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Blast-Induced Traumatic Brain Injury: Using a Shock Tube to Recreate a Battlefield Injury in the Laboratory

机译:爆炸诱导的创伤性脑损伤:使用冲击管重建实验室的战场损伤

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Explosive detonation has been a longstanding battlefield concern for the U.S. Army. Recently, emphasis has shifted to blast injury to the brain since blast has emerged as the predominant cause of neurotrauma in current military conflicts, and its etiology is largely undefined. Using a compression-driven shock tube to simulate blast, we are assessing the physiological, neuropathological, and neurobehavioral consequences of airblast exposure. Blast generates an air shock front imparting effectively instantaneous increases in static and dynamic pressure conditions. The positioning of the experimental subject within the shock tube greatly influences the exposure conditions and determines the relative contributions of these side-on and dynamic pressures to the injury. The pressure exposures and brain injuries resulting from airblast exposure at different shock tube positions are reviewed. Shock tube exposures provide sur-vivable blast conditions under which striking neuropathological changes can be generated and TBI can be studied. These findings demonstrate that shock tube-generated airblast can cause TBI in rats, and point to the utility of this experimental tool in the development of effective therapies and countermeasures.
机译:爆炸性爆炸是美国军队的长期战场。最近,重点转移到大脑的爆炸伤害,因为爆炸已经成为当前军事冲突中神经冲突的主要原因,其病因在很大程度上是未定义的。使用压缩驱动的冲击管来模拟爆炸,我们评估了空载暴露的生理病理学,神经病理学和神经管道后果。爆破产生空气冲击前施加静态和动态压力条件的瞬时增加。实验对象的定位在震动管内极大地影响了暴露条件,并决定了这些侧面和动态压力对损伤的相对贡献。综述了由空中曝光曝光产生的压力曝光和脑损伤。冲击管曝光提供了可以产生醒目神经病理学变化的血管活可致力的爆炸条件,并且可以研究TBI。这些研究结果表明,冲击管产生的空燃动力可能导致大鼠TBI,并指向该实验工具在开发有效疗法和对策方面的效用。

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