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Gano A, Gold J, Remigio-Baker RA, Monti K. TBICoE approach to concussion rehabilitation in service members and veterans. NeuroRehabilitation 2024:NRE230269. [PMID: 39213095 DOI: 10.3233/nre-230269] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 09/04/2024]
Abstract
BACKGROUND Concussion, also known as mild traumatic brain injury (mTBI), is a condition with unique ties to military service. Service members (SMs) are inherently at a higher risk for concussive injuries due to the intense physical training environment and combat operational tempo required to serve. The Traumatic Brain Injury Center of Excellence (TBICoE) is the US Department of Defense authority on this condition and provides a thorough approach to management of concussion and associated symptom sequela. OBJECTIVES This article seeks to review the TBICoE approach to the management and rehabilitation of military SMs with mTBI, and highlight resources available to military medical providers. METHODS The authors reviewed evidence and TBICoE resources to provide this comprehensive overview of the TBICoE approach to management and rehabilitation of concussion in military SMs. RESULTS A progressive return to activity protocol in conjunction with symptom-guided management of common post-concussive sequelae, including headache, vestibular and oculomotor issues, sleep dysfunction, cognitive rehabilitation, and behavioral health comorbidities are essential for concussion management in the acute, post-acute and chronic phases of injury. CONCLUSION The TBICoE approach to the rehabilitation of military SMs is comprehensive, and includes initial management with a stepwise return to duty protocol and an objective return to duty screening. The mainstays of treatment for SMs with post-acute and chronic post-concussion symptoms are headache management, vestibular and oculomotor rehabilitation, sleep interventions, cognitive rehabilitation, and early intervention for behavioral health comorbidities. These evidence-based strategies may be applied in the treatment of SMs in the US and internationally.
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Affiliation(s)
- Amanda Gano
- Traumatic Brain Injury Center of Excellence, Silver Spring, MD, USA
- General Dynamics Information Technology, Falls Church, VA, USA
| | - Joanne Gold
- Traumatic Brain Injury Center of Excellence, Silver Spring, MD, USA
- Em Key Solutions, St. Petersburg, FL, USA
| | - Rosemay A Remigio-Baker
- Traumatic Brain Injury Center of Excellence, Silver Spring, MD, USA
- Compass Government Solutions, Annapolis, MD, USA
| | - Katrina Monti
- Traumatic Brain Injury Center of Excellence, Silver Spring, MD, USA
- CICONIX LLC, Annapolis, MD, USA
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Wen J, Tanaka M, Zhang Y. Inhibition of 2-AG hydrolysis alleviates posttraumatic headache attributed to mild traumatic brain injury. J Headache Pain 2024; 25:115. [PMID: 39014318 PMCID: PMC11253377 DOI: 10.1186/s10194-024-01817-z] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/02/2024] [Accepted: 06/20/2024] [Indexed: 07/18/2024] Open
Abstract
BACKGROUND Posttraumatic headache (PTH) is a common and debilitating symptom following repetitive mild traumatic brain injury (rmTBI), and it mainly resembles a migraine-like phenotype. While modulation of the endocannabinoid system (ECS) is effective in treating TBI and various types of pain including migraine, the role of augmentation of endocannabinoids in treating PTH has not been investigated. METHODS Repetitive mild TBI was induced in male C57BL/6J mice using the non-invasive close-head impact model of engineered rotational acceleration (CHIMERA). Periorbital allodynia was assessed using von Frey filaments and determined by the "Up-Down" method. Immunofluorescence staining was employed to investigate glial cell activation and calcitonin gene-related peptide (CGRP) expression in the trigeminal ganglion (TG) and trigeminal nucleus caudalis (TNC) of the rmTBI mice. Levels of 2-arachidonoyl glycerol (2-AG), anandamide (AEA), and arachidonic acid (AA) in the TG, medulla (including TNC), and periaqueductal gray (PAG) were measured by mass spectrometry. The therapeutic effect of endocannabinoid modulation on PTH was also assessed. RESULTS The rmTBI mice exhibited significantly increased cephalic pain hypersensitivity compared to the sham controls. MJN110, a potent and selective inhibitor of the 2-AG hydrolytic enzyme monoacylglycerol lipase (MAGL), dose-dependently attenuated periorbital allodynia in the rmTBI animals. Administration of CGRP at 0.01 mg/kg reinstated periorbital allodynia in the rmTBI animals on days 33 and 45 post-injury but had no effect in the sham and MJN110 treatment groups. Activation of glial cells along with increased production of CGRP in the TG and TNC at 7 and 14 days post-rmTBI were attenuated by MJN110 treatment. The anti-inflammatory and anti-nociceptive effects of MJN110 were partially mediated by cannabinoid receptor activation, and the pain-suppressive effect of MJN110 was completely blocked by co-administration of DO34, an inhibitor of 2-AG synthase. The levels of 2-AG in TG, TNC and PAG were decreased in TBI animals, significantly elevated and further reduced by the selective inhibitors of 2-AG hydrolytic and synthetic enzymes, respectively. CONCLUSION Enhancing endogenous levels of 2-AG appears to be an effective strategy for the treatment of PTH by attenuating pain initiation and transmission in the trigeminal pathway and facilitating descending pain inhibitory modulation.
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Affiliation(s)
- Jie Wen
- Department of Anatomy, Physiology and Genetics, Uniformed Services University of the Health Sciences, 4301 Jones Bridge Road, Bethesda, MD, 20814, USA
| | - Mikiei Tanaka
- Department of Anatomy, Physiology and Genetics, Uniformed Services University of the Health Sciences, 4301 Jones Bridge Road, Bethesda, MD, 20814, USA
| | - Yumin Zhang
- Department of Anatomy, Physiology and Genetics, Uniformed Services University of the Health Sciences, 4301 Jones Bridge Road, Bethesda, MD, 20814, USA.
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Kingsford O, Yehya M, Zieman G, Knievel KL. Can Long-Term Outcomes of Posttraumatic Headache be Predicted? Curr Pain Headache Rep 2024; 28:535-545. [PMID: 38713368 DOI: 10.1007/s11916-024-01254-2] [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] [Accepted: 03/31/2024] [Indexed: 05/08/2024]
Abstract
PURPOSE OF REVIEW Headache is one of the most common symptoms of traumatic brain injury, and it is more common in patients with mild, rather than moderate or severe, traumatic brain injury. Posttraumatic headache can be the most persistent symptom of traumatic brain injury. In this article, we review the current understanding of posttraumatic headache, summarize the current knowledge of its pathophysiology and treatment, and review the research regarding predictors of long-term outcomes. RECENT FINDINGS To date, posttraumatic headache has been treated based on the semiology of the primary headache disorder that it most resembles, but the pathophysiology is likely to be different, and the long-term prognosis differs as well. No models exist to predict long-term outcomes, and few studies have highlighted risk factors for the development of acute and persistent posttraumatic headaches. Further research is needed to elucidate the pathophysiology and identify specific treatments for posttraumatic headache to be able to predict long-term outcomes. In addition, the effect of managing comorbid traumatic brain injury symptoms on posttraumatic headache management should be further studied. Posttraumatic headache can be a persistent symptom of traumatic brain injury, especially mild traumatic brain injury. It has traditionally been treated based on the semiology of the primary headache disorder it most closely resembles, but further research is needed to elucidate the pathophysiology of posttraumatic headache and determine risk factors to better predict long-term outcomes.
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Affiliation(s)
- Olivia Kingsford
- Department of Neurology, Barrow Neurological Institute, St. Joseph's Hospital and Medical Center, 350 W Thomas Rd, Phoenix, AZ, 85013, USA
| | - Mustafa Yehya
- Department of Neurology, Barrow Neurological Institute, St. Joseph's Hospital and Medical Center, 350 W Thomas Rd, Phoenix, AZ, 85013, USA
| | - Glynnis Zieman
- Department of Neurology, Barrow Neurological Institute, St. Joseph's Hospital and Medical Center, 350 W Thomas Rd, Phoenix, AZ, 85013, USA
| | - Kerry L Knievel
- Department of Neurology, Barrow Neurological Institute, St. Joseph's Hospital and Medical Center, 350 W Thomas Rd, Phoenix, AZ, 85013, USA.
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Herrero Babiloni A, Bouferguene Y, Exposto FG, Beauregard R, Lavigne GJ, Moana-Filho EJ, Arbour C. The prevalence of persistent post-traumatic headache in adult civilian traumatic brain injury: a systematic review and meta-analysis on the past 14 years. Pain 2023; 164:2627-2641. [PMID: 37390366 DOI: 10.1097/j.pain.0000000000002949] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/27/2022] [Accepted: 03/23/2023] [Indexed: 07/02/2023]
Abstract
ABSTRACT The most recent prevalence estimate of post-traumatic headache (PTH) after traumatic brain injury (TBI) in veterans and civilians dates back to 2008. The prevalence was found to be 57.8%, with surprising higher rates (75.3%) in mild TBI when compared with those with moderate/severe TBI (32.1%). However, the revision of mild TBI diagnostic criteria and an historic peak of TBI in the elderly individuals attributed to the ageing population may lead to different results. Thus, we conducted a systematic review and meta-analysis to assess the updated prevalence of PTH during the past 14 years only in civilians. A literature search was conducted following PRISMA guidelines guided by a librarian. Screening, full-text assessment, data extraction, and risk of bias assessment were performed blindly by 2 raters. Meta-analysis of proportions using the Freeman and Tukey double arcsine method of transformation was conducted. Heterogeneity, sensitivity analysis, and meta-regressions were performed with the predictors: year of publication, mean age, sex, TBI severity, and study design. Sixteen studies were selected for the qualitative analysis and 10 for the meta-analysis. The overall prevalence estimate of PTH was 47.1%, (confidence interval = 34.6, 59.8, prediction intervals = 10.8, 85.4), being similar at different time points (3, 6, 12, and 36+ months). Heterogeneity was high, and none of the meta-regressions were significant. The overall prevalence of PTH after TBI over the past 14 years remains high even if assessed only in civilians. However, the prevalence rates attributed to mild and moderate/severe TBI were similar, differing significantly from previous reports. Efforts are needed to improve TBI outcomes.
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Affiliation(s)
- Alberto Herrero Babiloni
- Division of Experimental Medicine, McGill University, Montréal, QC, Canada
- Hôpital du Sacré-Coeur de Montréal (CIUSSS du Nord de-l'Île-de-Montréal), Montréal, QC, Canada
| | - Yasmine Bouferguene
- Hôpital du Sacré-Coeur de Montréal (CIUSSS du Nord de-l'Île-de-Montréal), Montréal, QC, Canada
| | - Fernando G Exposto
- Section of Orofacial Pain and Jaw Function, Department of Dentistry and Oral Health, Aarhus University, Aarhus, Denmark
- Scandinavian Center for Orofacial Neurosciences (SCON), Aarhus, Denmark
| | - Roxanne Beauregard
- Hôpital du Sacré-Coeur de Montréal (CIUSSS du Nord de-l'Île-de-Montréal), Montréal, QC, Canada
| | - Gilles J Lavigne
- Hôpital du Sacré-Coeur de Montréal (CIUSSS du Nord de-l'Île-de-Montréal), Montréal, QC, Canada
- Faculty of Dental Medicine, Université de Montréal, QC, Canada
| | - Estephan J Moana-Filho
- Division of TMD and Orofacial Pain, School of Dentistry, University of Minnesota, Minneapolis, MN, United States
| | - Caroline Arbour
- Hôpital du Sacré-Coeur de Montréal (CIUSSS du Nord de-l'Île-de-Montréal), Montréal, QC, Canada
- Faculty of Nursing, Université de Montréal, QC, Canada
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Börner C, Staisch J, Lang M, Hauser A, Hannibal I, Huß K, Klose B, Lechner MF, Sollmann N, Heinen F, Landgraf MN, Bonfert MV. Repetitive Neuromuscular Magnetic Stimulation for Pediatric Headache Disorders: Muscular Effects and Factors Affecting Level of Response. Brain Sci 2022; 12:brainsci12070932. [PMID: 35884738 PMCID: PMC9320292 DOI: 10.3390/brainsci12070932] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/09/2022] [Revised: 07/11/2022] [Accepted: 07/12/2022] [Indexed: 02/04/2023] Open
Abstract
Repetitive neuromuscular magnetic stimulation (rNMS) for pediatric headache disorders is feasible, safe, and alleviates headache symptoms. This study assesses muscular effects and factors affecting response to rNMS. A retrospective chart review included children with headaches receiving six rNMS sessions targeting the upper trapezius muscles. Pressure pain thresholds (PPT) were measured before and after rNMS, and at 3-month follow-up (FU). Mean headache frequency, duration, and intensity within the last 3 months were documented. In 20 patients (14.1 ± 2.7 years), PPT significantly increased from pre- to post-treatment (p < 0.001) sustaining until FU. PPT changes significantly differed between primary headache and post-traumatic headache (PTH) (p = 0.019−0.026). Change in headache frequency was significantly higher in patients with than without neck pain (p = 0.032). A total of 60% of patients with neck pain responded to rNMS (≥25%), while 20% of patients without neck pain responded (p = 0.048). 60% of patients receiving rNMS twice a week were responders, while 33% of patients receiving rNMS less or more frequently responded to treatment, respectively. Alleviation of muscular hyperalgesia was demonstrated sustaining for 3 months, which was emphasized in PTH. The rNMS sessions may positively modulate headache symptoms regardless of headache diagnosis. Patients with neck pain profit explicitly well. Two rNMS sessions per week led to the highest reduction in headache frequency.
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Affiliation(s)
- Corinna Börner
- LMU Hospital, Department of Pediatrics—Dr. von Hauner Children’s Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany; (C.B.); (J.S.); (M.L.); (A.H.); (I.H.); (K.H.); (B.K.); (M.F.L.); (F.H.); (M.N.L.)
- LMU Center for Children with Medical Complexity, Dr. von Hauner Children’s Hospital, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany
- Department of Diagnostic and Interventional Neuroradiology, School of Medicine, Klinikum Rechts der Isar, Technical University of Munich, Ismaninger Str. 22, 81675 Munich, Germany;
- TUM-Neuroimaging Center, Klinikum Rechts der Isar, Technical University of Munich, Ismaninger Str. 22, 81675 Munich, Germany
| | - Jacob Staisch
- LMU Hospital, Department of Pediatrics—Dr. von Hauner Children’s Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany; (C.B.); (J.S.); (M.L.); (A.H.); (I.H.); (K.H.); (B.K.); (M.F.L.); (F.H.); (M.N.L.)
- LMU Center for Children with Medical Complexity, Dr. von Hauner Children’s Hospital, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany
| | - Magdalena Lang
- LMU Hospital, Department of Pediatrics—Dr. von Hauner Children’s Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany; (C.B.); (J.S.); (M.L.); (A.H.); (I.H.); (K.H.); (B.K.); (M.F.L.); (F.H.); (M.N.L.)
- LMU Center for Children with Medical Complexity, Dr. von Hauner Children’s Hospital, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany
| | - Ari Hauser
- LMU Hospital, Department of Pediatrics—Dr. von Hauner Children’s Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany; (C.B.); (J.S.); (M.L.); (A.H.); (I.H.); (K.H.); (B.K.); (M.F.L.); (F.H.); (M.N.L.)
- LMU Center for Children with Medical Complexity, Dr. von Hauner Children’s Hospital, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany
| | - Iris Hannibal
- LMU Hospital, Department of Pediatrics—Dr. von Hauner Children’s Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany; (C.B.); (J.S.); (M.L.); (A.H.); (I.H.); (K.H.); (B.K.); (M.F.L.); (F.H.); (M.N.L.)
- LMU Center for Children with Medical Complexity, Dr. von Hauner Children’s Hospital, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany
| | - Kristina Huß
- LMU Hospital, Department of Pediatrics—Dr. von Hauner Children’s Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany; (C.B.); (J.S.); (M.L.); (A.H.); (I.H.); (K.H.); (B.K.); (M.F.L.); (F.H.); (M.N.L.)
- LMU Center for Children with Medical Complexity, Dr. von Hauner Children’s Hospital, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany
| | - Birgit Klose
- LMU Hospital, Department of Pediatrics—Dr. von Hauner Children’s Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany; (C.B.); (J.S.); (M.L.); (A.H.); (I.H.); (K.H.); (B.K.); (M.F.L.); (F.H.); (M.N.L.)
- LMU Center for Children with Medical Complexity, Dr. von Hauner Children’s Hospital, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany
| | - Matthias F. Lechner
- LMU Hospital, Department of Pediatrics—Dr. von Hauner Children’s Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany; (C.B.); (J.S.); (M.L.); (A.H.); (I.H.); (K.H.); (B.K.); (M.F.L.); (F.H.); (M.N.L.)
- LMU Center for Children with Medical Complexity, Dr. von Hauner Children’s Hospital, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany
| | - Nico Sollmann
- Department of Diagnostic and Interventional Neuroradiology, School of Medicine, Klinikum Rechts der Isar, Technical University of Munich, Ismaninger Str. 22, 81675 Munich, Germany;
- TUM-Neuroimaging Center, Klinikum Rechts der Isar, Technical University of Munich, Ismaninger Str. 22, 81675 Munich, Germany
- Department of Diagnostic and Interventional Radiology, University Hospital Ulm, Albert-Einstein-Allee 23, 89081 Ulm, Germany
| | - Florian Heinen
- LMU Hospital, Department of Pediatrics—Dr. von Hauner Children’s Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany; (C.B.); (J.S.); (M.L.); (A.H.); (I.H.); (K.H.); (B.K.); (M.F.L.); (F.H.); (M.N.L.)
- LMU Center for Children with Medical Complexity, Dr. von Hauner Children’s Hospital, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany
| | - Mirjam N. Landgraf
- LMU Hospital, Department of Pediatrics—Dr. von Hauner Children’s Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany; (C.B.); (J.S.); (M.L.); (A.H.); (I.H.); (K.H.); (B.K.); (M.F.L.); (F.H.); (M.N.L.)
- LMU Center for Children with Medical Complexity, Dr. von Hauner Children’s Hospital, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany
| | - Michaela V. Bonfert
- LMU Hospital, Department of Pediatrics—Dr. von Hauner Children’s Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany; (C.B.); (J.S.); (M.L.); (A.H.); (I.H.); (K.H.); (B.K.); (M.F.L.); (F.H.); (M.N.L.)
- LMU Center for Children with Medical Complexity, Dr. von Hauner Children’s Hospital, Ludwig-Maximilians Universität, Lindwurm Str. 4, 80337 Munich, Germany
- Correspondence:
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Segal M. Post-traumatic Headache: Recent Developments and Future Directions. CURRENT PHYSICAL MEDICINE AND REHABILITATION REPORTS 2022. [DOI: 10.1007/s40141-022-00357-4] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 10/17/2022]
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7
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Staisch J, Börner C, Lang M, Hauser A, Hannibal I, Huß K, Klose B, Lechner MF, Sollmann N, Heinen F, Landgraf MN, Bonfert MV. Repetitive neuromuscular magnetic stimulation in children with headache. Eur J Paediatr Neurol 2022; 39:40-48. [PMID: 35660103 DOI: 10.1016/j.ejpn.2022.04.010] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 01/19/2022] [Revised: 03/20/2022] [Accepted: 04/27/2022] [Indexed: 12/25/2022]
Abstract
INTRODUCTION Repetitive neuromuscular magnetic stimulation (rNMS) was previously applied in adult patients with episodic migraine, showing beneficial effects on headache characteristics, high safety, and convincing satisfaction. This study aims to assess rNMS as a personalized intervention in pediatric headache. METHODS Retrospective chart review including patients with migraine, TTH, mixed type headache, or PTH, who had received at least one test rNMS session targeting the upper trapezius muscles (UTM). RESULTS 33 patients (13.9 ± 2.5 years; 61% females) were included in the primary analysis, resulting in a total of 182 rNMS sessions. 43 adverse events were documented for 40 of those sessions (22%). Most common side effects were tingling (32.6%), muscle sore (25.5%), shoulder (9.3%) and back pain (9.3%). Secondly, in patients (n = 20) undergoing the intervention, headache frequency (p = 0.017) and minimum and maximum intensities (p = 0.017; p = 0.023) significantly decreased from baseline to 3-month after intervention. 11 patients (44%) were classified as ≥25% responders, with 7 patients (28%) experiencing a ≥75% reduction of headache days. After 73% of interventions, patients reported rNMS helped very well or well. A majority of patients would repeat (88.5%) and recommend rNMS (96.2%) to other patients. CONCLUSION rNMS seems to meet the criteria of safety, feasibility, and acceptance among children and adolescents with three age-typical headache disorders. A significant reduction in headache frequency and intensity during a 3 months follow-up was documented. Larger, prospective, randomized, sham-controlled studies are urgently needed to confirm if rNMS may become a new valuable non-invasive, non-pharmacological treatment option for pediatric headache disorders.
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Affiliation(s)
- Jacob Staisch
- LMU Hospital, Department of Pediatrics - Dr. von Hauner Children's Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians University, Munich, Germany; LMU Center for Children with Medical Complexity - iSPZ Hauner, Ludwig-Maximilians University, Munich, Germany
| | - Corinna Börner
- LMU Hospital, Department of Pediatrics - Dr. von Hauner Children's Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians University, Munich, Germany; LMU Center for Children with Medical Complexity - iSPZ Hauner, Ludwig-Maximilians University, Munich, Germany; Department of Diagnostic and Interventional Neuroradiology, School of Medicine, Klinikum Rechts der Isar, Technical University of Munich, Munich, Germany; TUM-Neuroimaging Center, Klinikum Rechts der Isar, Technical University of Munich, Munich, Germany
| | - Magdalena Lang
- LMU Hospital, Department of Pediatrics - Dr. von Hauner Children's Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians University, Munich, Germany; LMU Center for Children with Medical Complexity - iSPZ Hauner, Ludwig-Maximilians University, Munich, Germany
| | - Ari Hauser
- LMU Hospital, Department of Pediatrics - Dr. von Hauner Children's Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians University, Munich, Germany; LMU Center for Children with Medical Complexity - iSPZ Hauner, Ludwig-Maximilians University, Munich, Germany
| | - Iris Hannibal
- LMU Hospital, Department of Pediatrics - Dr. von Hauner Children's Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians University, Munich, Germany; LMU Center for Children with Medical Complexity - iSPZ Hauner, Ludwig-Maximilians University, Munich, Germany
| | - Kristina Huß
- LMU Hospital, Department of Pediatrics - Dr. von Hauner Children's Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians University, Munich, Germany; LMU Center for Children with Medical Complexity - iSPZ Hauner, Ludwig-Maximilians University, Munich, Germany
| | - Birgit Klose
- LMU Hospital, Department of Pediatrics - Dr. von Hauner Children's Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians University, Munich, Germany; LMU Center for Children with Medical Complexity - iSPZ Hauner, Ludwig-Maximilians University, Munich, Germany
| | - Matthias F Lechner
- LMU Hospital, Department of Pediatrics - Dr. von Hauner Children's Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians University, Munich, Germany; LMU Center for Children with Medical Complexity - iSPZ Hauner, Ludwig-Maximilians University, Munich, Germany
| | - Nico Sollmann
- Department of Diagnostic and Interventional Neuroradiology, School of Medicine, Klinikum Rechts der Isar, Technical University of Munich, Munich, Germany; TUM-Neuroimaging Center, Klinikum Rechts der Isar, Technical University of Munich, Munich, Germany; Department of Diagnostic and Interventional Radiology, University Hospital Ulm, Ulm, Germany
| | - Florian Heinen
- LMU Hospital, Department of Pediatrics - Dr. von Hauner Children's Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians University, Munich, Germany; LMU Center for Children with Medical Complexity - iSPZ Hauner, Ludwig-Maximilians University, Munich, Germany
| | - Mirjam N Landgraf
- LMU Hospital, Department of Pediatrics - Dr. von Hauner Children's Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians University, Munich, Germany; LMU Center for Children with Medical Complexity - iSPZ Hauner, Ludwig-Maximilians University, Munich, Germany
| | - Michaela V Bonfert
- LMU Hospital, Department of Pediatrics - Dr. von Hauner Children's Hospital, Division of Pediatric Neurology and Developmental Medicine, Ludwig-Maximilians University, Munich, Germany; LMU Center for Children with Medical Complexity - iSPZ Hauner, Ludwig-Maximilians University, Munich, Germany.
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Yi T, Gao P, Zhu T, Yin H, Jin S. Glymphatic System Dysfunction: A Novel Mediator of Sleep Disorders and Headaches. Front Neurol 2022; 13:885020. [PMID: 35665055 PMCID: PMC9160458 DOI: 10.3389/fneur.2022.885020] [Citation(s) in RCA: 10] [Impact Index Per Article: 5.0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/27/2022] [Accepted: 04/13/2022] [Indexed: 11/13/2022] Open
Abstract
Sleep contributes to the maintenance of overall health and well-being. There are a growing number of patients who have headache disorders that are significantly affected by poor sleep. This is a paradoxical relationship, whereby sleep deprivation or excess sleep leads to a worsening of headaches, yet sleep onset also alleviates ongoing headache pain. Currently, the mechanism of action remains controversial and poorly understood. The glymphatic system is a newly discovered perivascular network that encompasses the whole brain and is responsible for removing toxic proteins and waste metabolites from the brain as well as replenishing nutrition and energy. Recent studies have suggested that glymphatic dysfunction is a common underlying etiology of sleep disorders and headache pain. This study reviews the current literature on the relationship between the glymphatic system, sleep, and headaches, discusses their roles, and proposes acupuncture as a non-invasive way to focus on the glymphatic function to improve sleep quality and alleviate headache pain.
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Affiliation(s)
- Ting Yi
- Rehabilitation and Health Preservation School, Chengdu University of TCM, Chengdu, China
| | - Ping Gao
- Rehabilitation and Health Preservation School, Chengdu University of TCM, Chengdu, China
| | - Tianmin Zhu
- Rehabilitation and Health Preservation School, Chengdu University of TCM, Chengdu, China
- Tianmin Zhu
| | - Haiyan Yin
- School of Acupuncture and Tuina, Chengdu University of TCM, Chengdu, China
- *Correspondence: Haiyan Yin
| | - Shuoguo Jin
- Hospital of Chengdu University of Traditional Chinese Medicine, Chengdu, China
- Shuoguo Jin
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9
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Hsiao IH, Hsu SY, Lin MC, Shih PK. Associations between Zygoma Fracture and Post-Traumatic Headache: A Study among Taiwanese Population. J Clin Med 2021; 10:jcm10225377. [PMID: 34830666 PMCID: PMC8619399 DOI: 10.3390/jcm10225377] [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: 09/25/2021] [Revised: 11/14/2021] [Accepted: 11/15/2021] [Indexed: 11/16/2022] Open
Abstract
Few studies have discussed the development of post-traumatic headache (PTH) after zygoma fracture. This research aimed to examine the association between zygoma fracture and PTH and its other associated factors. A total of 3043 patients with zygoma fracture and 3043 patients with non-fracture were included in this analysis. They were matched to a non-fracture cohort from the National Health Insurance database according to age, sex, and index year. The incidence of PTH and its association with zygoma fracture were assessed. The zygoma fracture cohort had a significantly higher cumulative incidence of PTH than the non-fracture cohort in a 10-year follow-up. The confounding risk factors of PTH included zygoma fracture, female sex, and comorbidities, including obesity and depression. Female patients under 40 years old who had zygoma fractures had a higher incidence of PTH than the non-fracture group. Moreover, patients with zygoma fractures commonly developed PTH within three months after injury. Female patients under 40 years old with precedent zygoma fractures had a higher incidence rate of PTH than those without fractures. Moreover, patients with zygoma fractures commonly developed PTH within three months after injury. Nevertheless, before widely applying our results, a prospective study must be conducted to verify the risk factors found in this study.
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Affiliation(s)
- I-Han Hsiao
- Department of Neurosurgery, China Medical University Hospital, Taichung 404, Taiwan;
- Graduate Institute of Acupuncture Science, China Medical University, Taichung 404, Taiwan
| | - Shao-Yun Hsu
- Division of Reconstructive Microsurgery, Department of Plastic and Reconstructive Surgery, Chang Gung Memorial Hospital, College of Medicine, Chang Gung University, Taoyuan 333, Taiwan;
| | - Mei-Chen Lin
- School of Medicine, China Medical University, Taichung 404, Taiwan;
- Management Office for Health Data, China Medical University and Hospital, Taichung 404, Taiwan
| | - Pin-Keng Shih
- School of Medicine, China Medical University, Taichung 404, Taiwan;
- Department of Surgery, China Medical University Hospital, Taichung 404, Taiwan
- Correspondence: ; Tel.: +88-692-165-8698
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McGeary DD, Penzien DB, Resick PA, McGeary CA, Jaramillo CA, Eapen BC, Young-McCaughan S, Nabity PS, Moring JC, Houle TT, Keane TM, Peterson AL. Study design for a randomized clinical trial of cognitive-behavioral therapy for posttraumatic headache. Contemp Clin Trials Commun 2021; 21:100699. [PMID: 33490706 PMCID: PMC7806520 DOI: 10.1016/j.conctc.2021.100699] [Citation(s) in RCA: 5] [Impact Index Per Article: 1.7] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/14/2020] [Revised: 10/06/2020] [Accepted: 01/01/2021] [Indexed: 11/29/2022] Open
Abstract
Posttraumatic headache (PTH) is a common debilitating condition arising from head injury and is highly prevalent among military service members and veterans with traumatic brain injury (TBI). Diagnosis and treatment for PTH is still evolving, and surprisingly little is known about the putative mechanisms that drive these headaches. This manuscript describes the design of a randomized clinical trial of two nonpharmacological (i.e., behavioral) interventions for posttraumatic headache. Design of this trial required careful consideration of PTH diagnosis and inclusion criteria, which was challenging due to the lack of standard clinical characteristics in PTH unique from other types of headaches. The treatments under study differed in clinical focus and dose (i.e., number of treatment sessions), but the trial was designed to balance the treatments as well as possible. Finally, while the primary endpoints for pain research can vary from assessments of pain intensity to objective and subjective functional measures, this trial of PTH interventions chose carefully to establish clinically relevant endpoints and to maximize the opportunity to detect significant differences between groups with two primary outcomes. All these issues are discussed in this manuscript.
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Key Words
- AUDIT, Alcohol Use Disorders Identification Test-Self Report
- B-IPF, Brief Inventory of Psychosocial Functioning
- CAP, Consortium to Alleviate PTSD
- CAPS-5, Clinician-Administered PTSD Scale for DSM-5
- CBT, cognitive-behavioral therapy
- CCBT, clinic-based cognitive-behavioral therapy intervention for headache
- CEQ, Credibility and Expectancy Questionnaire
- CGRP, calcitonin gene-related peptide
- CPRS, Computerized Patient Record System
- CPT, Cognitive Processing Therapy
- CRIS, Community Reintegration of Injured Service Members
- DRRI-2-D, Deployment Risk and Resilience Inventory-2-Deployment Environment
- DRRI-2-P, Deployment Risk and Resilience Inventory-Postbattle Experiences
- DSI-SS, Depressive Symptom Index-Suicide Subscale
- DoD, U.S. Department of Defense
- GAD-7, Generalized Anxiety Disorder Screener
- GLM, general linear mixed
- HIPAA, Health Insurance Portability and Accountability Act
- HIT-6, Headache Impact Test
- HMSE, Headache Management Self-Efficacy Scale
- HSLC, Headache-Specific Locus of Control Scale
- Headache
- ICHD-2, International Classification of Headache Disorders, 2nd Edition
- ICHD-3, International Classification of Headache Disorders, 3rd Edition
- IRB, institutional review board
- ISI, Insomnia Severity Index
- ITT, intent to treat
- LEC-5, Life Events Checklist for DSM-5
- NIH, National Institutes of Health
- NSI, Neurobehavioral Symptom Inventory
- OSU TBI-ID-SF, Ohio State University TBI Identification Method-Interview Form
- PCL-5, PTSD Checklist for DSM-5
- PHQ-15, Patient Health Questionnaire-15
- PHQ-9, Patient Health Questionnaire-9 Item
- PP, per protocol
- PRC, Polytrauma Rehabilitation Center
- PROMIS, Patient-Reported Outcomes Measurement Information System
- PTCI, Posttraumatic Cognitions Inventory
- PTH, posttraumatic headache
- PTHA Study, posttraumatic headache and PTSD study
- PTSD
- PTSD, posttraumatic stress disorder
- Polymorbidity
- QDS, Quick Drinking Screen
- RSES, Response to Stressful Experiences Scale
- SDIH-R, Structured Diagnostic Interview for Headache-Revised, Brief Version
- SITBI, Self-Injurious Thoughts and Behaviors Interview – Short Form
- STOP, Snoring, Tired, Observed, Blood Pressure
- TAU, treatment as usual
- TBI, traumatic brain injury
- Traumatic brain injury
- VA, U.S. Department of Veterans Affairs
- VHCS, Veterans Health Care System
- VR-12, Veterans RAND 12-Item Health Survey
- Veterans
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Affiliation(s)
- Donald D. McGeary
- Department of Psychiatry and Behavioral Sciences, The University of Texas Health Science Center San Antonio, San Antonio, TX, USA
- South Texas Veterans Health Care System, San Antonio, TX, USA
- Department of Rehabilitation Medicine, The University of Texas Health Science Center at San Antonio, San Antonio, TX, USA
| | - Donald B. Penzien
- Departments of Psychiatry and Behavioral Medicine & Neurology, Wake Forest University, Winston-Salem, NC, USA
| | - Patricia A. Resick
- Department of Psychiatry and Behavioral Sciences, Duke University Medical Center, Durham, NC, USA
| | - Cindy A. McGeary
- Department of Psychiatry and Behavioral Sciences, The University of Texas Health Science Center San Antonio, San Antonio, TX, USA
| | - Carlos A. Jaramillo
- South Texas Veterans Health Care System, San Antonio, TX, USA
- Department of Rehabilitation Medicine, The University of Texas Health Science Center at San Antonio, San Antonio, TX, USA
| | - Blessen C. Eapen
- Greater Los Angeles Veterans Health Care System, Los Angeles, CA, USA
- David Geffen School of Medicine, University of California, Los Angeles, PM&R, Los Angeles, CA, USA
| | - Stacey Young-McCaughan
- Department of Psychiatry and Behavioral Sciences, The University of Texas Health Science Center San Antonio, San Antonio, TX, USA
| | - Paul S. Nabity
- Department of Psychiatry and Behavioral Sciences, The University of Texas Health Science Center San Antonio, San Antonio, TX, USA
| | - John C. Moring
- Department of Psychiatry and Behavioral Sciences, The University of Texas Health Science Center San Antonio, San Antonio, TX, USA
| | - Timothy T. Houle
- Department of Anaesthesia, Massachusetts General Hospital, Boston, MA, USA
| | - Terence M. Keane
- National Center for PTSD, VA Boston Healthcare System, Boston, MA, USA
- Department of Psychiatry, Boston University School of Medicine, Boston, MA, USA
| | - Alan L. Peterson
- Department of Psychiatry and Behavioral Sciences, The University of Texas Health Science Center San Antonio, San Antonio, TX, USA
- South Texas Veterans Health Care System, San Antonio, TX, USA
- Department of Psychology, The University of Texas at San Antonio, San Antonio, TX, USA
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11
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Joshi S. Peptides, MAbs, Molecules, Mechanisms, and More: Taking a Stab at Cluster Headache. Headache 2020; 60:1871-1877. [DOI: 10.1111/head.13909] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/29/2020] [Accepted: 06/29/2020] [Indexed: 12/15/2022]
Affiliation(s)
- Shivang Joshi
- Dent Neurologic Institute Amherst NY USA
- University of Buffalo School of Pharmacy Buffalo NY USA
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