Blennow, K; Brody, D L; Kochanek, P M; Levin, H; McKee, A; Ribbers, G M; Yaffe, K; Zetterberg, H
Traumatic brain injuries Journal Article
In: Nature Reviews Disease Primers, vol. 2, 2016.
Abstract | Links | BibTeX | Tags: amyloid beta protein, Article, axonal injury, biological marker, BIOPHYSICS, blood, brain, BRAIN damage, cerebrospinal fluid, Chronic traumatic encephalopathy, computer assisted tomography, disease severity, endocrine disease, heredity, human, molecular pathology, neuropathology, nonhuman, nuclear magnetic resonance imaging, Pathophysiology, positron emission tomography, postconcussion syndrome, priority journal, protein aggregation, quality of life, screening, tau protein, traumatic brain injury
@article{Blennow2016,
title = {Traumatic brain injuries},
author = {Blennow, K and Brody, D L and Kochanek, P M and Levin, H and McKee, A and Ribbers, G M and Yaffe, K and Zetterberg, H},
doi = {10.1038/nrdp.2016.84},
year = {2016},
date = {2016-01-01},
journal = {Nature Reviews Disease Primers},
volume = {2},
abstract = {Traumatic brain injuries (TBIs) are clinically grouped by severity: mild, moderate and severe. Mild TBI (the least severe form) is synonymous with concussion and is typically caused by blunt non-penetrating head trauma. The trauma causes stretching and tearing of axons, which leads to diffuse axonal injury-the best-studied pathogenetic mechanism of this disorder. However, mild TBI is defined on clinical grounds and no well-validated imaging or fluid biomarkers to determine the presence of neuronal damage in patients with mild TBI is available. Most patients with mild TBI will recover quickly, but others report persistent symptoms, called post-concussive syndrome, the underlying pathophysiology of which is largely unknown. Repeated concussive and subconcussive head injuries have been linked to the neurodegenerative condition chronic traumatic encephalopathy (CTE), which has been reported post-mortem in contact sports athletes and soldiers exposed to blasts. Insights from severe injuries and CTE plausibly shed light on the underlying cellular and molecular processes involved in mild TBI. MRI techniques and blood tests for axonal proteins to identify and grade axonal injury, in addition to PET for tau pathology, show promise as tools to explore CTE pathophysiology in longitudinal clinical studies, and might be developed into diagnostic tools for CTE. Given that CTE is attributed to repeated head trauma, prevention might be possible through rule changes by sports organizations and legislators. © 2016 Macmillan Publishers Limited, part of Springer Nature.},
keywords = {amyloid beta protein, Article, axonal injury, biological marker, BIOPHYSICS, blood, brain, BRAIN damage, cerebrospinal fluid, Chronic traumatic encephalopathy, computer assisted tomography, disease severity, endocrine disease, heredity, human, molecular pathology, neuropathology, nonhuman, nuclear magnetic resonance imaging, Pathophysiology, positron emission tomography, postconcussion syndrome, priority journal, protein aggregation, quality of life, screening, tau protein, traumatic brain injury},
pubstate = {published},
tppubtype = {article}
}
Meehan, W P; Jordaan, M; Prabhu, S P; Carew, L; Mannix, R C; Proctor, M R
Risk of athletes with chiari malformations suffering catastrophic injuries during sports participation is low Journal Article
In: Clinical Journal of Sport Medicine, vol. 25, no. 2, pp. 133–137, 2015.
Abstract | Links | BibTeX | Tags: Adolescent, adult, Arnold Chiari malformation, Arnold-Chiari Malformation, Article, athlete, Athletes, Athletic Injuries, BASKETBALL, Brain Injuries, cerebrospinal fluid, cerebrospinal fluid flow, Child, cohort analysis, Cohort Studies, coma, Concussion, Death, descriptive research, digestive tract parameters, Female, football, foramen magnum, human, Humans, ice hockey, Magnetic Resonance Imaging, major clinical study, Male, MORTALITY, nuclear magnetic resonance imaging, paralysis, paresthesia, pathology, patient participation, priority journal, questionnaire, Retrospective Studies, retrospective study, RISK assessment, risk factor, Soccer, sport injury, Surveys and Questionnaires, terminal disease, Young Adult
@article{Meehan2015,
title = {Risk of athletes with chiari malformations suffering catastrophic injuries during sports participation is low},
author = {Meehan, W P and Jordaan, M and Prabhu, S P and Carew, L and Mannix, R C and Proctor, M R},
doi = {10.1097/JSM.0000000000000107},
year = {2015},
date = {2015-01-01},
journal = {Clinical Journal of Sport Medicine},
volume = {25},
number = {2},
pages = {133--137},
abstract = {Objective: To estimate the risk of athletes with Chiari malformations sustaining a catastrophic injury. Design: Retrospective, descriptive cohort study. Participants: All patients diagnosed with Chiari malformation at our institution between June 2008 and November 2011. Assessment of Risk Factors: Participants were mailed a questionnaire regarding the number of seasons they participated in organized athletics. Magnetic resonance images were reviewed to describe the characteristics of respondent's Chiari malformations. Main Outcome Measures: Whether or not the patient had sustained an injury resulting in death, coma, or paralysis. Results: We had a 53% (N = 147) response rate. Respondents were of a mean age of 15 years (SD, 2 years) at the time of diagnosis. The mean length of protrusion of the cerebellar tonsils below the foramen magnum was 11.2 mm (SD, 5.7 mm). Most of the respondents had pointed cerebellar tonsils and some degree of crowding within the foramen magnum. During a total of 1627 athletic seasons played by patients with Chiari malformation, 0 respondents [95% confidence interval (CI), 0.0000-0.0023] sustained an injury resulting in death, coma, or paralysis. Likewise, during 191 collision sport athletic seasons, 0 (95% CI, 0.0000-0.0191) respondents sustained an injury resulting in death, coma, or paralysis. Conclusions: The risk of athletes with Chiari malformations suffering catastrophic injuries during sports participation is low. This estimate of risk should be considered when making return-toplay decisions. Given the variability of anatomical consideration for patients with Chiari malformations, however, each return-to-play decision must continue to be made on a case-by-case basis, considering all of the available information. Clinical Relevance: The low risk of athletes with Chiari malformations suffering catastrophic injuries in sports should be considered when making return-to-play decisions. © 2014 Wolters Kluwer Health, Inc. All rights reserved.},
keywords = {Adolescent, adult, Arnold Chiari malformation, Arnold-Chiari Malformation, Article, athlete, Athletes, Athletic Injuries, BASKETBALL, Brain Injuries, cerebrospinal fluid, cerebrospinal fluid flow, Child, cohort analysis, Cohort Studies, coma, Concussion, Death, descriptive research, digestive tract parameters, Female, football, foramen magnum, human, Humans, ice hockey, Magnetic Resonance Imaging, major clinical study, Male, MORTALITY, nuclear magnetic resonance imaging, paralysis, paresthesia, pathology, patient participation, priority journal, questionnaire, Retrospective Studies, retrospective study, RISK assessment, risk factor, Soccer, sport injury, Surveys and Questionnaires, terminal disease, Young Adult},
pubstate = {published},
tppubtype = {article}
}
Blennow, K; Brody, D L; Kochanek, P M; Levin, H; McKee, A; Ribbers, G M; Yaffe, K; Zetterberg, H
Traumatic brain injuries Journal Article
In: Nature Reviews Disease Primers, vol. 2, 2016.
@article{Blennow2016,
title = {Traumatic brain injuries},
author = {Blennow, K and Brody, D L and Kochanek, P M and Levin, H and McKee, A and Ribbers, G M and Yaffe, K and Zetterberg, H},
doi = {10.1038/nrdp.2016.84},
year = {2016},
date = {2016-01-01},
journal = {Nature Reviews Disease Primers},
volume = {2},
abstract = {Traumatic brain injuries (TBIs) are clinically grouped by severity: mild, moderate and severe. Mild TBI (the least severe form) is synonymous with concussion and is typically caused by blunt non-penetrating head trauma. The trauma causes stretching and tearing of axons, which leads to diffuse axonal injury-the best-studied pathogenetic mechanism of this disorder. However, mild TBI is defined on clinical grounds and no well-validated imaging or fluid biomarkers to determine the presence of neuronal damage in patients with mild TBI is available. Most patients with mild TBI will recover quickly, but others report persistent symptoms, called post-concussive syndrome, the underlying pathophysiology of which is largely unknown. Repeated concussive and subconcussive head injuries have been linked to the neurodegenerative condition chronic traumatic encephalopathy (CTE), which has been reported post-mortem in contact sports athletes and soldiers exposed to blasts. Insights from severe injuries and CTE plausibly shed light on the underlying cellular and molecular processes involved in mild TBI. MRI techniques and blood tests for axonal proteins to identify and grade axonal injury, in addition to PET for tau pathology, show promise as tools to explore CTE pathophysiology in longitudinal clinical studies, and might be developed into diagnostic tools for CTE. Given that CTE is attributed to repeated head trauma, prevention might be possible through rule changes by sports organizations and legislators. © 2016 Macmillan Publishers Limited, part of Springer Nature.},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Meehan, W P; Jordaan, M; Prabhu, S P; Carew, L; Mannix, R C; Proctor, M R
Risk of athletes with chiari malformations suffering catastrophic injuries during sports participation is low Journal Article
In: Clinical Journal of Sport Medicine, vol. 25, no. 2, pp. 133–137, 2015.
@article{Meehan2015,
title = {Risk of athletes with chiari malformations suffering catastrophic injuries during sports participation is low},
author = {Meehan, W P and Jordaan, M and Prabhu, S P and Carew, L and Mannix, R C and Proctor, M R},
doi = {10.1097/JSM.0000000000000107},
year = {2015},
date = {2015-01-01},
journal = {Clinical Journal of Sport Medicine},
volume = {25},
number = {2},
pages = {133--137},
abstract = {Objective: To estimate the risk of athletes with Chiari malformations sustaining a catastrophic injury. Design: Retrospective, descriptive cohort study. Participants: All patients diagnosed with Chiari malformation at our institution between June 2008 and November 2011. Assessment of Risk Factors: Participants were mailed a questionnaire regarding the number of seasons they participated in organized athletics. Magnetic resonance images were reviewed to describe the characteristics of respondent's Chiari malformations. Main Outcome Measures: Whether or not the patient had sustained an injury resulting in death, coma, or paralysis. Results: We had a 53% (N = 147) response rate. Respondents were of a mean age of 15 years (SD, 2 years) at the time of diagnosis. The mean length of protrusion of the cerebellar tonsils below the foramen magnum was 11.2 mm (SD, 5.7 mm). Most of the respondents had pointed cerebellar tonsils and some degree of crowding within the foramen magnum. During a total of 1627 athletic seasons played by patients with Chiari malformation, 0 respondents [95% confidence interval (CI), 0.0000-0.0023] sustained an injury resulting in death, coma, or paralysis. Likewise, during 191 collision sport athletic seasons, 0 (95% CI, 0.0000-0.0191) respondents sustained an injury resulting in death, coma, or paralysis. Conclusions: The risk of athletes with Chiari malformations suffering catastrophic injuries during sports participation is low. This estimate of risk should be considered when making return-toplay decisions. Given the variability of anatomical consideration for patients with Chiari malformations, however, each return-to-play decision must continue to be made on a case-by-case basis, considering all of the available information. Clinical Relevance: The low risk of athletes with Chiari malformations suffering catastrophic injuries in sports should be considered when making return-to-play decisions. © 2014 Wolters Kluwer Health, Inc. All rights reserved.},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Blennow, K; Brody, D L; Kochanek, P M; Levin, H; McKee, A; Ribbers, G M; Yaffe, K; Zetterberg, H
Traumatic brain injuries Journal Article
In: Nature Reviews Disease Primers, vol. 2, 2016.
Abstract | Links | BibTeX | Tags: amyloid beta protein, Article, axonal injury, biological marker, BIOPHYSICS, blood, brain, BRAIN damage, cerebrospinal fluid, Chronic traumatic encephalopathy, computer assisted tomography, disease severity, endocrine disease, heredity, human, molecular pathology, neuropathology, nonhuman, nuclear magnetic resonance imaging, Pathophysiology, positron emission tomography, postconcussion syndrome, priority journal, protein aggregation, quality of life, screening, tau protein, traumatic brain injury
@article{Blennow2016,
title = {Traumatic brain injuries},
author = {Blennow, K and Brody, D L and Kochanek, P M and Levin, H and McKee, A and Ribbers, G M and Yaffe, K and Zetterberg, H},
doi = {10.1038/nrdp.2016.84},
year = {2016},
date = {2016-01-01},
journal = {Nature Reviews Disease Primers},
volume = {2},
abstract = {Traumatic brain injuries (TBIs) are clinically grouped by severity: mild, moderate and severe. Mild TBI (the least severe form) is synonymous with concussion and is typically caused by blunt non-penetrating head trauma. The trauma causes stretching and tearing of axons, which leads to diffuse axonal injury-the best-studied pathogenetic mechanism of this disorder. However, mild TBI is defined on clinical grounds and no well-validated imaging or fluid biomarkers to determine the presence of neuronal damage in patients with mild TBI is available. Most patients with mild TBI will recover quickly, but others report persistent symptoms, called post-concussive syndrome, the underlying pathophysiology of which is largely unknown. Repeated concussive and subconcussive head injuries have been linked to the neurodegenerative condition chronic traumatic encephalopathy (CTE), which has been reported post-mortem in contact sports athletes and soldiers exposed to blasts. Insights from severe injuries and CTE plausibly shed light on the underlying cellular and molecular processes involved in mild TBI. MRI techniques and blood tests for axonal proteins to identify and grade axonal injury, in addition to PET for tau pathology, show promise as tools to explore CTE pathophysiology in longitudinal clinical studies, and might be developed into diagnostic tools for CTE. Given that CTE is attributed to repeated head trauma, prevention might be possible through rule changes by sports organizations and legislators. © 2016 Macmillan Publishers Limited, part of Springer Nature.},
keywords = {amyloid beta protein, Article, axonal injury, biological marker, BIOPHYSICS, blood, brain, BRAIN damage, cerebrospinal fluid, Chronic traumatic encephalopathy, computer assisted tomography, disease severity, endocrine disease, heredity, human, molecular pathology, neuropathology, nonhuman, nuclear magnetic resonance imaging, Pathophysiology, positron emission tomography, postconcussion syndrome, priority journal, protein aggregation, quality of life, screening, tau protein, traumatic brain injury},
pubstate = {published},
tppubtype = {article}
}
Meehan, W P; Jordaan, M; Prabhu, S P; Carew, L; Mannix, R C; Proctor, M R
Risk of athletes with chiari malformations suffering catastrophic injuries during sports participation is low Journal Article
In: Clinical Journal of Sport Medicine, vol. 25, no. 2, pp. 133–137, 2015.
Abstract | Links | BibTeX | Tags: Adolescent, adult, Arnold Chiari malformation, Arnold-Chiari Malformation, Article, athlete, Athletes, Athletic Injuries, BASKETBALL, Brain Injuries, cerebrospinal fluid, cerebrospinal fluid flow, Child, cohort analysis, Cohort Studies, coma, Concussion, Death, descriptive research, digestive tract parameters, Female, football, foramen magnum, human, Humans, ice hockey, Magnetic Resonance Imaging, major clinical study, Male, MORTALITY, nuclear magnetic resonance imaging, paralysis, paresthesia, pathology, patient participation, priority journal, questionnaire, Retrospective Studies, retrospective study, RISK assessment, risk factor, Soccer, sport injury, Surveys and Questionnaires, terminal disease, Young Adult
@article{Meehan2015,
title = {Risk of athletes with chiari malformations suffering catastrophic injuries during sports participation is low},
author = {Meehan, W P and Jordaan, M and Prabhu, S P and Carew, L and Mannix, R C and Proctor, M R},
doi = {10.1097/JSM.0000000000000107},
year = {2015},
date = {2015-01-01},
journal = {Clinical Journal of Sport Medicine},
volume = {25},
number = {2},
pages = {133--137},
abstract = {Objective: To estimate the risk of athletes with Chiari malformations sustaining a catastrophic injury. Design: Retrospective, descriptive cohort study. Participants: All patients diagnosed with Chiari malformation at our institution between June 2008 and November 2011. Assessment of Risk Factors: Participants were mailed a questionnaire regarding the number of seasons they participated in organized athletics. Magnetic resonance images were reviewed to describe the characteristics of respondent's Chiari malformations. Main Outcome Measures: Whether or not the patient had sustained an injury resulting in death, coma, or paralysis. Results: We had a 53% (N = 147) response rate. Respondents were of a mean age of 15 years (SD, 2 years) at the time of diagnosis. The mean length of protrusion of the cerebellar tonsils below the foramen magnum was 11.2 mm (SD, 5.7 mm). Most of the respondents had pointed cerebellar tonsils and some degree of crowding within the foramen magnum. During a total of 1627 athletic seasons played by patients with Chiari malformation, 0 respondents [95% confidence interval (CI), 0.0000-0.0023] sustained an injury resulting in death, coma, or paralysis. Likewise, during 191 collision sport athletic seasons, 0 (95% CI, 0.0000-0.0191) respondents sustained an injury resulting in death, coma, or paralysis. Conclusions: The risk of athletes with Chiari malformations suffering catastrophic injuries during sports participation is low. This estimate of risk should be considered when making return-toplay decisions. Given the variability of anatomical consideration for patients with Chiari malformations, however, each return-to-play decision must continue to be made on a case-by-case basis, considering all of the available information. Clinical Relevance: The low risk of athletes with Chiari malformations suffering catastrophic injuries in sports should be considered when making return-to-play decisions. © 2014 Wolters Kluwer Health, Inc. All rights reserved.},
keywords = {Adolescent, adult, Arnold Chiari malformation, Arnold-Chiari Malformation, Article, athlete, Athletes, Athletic Injuries, BASKETBALL, Brain Injuries, cerebrospinal fluid, cerebrospinal fluid flow, Child, cohort analysis, Cohort Studies, coma, Concussion, Death, descriptive research, digestive tract parameters, Female, football, foramen magnum, human, Humans, ice hockey, Magnetic Resonance Imaging, major clinical study, Male, MORTALITY, nuclear magnetic resonance imaging, paralysis, paresthesia, pathology, patient participation, priority journal, questionnaire, Retrospective Studies, retrospective study, RISK assessment, risk factor, Soccer, sport injury, Surveys and Questionnaires, terminal disease, Young Adult},
pubstate = {published},
tppubtype = {article}
}