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用横向各向同性粘弹性超弹性连续体材料模型模拟活跃骨骼肌组织。

Simulation of active skeletal muscle tissue with a transversely isotropic viscohyperelastic continuum material model.

作者信息

Khodaei Hamid, Mostofizadeh Salar, Brolin Karin, Johansson Håkan, Osth Jonas

机构信息

Department of Applied Mechanics, Chalmers University of Technology, Sweden.

出版信息

Proc Inst Mech Eng H. 2013 May;227(5):571-80. doi: 10.1177/0954411913476640. Epub 2013 Feb 20.

Abstract

Human body models with biofidelic kinematics in vehicle pre-crash and crash simulations require a constitutive model of muscle tissue with both passive and active properties. Therefore, a transversely isotropic viscohyperelastic continuum material model with element-local fiber definition and activation capability is suggested for use with explicit finite element codes. Simulations of experiments with New Zealand rabbit's tibialis anterior muscle at three different strain rates were performed. Three different active force-length relations were used, where a robust performance of the material model was observed. The results were compared with the experimental data and the simulation results from a previous study, where the muscle tissue was modeled with a combination of discrete and continuum elements. The proposed material model compared favorably, and integrating the active properties of the muscle into a continuum material model opens for applications with complex muscle geometries.

摘要

在车辆碰撞前和碰撞模拟中具有生物逼真运动学的人体模型需要一个具有被动和主动特性的肌肉组织本构模型。因此,建议使用具有单元局部纤维定义和激活能力的横向各向同性粘弹性超弹性连续介质材料模型与显式有限元代码配合使用。对新西兰兔胫骨前肌在三种不同应变率下的实验进行了模拟。使用了三种不同的主动力-长度关系,观察到材料模型具有稳健的性能。将结果与实验数据以及先前研究的模拟结果进行了比较,在先前的研究中,肌肉组织是用离散和连续单元的组合进行建模的。所提出的材料模型表现良好,并且将肌肉的主动特性集成到连续介质材料模型中为具有复杂肌肉几何形状的应用开辟了道路。

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