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Cognition based bTBI mechanistic criteria; a tool for preventive and therapeutic innovations

机译:基于认知的bTBI机制标准;预防和治疗创新的工具

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摘要

Blast-induced traumatic brain injury has been associated with neurodegenerative and neuropsychiatric disorders. To date, although damage due to oxidative stress appears to be important, the specific mechanistic causes of such disorders remain elusive. Here, to determine the mechanical variables governing the tissue damage eventually cascading into cognitive deficits, we performed a study on the mechanics of rat brain under blast conditions. To this end, experiments were carried out to analyse and correlate post-injury oxidative stress distribution with cognitive deficits on a live rat exposed to blast. A computational model of the rat head was developed from imaging data and validated against in vivo brain displacement measurements. The blast event was reconstructed in silico to provide mechanistic thresholds that best correlate with cognitive damage at the regional neuronal tissue level, irrespectively of the shape or size of the brain tissue types. This approach was leveraged on a human head model where the prediction of cognitive deficits was shown to correlate with literature findings. The mechanistic insights from this work were finally used to propose a novel protective device design roadmap and potential avenues for therapeutic innovations against blast traumatic brain injury.
机译:爆炸引起的颅脑外伤与神经退行性疾病和神经精神疾病有关。迄今为止,尽管由于氧化应激引起的损害似乎很重要,但仍不清楚这种疾病的具体机制原因。在这里,为了确定控制最终导致级联为认知缺陷的组织损伤的机械变量,我们进行了爆炸条件下大鼠大脑力学的研究。为此,进行了实验以分析和关联暴露于爆炸的活大鼠的损伤后氧化应激分布与认知缺陷。从成像数据开发了大鼠头部的计算模型,并针对体内脑位移测量进行了验证。爆炸事件在计算机上进行了重建,以提供与局部神经元组织水平上的认知损伤最佳相关的机械阈值,而与脑组织类型的形状或大小无关。这种方法在人头模型上得到了利用,其中认知缺陷的预测与文献发现相关。这项工作的机理见解最终被用于提出一种新颖的保护装置设计路线图,以及针对爆炸性颅脑损伤的治疗创新的潜在途径。

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