首页> 外文会议>ASME international mechanical engineering congress and exposition >DOES SUBARACHNOID SPACE PROTECT THE BRAIN FROM BLAST WAVES AND/OR BLUNT IMPACTS?
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DOES SUBARACHNOID SPACE PROTECT THE BRAIN FROM BLAST WAVES AND/OR BLUNT IMPACTS?

机译:蛛网膜下腔会保护大脑免受爆炸波和/或钝化冲击的影响吗?

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The objectives of this study is to investigate the transduction of blast wave through the SAS region and the influence of SAS including different types of trabeculae in reducing the strain in the brain, when the head is subjected to a blast wave, and finally, comparing that to a none blast load such as blunt impacts or angular accelerations of the head during contact sports or accidents. This is accomplished through a series of Global/Local models of the head, neck and the brain. Specifically, a validated FE 3D model of the head and neck is subjected to a blast wave and the time dependent local compressive pressure gradient on the dura matter is calculated. Then through several detailed local FE models of the head, consisting Dura mater, Gray matter, Subarachnoid space having trabeculae and the CSF, the strains in the brain are calculated. In the local models different architecture and morphology of the trabeculae (rod shaped and the tree-shaped) are considered. The Global/Local models were analyzed using ABAQUS 6.12. In addition, the same procedure has been carried out for a velocity impact profile corresponding to 1.1 mph. The results revealed that the shape of the trabeculae would not affect the severity of loads transferring to the brain from shock waves in blast scenarios. Moreover, the interaction between the CSF and Tree-shaped trabeculae and rods with smaller cross sections, protect the brain better in impacts.
机译:这项研究的目的是研究爆炸波通过SAS区域的传导以及SAS(包括不同类型的小梁)在头部受到爆炸波的影响下对减轻脑部应变的影响,最后,将其进行比较。在接触运动或事故期间承受非爆炸性负载,例如钝击或头部的角加速度。这是通过一系列的头部,颈部和大脑的全局/局部模型来完成的。具体来说,对经过验证的头部和颈部的FE 3D模型进行爆炸,并计算硬脑膜上随时间变化的局部压缩压力梯度。然后,通过几个详细的局部局部有限元模型,包括硬脑膜,灰质,具有小梁的蛛网膜下腔和脑脊液,计算出大脑中的应变。在局部模型中,考虑了小梁的不同结构和形态(杆状和树状)。使用ABAQUS 6.12分析了全局/局部模型。此外,对于与1.1 mph对应的速度冲击曲线,已经执行了相同的步骤。结果表明,在爆炸情况下,小梁的形状不会影响从冲击波转移到大脑的负荷的严重性。此外,CSF与树形小梁和横截面较小的杆之间的相互作用可以更好地保护大脑免受撞击。

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