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A computational study on brain tissue under blast: primary and tertiary blast injuries

机译:爆炸下脑组织的计算研究:原发性和三次爆炸性损伤

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In this paper, a biomechanical study of a human head model exposed to blast shock waves followed by a blunt impact with the surface of the enclosing walls of a confined space is carried out. Under blast, the head may experience primary blast injury (PBI) due to exposure to the Shockwaves and tertiary blast injury (TeBI) due to a possible blunt impact. We examine the brain response data in a deformable finite element head model in terms of the inflicted stress/pressure, velocity, and acceleration on the brain for several blast scenarios with different intensities. The data will be compared for open space and confined spaces. Following the initial impact of the shock front in the confined space, one can see the fluctuations in biomechanical data due to wave reflections. Although the severity of the PBI and TeBI is dependent on the situation, for the cases studied here, PBI is considerably more pronounced than TeBI in confined spaces.
机译:在本文中,对人体头部模型进行了生物力学研究,该模型暴露于爆炸冲击波,然后与密闭空间的封闭壁表面进行钝击。在爆炸下,头部可能会因暴露于冲击波而遭受原发性爆炸损伤(PBI),而由于可能会受到钝器冲击而遭受第三次爆炸性损伤(TeBI)。我们在可变形的有限元头部模型中,根据几种强度不同的爆炸场景,根据所施加的应力/压力,速度和加速度来检查大脑的响应数据。将比较数据的开放空间和密闭空间。在密闭空间中冲击波前沿的最初冲击之后,人们可以看到由于波反射而引起的生物力学数据的波动。尽管PBI和TeBI的严重程度取决于情况,但对于此处研究的案例,在密闭空间中,PBI比TeBI明显得多。

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