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Effects of neck damping properties on brain response underimpact loading

机译:冲击负荷下颈部阻尼特性对脑反应的影响

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In this paper, head-neck boundary conditions and modeling or the head are studied circumspectly. The neck is modeled using discrete elements and the head model is three-dimensional. In the study presented here, a viscoelastic foundation (i.e., foundation defined by both springs and dampers) concept is introduced to simulate the head-neck boundary conditions during the impact load to the head. Time histories of the brain response in finite element head models with a viscoelastic neck are compared with the corresponding solutions of finite element head models with an elastic neck, and without a neck. It is observed that the magnitude of peaks in the brain's response time histories, at a later stage (i.e., 6 to 15 ms) of the simulation, decreases when dampers are induced to the elastic neck. A parametric study is also conducted to examine the brain response while varying different damping coefficient values for the neck. The magnitude of peaks in the brain's response time histories for models with different neck damping coefficients is observed to maintain some form of proportionality. In other words, the magnitude of peaks in the brain's response time histories decreases with an increased damping coefficient of the neck at the later stage of the simulation (i.e., 6 to 15 ms). From the outcomes of this study, it can be determined that the head-neck boundary conditions during head impact loading are important for studying the brain's response at the later stages of the head impact.
机译:在本文中,对头颈部边界条件和建模或头部进行了仔细研究。脖子是使用离散元素建模的,而头部模型是三维的。在此处介绍的研究中,引入了粘弹性基础(即由弹簧和阻尼器定义的基础)的概念,以模拟对头部的冲击载荷期间的头部-颈部边界条件。将具有粘弹性颈部的有限元头部模型中脑反应的时间历史与具有弹性颈部和无颈部的有限元头部模型的相应解进行比较。可以观察到,在模拟的后期(即6到15毫秒),当在弹性脖子上诱发阻尼器时,大脑响应时间历史中的峰值幅度会减小。还进行了参数研究,以检查大脑的反应,同时改变颈部的不同阻尼系数值。观察到具有不同颈部阻尼系数的模型的大脑响应时间历史中的峰值大小,可以保持某种形式的比例关系。换句话说,在模拟的后期(即6到15毫秒),大脑的响应时间历史中的峰值随颈部阻尼系数的增加而减小。从这项研究的结果可以确定,在头部撞击负荷期间的头颈部边界条件对于研究头部撞击后期的大脑反应非常重要。

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