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A subject-specific software solution for the modeling and the visualization of muscles deformations

机译:特定主题的软件解决方案,用于肌肉变形的建模和可视化

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摘要

Today, to create and to simulate a virtual anatomical version of a subject is useful in the decision process of surgical treatments. The muscular activity is one of the factors which can contribute to abnormal movements such as in spasticity or static contracture. In this paper, we propose a numerical solution, based on the Finite Element (FE) method, able to estimate muscles deformations during contraction. Organized around a finite element solver and a volumetric environment, this solution is made of all the modeling and simulation processes from the discretization of the studied domain to the visualization of the results. The choices of materials and properties of the FE model are also presented such as the hyperelasticity, the contention model based on inter-meshes neighboring nodes pairing, and the estimation of nodal forces based on the subject-specific muscular forces and action lines.
机译:如今,创建和模拟对象的虚拟解剖版本在外科治疗的决策过程中很有用。肌肉活动是可导致异常运动(例如痉挛或静态挛缩)的因素之一。在本文中,我们提出了一种基于有限元(FE)方法的数值解决方案,它能够估计收缩过程中的肌肉变形。该解决方案围绕一个有限元求解器和一个体积环境进行组织,由从建模域离散化到结果可视化的所有建模和仿真过程组成。还介绍了FE模型的材料和属性选择,例如超弹性,基于网间相邻节点配对的竞争模型,以及基于对象特定的肌肉力和动作线的节点力估计。

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