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一种将计算机断层扫描数值自动映射到有限元模型上的改进方法。

An improved method for the automatic mapping of computed tomography numbers onto finite element models.

作者信息

Taddei Fulvia, Pancanti Alberto, Viceconti Marco

机构信息

Laboratorio di Tecnologia Medica, Istituti Ortopedici Rizzoli, Via di Barbiano, 1/10, 40136 Bologna, Italy.

出版信息

Med Eng Phys. 2004 Jan;26(1):61-9. doi: 10.1016/s1350-4533(03)00138-3.

Abstract

The assignment of bone tissue material properties is a fundamental step in the generation of subject-specific finite element models from computed tomography data. Aim of the present work is to investigate the influence of the material mapping algorithm on the results predicted by the finite element analysis. Two models, a coarse and a refined one, of a human ileum, femur and tibia, were generated from CT data and used for the tests. In addition a convergence analysis was carried out for the femur model, using six refinement levels, to verify whether the inclusion of the material properties would significantly alter the convergence behaviour of the mesh. The results showed that the choice of the mapping algorithm influences the material distribution. However, this did not always propagate into the finite element results. The difference between the maximum Von Mises stress remained always lower than 10%, apart one case when it reached the 13%. However, the global behaviour of the meshes showed more marked differences between the two algorithms: in the finer meshes of the two long bones 20-30% of the bone volume showed differences in the predicted Von Mises stresses greater than 10%. The convergence behaviour of the model was not worsened by the introduction of inhomogeneous material properties. The software was made available in the public domain.

摘要

从计算机断层扫描数据生成特定个体有限元模型时,骨组织材料属性的赋值是一个基本步骤。本研究的目的是探讨材料映射算法对有限元分析预测结果的影响。从CT数据生成了人体回肠、股骨和胫骨的两个模型,一个粗糙模型和一个精细模型,并用于测试。此外,对股骨模型进行了收敛性分析,使用六个细化级别,以验证材料属性的纳入是否会显著改变网格的收敛行为。结果表明,映射算法的选择会影响材料分布。然而,这并不总是会影响到有限元分析结果。最大冯·米塞斯应力之间的差异始终低于10%,只有一个案例达到了13%。然而,两种算法之间网格的整体行为表现出更明显的差异:在两根长骨的精细网格中,20%-30%的骨体积预测的冯·米塞斯应力差异大于10%。引入非均匀材料属性并没有使模型的收敛行为变差。该软件已在公共领域发布。

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