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各向异性骨的适应模型

Adaptation Models of Anisotropic Bone.

作者信息

Terrier A., Rakotomanana R. L., Ramaniraka A. N., Leyvraz P. F.

机构信息

Applied Mechanics Laboratory Swiss Federal Institute of Technology, 1015 Lausanne, Switzerland.

出版信息

Comput Methods Biomech Biomed Engin. 1997;1(1):47-59. doi: 10.1080/01495739708936694.

Abstract

A theoretical model and numerical methods were developed for testing different bone internal remodelling stimuli. The keystone of the study was the formulation of a stimulus based on the mechanical invariants of the stress tensor, which took into account bone non-homogeneity and anisotropy. A non-site specific remodelling rate equation was then used for the apparent density whereas anisotropy was fixed and evaluated from anatomic observations. An node-based semi-implicit algorithm with adaptive stepsize was implemented for solving the evolution equation. To preclude numerical artifacts (non-convergence, instability), a phase space description was proposed. As an illustration, the evolution of apparent density distribution surrounding the femoral stem after a Total Hip Replacement was simulated. Three stimuli were tested: the strain energy density stimulus, the octahedral shear stress stimulus, and an anisotropic plastic yield stress stimulus.

摘要

开发了一种理论模型和数值方法来测试不同的骨内部重塑刺激。该研究的关键是基于应力张量的力学不变量制定一种刺激,该刺激考虑了骨的非均匀性和各向异性。然后,对于表观密度使用非位点特异性重塑速率方程,而各向异性是固定的,并根据解剖学观察进行评估。为求解演化方程,实现了一种具有自适应步长的基于节点的半隐式算法。为了避免数值伪影(不收敛、不稳定),提出了一种相空间描述。作为示例,模拟了全髋关节置换术后股骨柄周围表观密度分布的演变。测试了三种刺激:应变能密度刺激、八面体剪应力刺激和各向异性塑性屈服应力刺激。

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