The effect of shock waves on brain blood pressure; experimental and computational studies

S. Hashemi, Douglas Jahnke, A. Sadegh, Y. Andreopoulos
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Abstract

In this paper, the induced pressure in blood vessels of the brain due to a blast has been investigated. An idealised experiment was designed, consisting of a ballistic rectangular gel block with a built-in conduit filled with water, representing the brain with a blood vessel, was placed in front of a shock tube. The experimental setup was simulated by a local 3D FE model which was validated with the experimental data. Results demonstrated that the skull, brain and meningeal layers reduce the intensity of a primary blast wave by a factor of 86 until it reaches the brain vessels. Furthermore, it was concluded that the striking shock waves with BOP greater than 5 MPa would increase the blood pressure to the critical level of 57 kPa which could onset failure and cause hematoma.
冲击波对脑血压的影响;实验与计算研究
本文对爆炸引起的脑血管压力进行了研究。设计了一个理想的实验,包括一个弹道矩形凝胶块和一个内置的充满水的导管,代表有血管的大脑,放在一个激波管的前面。利用局部三维有限元模型对实验装置进行了仿真,并对实验数据进行了验证。结果表明,在到达脑血管之前,颅骨、大脑和脑膜层将原始冲击波的强度降低了86倍。结果表明,当冲击冲击波的防喷压大于5 MPa时,会使血压升高至57 kPa的临界水平,从而引起心力衰竭并导致血肿。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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