIVE Identification of unmet psychiatric needs, protective and risk factors for suicide are crucial for people with traumatic spinal cord injury (SCI). In this study, we aimed to explore depression, post-traumatic stress disorder (PTSD) status (non-PTSD, partial-PTSD, full-PTSD), resilience, suicidal ideation (SI) and to examine predictors and clinical correlates of current SI in traumatic SCI. METHOD Sixty-three individuals with traumatic SCI who were at least 3 months post-injury were included in the study. The participants were evaluated in terms of PTSD Checklist for Diagnostic and Statistical Manual of Mental Disorders, Fifth Edition (PCL-5), depression, SI, and resilience using the PCL-5, the Patient Health Questionnaire-9, the Brief Resilience Scale, and sociodemographic measures. RESULTS 33% of our sample (n = 21) had SI over the past two weeks. 71.4% of the patients with SI (n = 15) had depression. A total of 52.4% of the patients with SI (n = 11) were diagnosed with full PTSD. Resilience was found to be significantly lower in individuals with depression and individuals with SI. While depression predicted SI in traumatic SCI, resilience stands as a protective factor against SI. CONCLUSION SI is quite common in individuals with traumatic SCI and is accompanied by substantial psychiatric comorbidities such as depression and PTSD. Along with depression and PTSD, resilience - which has protective and predictive values and is inversely associated with SI - constitutes a significant psychotherapeutic intervention and screening area.
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Affiliation(s)
- Nazife Gamze Usta Sağlam
- Department of Psychiatry, University of Health Sciences, Erenköy Training and Research Hospital for Psychiatry and Neurological Diseases, Istanbul, Turkey
| | - Cana Aksoy Poyraz
- Department of Psychiatry, Istanbul University- Cerrahpaşa, Cerrahpasa Medical School, Istanbul, Turkey
| | - Deniz Doğan
- Physical Medicine and Rehabilitation Department, Gaziosmanpasa Training and Research Hospital, Istanbul, Turkey
| | - Belgin Erhan
- Physical Medicine and Rehabilitation Department, İstanbul Medeniyet University, School of Medicine, Istanbul, Turkey
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7
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Wen J, Wu Y, Peng L, Chen S, Yuan J, Wang W, Cong L. Constructing and Verifying an Alexithymia Risk-Prediction Model for Older Adults with Chronic Diseases Living in Nursing Homes: A Cross-Sectional Study in China. Geriatrics (Basel) 2022; 7:geriatrics7060139. [PMID: 36547275 PMCID: PMC9777669 DOI: 10.3390/geriatrics7060139] [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: 09/12/2022] [Revised: 12/02/2022] [Accepted: 12/03/2022] [Indexed: 12/13/2022] Open
Abstract
Alexithymia is a critical global public health concern. This questionnaire-based cross-sectional study explored the risk factors of alexithymia in older adults living in nursing homes with chronic diseases. It also developed and evaluated an alexithymia risk-prediction model. A total of 203 older adults with chronic diseases were selected from seven nursing homes in Changsha, China, using simple random and cluster sampling. The participants were surveyed using the Toronto Alexithymia Scale (TAS-20), Geriatric Depression Scale-15 (GDS-15), Connor-Davidson Resilience Scale (CD-RISC), Perceived Social Support Scale (PSSS), and a socio-demographic characteristics questionnaire. The alexithymia total score was 43.85 ± 9.570, with an incidence rate of 8.9%. Alexithymia had a partial mediating effect on the relationship between social support and psychological resilience (the effect value was 0.12), accounting for 19.04% of the total effect. Gender, depression, and psychological resilience were the main independent influencing factors of alexithymia (p < 0.05). The area under the receiver operating characteristic (AUC-ROC) curve of the risk-prediction model was 0.770. The participants, especially those who were male and depressed, exhibited a certain degree of alexithymia. Additionally, it partially mediated the association between social support and psychological resilience, which is a protective factor against alexithymia. The risk-prediction model showed good accuracy and discrimination. Hence, it can be used for preliminary screening of alexithymia in older adults with chronic diseases living in nursing homes.
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Affiliation(s)
- Jing Wen
- School of Medicine, Hunan Normal University, Changsha 410013, China
| | - Ying Wu
- School of Medicine, Hunan Normal University, Changsha 410013, China
| | - Lixia Peng
- Shuda College, Hunan Normal University, Changsha 410000, China
| | - Siyi Chen
- Shuda College, Hunan Normal University, Changsha 410000, China
| | - Jiayang Yuan
- Shuda College, Hunan Normal University, Changsha 410000, China
| | - Weihong Wang
- School of Medicine, Hunan Normal University, Changsha 410013, China
| | - Li Cong
- School of Medicine, Hunan Normal University, Changsha 410013, China
- Shuda College, Hunan Normal University, Changsha 410000, China
- Correspondence:
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Çapar A, Çuhadar D. Correlation between psychological resilience and suicide probability in patients with psychiatric disorder. Perspect Psychiatr Care 2022; 58:1442-1448. [PMID: 34523123 DOI: 10.1111/ppc.12948] [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] [Received: 07/26/2021] [Accepted: 09/05/2021] [Indexed: 11/27/2022] Open
Abstract
PURPOSE It was aimed to evaluate the correlation between psychological resilience and possibility of suicide in psychiatric patients. DESIGN AND METHODS The data of the research were collected using "Individual Information Form", "Resilience Scale for Adults (RSA)," and "Suicide Probability Scale (SPS)". FINDINGS It was found that the mean total score of SPS was 70.97 ± 12.82 and moderate risk, the mean total score of RSA was 112.50 ± 25.38, and the levels of psychological resilience were at a good level. It has been determined that patients with low levels of psychological resilience have a higher risk of committing suicide. PRACTICE IMPLICATIONS Findings show that a high level of resilience reduces the risk of suicide. Implementing interventions to improve psychological resilience will help prevent suicide.
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Affiliation(s)
- Ahmet Çapar
- Department of Health Care Services, Vocational School of Health Services, Osmaniye Korkut Ata University, Osmaniye, Turkey
| | - Döndü Çuhadar
- Department of Psychiatric Nursing, Faculty of Health Sciences, Gaziantep University, Gaziantep, Turkey
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Fiorio M, Braga M, Marotta A, Villa-Sánchez B, Edwards MJ, Tinazzi M, Barbiani D. Functional neurological disorder and placebo and nocebo effects: shared mechanisms. Nat Rev Neurol 2022; 18:624-635. [PMID: 36075980 DOI: 10.1038/s41582-022-00711-z] [Citation(s) in RCA: 8] [Impact Index Per Article: 4.0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Accepted: 08/04/2022] [Indexed: 11/09/2022]
Abstract
Functional neurological disorder (FND) is characterized by neurological symptoms that cannot be explained by a structural neurological cause. Among the different aetiological models that have been proposed for FND, of note is the Bayesian predictive coding model, which posits that perception relies on top-down cortical predictions (priors) to infer the source of incoming sensory information. This model can also apply to non-pathological experiences, such as placebo and nocebo effects, wherein sensory information is shaped by prior expectations and learning. To date, most studies of the relationship between placebo and nocebo effects and FND have focused on the use of placebos for diagnosis and treatment of FND. Here, we propose that this relationship might go beyond diagnosis and therapy. We develop a framework in which shared cognitive, personality and neuroanatomical factors justify the consideration of a deeper link between FND and placebo and nocebo effects. This new perspective might offer guidance for clarification of the pathogenesis of FND and for the identification of potential biomarkers and therapeutic targets.
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Affiliation(s)
- Mirta Fiorio
- Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, Verona, Italy.
| | - Miriam Braga
- Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, Verona, Italy
| | - Angela Marotta
- Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, Verona, Italy
| | | | - Mark J Edwards
- Institute of Molecular and Clinical Sciences, St George's University of London, London, UK
| | - Michele Tinazzi
- Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, Verona, Italy
| | - Diletta Barbiani
- Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, Verona, Italy
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Kerr WT, Tatekawa H, Lee JK, Karimi AH, Sreenivasan SS, O'Neill J, Smith JM, Hickman LB, Savic I, Nasrullah N, Espinoza R, Narr K, Salamon N, Beimer NJ, Hadjiiski LM, Eliashiv DS, Stacey WC, Engel J, Feusner JD, Stern JM. Clinical MRI morphological analysis of functional seizures compared to seizure-naïve and psychiatric controls. Epilepsy Behav 2022; 134:108858. [PMID: 35933959 DOI: 10.1016/j.yebeh.2022.108858] [Citation(s) in RCA: 7] [Impact Index Per Article: 3.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 05/03/2022] [Revised: 06/26/2022] [Accepted: 07/15/2022] [Indexed: 11/15/2022]
Abstract
PURPOSE Functional seizures (FS), also known as psychogenic nonepileptic seizures (PNES), are physical manifestations of acute or chronic psychological distress. Functional and structural neuroimaging have identified objective signs of this disorder. We evaluated whether magnetic resonance imaging (MRI) morphometry differed between patients with FS and clinically relevant comparison populations. METHODS Quality-screened clinical-grade MRIs were acquired from 666 patients from 2006 to 2020. Morphometric features were quantified with FreeSurfer v6. Mixed-effects linear regression compared the volume, thickness, and surface area within 201 regions-of-interest for 90 patients with FS, compared to seizure-naïve patients with depression (n = 243), anxiety (n = 68), and obsessive-compulsive disorder (OCD, n = 41), respectively, and to other seizure-naïve controls with similar quality MRIs, accounting for the influence of multiple confounds including depression and anxiety based on chart review. These comparison populations were obtained through review of clinical records plus research studies obtained on similar scanners. RESULTS After Bonferroni-Holm correction, patients with FS compared with seizure-naïve controls exhibited thinner bilateral superior temporal cortex (left 0.053 mm, p = 0.014; right 0.071 mm, p = 0.00006), thicker left lateral occipital cortex (0.052 mm, p = 0.0035), and greater left cerebellar white-matter volume (1085 mm3, p = 0.0065). These findings were not accounted for by lower MRI quality in patients with FS. CONCLUSIONS These results reinforce prior indications of structural neuroimaging correlates of FS and, in particular, distinguish brain morphology in FS from that in depression, anxiety, and OCD. Future work may entail comparisons with other psychiatric disorders including bipolar and schizophrenia, as well as exploration of brain structural heterogeneity within FS.
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Affiliation(s)
- Wesley T Kerr
- Department of Neurology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA; Department of Neurology, Michigan Medicine, University of Michigan, Ann Arbor, MI, USA; Department of Psychiatry and Biobehavioral Sciences, University of California Los Angeles, Los Angeles, CA, USA.
| | - Hiroyuki Tatekawa
- Department of Radiology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA
| | - John K Lee
- Department of Neurology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA
| | - Amir H Karimi
- Department of Neurology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA; Department of Psychiatry and Biobehavioral Sciences, University of California Los Angeles, Los Angeles, CA, USA
| | - Siddhika S Sreenivasan
- Department of Neurology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA; Department of Psychiatry and Biobehavioral Sciences, University of California Los Angeles, Los Angeles, CA, USA
| | - Joseph O'Neill
- Division of Child & Adolescent Psychiatry, Jane & Terry Semel Institute for Neuroscience and Human Behavior, University of California, Los Angeles, CA, USA; Brain Research Institute, University of California Los Angeles, Los Angeles, CA, USA
| | - Jena M Smith
- Department of Neurology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA
| | - L Brian Hickman
- Department of Neurology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA
| | - Ivanka Savic
- Department of Women's and Children's Health, Karolinska Institute and Neurology Clinic, Karolinksa University Hospital, Karolinska Universitetssjukhuset, Stockholm, Sweden
| | - Nilab Nasrullah
- Department of Women's and Children's Health, Karolinska Institute and Neurology Clinic, Karolinksa University Hospital, Karolinska Universitetssjukhuset, Stockholm, Sweden
| | - Randall Espinoza
- Department of Psychiatry and Biobehavioral Sciences, University of California Los Angeles, Los Angeles, CA, USA
| | - Katherine Narr
- Department of Psychiatry and Biobehavioral Sciences, University of California Los Angeles, Los Angeles, CA, USA
| | - Noriko Salamon
- Department of Radiology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA
| | - Nicholas J Beimer
- Department of Neurology, Michigan Medicine, University of Michigan, Ann Arbor, MI, USA; Department of Psychiatry, Michigan Medicine, University of Michigan, Ann Arbor, MI, USA
| | - Lubomir M Hadjiiski
- Department of Radiology, Michigan Medicine, University of Michigan, Ann Arbor, MI, USA
| | - Dawn S Eliashiv
- Department of Neurology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA
| | - William C Stacey
- Department of Neurology, Michigan Medicine, University of Michigan, Ann Arbor, MI, USA; Department of Biomedical Engineering, University of Michigan, Ann Arbor, MI, USA
| | - Jerome Engel
- Department of Neurology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA; Department of Psychiatry and Biobehavioral Sciences, University of California Los Angeles, Los Angeles, CA, USA; Brain Research Institute, University of California Los Angeles, Los Angeles, CA, USA; Department of Neurobiology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA
| | - Jamie D Feusner
- Department of Psychiatry and Biobehavioral Sciences, University of California Los Angeles, Los Angeles, CA, USA; Centre for Addiction and Mental Health, Toronto, Canada; Department of Psychiatry, University of Toronto, Toronto, Canada; Department of Women's and Children's Health, Karolinska Institutet, Stockholm, Sweden
| | - John M Stern
- Department of Neurology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA
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11
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Che Y, Fang D, Cai L, Ran H, Chen L, Wang S, Peng J, Sun H, Liang X, Xiao Y. Mediation of Resilience in the Association Between Personality Traits and Suicidal Ideation Among Chinese Adolescents. Front Psychol 2022; 13:898318. [PMID: 35719471 PMCID: PMC9204167 DOI: 10.3389/fpsyg.2022.898318] [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: 03/17/2022] [Accepted: 05/06/2022] [Indexed: 11/13/2022] Open
Abstract
A positive connection has been established between personality traits and suicidal ideation (SI). However, the possible mediation of resilience within this association has never been thoroughly discussed. In this study, we aimed to investigate this topic by using population-based cross-sectional survey data of 4,489 Chinese children and adolescents. A self-administered questionnaire was used to collect information from the participants. Univariate and multivariate logistic regression models were adopted to measure the crude and adjusted associations between personality traits, SI, and resilience. Path analysis was performed to evaluate the mediation of resilience in the association between personality traits and SI. For 4,489 study subjects, the mean age was 13.4 years, ethnic minorities accounted for 71.8%, and over a half (54.6%) were middle school students. The reported prevalence rates for 1-week, 1-year, and lifetime SI were 27.6% (95% CI: 24.9%, 30.0%), 35.5% (95% CI: 30.8%, 41.0%), and 56.7% (95% CI: 52.3%, 61.0%), respectively. Girls reported a significantly higher prevalence of SI than boys. Path analysis results revealed a prominent mediation of resilience; moreover, for different dimensions of personality traits, the proportion of mediation by resilience varied. Our major findings suggest that resilience-based intervention measures could be considered in preventing personality traits related to suicidal risk among youngsters. For children and adolescents, the measuring of personality dimensions may also be helpful in targeting key subpopulations of intervention priority.
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Affiliation(s)
- Yusan Che
- Department of Epidemiology and Health Statistics, School of Public Health, Kunming Medical University, Kunming, China
| | - Die Fang
- Department of Epidemiology and Health Statistics, School of Public Health, Kunming Medical University, Kunming, China
| | - Le Cai
- Department of Epidemiology and Health Statistics, School of Public Health, Kunming Medical University, Kunming, China
| | - Hailiang Ran
- Department of Epidemiology and Health Statistics, School of Public Health, Kunming Medical University, Kunming, China
| | - Lin Chen
- Department of Epidemiology and Health Statistics, School of Public Health, Kunming Medical University, Kunming, China
| | - Sifan Wang
- Department of Epidemiology and Health Statistics, School of Public Health, Kunming Medical University, Kunming, China
| | - Junwei Peng
- Department of Epidemiology and Health Statistics, School of Public Health, Kunming Medical University, Kunming, China
| | - Hao Sun
- Department of Epidemiology and Health Statistics, School of Public Health, Kunming Medical University, Kunming, China
| | - Xuemeng Liang
- Department of Epidemiology and Health Statistics, School of Public Health, Kunming Medical University, Kunming, China
| | - Yuanyuan Xiao
- Department of Epidemiology and Health Statistics, School of Public Health, Kunming Medical University, Kunming, China
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12
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Finkelstein SA, Adams C, Tuttle M, Saxena A, Perez DL. Neuropsychiatric Treatment Approaches for Functional Neurological Disorder: A How to Guide. Semin Neurol 2022; 42:204-224. [PMID: 35189644 DOI: 10.1055/s-0042-1742773] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/22/2022]
Abstract
There is a growing body of knowledge regarding management of functional neurological disorder (FND). The aim of this article is to guide the clinician through FND clinical management, from delivery of the diagnosis, to creation of a biopsychosocially-informed treatment plan, to troubleshooting common issues that arise throughout longitudinal care. We review the evidence and core principles of both rehabilitative therapies (physical therapy, occupational therapy, and speech and language therapy) and psychological therapies for the treatment of FND, and discuss the benefits of engaging a multidisciplinary and interdisciplinary team. The optimal timing of specific therapeutic interventions is also discussed, emphasizing a patient-centered perspective. Resources for further reading, for both patients and clinicians, are provided throughout. Additional research is needed to further optimize the therapeutic approach to patients with FND, including the need to develop novel treatments for those that do not positively respond to currently available interventions.
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Affiliation(s)
- Sara A Finkelstein
- Functional Neurological Disorder Unit, Division of Cognitive Behavioral Neurology, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts
| | - Caitlin Adams
- Functional Neurological Disorder Unit, Division of Cognitive Behavioral Neurology, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts.,Inpatient Psychiatry, Department of Psychiatry, Mass General Brigham Salem Hospital, Salem, Massachusetts
| | - Margaret Tuttle
- Functional Neurological Disorder Unit, Division of Cognitive Behavioral Neurology, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts.,Primary Care Psychiatry, Department of Psychiatry, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts
| | - Aneeta Saxena
- Functional Neurological Disorder Unit, Division of Cognitive Behavioral Neurology, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts.,Epilepsy Division, Boston Medical Center, Boston University School of Medicine, Boston, Massachusetts
| | - David L Perez
- Functional Neurological Disorder Unit, Division of Cognitive Behavioral Neurology, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts.,Division of Neuropsychiatry, Department of Psychiatry, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts
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13
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Paredes-Echeverri S, Guthrie AJ, Perez DL. Toward a possible trauma subtype of functional neurological disorder: Impact on symptom severity and physical health. Front Psychiatry 2022; 13:1040911. [PMID: 36458126 PMCID: PMC9706184 DOI: 10.3389/fpsyt.2022.1040911] [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] [Received: 09/09/2022] [Accepted: 10/25/2022] [Indexed: 11/16/2022] Open
Abstract
BACKGROUND As a group, individuals with functional neurological disorder (FND) report an approximately 3-fold increase in adverse life experiences (ALEs) compared to healthy controls. In patients with FND, studies have identified a positive correlation between symptom severity and the magnitude of ALEs. While not all individuals with FND report ALEs, such findings raise the possibility of a trauma-subtype of FND. OBJECTIVE This study investigated if patients with FND, with or without probable post-traumatic stress disorder (PTSD) and/or significant childhood maltreatment, differed in their symptom severity and physical health. MATERIALS AND METHODS Seventy-eight patients with FND were recruited (functional seizures, n = 34; functional movement disorder, n = 56). Participants completed self-report measures of symptom severity [Somatoform Dissociation Questionniare-20 (SDQ-20), Screening for Somatoform Disorders: Conversion Disorder subscale (SOMS:CD), Patient Health Questionniare-15 (PHQ-15)], physical health [Short Form Health Survey-36 (SF36-physical health)], childhood maltreatment [Childhood Trauma Questionnaire (CTQ)], and PTSD [PTSD Checklist-5 (PCL-5)]; a psychometric battery of other common predisposing vulnerabilities was also completed. To adjust for multiple comparisons, a Bonferroni correction was applied to all univariate analyses. RESULTS Patients with FND and probable PTSD (n = 33) vs. those without probable PTSD (n = 43) had statistically significant increased scores on all symptom severity measures - as well as decreased physical health scores. In secondary post-hoc regression analyses, these findings remained significant adjusting for age, sex, race, college education, and: pathological dissociation; alexithymia; attachment styles; personality characteristics; resilience scores; functional seizures subtype; or moderate-to-severe childhood abuse and neglect scores; SOMS:CD and SDQ-20 findings also held adjusting for depression and anxiety scores. In a separate set of analyses, patients with FND and moderate-to-severe childhood abuse (n = 46) vs. those without moderate-to-severe childhood abuse (n = 32) showed statistically significant increased SDQ-20 and PHQ-15 scores; in post-hoc regressions, these findings held adjusting for demographic and other variables. Stratification by childhood neglect did not relate to symptom severity or physical health scores. CONCLUSION This study provides support for a possible trauma-subtype of FND. Future research should investigate the neurobiological and treatment relevance of a FND trauma-subtype, as well as continuing to delineate clinical characteristics and mechanisms in individuals with FND that lack a history of ALEs.
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Affiliation(s)
- Sara Paredes-Echeverri
- Functional Neurological Disorder Research Group, Department of Neurology, Massachusetts General Hospital and Harvard Medical School, Boston, MA, United States
| | - Andrew J Guthrie
- Functional Neurological Disorder Research Group, Department of Neurology, Massachusetts General Hospital and Harvard Medical School, Boston, MA, United States
| | - David L Perez
- Functional Neurological Disorder Research Group, Department of Neurology, Massachusetts General Hospital and Harvard Medical School, Boston, MA, United States.,Functional Neurological Disorder Unit, Division of Cognitive Behavioral Neurology, Department of Neurology, Massachusetts General Hospital and Harvard Medical School, Boston, MA, United States.,Division of Neuropsychiatry, Department of Psychiatry, Massachusetts General Hospital and Harvard Medical School, Boston, MA, United States
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14
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Perez DL, Aybek S, Popkirov S, Kozlowska K, Stephen CD, Anderson J, Shura R, Ducharme S, Carson A, Hallett M, Nicholson TR, Stone J, LaFrance WC, Voon V. A Review and Expert Opinion on the Neuropsychiatric Assessment of Motor Functional Neurological Disorders. J Neuropsychiatry Clin Neurosci 2021; 33:14-26. [PMID: 32778007 DOI: 10.1176/appi.neuropsych.19120357] [Citation(s) in RCA: 51] [Impact Index Per Article: 17.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 11/30/2022]
Abstract
Functional neurological (conversion) disorder (FND) is a prevalent and disabling condition at the intersection of neurology and psychiatry. Advances have been made in elucidating an emerging pathophysiology for motor FND, as well as in identifying evidenced-based physiotherapy and psychotherapy treatments. Despite these gains, important elements of the initial neuropsychiatric assessment of functional movement disorders (FND-movt) and functional limb weakness/paresis (FND-par) have yet to be established. This is an important gap from both diagnostic and treatment planning perspectives. In this article, the authors performed a narrative review to characterize clinically relevant variables across FND-movt and FND-par cohorts, including time course and symptom evolution, precipitating factors, medical and family histories, psychiatric comorbidities, psychosocial factors, physical examination signs, and adjunctive diagnostic tests. Thereafter, the authors propose a preliminary set of clinical content that should be assessed during early-phase patient encounters, in addition to identifying physical signs informing diagnosis and potential use of adjunctive tests for challenging cases. Although clinical history should not be used to make a FND diagnosis, characteristics such as acute onset, precipitating events (e.g., injury and surgery), and a waxing and waning course (including spontaneous remissions) are commonly reported. Active psychiatric symptoms (e.g., depression and anxiety) and ongoing psychosocial stressors also warrant evaluation. Positive physical examination signs (e.g., Hoover's sign and tremor entrainment) are key findings, as one of the DSM-5 diagnostic criteria. The neuropsychiatric assessment proposed emphasizes diagnosing FND by using "rule-in" physical signs while also considering psychiatric and psychosocial factors to aid in the development of a patient-centered treatment plan.
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Affiliation(s)
- David L Perez
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Selma Aybek
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Stoyan Popkirov
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Kasia Kozlowska
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Christopher D Stephen
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Jordan Anderson
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Robert Shura
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Simon Ducharme
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Alan Carson
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Mark Hallett
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Timothy R Nicholson
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Jon Stone
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - W Curt LaFrance
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
| | - Valerie Voon
- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
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- Departments of Neurology and Psychiatry, Cognitive Behavioral Neurology and Neuropsychiatry Units, Massachusetts General Hospital, Harvard Medical School, Boston (Perez); Department of Neurology, Functional Neurological Disorders Clinic, University Hospital Inselspital and Clinical Neurosciences, Bern University, Bern, Switzerland (Aybek); Department of Neurology, University Hospital Knappschaftskrankenhaus Bochum, Bochum, Germany (Popkirov); Children's Hospital at Westmead, New South Wales, Australia (Kozlowska); Discipline of Psychiatry, University of Sydney Medical School, Sydney, Australia (Kozlowska); Department of Neurology, Movement Disorders Unit, Massachusetts General Hospital, Harvard Medical School, Boston (Stephen); Departments of Neurology and Psychiatry, Alpert Medical School, Brown University, Rhode Island Hospital, Providence, R.I. (Anderson, LaFrance); VA Mid-Atlantic Mental Illness, Research, Education, and Clinical Center, Salisbury, N.C. (Shura); Mental Health and Behavioral Sciences Service Line, Salisbury Veterans Affairs Medical Center, Salisbury, N.C. (Shura); Department of Neurology, Wake Forest School of Medicine, Winston-Salem, N.C. (Shura); McConnell Brain Imaging Center, Montreal Neurological Institute, McGill University, Montreal (Ducharme); Department of Psychiatry, McGill University Health Center, Montreal (Ducharme); Center for Clinical Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom (Carson, Stone); Human Motor Control Section, National Institute of Neurological Disorders and Stroke Intramural Research Program, Bethesda, Md. (Hallett); Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology and Neuroscience, King's College London (Nicholson); Behavioural and Clinical Neuroscience Institute, Cambridge, United Kingdom (Voon); and Department of Psychiatry, University of Cambridge, Cambridge, United Kingdom (Voon)
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15
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Cuoco S, Nisticò V, Cappiello A, Scannapieco S, Gambini O, Barone P, Erro R, Demartini B. Attachment styles, identification of feelings and psychiatric symptoms in functional neurological disorders. J Psychosom Res 2021; 147:110539. [PMID: 34091378 DOI: 10.1016/j.jpsychores.2021.110539] [Citation(s) in RCA: 9] [Impact Index Per Article: 3.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 02/11/2021] [Revised: 05/28/2021] [Accepted: 05/28/2021] [Indexed: 11/27/2022]
Abstract
OBJECTIVE The contribution of psychological and psychiatric symptoms in the development of Functional Neurological Disorders (FND) is unclear. We therefore aimed to investigate the role of different attachment styles (AS) and their relationship with psychiatric symptoms in FND patients as compared with both subjects with neurological disorders (ND) and healthy controls (HC); and the possible differences between patients with functional movement disorders (FMD) and with functional seizures. METHODS In this case-control study, forty-six patients with FND were compared to 34 with ND and 30 HC, by means of an extensive battery to investigate the presence of alexithymia, depression, anxiety, dissociation and to explore their AS using the Revised Experiences in Close Relationships instrument (ECR-R). RESULTS Patients with FND had higher depression and alexithymia as well as an avoidant pattern on the ECR-R than patients with ND. In the FND group, ECR-R avoidance was an independent predictor of psychiatric symptoms and, altogether, ECR-R avoidance, the somatic-affective component of depression and difficulty identifying feelings were independent predictors of FND. Gender, anxiety and difficulty identifying feelings predicted the presence of functional seizures. CONCLUSION The avoidant AS may be an important psychological factor influencing the presence of mood disorders and alexithymia. Their co-occurence might drive maladaptive responses underlying the presence of FND. Although we demonstrated a large overlap between FND phenotypes, patients with functional seizures might have higher alexithymia, which in turn could explain a defensive response less anchored to body reactions and physical symptoms.
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Affiliation(s)
- S Cuoco
- Neuroscience Section, Department of Medicine, Surgery and Dentistry "ScuolaMedicaSalernitana", University of Salerno, Italy.
| | - V Nisticò
- Dipartimento di Scienze della Salute, University of Milan, Italy; Aldo Ravelli' Research Center for Neurotechnology and Experimental Brain Therapeutics, University of Milan, Italy
| | - A Cappiello
- Neuroscience Section, Department of Medicine, Surgery and Dentistry "ScuolaMedicaSalernitana", University of Salerno, Italy
| | - S Scannapieco
- Neuroscience Section, Department of Medicine, Surgery and Dentistry "ScuolaMedicaSalernitana", University of Salerno, Italy
| | - O Gambini
- Dipartimento di Scienze della Salute, University of Milan, Italy; Aldo Ravelli' Research Center for Neurotechnology and Experimental Brain Therapeutics, University of Milan, Italy; Unità di Psichiatria II, Presidio San Paolo, ASST Santi Paolo e Carlo, Milano, Italy
| | - P Barone
- Neuroscience Section, Department of Medicine, Surgery and Dentistry "ScuolaMedicaSalernitana", University of Salerno, Italy
| | - R Erro
- Neuroscience Section, Department of Medicine, Surgery and Dentistry "ScuolaMedicaSalernitana", University of Salerno, Italy
| | - B Demartini
- Dipartimento di Scienze della Salute, University of Milan, Italy; Aldo Ravelli' Research Center for Neurotechnology and Experimental Brain Therapeutics, University of Milan, Italy; Unità di Psichiatria II, Presidio San Paolo, ASST Santi Paolo e Carlo, Milano, Italy
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16
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Differentiating Functional Cognitive Disorder from Early Neurodegeneration: A Clinic-Based Study. Brain Sci 2021; 11:brainsci11060800. [PMID: 34204389 PMCID: PMC8234331 DOI: 10.3390/brainsci11060800] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/19/2021] [Revised: 06/11/2021] [Accepted: 06/13/2021] [Indexed: 11/22/2022] Open
Abstract
Functional cognitive disorder (FCD) is a relatively common cause of cognitive symptoms, characterised by inconsistency between symptoms and observed or self-reported cognitive functioning. We aimed to improve the clinical characterisation of FCD, in particular its differentiation from early neurodegeneration. Two patient cohorts were recruited from a UK-based tertiary cognitive clinic, diagnosed following clinical assessment, investigation and expert multidisciplinary team review: FCD, (n = 21), and neurodegenerative Mild Cognitive Impairment (nMCI, n = 17). We separately recruited a healthy control group (n = 25). All participants completed an assessment battery including: Hopkins Verbal Learning Test-Revised (HVLT-R), Trail Making Test Part B (TMT-B); Depression Anxiety and Stress Scale (DASS) and Minnesota Multiphasic Personality Inventory (MMPI-2RF). In comparison to healthy controls, the FCD and nMCI groups were equally impaired on trail making, immediate recall, and recognition tasks; had equally elevated mood symptoms; showed similar aberration on a range of personality measures; and had similar difficulties on inbuilt performance validity tests. However, participants with FCD performed significantly better than nMCI on HVLT-R delayed free recall and retention (regression coefficient −10.34, p = 0.01). Mood, personality and certain cognitive abilities were similarly altered across nMCI and FCD groups. However, those with FCD displayed spared delayed recall and retention, in comparison to impaired immediate recall and recognition. This pattern, which is distinct from that seen in prodromal neurodegeneration, is a marker of internal inconsistency. Differentiating FCD from nMCI is challenging, and the identification of positive neuropsychometric features of FCD is an important contribution to this emerging area of cognitive neurology.
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17
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Balachandran N, Goodman AM, Allendorfer JB, Martin AN, Tocco K, Vogel V, LaFrance WC, Szaflarski JP. Relationship between neural responses to stress and mental health symptoms in psychogenic nonepileptic seizures after traumatic brain injury. Epilepsia 2020; 62:107-119. [PMID: 33238045 DOI: 10.1111/epi.16758] [Citation(s) in RCA: 19] [Impact Index Per Article: 4.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/04/2020] [Revised: 10/20/2020] [Accepted: 10/20/2020] [Indexed: 12/19/2022]
Abstract
OBJECTIVE To utilize traumatic brain injury (TBI) as a model for investigating functioning during acute stress experiences in psychogenic nonepileptic seizures (PNES) and to identify neural mechanisms underlying the link between changes in processing of stressful experiences and mental health symptoms in PNES. METHODS We recruited 94 participants: 50 with TBI only (TBI-only) and 44 with TBI and PNES (TBI + PNES). Participants completed mood (Beck Depression Inventory-II), anxiety (Beck Anxiety Inventory), and posttraumatic stress disorder (PTSD) symptom (PTSD Checklist-Specific Event) assessments before undergoing functional magnetic resonance imaging during an acute psychosocial stress task. Linear mixed-effects analyses identified clusters of significant interactions between group and neural responses to stressful math performance and stressful auditory feedback conditions within limbic brain regions (volume-corrected α = .05). Spearman rank correlation tests compared mean cluster signals to symptom assessments (false discovery rate-corrected α = .05). RESULTS Demographic and TBI-related measures were similar between groups; TBI + PNES demonstrated worse clinical symptom severity compared to TBI-only. Stressful math performance induced relatively greater reactivity within dorsomedial prefrontal cortex (PFC) and right hippocampal regions and relatively reduced reactivity within left hippocampal and dorsolateral PFC regions for TBI + PNES compared to TBI-only. Stressful auditory feedback induced relatively reduced reactivity within ventral PFC, cingulate, hippocampal, and amygdala regions for TBI + PNES compared to TBI-only. Changes in responses to stressful math within hippocampal and dorsal PFC regions were correlated with increased mood, anxiety, and PTSD symptom severity. SIGNIFICANCE Corticolimbic functions underlying processing of stressful experiences differ between patients with TBI + PNES and those with TBI-only. Relationships between these neural responses and symptom assessments suggest potential pathophysiologic mechanisms in PNES.
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Affiliation(s)
- Neha Balachandran
- Department of Neurology, UAB Epilepsy Center, University of Alabama at Birmingham, Birmingham, AL, USA.,Departments of Neurobiology and Psychology, University of Alabama at Birmingham, Birmingham, AL, USA
| | - Adam M Goodman
- Department of Neurology, UAB Epilepsy Center, University of Alabama at Birmingham, Birmingham, AL, USA
| | - Jane B Allendorfer
- Department of Neurology, UAB Epilepsy Center, University of Alabama at Birmingham, Birmingham, AL, USA
| | - Amber N Martin
- Department of Neurology, UAB Epilepsy Center, University of Alabama at Birmingham, Birmingham, AL, USA
| | - Krista Tocco
- Providence Veterans Administration Medical Center, Rhode Island Hospital, Brown University, Providence, RI, USA
| | - Valerie Vogel
- Providence Veterans Administration Medical Center, Rhode Island Hospital, Brown University, Providence, RI, USA
| | - W Curt LaFrance
- Providence Veterans Administration Medical Center, Rhode Island Hospital, Brown University, Providence, RI, USA
| | - Jerzy P Szaflarski
- Department of Neurology, UAB Epilepsy Center, University of Alabama at Birmingham, Birmingham, AL, USA
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18
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Masi G, Madonia U, Ferrari A, Sicca F, Brovedani P, D'Acunto G, Mucci M, Lenzi F. Psychopathological features in referred adolescents with psychogenic nonepileptic seizures with or without epilepsy. Epilepsy Behav 2020; 112:107431. [PMID: 32911302 DOI: 10.1016/j.yebeh.2020.107431] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 07/01/2020] [Revised: 08/11/2020] [Accepted: 08/15/2020] [Indexed: 01/25/2023]
Abstract
Psychogenic nonepileptic seizures (PNES) are episodic manifestations that mimic epileptic seizures (ES) although not associated with electroencephalogram (EEG) abnormalities. Psychogenic nonepileptic seizures and ES, however, can often cooccur. Emotional distress in adolescents can trigger PNES, but the psychopathological and personality features are still unknown. The aim of this study was to explore psychopathological features in a sample of referred youth with PNES, with or without ES, compared with a control group with ES. Thirty-four patients aged 12 to 21 years, 19 females and 15 males, were included in the study, 15 patients with PNES, 7 with PNES and ES, and 12 with ES. The three groups were compared according to psychiatric categorical diagnoses, psychopathological dimensions, life stressors, and personality traits, including alexithymia, interpersonal reactivity, and resilience, all assessed with structured measures. Patients with PNES, with or without ES, were more severely impaired, had a higher incidence of mood disorders, more frequent lifetime traumatic experiences, and lower resilience. All the three groups presented alexythimic traits and emotional dysregulation. Major limitations are the small sample size and the lack of a control group of healthy subjects. Disentagling psychopathological characteristics in PNES can help clinicians to focus diagnostic approaches and therapeutic interventions.
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Affiliation(s)
- Gabriele Masi
- IRCCS Stella Maris, Scientific Institute of Child Neurology and Psychiatry, Calambrone, Pisa, Italy.
| | - Ursula Madonia
- IRCCS Stella Maris, Scientific Institute of Child Neurology and Psychiatry, Calambrone, Pisa, Italy
| | - Annarita Ferrari
- IRCCS Stella Maris, Scientific Institute of Child Neurology and Psychiatry, Calambrone, Pisa, Italy
| | - Federico Sicca
- IRCCS Stella Maris, Scientific Institute of Child Neurology and Psychiatry, Calambrone, Pisa, Italy
| | - Paola Brovedani
- IRCCS Stella Maris, Scientific Institute of Child Neurology and Psychiatry, Calambrone, Pisa, Italy
| | - Giulia D'Acunto
- IRCCS Stella Maris, Scientific Institute of Child Neurology and Psychiatry, Calambrone, Pisa, Italy
| | - Maria Mucci
- IRCCS Stella Maris, Scientific Institute of Child Neurology and Psychiatry, Calambrone, Pisa, Italy
| | - Francesca Lenzi
- IRCCS Stella Maris, Scientific Institute of Child Neurology and Psychiatry, Calambrone, Pisa, Italy
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19
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Stone J, Warlow C, Deary I, Sharpe M. Predisposing Risk Factors for Functional Limb Weakness: A Case-Control Study. J Neuropsychiatry Clin Neurosci 2020; 32:50-57. [PMID: 31466514 DOI: 10.1176/appi.neuropsych.19050109] [Citation(s) in RCA: 20] [Impact Index Per Article: 5.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 11/30/2022]
Abstract
OBJECTIVE Functional limb weakness is a common symptom of functional neurological disorder. Few controlled studies have examined possible predisposing factors to determine their specificity for this symptom. METHODS In this prospective case-control study, patients with functional limb weakness (<2 years duration, N=107) were compared with a control group (comprising patients with weakness attributable to neurological disease, N=46, and healthy individuals, N=39). A structured clinical interview and questionnaires assessed potential predisposing factors, including family structure and childhood abuse and neglect (Childhood Trauma Questionnaire [CTQ]), personality traits (NEO Five-Factor Inventory), medical and surgical comorbidity, and exposure to a symptom model. RESULTS The patients with functional limb weakness and the control subjects were similar in gender and age. Self-reported childhood sexual abuse (15% versus 5%, p<0.01), and physical abuse (18% versus 7%, p<0.01; CTQ "moderate or above") were more common in the functional limb weakness group, although the absolute frequency was lower than anticipated. In the functional limb weakness group, there were modest differences in two personality traits, compared with the control group: higher neuroticism (p=0.02) and lower openness (p=0.01). Medical comorbidity, including appendectomy (33% versus 5%), irritable bowel syndrome (36% versus 18%), and chronic back pain (40% versus 16%), was more frequent in the functional limb weakness group. There were no differences in birth order or exposure to a symptom model. CONCLUSIONS Medical and surgical comorbidity and adverse childhood experience are risk factors, but not essential, for the development of functional limb weakness. However, evidence for personality traits or exposure to a symptom model is less robust.
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Affiliation(s)
- Jon Stone
- The Centre for Clinical Brain Sciences, University of Edinburgh, Royal Infirmary, Edinburgh, United Kingdom (Stone, Warlow); the Centre for Cognitive Ageing and Cognitive Epidemiology, University of Edinburgh, United Kingdom (Deary); the Department of Psychological Medicine Research, University of Oxford, United Kingdom (Sharpe)
| | - Charles Warlow
- The Centre for Clinical Brain Sciences, University of Edinburgh, Royal Infirmary, Edinburgh, United Kingdom (Stone, Warlow); the Centre for Cognitive Ageing and Cognitive Epidemiology, University of Edinburgh, United Kingdom (Deary); the Department of Psychological Medicine Research, University of Oxford, United Kingdom (Sharpe)
| | - Ian Deary
- The Centre for Clinical Brain Sciences, University of Edinburgh, Royal Infirmary, Edinburgh, United Kingdom (Stone, Warlow); the Centre for Cognitive Ageing and Cognitive Epidemiology, University of Edinburgh, United Kingdom (Deary); the Department of Psychological Medicine Research, University of Oxford, United Kingdom (Sharpe)
| | - Michael Sharpe
- The Centre for Clinical Brain Sciences, University of Edinburgh, Royal Infirmary, Edinburgh, United Kingdom (Stone, Warlow); the Centre for Cognitive Ageing and Cognitive Epidemiology, University of Edinburgh, United Kingdom (Deary); the Department of Psychological Medicine Research, University of Oxford, United Kingdom (Sharpe)
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20
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Goodman AM, Allendorfer JB, Blum AS, Bolding MS, Correia S, Ver Hoef LW, Gaston TE, Grayson LE, Kraguljac NV, Lahti AC, Martin AN, Monroe WS, Philip NS, Tocco K, Vogel V, LaFrance WC, Szaflarski JP. White matter and neurite morphology differ in psychogenic nonepileptic seizures. Ann Clin Transl Neurol 2020; 7:1973-1984. [PMID: 32991786 PMCID: PMC7545605 DOI: 10.1002/acn3.51198] [Citation(s) in RCA: 22] [Impact Index Per Article: 5.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/14/2020] [Revised: 08/10/2020] [Accepted: 08/24/2020] [Indexed: 12/25/2022] Open
Abstract
OBJECTIVE To further evaluate the relationship between the clinical profiles and limbic and motor brain regions and their connecting pathways in psychogenic nonepileptic seizures (PNES). Neurite Orientation Dispersion and Density Indices (NODDI) multicompartment modeling was used to test the relationships between tissue alterations in patients with traumatic brain injury (TBI) and multiple psychiatric symptoms. METHODS The sample included participants with prior TBI (TBI; N = 37) but no PNES, and with TBI and PNES (TBI + PNES; N = 34). Participants completed 3T Siemens Prisma MRI high angular resolution imaging diffusion protocol. Statistical maps, including fractional anisotropy (FA), mean diffusivity (MD), neurite dispersion [orientation dispersion index (ODI)] and density [intracellular volume fraction (ICVF), and free water (i.e., isotropic) volume fraction (V-ISO)] signal intensity, were generated for each participant. Linear mixed-effects models identified clusters of between-group differences in indices of white matter changes. Pearson's r correlation tests assessed any relationship between signal intensity and psychiatric symptoms. RESULTS Compared to TBI, TBI + PNES revealed decreases in FA, ICVF, and V-ISO and increases in MD for clusters within cingulum bundle, uncinate fasciculus, fornix/stria terminalis, and corticospinal tract pathways (cluster threshold α = 0.05). Indices of white matter changes for these clusters correlated with depressive, anxiety, PTSD, psychoticism, and somatization symptom severity (FDR threshold α = 0.05). A follow-up within-group analysis revealed that these correlations failed to reach the criteria for significance in the TBI + PNES group alone. INTERPRETATION The results expand support for the hypothesis that alterations in pathways comprising the specific PNES network correspond to patient profiles. These findings implicate myelin-specific changes as possible contributors to PNES, thus introducing novel potential treatment targets.
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Affiliation(s)
- Adam M. Goodman
- Department of Neurology and the UAB Epilepsy CenterUniversity of Alabama at BirminghamBirminghamAlabamaUSA
| | - Jane B. Allendorfer
- Department of Neurology and the UAB Epilepsy CenterUniversity of Alabama at BirminghamBirminghamAlabamaUSA
| | - Andrew S. Blum
- Department of NeurologyRhode Island HospitalProvidenceRhode IslandUSA
- Brown UniversityProvidenceRhode IslandUSA
| | - Mark S. Bolding
- Department of RadiologyUniversity of Alabama at BirminghamBirminghamAlabamaUSA
| | - Stephen Correia
- Brown UniversityProvidenceRhode IslandUSA
- Department of Psychiatry and Human BehaviorAlpert Medical SchoolBrown UniversityRhode Island HospitalProvidenceRhode IslandUSA
- Center for Neurorestoration and NeurotechnologyProvidence VA Medical CenterProvidenceRhode IslandUSA
| | - Lawrence W. Ver Hoef
- Department of Neurology and the UAB Epilepsy CenterUniversity of Alabama at BirminghamBirminghamAlabamaUSA
- Birmingham VA Medical CenterBirminghamAlabamaUSA
| | - Tyler E. Gaston
- Department of Neurology and the UAB Epilepsy CenterUniversity of Alabama at BirminghamBirminghamAlabamaUSA
- Birmingham VA Medical CenterBirminghamAlabamaUSA
| | - Leslie E. Grayson
- Department of Neurology and the UAB Epilepsy CenterUniversity of Alabama at BirminghamBirminghamAlabamaUSA
- Birmingham VA Medical CenterBirminghamAlabamaUSA
- Children’s of AlabamaUniversity of Alabama at BirminghamBirminghamAlabamaUSA
| | - Nina V. Kraguljac
- Department of Psychiatry and Behavioral NeurobiologyUniversity of Alabama at BirminghamBirminghamAlabamaUSA
| | - Adrienne C. Lahti
- Department of Psychiatry and Behavioral NeurobiologyUniversity of Alabama at BirminghamBirminghamAlabamaUSA
- Departments of Neurobiology and NeurosurgeryUniversity of Alabama at BirminghamBirminghamAlabamaUSA
| | - Amber N. Martin
- Department of Neurology and the UAB Epilepsy CenterUniversity of Alabama at BirminghamBirminghamAlabamaUSA
| | - William S. Monroe
- Department of Research ComputingUniversity of Alabama at BirminghamBirminghamAlabamaUSA
| | - Noah S. Philip
- Brown UniversityProvidenceRhode IslandUSA
- Center for Neurorestoration and NeurotechnologyProvidence VA Medical CenterProvidenceRhode IslandUSA
| | - Krista Tocco
- Department of NeurologyRhode Island HospitalProvidenceRhode IslandUSA
- Brown UniversityProvidenceRhode IslandUSA
- Center for Neurorestoration and NeurotechnologyProvidence VA Medical CenterProvidenceRhode IslandUSA
| | - Valerie Vogel
- Department of NeurologyRhode Island HospitalProvidenceRhode IslandUSA
- Brown UniversityProvidenceRhode IslandUSA
- Center for Neurorestoration and NeurotechnologyProvidence VA Medical CenterProvidenceRhode IslandUSA
| | - W. Curt LaFrance
- Center for Neurorestoration and NeurotechnologyProvidence VA Medical CenterProvidenceRhode IslandUSA
- Departments of Psychiatry and NeurologyRhode Island Hospital and Brown UniversityProvidenceRhode IslandUSA
| | - Jerzy P. Szaflarski
- Department of Neurology and the UAB Epilepsy CenterUniversity of Alabama at BirminghamBirminghamAlabamaUSA
- Children’s of AlabamaUniversity of Alabama at BirminghamBirminghamAlabamaUSA
- Departments of Neurobiology and NeurosurgeryUniversity of Alabama at BirminghamBirminghamAlabamaUSA
- Comprehensive Neuroscience CenterUniversity of Alabama at BirminghamBirminghamAlabamaUSA
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21
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Saxena A, Godena E, Maggio J, Perez DL. Towards an Outpatient Model of Care for Motor Functional Neurological Disorders: A Neuropsychiatric Perspective. Neuropsychiatr Dis Treat 2020; 16:2119-2134. [PMID: 32982250 PMCID: PMC7509337 DOI: 10.2147/ndt.s247119] [Citation(s) in RCA: 10] [Impact Index Per Article: 2.5] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Download PDF] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 07/14/2020] [Accepted: 08/26/2020] [Indexed: 12/17/2022] Open
Abstract
Functional neurological disorder (FND), a condition at the intersection of neurology and psychiatry, is a common and disabling outpatient referral to neurology and neuropsychiatry clinics. In this perspective article, we focus on the motor spectrum of FND (mFND), including individuals with functional movement disorders (FND-movt), functional limb weakness/paresis (FND-par) and functional [psychogenic non-epileptic/dissociative] seizures (FND-seiz). Over the past several decades, there have been dedicated efforts within the neurologic and psychiatric communities to create "rule-in" diagnostic criteria, as well as thoughtful approaches to the clinical interview, delivery of the diagnosis and the development of a patient-centered treatment plan. These advances allow the promotion of good clinical practices in the outpatient assessment and management of mFND. Informed by the literature and our prior clinical experiences, we provide suggestions on how to evaluate individuals with suspected functional motor symptoms - including conducting sensitive psychiatric and psychosocial screenings. Additional sections discuss common "rule-in" neurological examination and semiologic signs of motor FND, as well as approaches to deliver the diagnosis and formulate a treatment plan based on individual patient needs. To aid the development of shared (partially overlapping) expertise that catalyzes an interdisciplinary approach to mFND, the use of physiotherapy for therapeutic motor retraining and cognitive behavioral therapy to examine relationships between symptoms, thoughts, behaviors and emotions are also discussed. Additional clinical research is needed to further refine and operationalize the assessment and management of mFND, across clinics, healthcare settings and countries.
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Affiliation(s)
- Aneeta Saxena
- Functional Neurological Disorder Clinical and Research Program, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA
- Epilepsy Division, Department of Neurology, Boston Medical Center, Boston University School of Medicine, Boston, MA, USA
| | - Ellen Godena
- Functional Neurological Disorder Clinical and Research Program, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA
| | - Julie Maggio
- Functional Neurological Disorder Clinical and Research Program, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA
- Department of Physical Therapy, Massachusetts General Hospital, Boston, MA, USA
| | - David L Perez
- Functional Neurological Disorder Clinical and Research Program, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA
- Division of Neuropsychiatry, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA
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22
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Moenter A. Being in touch: The potential benefits and the use of attuned touch in psychotherapy for functional neurological symptoms (FNS). EUROPEAN JOURNAL OF TRAUMA & DISSOCIATION 2020. [DOI: 10.1016/j.ejtd.2020.100161] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/17/2022]
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23
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De Berardis D, Fornaro M, Valchera A, Rapini G, Di Natale S, De Lauretis I, Serroni N, Orsolini L, Tomasetti C, Bustini M, Carano A, Vellante F, Perna G, Core L, Alessandrini M, Fraticelli S, Martinotti G, Di Giannantonio M. Alexithymia, resilience, somatic sensations and their relationships with suicide ideation in drug naïve patients with first-episode major depression: An exploratory study in the "real world" everyday clinical practice. Early Interv Psychiatry 2020; 14:336-342. [PMID: 31402575 DOI: 10.1111/eip.12863] [Citation(s) in RCA: 29] [Impact Index Per Article: 7.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 03/29/2019] [Revised: 06/20/2019] [Accepted: 07/14/2019] [Indexed: 12/15/2022]
Abstract
AIM The present study is aimed at revaluating alexithymia, somatic sensations, resilience and their relationships with suicide ideation in drug naïve adult outpatients suffering from first episode major depression (MD). METHODS Data of 103 adult outpatients (49 men, 56 women) with a diagnostic and statistical manual of mental disorders, 4th edition, text revision (DSM-IV-TR) diagnosis of MD were analysed. Alexithymia was measured using the 20-item Toronto Alexithymia Scale (TAS-20) and resilience with the 25 items Connor-Davidson Resilience Scale (CD-RISC) whereas depression was evaluated using the 17-item Hamilton Depression Rating Scale, somatic sensations with the Body Sensations Questionnaire and suicide ideation with Scale of Suicide Ideation (SSI). RESULTS Gender comparisons between all demographic and clinical variables showed no significant differences in all variables. Subjects who were found positive for alexithymia showed higher scores on all clinical variables controlling for age, gender and duration of the current episode. In a linear regression model, lower scores on CD-RISC and Difficulty in Identifying Feelings dimension of TAS-20 were significantly predictive of higher scores on SSI. CONCLUSIONS Alexithymia and low resilience were significant predictors of increased suicide ideation in a first MD episode. However, study limitations must be considered and future research needs are being discussed.
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Affiliation(s)
- Domenico De Berardis
- NHS, Department of Mental Health, Psychiatric Service of Diagnosis and Treatment, Hospital "G. Mazzini," ASL 4, Teramo, Italy.,Department of Neurosciences and Imaging, Chair of Psychiatry, University "G. D'Annunzio", Chieti, Italy
| | - Michele Fornaro
- Neuroscience, Reproductive Science and Odontostolmatology, Section of Psychiatry, University School of Medicine Federico II, Naples, Italy.,Polyedra Research Group, Teramo, Italy
| | - Alessandro Valchera
- Polyedra Research Group, Teramo, Italy.,School of Life and Medical Sciences, University of Hertfordshire, Hatfield, UK.,Villa S. Giuseppe Hospital, Hermanas Hospitalarias, Ascoli Piceno, Italy
| | - Gabriella Rapini
- NHS, Department of Mental Health, Psychiatric Service of Diagnosis and Treatment, Hospital "G. Mazzini," ASL 4, Teramo, Italy
| | - Serena Di Natale
- NHS, Department of Mental Health, Psychiatric Service of Diagnosis and Treatment, Hospital "G. Mazzini," ASL 4, Teramo, Italy
| | - Ida De Lauretis
- Department of Neurosciences and Imaging, Chair of Psychiatry, University "G. D'Annunzio", Chieti, Italy
| | - Nicola Serroni
- Department of Neurosciences and Imaging, Chair of Psychiatry, University "G. D'Annunzio", Chieti, Italy
| | - Laura Orsolini
- Polyedra Research Group, Teramo, Italy.,School of Life and Medical Sciences, University of Hertfordshire, Hatfield, UK.,Villa S. Giuseppe Hospital, Hermanas Hospitalarias, Ascoli Piceno, Italy
| | - Carmine Tomasetti
- Laboratory of Molecular Psychiatry and Psychopharmacotherapeutics, Section of Psychiatry, Department of Neuroscience, University School of Medicine "Federico II", Naples, Italy
| | | | - Alessandro Carano
- NHS, Department of Mental Health, Psychiatric Service of Diagnosis and Treatment, Hospital "Madonna Del Soccorso", San Benedetto del Tronto, Italy
| | - Federica Vellante
- Department of Neurosciences and Imaging, Chair of Psychiatry, University "G. D'Annunzio", Chieti, Italy
| | - Giampaolo Perna
- Hermanas Hospitalarias, FoRiPsi, Department of Clinical Neurosciences, Villa San Benedetto Menni, Albese con Cassano, Italy.,Department of Psychiatry and Neuropsychology, University of Maastricht, Maastricht, The Netherlands.,Department of Psychiatry and Behavioral Sciences, Leonard Miller School of Medicine, University of Miami, Miami, Florida
| | - Laura Core
- NHS, Department of Mental Health, Center of Mental Health, ASL 4, Giulianova, Italy
| | - Marco Alessandrini
- Department of Neurosciences and Imaging, Chair of Psychiatry, University "G. D'Annunzio", Chieti, Italy
| | - Silvia Fraticelli
- Department of Neurosciences and Imaging, Chair of Psychiatry, University "G. D'Annunzio", Chieti, Italy
| | - Giovanni Martinotti
- Department of Neurosciences and Imaging, Chair of Psychiatry, University "G. D'Annunzio", Chieti, Italy
| | - Massimo Di Giannantonio
- Department of Neurosciences and Imaging, Chair of Psychiatry, University "G. D'Annunzio", Chieti, Italy
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Ranford J, MacLean J, Alluri PR, Comeau O, Godena E, LaFrance WC, Hunt A, Stephen CD, Perez DL. Sensory Processing Difficulties in Functional Neurological Disorder: A Possible Predisposing Vulnerability? PSYCHOSOMATICS 2020; 61:343-352. [PMID: 32284249 DOI: 10.1016/j.psym.2020.02.003] [Citation(s) in RCA: 16] [Impact Index Per Article: 4.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Subscribe] [Scholar Register] [Received: 01/12/2020] [Revised: 02/07/2020] [Accepted: 02/10/2020] [Indexed: 02/07/2023]
Abstract
BACKGROUND Functional neurological disorder (FND) is a prevalent neuropsychiatric condition characterized by sensorimotor difficulties. Patients with FND at times report that sensory experiences trigger and/or exacerbate their symptoms. Sensory processing difficulties are also commonly reported in other psychiatric disorders frequently comorbid in FND, suggesting that contextualizing sensory profiles in FND within a biopsychosocial model may be clinically relevant. OBJECTIVE To address this literature gap, we conducted a retrospective cohort study to examine sensory processing patterns and their relationship to other neuropsychiatric characteristics in patients with FND. METHODS A retrospective chart review design was used to investigate sensory processing patterns, established with the Adolescent/Adult Sensory Profile self-report questionnaire, in 44 patients with FND. Univariate analyses of cross-sectional screening tests followed by multivariate linear regression analyses were performed to identify clinical factors associated with sensory processing scores in the FND cohort. RESULTS Compared to normative data, most patients with FND reported sensory processing tendencies toward low registration, sensory sensitivity, and sensation avoiding. In multivariate regression analyses, the presence of a lifetime anxiety disorder independently predicted elevated low registration scores, while female gender and number of current medications independently predicted increased sensory sensitivity scores. In uncorrected univariate analyses only, individuals with psychogenic nonepileptic seizures were more likely to report increased sensory sensitivity and elevated low registration. CONCLUSION These preliminary findings support sensory processing difficulties in some patients with FND. Prospective and large sample size studies are needed to investigate relationships between sensory processing profiles and neuropsychiatric comorbidities, FND subtypes, and treatment outcomes.
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Affiliation(s)
- Jessica Ranford
- Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA; Department of Occupational Therapy, Massachusetts General Hospital, Harvard Medical School, Boston, MA
| | - Julie MacLean
- Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA; Department of Occupational Therapy, Massachusetts General Hospital, Harvard Medical School, Boston, MA
| | - Priyanka R Alluri
- Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA
| | - Olivia Comeau
- Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA
| | - Ellen Godena
- Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA
| | - W Curt LaFrance
- Neuropsychiatry and Behavioral Neurology Division, Departments of Psychiatry and Neurology, Rhode Island Hospital, Alpert Medical School, Brown University, Providence, RI
| | - Ann Hunt
- Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA; Movement Disorders Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA
| | - Christopher D Stephen
- Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA; Movement Disorders Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA
| | - David L Perez
- Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston, MA; Neuropsychiatry Unit, Department of Psychiatry, Massachusetts General Hospital, Harvard Medical School, Boston, MA.
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25
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Sipilä R, Kalso E, Lötsch J. Machine-learned identification of psychological subgroups with relation to pain interference in patients after breast cancer treatments. Breast 2020; 50:71-80. [PMID: 32066081 PMCID: PMC7375580 DOI: 10.1016/j.breast.2020.01.042] [Citation(s) in RCA: 8] [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: 11/06/2019] [Revised: 01/20/2020] [Accepted: 01/27/2020] [Indexed: 12/18/2022] Open
Abstract
Background Persistent pain in breast cancer survivors is common. Psychological and sleep-related factors modulate perception, interpretation and coping with pain and may contribute to the clinical phenotype. The present analysis pursued the hypothesis that breast cancer survivors form subgroups, based on psychological and sleep-related parameters that are relevant to the impact of pain on the patients’ life. Methods We analysed 337 women treated for breast cancer, in whom psychological and sleep-related parameters as well as parameters related to pain intensity and interference had been acquired. Data were analysed by using supervised and unsupervised machine-learning techniques (i) to detect patient subgroups based on the pattern of psychological or sleep-related parameters, (ii) to interpret the detected cluster structure and (iii) to relate this data structure to pain interference and impact on life. Results Artificial intelligence-based detection of data structure, implemented as self-organizing neuronal maps, identified two different clusters of patients. A smaller cluster (11.5% of the patients) had comparatively lower resilience, more depressive symptoms and lower extraversion than the other patients. In these patients, life-satisfaction, mood, and life in general were comparatively more impeded by persistent pain. Conclusions The results support the initial hypothesis that psychological and sleep-related parameter patterns are meaningful for subgrouping patients with respect to how persistent pain after breast cancer treatments interferes with their life. This indicates that management of pain should address more complex features than just pain intensity. Artificial intelligence is a useful tool in the identification of subgroups of patients based on psychological factors. Pain interference with daily life is relevant for post-surgery breast cancer patients. 11.5% of 337 patients belonged to a subgroup with high life interference of pain. Life interference was not a function of pain intensity. Risk factors were lower resilience, more depressive symptoms and lower extraversion. Life-satisfaction, mood, and life in general were impeded by persistent pain.
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Affiliation(s)
- Reetta Sipilä
- Pain Clinic, Department of Anaesthesiology, Intensive Care and Pain Medicine, University of Helsinki, Helsinki University Central Hospital, Helsinki, Finland
| | - Eija Kalso
- Pain Clinic, Department of Anaesthesiology, Intensive Care and Pain Medicine, University of Helsinki, Helsinki University Central Hospital, Helsinki, Finland
| | - Jörn Lötsch
- Institute of Clinical Pharmacology, Goethe - University, Theodor - Stern - Kai 7, 60590, Frankfurt Am Main, Germany; Fraunhofer Institute for Molecular Biology and Applied Ecology IME, Project Group Translational Medicine and Pharmacology TMP, Theodor - Stern - Kai 7, 60590, Frankfurt Am Main, Germany.
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Gray C, Calderbank A, Adewusi J, Hughes R, Reuber M. Symptoms of posttraumatic stress disorder in patients with functional neurological symptom disorder. J Psychosom Res 2020; 129:109907. [PMID: 31901839 DOI: 10.1016/j.jpsychores.2019.109907] [Citation(s) in RCA: 23] [Impact Index Per Article: 5.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 04/15/2019] [Revised: 12/16/2019] [Accepted: 12/16/2019] [Indexed: 01/22/2023]
Abstract
OBJECTIVE To describe prevalence and relevance of Post-Traumatic Stress Disorder (PTSD) symptoms in Functional Neurological Symptom Disorder (FNSD) and explore differences in PTSD symptom scores between subgroups with Psychogenic Non-Epileptic Seizures (PNES) or other FNSD. METHODS This cross-sectional study evaluated data from 430 consecutive patients referred to a specialist psychotherapy service (69.3% female, 56% with PNES/44% with other FNSD). We analysed self-reported symptoms of Post-Traumatic Stress Disorder (PTSD Civilian Checklist, PCLC), depression (PHQ-9), anxiety (GAD-7), physical symptoms (PHQ-15), social functioning (WSAS), and health related quality of life (SF-36). Relationships between PTSD scores, diagnosis and other measures were examined. Independent associations of PTSD scores were identified using multilinear regression. RESULTS Symptom scores likely to indicate clinical PTSD were reported by 60.7% of patients with no difference between PNES and FNSD subgroups. Those potentially symptomatic of PTSD were less likely to be living with a partner OR 2.95 (95% CI 1.83-4.04), or to be in employment OR 2.23 (95% CI 1.46-3.41) than less symptomatic patients. There were higher levels of anxiety (r = 0.62), depression (r = 0.63) and somatic symptoms (r = 0.45) and lower quality of life scores (r = 0.48) in patients with high PTSD symptom scores (p < .0001 for all comparisons). Anxiety, depression and somatic symptoms made independent contributions to the variance of PTSD symptoms. CONCLUSION There is a high prevalence of PTSD symptoms in patient with FNSD regardless of whether they have PNES. Trauma and PTSD symptoms are negatively correlated with quality of life. Self-report instruments for anxiety, depression and somatic symptoms may predict the presence of PTSD.
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Affiliation(s)
- Cordelia Gray
- Neurology Psychotherapy Service, Sheffield Teaching Hospital, Sheffield, UK; Academic Neurology Unit, University of Sheffield, Sheffield, UK.
| | - Alex Calderbank
- Academic Neurology Unit, University of Sheffield, Sheffield, UK
| | - Joy Adewusi
- Academic Neurology Unit, University of Sheffield, Sheffield, UK
| | - Rhiannon Hughes
- Academic Neurology Unit, University of Sheffield, Sheffield, UK
| | - Markus Reuber
- Academic Neurology Unit, University of Sheffield, Sheffield, UK
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Hamed SA, Attiah FA, Fawzy M. Psychogenic nonepileptic seizures in adults with epilepsy: a tertiary hospital-based study. Int J Neurosci 2019; 130:522-532. [PMID: 31771384 DOI: 10.1080/00207454.2019.1698566] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/08/2022]
Affiliation(s)
- Sherifa Ahmed Hamed
- Department of Neurology and Psychiatry, Assiut University Hospital, Assiut, Egypt
| | - Fadia Ahmed Attiah
- Department of Neurology and Psychiatry, Assiut University Hospital, Assiut, Egypt
| | - Mohamad Fawzy
- Department of Neurology and Psychiatry, Assiut University Hospital, Assiut, Egypt
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28
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Gelauff JM, Rosmalen JGM, Gardien J, Stone J, Tijssen MAJ. Shared demographics and comorbidities in different functional motor disorders. Parkinsonism Relat Disord 2019; 70:1-6. [PMID: 31785442 DOI: 10.1016/j.parkreldis.2019.11.018] [Citation(s) in RCA: 20] [Impact Index Per Article: 4.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 04/29/2019] [Revised: 11/19/2019] [Accepted: 11/21/2019] [Indexed: 11/29/2022]
Abstract
INTRODUCTION Functional motor disorders are often delineated according to the dominant motor symptom. In a large cohort, we aimed to find if there were differences in demographics, mode of onset, pain, fatigue, depression and anxiety and levels of physical functioning, quality of life and social adjustment between patients with different dominant motor symptoms. METHODS Baseline data from the Self-Help and Education on the Internet for Functional Motor Disorders Trial was used. Patients were divided into dominant motor symptom groups based on the diagnosis of the referring neurologist. Data on the above topics were collected by means of an online questionnaire and compared between groups using parametric and nonparametric statistics. RESULTS In 160 patients a dominant motor symptom could be determined, 31 had tremor, 45 myoclonus, 23 dystonia, 30 paresis, 31 gait disorder. No statistical differences between groups were detected for demographics, mode of onset and severity of pain, fatigue, depression and anxiety. Physical functioning was worse in the gait disorder group (median 20, IQR 25) compared to tremor (50 (55), p = 0.002) and myoclonus (50 (52), p = 0.001). Work and social adjustment was less impaired in the myoclonus group (median 20, IQR 18) compared to gait disorder (median 30, IQR18, p < 0.001) and paresis (28, IQR 10, p = 0.001). Self-report showed large overlap in motor symptoms. CONCLUSION No differences were detected between groups of functional motor symptoms, regarding demographics, mode of onset, depression, anxiety, pain and fatigue. The large overlap in symptoms contributes to the hypothesis of shared underlying mechanisms of functional motor disorders.
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Affiliation(s)
- J M Gelauff
- University of Groningen, University Medical Center Groningen, Department of Neurology, the Netherlands
| | - J G M Rosmalen
- University of Groningen, University Medical Center Groningen, Department of Psychiatry, the Netherlands; University of Groningen, University Medical Center Groningen, Department of Internal Medicine, the Netherlands
| | - J Gardien
- University of Groningen, University Medical Center Groningen, Department of Neurology, the Netherlands
| | - J Stone
- University of Edinburgh, Centre for Clinical Brain Sciences, Edinburgh, United Kingdom
| | - M A J Tijssen
- University of Groningen, University Medical Center Groningen, Department of Neurology, the Netherlands.
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Individual differences in social network size linked to nucleus accumbens and hippocampal volumes in functional neurological disorder: A pilot study. J Affect Disord 2019; 258:50-54. [PMID: 31394458 PMCID: PMC6783807 DOI: 10.1016/j.jad.2019.07.061] [Citation(s) in RCA: 11] [Impact Index Per Article: 2.2] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 04/23/2019] [Revised: 07/07/2019] [Accepted: 07/29/2019] [Indexed: 01/16/2023]
Abstract
BACKGROUND In the biopsychosocial formulation of functional neurological (conversion) disorder (FND), little is known about relationships between social behavior and brain anatomy. We hypothesized that social behavior would relate to brain areas implicated in affiliative behaviors and that social network size would correlate with symptom severity and predisposing vulnerabilities in FND. METHODS This neuroimaging pilot probed how social network size, as measured by the Social Network Index, related to structural brain profiles in 23 patients with motor FND (15 woman and 8 men). FreeSurfer cortical thickness and subcortical volumetric analyses were performed correcting for multiple comparisons. Stratified analyses compared FND patients with a low social network size to matched healthy controls. Secondary exploratory analyses in an expanded sample of 38 FND patients investigated relationships between social network size, risk factors and patient-reported symptom severity. RESULTS Adjusting for age and gender, neuroimaging analyses showed that social network size positively correlated with left nucleus accumbens and hippocampal volumes in patients with FND; stratified analyses did not show any group-level differences. In individuals with FND, social network size correlated with health-related quality of life, graduating college, working full-time and a non-epileptic seizure diagnosis; social network size inversely related to lifetime trauma burden, post-traumatic stress disorder severity and age. LIMITATIONS Only patient-reported scales were used and social network size information was not collected for healthy subjects. CONCLUSIONS This neuroimaging pilot adds to the literature linking affiliation network brain areas to pro-social behaviors and enhances the biopsychosocial conceptualization of FND.
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Pick S, Goldstein LH, Perez DL, Nicholson TR. Emotional processing in functional neurological disorder: a review, biopsychosocial model and research agenda. J Neurol Neurosurg Psychiatry 2019; 90:704-711. [PMID: 30455406 PMCID: PMC6525039 DOI: 10.1136/jnnp-2018-319201] [Citation(s) in RCA: 159] [Impact Index Per Article: 31.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 07/10/2018] [Revised: 10/20/2018] [Accepted: 10/29/2018] [Indexed: 12/13/2022]
Abstract
Functional neurological disorder (FND) is a common and highly disabling disorder, but its aetiology remains enigmatic. Conceptually, there has been reduced emphasis on the role of psychosocial stressors in recent years, with a corresponding increase in neurobiological explanations. However, a wealth of evidence supports the role of psychosocial adversities (eg, stressful life events, interpersonal difficulties) as important risk factors for FND. Therefore, there is a need to integrate psychosocial (environmental) and neurobiological factors (eg, sensorimotor and cognitive functions) in contemporary models of FND. Altered emotional processing may represent a key link between psychosocial risk factors and core features of FND. Here, we summarise and critically appraise experimental studies of emotional processing in FND using behavioural, psychophysiological and/or neuroimaging measures in conjunction with affective processing tasks. We propose that enhanced preconscious (implicit) processing of emotionally salient stimuli, associated with elevated limbic reactivity (eg, amygdala), may contribute to the initiation of basic affective/defensive responses via hypothalamic and brainstem pathways (eg, periaqueductal grey). In parallel, affect-related brain areas may simultaneously exert a disruptive influence on neurocircuits involved in voluntary motor control, awareness and emotional regulation (eg, sensorimotor, salience, central executive networks). Limbic-paralimbic disturbances in patients with FND may represent one of several neurobiological adaptations linked to early, severe and/or prolonged psychosocial adversity. This perspective integrates neurobiological and psychosocial factors in FND and proposes a research agenda, highlighting the need for replication of existing findings, multimodal sampling across emotional response domains and further examination of emotional influences on sensorimotor and cognitive functions in FND populations.
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Affiliation(s)
- Susannah Pick
- Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology & Neuroscience, King's College London, London, UK
| | - Laura H Goldstein
- Department of Psychology, Institute of Psychiatry, Psychology & Neuroscience, King's College London, London, UK
| | - David L Perez
- Department of Neurology, Functional Neurology Research Group, Cognitive Behavioural Neurology Unit, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts, USA.,Department of Psychiatry, Neuropsychiatry Unit, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts, USA
| | - Timothy R Nicholson
- Section of Cognitive Neuropsychiatry, Institute of Psychiatry, Psychology & Neuroscience, King's College London, London, UK
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31
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Věchetová G, Slovák M, Kemlink D, Hanzlíková Z, Dušek P, Nikolai T, Růžička E, Edwards MJ, Serranová T. The impact of non-motor symptoms on the health-related quality of life in patients with functional movement disorders. J Psychosom Res 2018; 115:32-37. [PMID: 30470314 DOI: 10.1016/j.jpsychores.2018.10.001] [Citation(s) in RCA: 49] [Impact Index Per Article: 8.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 07/03/2018] [Revised: 09/27/2018] [Accepted: 10/09/2018] [Indexed: 10/28/2022]
Abstract
OBJECTIVE Pain, fatigue, cognitive complaints and psychiatric comorbidities are common in patients with functional movement disorder and may significantly affect their quality of life. The aim of the study was to assess the impact of motor and non-motor symptoms on health-related quality of life in patients with functional movement disorder. METHODS Sixty-one patients with clinically established functional movement disorder and 61 matched healthy controls completed standardized questionnaires for depression, anxiety, cognitive complaints, fatigue, pain, sleepiness, apathy and health-related quality of life. Motor disorder severity was assessed using The Simplified Functional Movement Disorders Rating Scale. Personality traits were assessed using the 44-Item Big Five Inventory. RESULTS Compared to controls, patients reported significantly lower health-related quality of life and higher levels of all assessed non-motor symptoms except for apathy. No difference was found in personality traits. In both groups, health-related quality of life scores negatively correlated with depression, anxiety, pain, cognitive complaints, apathy, and neuroticism. No correlation was found between health-related quality of life and motor symptom severity in patients with functional movement disorder. Multiple regression analysis of the predictors of health-related quality of life showed significant impact of trait anxiety and cognitive complaints scores. CONCLUSIONS Multiple non-motor symptoms but not motor symptom severity correlated with impaired health-related quality of life in patients with functional movement disorder. Impaired health-related quality of life was predicted by anxiety and cognitive complaints. Our results highlight the importance of assessing and treating both motor and non-motor symptoms in patients with functional movement disorder.
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Affiliation(s)
- Gabriela Věchetová
- Department of Neurology and Centre of Clinical Neuroscience, General University Hospital and First Faculty of Medicine, Charles University, Prague, Czech Republic
| | - Matěj Slovák
- Department of Neurology and Centre of Clinical Neuroscience, General University Hospital and First Faculty of Medicine, Charles University, Prague, Czech Republic
| | - David Kemlink
- Department of Neurology and Centre of Clinical Neuroscience, General University Hospital and First Faculty of Medicine, Charles University, Prague, Czech Republic
| | - Zuzana Hanzlíková
- Department of Neurology and Centre of Clinical Neuroscience, General University Hospital and First Faculty of Medicine, Charles University, Prague, Czech Republic
| | - Pavel Dušek
- Department of Neurology and Centre of Clinical Neuroscience, General University Hospital and First Faculty of Medicine, Charles University, Prague, Czech Republic
| | - Tomáš Nikolai
- Department of Neurology and Centre of Clinical Neuroscience, General University Hospital and First Faculty of Medicine, Charles University, Prague, Czech Republic
| | - Evžen Růžička
- Department of Neurology and Centre of Clinical Neuroscience, General University Hospital and First Faculty of Medicine, Charles University, Prague, Czech Republic
| | - Mark J Edwards
- Neuroscience Research Centre, Institute of Molecular and Clinical Sciences, St George's University of London, United Kingdom
| | - Tereza Serranová
- Department of Neurology and Centre of Clinical Neuroscience, General University Hospital and First Faculty of Medicine, Charles University, Prague, Czech Republic.
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Williams B, Botero JPO, Jalilianhasanpour R, Fricchione GL, Perez DL. Fearful Attachment Linked to Childhood Abuse, Alexithymia, and Depression in Motor Functional Neurological Disorders. J Neuropsychiatry Clin Neurosci 2018; 31:65-69. [PMID: 30376786 PMCID: PMC6349486 DOI: 10.1176/appi.neuropsych.18040095] [Citation(s) in RCA: 29] [Impact Index Per Article: 4.8] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 12/27/2022]
Abstract
Insecure attachment is a predisposing risk factor for the development of functional neurological disorder (FND). There is limited research investigating connections between attachment styles, other predisposing vulnerabilities, and symptom severity in patients with motor FND. By using a within-group design with prospective data collection, the authors performed univariate tests followed by multivariate linear regressions to investigate neuropsychiatric factors associated with four attachment styles (secure, fearful, preoccupied, and dismissing) among 56 patients with motor FND (mean age=40.2 years [SD=13.0]; women, N=41; men, N=15). In univariate analyses, fearful attachment style was associated with self-reported adverse life event burden, alexithymia, dissociation, depression, anxiety, impaired stress coping skills, functional neurologic symptom severity, and marital status. In a multivariate stepwise linear regression analysis, childhood abuse, alexithymia, depression, and not being married independently predicted fearful attachment. In a post hoc analysis, childhood sexual and emotional abuse were each independently associated with fearful attachment tendencies. There were no independent predictors of secure, preoccupied, or dismissing attachment styles in this study population. Future studies with larger cohorts are needed to investigate nuanced relationships among predisposing vulnerabilities for the development of FND, as well as potential links between risk factors, functional neurologic symptom severity, and clinical outcomes.
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Affiliation(s)
- Benjamin Williams
- Department of Neurology, Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA
| | - Juan Pablo Ospina Botero
- Department of Neurology, Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA
| | - Rozita Jalilianhasanpour
- Department of Neurology, Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA
| | - Gregory L. Fricchione
- Department of Psychiatry, Benson-Henry Institute for Mind Body Medicine, Massachusetts General Hospital, Boston, MA, USA
| | - David L. Perez
- Department of Neurology, Functional Neurology Research Group, Cognitive Behavioral Neurology Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA
- Department of Psychiatry, Neuropsychiatry Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA
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Parkin Kullmann JA, Hayes S, Pamphlett R. Is psychological stress a predisposing factor for amyotrophic lateral sclerosis (ALS)? An online international case-control study of premorbid life events, occupational stress, resilience and anxiety. PLoS One 2018; 13:e0204424. [PMID: 30240431 PMCID: PMC6150536 DOI: 10.1371/journal.pone.0204424] [Citation(s) in RCA: 7] [Impact Index Per Article: 1.2] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/21/2018] [Accepted: 09/09/2018] [Indexed: 12/11/2022] Open
Abstract
Psychological stress has been suggested to be relevant to the pathogenesis of neurodegenerative disorders, possibly via the generation of oxygen free radicals. We therefore sought to determine whether people with amyotrophic lateral sclerosis (ALS) had been subjected to more potentially stressful life events or occupations than controls, and whether they had differences in resilience or trait anxiety that would moderate their responses to these stressors. An online anonymous multilingual questionnaire was used to collect data on significant life events from people with and without ALS, using items from a modified Social Readjustment Rating Scale and from self-described significant events, which were combined to create a Life Events Inventory. Inventory scores were subdivided into 0–20 years and 21–40 years age ranges, and for the preceding 2, 5 and 10 years. Respondents also rated levels of stress experienced during different occupations. Resilience was measured using the Connor-Davidson Resilience Scale, and trait anxiety with a modified Geriatric Anxiety Inventory. Scores were compared using nonparametric statistics. Data from 400 ALS (251 male, 149 female) and 450 control (130 male, 320 female) respondents aged 40 years and over showed that Life Events Inventory scores were similar in male ALS respondents and controls, but lower in female ALS respondents than female controls for the preceding 5-year and 10-year periods. Occupational stress did not differ between ALS respondents and controls. Both male and female ALS respondents had higher resilience scores than controls. Anxiety scores did not differ between ALS and control groups. In conclusion, people with ALS reported no raised levels of potentially stressful premorbid life events or occupational stress, and did not have reduced levels of resilience, or increased levels of anxiety, that would augment the deleterious effects of stressors. On the contrary, ALS respondents had higher resilience than controls, though this conclusion relies on ALS respondents recalling their premorbid status. These results do not support the hypothesis that psychological stress from significant life events or occupational stress plays a role in the pathogenesis of ALS.
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Affiliation(s)
- Jane Alana Parkin Kullmann
- The Stacey Motor Neuron Disease Laboratory, Discipline of Pathology, Brain and Mind Centre, The University of Sydney, Sydney, Australia
| | - Susan Hayes
- Forensic Psychology, Sydney Medical School, The University of Sydney, Sydney, Australia
| | - Roger Pamphlett
- The Stacey Motor Neuron Disease Laboratory, Discipline of Pathology, Brain and Mind Centre, The University of Sydney, Sydney, Australia
- Department of Neuropathology, Royal Prince Alfred Hospital, Sydney, Australia
- * E-mail:
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Secure Attachment and Depression Predict 6-Month Outcome in Motor Functional Neurological Disorders: A Prospective Pilot Study. PSYCHOSOMATICS 2018; 60:365-375. [PMID: 30342702 DOI: 10.1016/j.psym.2018.08.004] [Citation(s) in RCA: 13] [Impact Index Per Article: 2.2] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Subscribe] [Scholar Register] [Received: 05/30/2018] [Revised: 08/03/2018] [Accepted: 08/12/2018] [Indexed: 12/16/2022]
Abstract
BACKGROUND The relationships between baseline neuropsychiatric factors and clinical outcome in patients with functional neurological disorder (FND)/conversion disorder remain poorly understood. OBJECTIVE This prospective, naturalistic pilot study investigated links between predisposing vulnerabilities (risk factors) and clinical outcome in patients with motor FND engaged in usual care within a subspecialty FND clinic. METHODS Thirty-four patients with motor FND were enrolled and completed baseline and 6-month follow-up psychometric questionnaires. Univariate screening tests followed by multivariate linear regression analyses were used to investigate neuropsychiatric predictors of 6-month clinical outcome in patients with motor FND. RESULTS In univariate analyses, baseline secure attachment traits and depression as measured by the Relationship Scales Questionnaire and Beck Depression Inventory-II positively correlated with improved Patient Health Questionnaire-15 scores. In a multivariate linear regression analysis adjusting for the interval time between baseline and follow-up data collection, baseline secure attachment and depression scores independently predicted improvements in Patient Health Questionnaire-15 scores. In additional analyses, patients with a diagnosis of psychogenic nonepileptic seizures compared to individuals with other motor FND subtypes showed a trend toward worse 6-month physical health outcomes as measured by the Short Form Health Survey-36. CONCLUSION Future large-scale, multi-site longitudinal studies are needed to comprehensively investigate neuropsychiatric predictors of clinical outcome in patients with motor FND, including functional weakness, functional movement disorders, and psychogenic nonepileptic seizures.
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