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A 3D active-passive numerical skeletal muscle model incorporating initial tissue strains. Validation with experimental results on rat tibialis anterior muscle

机译:包含初始组织应变的3D主动-被动数字骨骼肌模型。用大鼠胫前肌的实验结果进行验证

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摘要

This paper presents a three-dimensional finite element model of skeletal muscle and its validation incorporating inital tissue strains. A constitutive relation was determined by using a convex free strain energy function (SEF) where active and passive response contributions were obtained fitting experimental data from the rat tibialis anterior (TA) muscle. The passive and active finite strains response was modelled within the framework of continuum mechanics by a quasi-incompressible transversely isotropic material formulation. Magnetic resonance images (MRI) were obtained to reconstruct the external geometry of the TA. This geometry includes initial strains also taken into account in the numerical model. The numerical results show excellent agreement with the experimental results when comparing reaction force-extension curves both in passive and active tests. The proposed constitutive model for the muscle is implemented in a subroutine in the commercial finite element software package ABAQUS.
机译:本文提出了骨骼肌的三维有限元模型及其结合了初始组织应变的验证。本构关系是通过使用凸自由应变能函数(SEF)确定的,其中从大鼠胫前肌(TA)肌肉拟合实验数据获得了主动和被动响应贡献。通过准不可压缩的横向各向同性材料公式,在连续力学的框架内对被动和主动有限应变响应进行建模。获得磁共振图像(MRI)以重建TA的外部几何形状。该几何形状还包括在数值模型中也要考虑的初始应变。当比较被动和主动测试中的反作用力-延伸曲线时,数值结果与实验结果非常吻合。在商业有限元软件包ABAQUS中的子例程中实现了所提出的肌肉本构模型。

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