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两种加载条件下股骨有限元模型中各向同性和正交各向异性材料属性赋值的比较。

Comparison of isotropic and orthotropic material property assignments on femoral finite element models under two loading conditions.

作者信息

Peng Liang, Bai Jing, Zeng Xiaoli, Zhou Yongxin

机构信息

Department of Biomedical Engineering, Tsinghua University, Beijing 100084, China.

出版信息

Med Eng Phys. 2006 Apr;28(3):227-33. doi: 10.1016/j.medengphy.2005.06.003. Epub 2005 Aug 1.

Abstract

CT data has been widely used in the finite element modeling of bone. It can provide useful information on the geometrical topology and material properties of bone. Based on CT data, the assignment of bone material properties to finite element meshes is a fundamental step in the model generation. Most work done in this area has adopted isotropic assignment strategy due to its simplicity. However, bone material has been recognized as an orthotropic material. This work is aimed to investigate the effects of orthotropic material property assignment on femoral finite element model by comparing with isotropic material property assignment on the same model. There were 72 finite element models obtained from the frozen CT male dataset of visible human project. Based on the analysis results of the maximum equivalent Von Mises stress and the maximum nodal displacement, three parameters were defined to achieve this comparison. The results have shown that the differences between the two material property assignments are small under two loading conditions (double-leg standing and single-leg standing) investigated in this work.

摘要

CT数据已广泛应用于骨骼的有限元建模。它可以提供有关骨骼几何拓扑结构和材料特性的有用信息。基于CT数据,将骨骼材料特性分配到有限元网格是模型生成中的一个基本步骤。由于其简单性,该领域的大多数工作都采用了各向同性分配策略。然而,骨骼材料已被认为是一种正交各向异性材料。这项工作旨在通过与同一模型上的各向同性材料特性分配进行比较,研究正交各向异性材料特性分配对股骨有限元模型的影响。从可视人项目的冷冻CT男性数据集中获得了72个有限元模型。基于最大等效冯·米塞斯应力和最大节点位移的分析结果,定义了三个参数来进行这种比较。结果表明,在这项工作中研究的两种加载条件(双腿站立和单腿站立)下,两种材料特性分配之间的差异很小。

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