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High Speed Imaging Techniques to Study Effects of Pressure Waves from Detonating Explosive Charges on Biological Materials

机译:高速成像技术,以研究压力波对生物材料爆炸爆炸电荷的影响

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Threshold shock-impulse levels required to induce cellular injury and cumulative effects upon single and/or multiple exposures are not well-characterized. There are very few in vitro experimental model with blast pressure waves generated by using explosives in the laboratory for investigating the effects of primary blast induced traumatic brain injury. Hence, it is critical to develop a reliable experimental research tool in the laboratory to study how functional and structural alteration or damage at the cellular and tissue levels following explosive blast impacts for future improvement of detection and subsequent treatment and protection. US Army Research Laboratory (ARL) developed the unique in vitro indoor experimental platform that uses military explosive charges to accurately represent battle-field blast exposure and to probe the effects of primary explosive blast on dissociated neurons and tissue slices. We believe this is one of the controlled experimental methods to analyze, characterize primary explosive blast induced cellular injury, and understand threshold injury phenomenon.
机译:以诱导的细胞损伤以及在单个和/或多次曝光累积效应所需的阈冲击脉冲水平不充分表征。有与在实验室使用的炸药为主要调查爆炸致创伤性脑损伤的作用产生的爆炸压力波体外实验模型非常少。因此,关键是要开发实验室在以下检测和后续治疗和保护的未来改进爆炸冲击波影响的细胞和组织水平了可靠的实验研究工具,研究如何功能和结构的改变或损坏。美国陆军研究实验室(ARL)开发的独特的体外室内实验平台,采用了军用炸药为准确反映战场爆震性,并探讨对分离的神经细胞和组织切片初级爆炸冲击波的影响。我们相信这是受控的实验方法来分析,鉴定初级爆炸冲击波引起的细胞损伤,并了解门槛伤害的现象之一。

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