首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >CEREBRAL BLOOD PRESSURE RISE DURING BLAST EXPOSURE IN A RAT MODEL OF BLAST-INDUCED TRAUMATIC BRAIN INJURY
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CEREBRAL BLOOD PRESSURE RISE DURING BLAST EXPOSURE IN A RAT MODEL OF BLAST-INDUCED TRAUMATIC BRAIN INJURY

机译:脑血压在爆炸诱导创伤性脑损伤大鼠模型中的爆破暴露期间

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Blast-induced traumatic brain injury (bTBI) has been called the signature wound of war in the past decade. The mechanisms of such injuries are not yet completely understood. One of the proposed hypotheses is the transfer of pressure wave from large torso blood vessels to the cerebrovasculature as a major contributing factor to bTBI. The aim of this study was to investigate this hypothesis by measuring cerebral blood pressure rise during blast exposure and comparing two scenarios of head-only or chest-only exposures to the blast wave. The results showed that the cerebral blood pressure rise was significantly higher in chest-only exposure, and caused infiltration of blood-borne macrophages into the brain. It is concluded that a significantly high pressure wave transfers from torso to cerebrovasculature during exposure of the chest to a blast wave. This wave may lead to blood-brain barrier disruption and consequently trigger secondary neuronal damage.
机译:爆炸诱导的创伤性脑损伤(BTBI)被称为过去十年中战争的签名伤口。尚未完全理解这种伤害的机制。其中一个提出的假设是将压力波从大躯干血管转移到脑血管,作为BTBI的主要贡献因素。本研究的目的是通过测量爆炸暴露过程中的脑血压并进行比较两个场景或仅对胸部曝光的方案来探讨这一假设。结果表明,胸腔血压升高在胸腔血压上升显着较高,并导致血流巨噬细胞渗透到大脑中。结论是,在胸部暴露于爆发波期间,从躯干转移到脑血管结构显着高的压力波。这种波可能导致血脑屏障中断,从而引发二次神经元损伤。

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