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使用微观结构体素有限元模型对松质骨进行小梁表面重塑模拟。

Trabecular surface remodeling simulation for cancellous bone using microstructural voxel finite element models.

作者信息

Adachi T, Tsubota K, Tomita Y, Hollister S J

机构信息

Department of Mechanical Engineering, Faculty of Engineering, Kobe University, Nada, Japan.

出版信息

J Biomech Eng. 2001 Oct;123(5):403-9. doi: 10.1115/1.1392315.

Abstract

A computational simulation method for three-dimensional trabecular surface remodeling was proposed, using voxel finite element models of cancellous bone, and was applied to the experimental data. In the simulation, the trabecular microstructure was modeled based on digital images, and its morphological changes due to surface movement at the trabecular level were directly expressed by removing/adding the voxel elements from/to the trabecular surface. A remodeling simulation at the single trabecular level under uniaxial compressive loading demonstrated smooth morphological changes even though the trabeculae were modeled with discrete voxel elements. Moreover, the trabecular axis rotated toward the loading direction with increasing stiffness, simulating functional adaptation to the applied load. In the remodeling simulation at the trabecular structural level, a cancellous bone cube was modeled using a digital image obtained by microcomputed tomography (microCT), and was uniaxially compressed. As a result, the apparent stiffness against the applied load increased by remodeling, in which the trabeculae reoriented to the loading direction. In addition, changes in the structural indices of the trabecular architecture coincided qualitatively with previously published experimental observations. Through these studies, it was demonstrated that the newly proposed voxel simulation technique enables us to simulate the trabecular surface remodeling and to compare the results obtained using this technique with the in vivo experimental data in the investigation of the adaptive bone remodeling phenomenon.

摘要

提出了一种基于松质骨体素有限元模型的三维小梁表面重塑计算模拟方法,并将其应用于实验数据。在模拟中,基于数字图像对小梁微观结构进行建模,通过从/向小梁表面移除/添加体素元素直接表示小梁水平上由于表面移动引起的形态变化。单小梁水平下的单轴压缩加载重塑模拟表明,即使小梁是用离散体素元素建模的,其形态变化也很平滑。此外,小梁轴随着刚度增加而向加载方向旋转,模拟了对施加负荷的功能适应。在小梁结构水平的重塑模拟中,使用通过微计算机断层扫描(microCT)获得的数字图像对松质骨立方体进行建模,并进行单轴压缩。结果,通过重塑,对抗施加负荷的表观刚度增加,其中小梁重新定向到加载方向。此外,小梁结构的结构指标变化在定性上与先前发表的实验观察结果一致。通过这些研究表明,新提出的体素模拟技术使我们能够模拟小梁表面重塑,并将使用该技术获得的结果与体内实验数据进行比较,以研究适应性骨重塑现象。

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