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Inverse analysis and robustness evaluation for biological structure behaviour in FE simulation: application to the liver

机译:有限元模拟中生物结构行为的逆分析和鲁棒性评估:在肝脏中的应用

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To prevent traumas to abdominal organs, the selection of efficient safety devices should be based on a detailed knowledge of injury mechanisms and related injury criteria. In this sense, finite element (FE) simulation coupled with experiment could be a valuable tool to provide a better understanding of the behaviour of internal organs under crash conditions. This work proposes a methodology based on inverse analysis which combines exploration process optimisation and robustness study to obtain mechanical behaviour of the complex structure of the liver through FE simulation. The liver characterisation was based on Mooney-Rivlin hyperelastic behaviour law considering whole liver structure under uniform quasi-static compression. With the global method used, the model fits experimental data. The variability induced by modelling parameters is quantified within a reasonable time.
机译:为防止对腹部器官造成伤害,应基于对伤害机制和相关伤害准则的详细了解来选择有效的安全装置。从这个意义上讲,有限元(FE)模拟与实验相结合可能是一个有价值的工具,可以更好地了解碰撞条件下内部器官的行为。这项工作提出了一种基于反分析的方法,该方法结合了探索过程的优化和鲁棒性研究,可以通过有限元模拟获得肝脏复杂结构的力学行为。肝脏的表征基于门尼-里夫林的超弹性行为定律,考虑了在均匀准静态压缩下的整个肝脏结构。使用全局方法,模型可以拟合实验数据。由建模参数引起的可变性在合理时间内被量化。

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