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骨水泥固定股骨假体周围的异性骨重塑:与各向同性公式的比较。

Orthotropic bone remodelling around uncemented femoral implant: a comparison with isotropic formulation.

机构信息

Department of Mechanical Engineering, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal, 721 302, India.

School of Medical Science and Technology, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal, 721 302, India.

出版信息

Biomech Model Mechanobiol. 2021 Jun;20(3):1115-1134. doi: 10.1007/s10237-021-01436-6. Epub 2021 Mar 25.

Abstract

Peri-prosthetic bone adaptation has usually been predicted using subject-specific finite element analysis in combination with remodelling algorithms and assuming isotropic bone material property. The objective of the study is to develop an orthotropic bone remodelling algorithm for evaluation of peri-prosthetic bone adaptation in the uncemented implanted femur. The simulations considered loading conditions from a variety of daily activities. The orthotropic algorithm was tested on 2D and 3D models of the intact femur for verification of predicted results. The predicted orthotropic directionality, based on principal stress directions, was in agreement with the trabecular orientation in a micro-CT data of proximal femur. The validity of the proposed strain-based algorithm was assessed by comparing the predicted results of the orthotropic model with those of the strain-energy-density-based isotropic formulation. Despite agreement in cortical densities [Formula: see text], the isotropic remodelling algorithm tends to predict relatively higher values around the distal tip of the implant as compared to the orthotropic model. Both formulations predicted 4-8% bone resorption in the proximal femur. A linear regression analysis revealed a significant correlation [Formula: see text] between the stresses and strains on the cortex of the proximal femur, predicted by the isotropic and orthotropic formulations. Despite reasonable agreement in peri-prosthetic bone density distributions, the quantitative differences with isotropic model predictions highlight the combined influences of bone orthotropy and mechanical stimulus in the adaptation process.

摘要

在考虑各种日常活动的载荷条件下,对非骨水泥植入股骨的假体周围骨适应性进行了二维和三维模型的各向异性骨重建算法测试,以验证预测结果。基于主应力方向的各向异性预测方向与近端股骨 micro-CT 数据中的小梁方向一致。通过比较各向异性模型和基于应变能密度的各向同性公式的预测结果,评估了所提出的基于应变的算法的有效性。尽管皮质密度的一致性[公式:见正文],各向同性重建算法倾向于预测相对于各向异性模型,在植入物远端尖端附近的相对较高的值。两种方案都预测了近端股骨 4-8%的骨吸收。线性回归分析显示,在各向同性和各向异性公式预测的近端股骨皮质上的应力和应变之间存在显著相关性[公式:见正文]。尽管假体周围骨密度分布具有合理的一致性,但与各向同性模型预测的定量差异突出了在适应过程中骨各向异性和机械刺激的综合影响。

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