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A new approach for assigning bone material properties from CT images into finite element models.

机译:一种将CT图像中的骨骼材料属性分配到有限元模型中的新方法。

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摘要

Generation of subject-specific finite element (FE) models from computed tomography (CT) datasets is of significance for application of the FE analysis to bone structures. A great challenge that remains is the automatic assignment of bone material properties from CT Hounsfield Units into finite element models. This paper proposes a new assignment approach, in which material properties are directly assigned to each integration point. Instead of modifying the dataset of FE models, the proposed approach divides the assignment procedure into two steps: generating the data file of the image intensity of a bone in a MATLAB program and reading the file into ABAQUS via user subroutines. Its accuracy has been validated by assigning the density of a bone phantom into a FE model. The proposed approach has been applied to the FE model of a sheep tibia and its applicability tested on a variety of element types. The proposed assignment approach is simple and illustrative. It can be easily modified to fit users' situations.
机译:从计算机断层扫描(CT)数据集生成特定对象的有限元(FE)模型对于将FE分析应用于骨骼结构具有重要意义。仍然存在的巨大挑战是将CT霍恩斯菲尔德单元的骨材料属性自动分配到有限元模型中。本文提出了一种新的分配方法,其中将材料属性直接分配给每个集成点。提出的方法无需修改FE模型的数据集,而是将分配过程分为两个步骤:在MATLAB程序中生成骨骼图像强度的数据文件,并通过用户子例程将文件读取到ABAQUS中。通过将骨骼模型的密度分配给FE模型,已验证了其准确性。所提出的方法已应用于羊胫骨的有限元模型,并在各种元素类型上测试了其适用性。所提出的分配方法是简单且说明性的。可以轻松修改它以适应用户的情况。

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