Cerebellar white matter abnormalities following primary blast injury in US military personnel.

Little is known about the effects of blast exposure on the human brain in the absence of head impact. Clinical reports, experimental animal studies, and computational modeling of blast exposure have suggested effects on the cerebellum and brainstem. In US military personnel with isolated, primary bl...

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Main Authors: Christine Mac Donald, Ann Johnson, Dana Cooper, Thomas Malone, James Sorrell, Joshua Shimony, Matthew Parsons, Abraham Snyder, Marcus Raichle, Raymond Fang, Stephen Flaherty, Michael Russell, David L Brody
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3567000?pdf=render
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spelling doaj-8ee8332de6fc4f93917886d25cb90d432020-11-25T02:15:28ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0182e5582310.1371/journal.pone.0055823Cerebellar white matter abnormalities following primary blast injury in US military personnel.Christine Mac DonaldAnn JohnsonDana CooperThomas MaloneJames SorrellJoshua ShimonyMatthew ParsonsAbraham SnyderMarcus RaichleRaymond FangStephen FlahertyMichael RussellDavid L BrodyLittle is known about the effects of blast exposure on the human brain in the absence of head impact. Clinical reports, experimental animal studies, and computational modeling of blast exposure have suggested effects on the cerebellum and brainstem. In US military personnel with isolated, primary blast-related 'mild' traumatic brain injury and no other known insult, we found diffusion tensor MRI abnormalities consistent with cerebellar white matter injury in 3 of 4 subjects. No abnormalities in other brain regions were detected. These findings add to the evidence supporting the hypothesis that primary blast exposure contributes to brain injury in the absence of head impact and that the cerebellum may be particularly vulnerable. However, the clinical effects of these abnormalities cannot be determined with certainty; none of the subjects had ataxia or other detected evidence of cerebellar dysfunction. The details of the blast events themselves cannot be disclosed at this time, thus additional animal and computational modeling will be required to dissect the mechanisms underlying primary blast-related traumatic brain injury. Furthermore, the effects of possible subconcussive impacts and other military-related exposures cannot be determined from the data presented. Thus many aspects of topic will require further investigation.http://europepmc.org/articles/PMC3567000?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Christine Mac Donald
Ann Johnson
Dana Cooper
Thomas Malone
James Sorrell
Joshua Shimony
Matthew Parsons
Abraham Snyder
Marcus Raichle
Raymond Fang
Stephen Flaherty
Michael Russell
David L Brody
spellingShingle Christine Mac Donald
Ann Johnson
Dana Cooper
Thomas Malone
James Sorrell
Joshua Shimony
Matthew Parsons
Abraham Snyder
Marcus Raichle
Raymond Fang
Stephen Flaherty
Michael Russell
David L Brody
Cerebellar white matter abnormalities following primary blast injury in US military personnel.
PLoS ONE
author_facet Christine Mac Donald
Ann Johnson
Dana Cooper
Thomas Malone
James Sorrell
Joshua Shimony
Matthew Parsons
Abraham Snyder
Marcus Raichle
Raymond Fang
Stephen Flaherty
Michael Russell
David L Brody
author_sort Christine Mac Donald
title Cerebellar white matter abnormalities following primary blast injury in US military personnel.
title_short Cerebellar white matter abnormalities following primary blast injury in US military personnel.
title_full Cerebellar white matter abnormalities following primary blast injury in US military personnel.
title_fullStr Cerebellar white matter abnormalities following primary blast injury in US military personnel.
title_full_unstemmed Cerebellar white matter abnormalities following primary blast injury in US military personnel.
title_sort cerebellar white matter abnormalities following primary blast injury in us military personnel.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Little is known about the effects of blast exposure on the human brain in the absence of head impact. Clinical reports, experimental animal studies, and computational modeling of blast exposure have suggested effects on the cerebellum and brainstem. In US military personnel with isolated, primary blast-related 'mild' traumatic brain injury and no other known insult, we found diffusion tensor MRI abnormalities consistent with cerebellar white matter injury in 3 of 4 subjects. No abnormalities in other brain regions were detected. These findings add to the evidence supporting the hypothesis that primary blast exposure contributes to brain injury in the absence of head impact and that the cerebellum may be particularly vulnerable. However, the clinical effects of these abnormalities cannot be determined with certainty; none of the subjects had ataxia or other detected evidence of cerebellar dysfunction. The details of the blast events themselves cannot be disclosed at this time, thus additional animal and computational modeling will be required to dissect the mechanisms underlying primary blast-related traumatic brain injury. Furthermore, the effects of possible subconcussive impacts and other military-related exposures cannot be determined from the data presented. Thus many aspects of topic will require further investigation.
url http://europepmc.org/articles/PMC3567000?pdf=render
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