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Brain Injury Differences in Frontal Impact Crash Using Different Simulation Strategies

机译:使用不同的仿真策略正面碰撞中的脑损伤差异

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摘要

In the real world crashes, brain injury is one of the leading causes of deaths. Using isolated human head finite element (FE) model to study the brain injury patterns and metrics has been a simplified methodology widely adopted, since it costs significantly lower computation resources than a whole human body model does. However, the degree of precision of this simplification remains questionable. This study compared these two kinds of methods: (1) using a whole human body model carried on the sled model and (2) using an isolated head model with prescribed head motions, to study the brain injury. The distribution of the von Mises stress (VMS), maximum principal strain (MPS), and cumulative strain damage measure (CSDM) was used to compare the two methods. The results showed that the VMS of brain mainly concentrated at the lower cerebrum and occipitotemporal region close to the cerebellum. The isolated head modelling strategy predicted higher levels of MPS and CSDM 5%, while the difference is small in CSDM 10% comparison. It suggests that isolated head model may not equivalently reflect the strain levels below the 10% compared to the whole human body model.
机译:在现实世界中,脑损伤是导致死亡的主要原因之一。使用孤立的人头有限元(FE)模型研究脑损伤模式和指标已被广泛采用的一种简化方法,因为它比整个人体模型花费的计算资源要少得多。但是,这种简化的精确度仍然值得怀疑。本研究比较了这两种方法:(1)使用雪橇模型上的整个人体模型,以及(2)使用具有规定头部动作的孤立头部模型来研究脑损伤。使用冯·米塞斯应力(VMS),最大主应变(MPS)和累积应变破坏度量(CSDM)的分布来比较这两种方法。结果表明,大脑的VMS主要集中在小脑下部和靠近小脑的枕颞区。孤立的头部建模策略预测MPS和CSDM的较高水平为5%,而CSDM 10%的比较差异很小。这表明与整个人体模型相比,孤立的头部模型可能无法等效地反映低于10%的应变水平。

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