【24h】

The Parametric Studies of Brain Materials in the Analysis of Head Impact

机译:头部撞击分析中脑材料的参数研究

获取原文
获取原文并翻译 | 示例

摘要

Crash analysis and head injury biomechanics are very important fields in biomedical research due to the devastating consequences of traumatic brain injuries (TBI). Complex geometry and constitutive models of multiple materials can be combined with the loading conditions in finite element head model to study the dynamic behavior of brain and the TBI. In such a modeling, the proper regional material properties of brain tissues are important. Brain tissues material properties have not been finally determined by experiments, and large variations in the test data still exist and the data is very much situation-dependent. Therefore, parametric analysis should be performed to study the relationship between the material properties and the brain response. The main purpose of presenting this paper is to identify the influence of material constitutive properties on brain impact response, to search for an improved material model and to arrive at a better correlation between the finite element model and the cadaver tests data. In this paper a 3-D nonlinear finite element method will be used to study the dynamic response of the human head under dynamic loading. The finite element formulation includes detailed model of the skull, brain, cerebral-spinal fluid (CSF), dura mater, pia mater, falx and tentorium membranes. The brain is modeled as linear viscoelastic material, whereas linear elastic material behavior is assumed for all the other tissue components. The proper contact and compatibility conditions between different components have been implemented in the modeling procedure. The results for the direct frontal impacts will be shown for three groups of material parameters. The parametrical analysis of tissue material models allows to examines the accuracy of three different set of material parameters for brain in a comparison with the prediction of the head dynamic response of Nahum's human cadaver direct impact experiment. Three sets of suggested material parameters are examined. It is concluded that although all three groups of material models will follow the dynamic behavior of the head and brain behavior, but the parametric data considered in this paper have a closer resemblance to the experimental behavior.
机译:由于创伤性脑损伤(TBI)的毁灭性后果,碰撞分析和颅脑损伤生物力学是生物医学研究中非常重要的领域。可以将多种材料的复杂几何结构和本构模型与有限元头部模型中的加载条件相结合,以研究大脑和TBI的动态行为。在这种建模中,大脑组织的适当区域材料特性很重要。脑组织的材料特性尚未通过实验最终确定,测试数据中仍然存在较大的差异,并且该数据在很大程度上取决于情况。因此,应该进行参数分析以研究物质特性与大脑反应之间的关系。提出本文的主要目的是确定材料本构性质对脑部撞击反应的影响,以寻找改进的材料模型,并在有限元模型与尸体测试数据之间取得更好的相关性。本文将使用3-D非线性有限元方法来研究人头在动态载荷下的动态响应。有限元公式包括头骨,大脑,脑脊液(CSF),硬脑膜,硬脑膜,falx和腱膜的详细模型。大脑被建模为线性粘弹性材料,而所有其他组织组件均假定为线性弹性材料行为。在建模过程中已实现了不同组件之间的适当接触和兼容性条件。对于三组材料参数,将显示直接正面碰撞的结果。组织材料模型的参数分析可以检查大脑的三种不同材料参数集的准确性,并与Nahum人体尸体直接撞击实验的头部动态响应预测进行比较。检查了三组建议的材料参数。结论是,尽管所有三组材料模型都将遵循头部和大脑行为的动态行为,但是本文中考虑的参数数据与实验行为更相似。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号