Effects of low-level east exposure on the nervous system: is there really a controversy?

被引:85
作者
Elder, Gregory A. [1 ,2 ,3 ,4 ]
Stone, James R. [5 ,6 ]
Ahlers, Stephen T. [7 ]
机构
[1] James J Peters Dept Vet Affairs Med Ctr, Neurol Serv, Bronx, NY 10468 USA
[2] Icahn Sch Med Mt Sinai, Dept Psychiat, New York, NY 10029 USA
[3] Icahn Sch Med Mt Sinai, Dept Neurol, New York, NY 10029 USA
[4] Icahn Sch Med Mt Sinai, Friedman Brain Inst, New York, NY 10029 USA
[5] Univ Virginia, Dept Radiol, Charlottesville, VA USA
[6] Univ Virginia, Dept Neurosurg, Charlottesville, VA USA
[7] Naval Med Res Ctr, Dept Neurotrauma, Operat & Undersea Med Directorate, Silver Spring, MD USA
关键词
animal models; blast; human studies; post-traumatic stress disorder; traumatic brain injury; TRAUMATIC BRAIN-INJURY; POSTTRAUMATIC-STRESS-DISORDER; AMYLOID PRECURSOR PROTEIN; REPETITIVE BLAST EXPOSURE; WHITE-MATTER INTEGRITY; SHELL SHOCK; UNCOMPLICATED MILD; COMPLICATED MILD; SERVICE MEMBERS; POSTCONCUSSIVE SYMPTOMS;
D O I
10.3389/fneur.2014.00269
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
High-pressure blast waves can cause extensive CNS injury in human beings. However, in combat settings, such as Iraq and Afghanistan, lower level exposures associated with mild traumatic brain injury (mTBI) or subclinical exposure have been much more common. Yet controversy exists concerning what traits can be attributed to low-level blast, in large part due to the difficulty of distinguishing blast-related mTBI from post-traumatic stress disorder (PTSD). We describe how TBI is defined in human beings and the problems posed in using current definitions to recognize blast-related mTBI. We next consider the problem of applying definitions of human mTBI to animal models, in particular that TBI severity in human beings is defined in relation to alteration of consciousness at the time of injury, which typically cannot be assessed in animals. However, based on outcome assessments, a condition of "low-level" blast exposure can be defined in animals that likely approximates human mTBI or subclinical exposure. We review blast injury modeling in animals noting that inconsistencies in experimental approach have contributed to uncertainty over the effects of low-level blast. Yet, animal studies show that low-level blast pressure waves are transmitted to the brain. In brain, low-level blast exposures cause behavioral, biochemical, pathological, and physiological effects on the nervous system including the induction of PTSD-related behavioral traits in the absence of a psychological stressor. We review the relationship of blast exposure to chronic neurodegenerative diseases noting the paradoxical lowering of Abeta by blast, which along with other observations suggest that blast-related TBI is pathophysiologically distinct from non-blast TBI. Human neuroimaging studies show that blast-related mTBI is associated with a variety of chronic effects that are unlikely to be explained by co-morbid PTSD. We conclude that abundant evidence supports low-level blast as having long-term effects on the nervous system.
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页数:22
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共 212 条
[71]   A case of frontal neuropsychological and neuroimaging signs following multiple primary-blast exposure [J].
Hayes, Jasmeet Pannu ;
Morey, Rajendra A. ;
Tupler, Larry A. .
NEUROCASE, 2012, 18 (03) :258-269
[72]   A novel closed-head model of mild traumatic brain injury caused by primary overpressure blast to the cranium produces sustained emotional deficits in mice [J].
Heldt, Scott A. ;
Elberger, Andrea J. ;
Deng, Yunping ;
Guley, Natalie H. ;
Del Mar, Nobel ;
Rogers, Joshua ;
Choi, Gy Won ;
Ferrell, Jessica ;
Rex, Tonia S. ;
Honig, Marcia G. ;
Reiner, Anton .
FRONTIERS IN NEUROLOGY, 2014, 5
[73]   Indicators of complicated mild TBI predict MMPI-2 scores after 23 years [J].
Hessen, Erik ;
Nestvold, Knut .
BRAIN INJURY, 2009, 23 (03) :234-242
[74]   MRSI of the Medial Temporal Lobe at 7 T in Explosive Blast Mild Traumatic Brain Injury [J].
Hetherington, Hoby P. ;
Hamid, Hamada ;
Kulas, Joseph ;
Ling, Geoffrey ;
Bandak, Faris ;
de Lanerolle, Nihal C. ;
Pan, Jullie W. .
MAGNETIC RESONANCE IN MEDICINE, 2014, 71 (04) :1358-1367
[75]   Neurological Effects of Blast Injury [J].
Hicks, Ramona R. ;
Fertig, Stephanie J. ;
Desrocher, Rebecca E. ;
Koroshetz, Walter J. ;
Pancrazio, Joseph J. .
JOURNAL OF TRAUMA-INJURY INFECTION AND CRITICAL CARE, 2010, 68 (05) :1257-1263
[76]   Can sulci protect the brain from traumatic injury? [J].
Ho, Johnson ;
Kleiven, Svein .
JOURNAL OF BIOMECHANICS, 2009, 42 (13) :2074-2080
[77]   Mild traumatic brain injury in US Soldiers returning from Iraq [J].
Hoge, Charles W. ;
McGurk, Dennis ;
Thomas, Jeffrey L. ;
Cox, Anthony L. ;
Engel, Charles C. ;
Castro, Carl A. .
NEW ENGLAND JOURNAL OF MEDICINE, 2008, 358 (05) :453-463
[78]   Care of War Veterans with Mild Traumatic Brain Injury - Flawed Perspectives [J].
Hoge, Charles W. ;
Goldberg, Herb M. ;
Castro, Carl A. .
NEW ENGLAND JOURNAL OF MEDICINE, 2009, 360 (16) :1588-1591
[79]   Blast Exposure Causes Early and Persistent Aberrant Phospho- and Cleaved-Tau Expression in a Murine Model of Mild Blast-Induced Traumatic Brain Injury [J].
Huber, Bertrand R. ;
Meabon, James S. ;
Martin, Tobin J. ;
Mourad, Pierre D. ;
Bennett, Raymond ;
Kraemer, Brian C. ;
Cernak, Ibolja ;
Petrie, Eric C. ;
Emery, Michael J. ;
Swenson, Erik R. ;
Mayer, Cynthia ;
Mehic, Edin ;
Peskind, Elaine R. ;
Cook, David G. .
JOURNAL OF ALZHEIMERS DISEASE, 2013, 37 (02) :309-323
[80]   Alzheimer's pathology in human temporal cortex surgically excised after severe brain injury [J].
Ikonomovic, MD ;
Uryu, K ;
Abrahamson, EE ;
Ciallella, JR ;
Trojanowski, JQ ;
Lee, VMY ;
Clark, RS ;
Marion, DW ;
Wisniewski, SR ;
DeKosky, ST .
EXPERIMENTAL NEUROLOGY, 2004, 190 (01) :192-203