首页> 外文期刊>Journal of mechanics in medicine and biology >THE INFLUENCE OF BRAIN TISSUE MATERIAL PARAMETERS ON THE RESPONSE OF DYNAMIC CHARACTERISTICS BASED ON FINITE ELEMENT MODEL
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THE INFLUENCE OF BRAIN TISSUE MATERIAL PARAMETERS ON THE RESPONSE OF DYNAMIC CHARACTERISTICS BASED ON FINITE ELEMENT MODEL

机译:基于有限元模型的脑组织材料参数对动态特性响应的影响

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Aiming at the uncertainty of material parameters of human brain tissue, the influence of tissue material performance sensitivity on frequency and mode shape under free vibration is studied. In this paper, the 50th percentile finite element (FE) model of human head and neck with detailed anatomical characteristics has been chosen as the research object, the parameters of skull, cerebrospinal fluid (CSF) and brain tissue materials with high sensitivity are analyzed by orthogonal test design and variance analysis. The results show that the natural frequencies of Group 7, Group 8 and Group 9 are all around 230Hz, which are basically consistent with the initial parameter of 229.18Hz, and the intracranial displacements of the three groups are also concentrated on the lateral nasal cartilage. The main reason is that the Young’s modulus of the skull used in three groups of experiments is 9780Mpa, which is close to the initial parameter of 8000Mpa. It indicates that the material parameter of the skull has the greatest influence on the dynamic characteristics of human head and neck, followed by the CSF and brain tissue. This study provides an effective method for vehicle safety and head and neck injury protection, and supplies a reference for FE analysis of head collision damage.
机译:针对人脑组织材料参数的不确定性,研究了在自由振动下频率和模式形状对频率和模式形状的影​​响。本文中,已选择具有详细解剖特性的人头和颈部的50百分位有限元(FE)模型作为研究对象,分析了颅骨,脑脊液(CSF)和具有高灵敏度的脑组织材料的参数正交试验设计与方差分析。结果表明,第7组,第8组和第9组的固有频率全部约为230Hz,其基本上与229.18Hz的初始参数一致,三组的颅内移位也集中在侧鼻软骨上。主要原因是三组实验中使用的颅骨的杨氏模量是9780MPa,接近8000MPa的初始参数。它表明头骨的材料参数对人体头部和颈部的动态特性影响最大,其次是CSF和脑组织。本研究提供了一种有效的车辆安全性和头部损伤和颈部损伤的方法,并为头部碰撞损坏的FE分析提供了参考。

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