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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >A finite element method parametric study of the dynamic response of the human brain with different cerebrospinal fluid constitutive properties
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A finite element method parametric study of the dynamic response of the human brain with different cerebrospinal fluid constitutive properties

机译:不同脑脊液本构特性对人脑动态响应的有限元方法参数研究

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摘要

A major role for the cerebrospinal fluid (CSF) is to provide effective damping against sudden intracranial brain motions during dynamic head impact. This paper examines the roles of CSF properties on human brain responses under certain impact loadings. The brain is assumed to have a hyperviscoelastic material behaviour, while CSF is considered to be fluidlike elastic, viscoelastic, and nearly incompressible elastic with a low shear modulus and a high bulk modulus. A finite element parametric investigation on a head model under different scenarios of impact is conducted. In the study, the CSF material parameters are varied within the expected range of change, while other components of the head model are kept constant. The results indicate that the solutions from the modelling of CSF by a fluid-like medium are more realistic and support the findings of the experiment. The results also indicate that varying CSF properties did not have a major impact on the peak intracranial pressures but the impact on brain principal and shear strains are relatively significant. A sizeable impact on the relative motion of the brain, with respect to the skull, can also be observed.
机译:脑脊液(CSF)的主要作用是在动态头部撞击过程中提供有效的阻尼,以防止突然的颅内脑部运动。本文研究了在某些冲击负荷下脑脊液特性对人脑反应的作用。假定大脑具有高粘弹性材料的行为,而CSF被认为是流体状的弹性,粘弹性和几乎不可压缩的弹性,具有低剪切模量和高体积模量。在不同的冲击情况下对头部模型进行了有限元参数研究。在研究中,CSF材料参数在预期的变化范围内变化,而头部模型的其他组件保持不变。结果表明,通过类似流体的介质对CSF建模的解决方案更为现实,并支持了实验结果。结果还表明,不同的脑脊液特性对峰值颅内压没有重大影响,但对脑主干和剪切应变的影响相对显着。还可以观察到对大脑相对于头骨的相对运动的巨大影响。

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