An Introductory Characterization of a Combat-Casualty-Care Relevant Swine Model of Closed Head Injury Resulting from Exposure to Explosive Blast
Top Cited Papers
- 1 June 2009
- journal article
- research article
- Published by Mary Ann Liebert Inc in Journal of Neurotrauma
- Vol. 26 (6), 841-860
- https://doi.org/10.1089/neu.2008.0898
Abstract
Explosive blast has been extensively used as a tactical weapon in Operation Iraqi Freedom (OIF) and more recently in Operation Enduring Freedom (OEF). The polytraumatic nature of blast injuries is evidence of their effectiveness, and brain injury is a frequent and debilitating form of this trauma. In-theater clinical observations of brain-injured casualties have shown that edema, intracranial hemorrhage, and vasospasm are the most salient pathophysiological characteristics of blast injury to the brain. Unfortunately, little is known about exactly how an explosion produces these sequelae as well as others that are less well documented. Consequently, the principal objective of the current report is to present a swine model of explosive blast injury to the brain. This model was developed during Phase I of the DARPA (Defense Advanced Research Projects Agency) PREVENT (Preventing Violent Explosive Neurotrauma) blast research program. A second objective is to present data that illustrate the capabilities of this model to study the proximal biomechanical causes and the resulting pathophysiological, biochemical, neuropathological, and neurological consequences of explosive blast injury to the swine brain. In the concluding section of this article, the advantages and limitations of the model are considered, explosive and air-overpressure models are compared, and the physical properties of an explosion are identified that potentially contributed to the in-theater closed head injuries resulting from explosions of improvised explosive devices (IEDs).Keywords
This publication has 31 references indexed in Scilit:
- Proteomic Biomarkers for Blast Neurotrauma: Targeting Cerebral Edema, Inflammation, and Neuronal Death CascadesJournal of Neurotrauma, 2009
- Maintaining cerebral perfusion after polytrauma using arginine vasopressin: A classic drug revisited*Critical Care Medicine, 2008
- Hypothermia at 10°C Reduces Neurologic Injury After Hypothermic Circulatory Arrest in the PigJournal of Cardiac Surgery, 2008
- WARTIME TRAUMATIC CEREBRAL VASOSPASMNeurosurgery, 2006
- Blast lung injury: clinical manifestations, treatment, and outcomeThe American Journal of Surgery, 2005
- Delta Activity as an Early Indicator for Soman-Induced Brain Damage: A ReviewNeuroToxicology, 2001
- Ultrastructural and Functional Characteristics of Blast Injury-Induced NeurotraumaThe Journal of Trauma: Injury, Infection, and Critical Care, 2001
- Physiological Changes in Pigs Exposed to a Blast Wave from a Detonating High-Explosive ChargeMilitary Medicine, 2000
- Relevant radiological anatomy of the pig as a training model in interventional radiologyEuropean Radiology, 1998
- Involvement of the Central Nervous System in the General Response to Pulmonary Blast InjuryThe Journal of Trauma: Injury, Infection, and Critical Care, 1996