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股骨旋转中心的选择会影响全膝关节置换磨损测试中的材料损失——ISO 14243-3 的参数有限元研究。

The choice of the femoral center of rotation affects material loss in total knee replacement wear testing - A parametric finite element study of ISO 14243-3.

机构信息

Rush University Medical Center, Chicago, IL, USA.

Rush University Medical Center, Chicago, IL, USA.

出版信息

J Biomech. 2019 May 9;88:104-112. doi: 10.1016/j.jbiomech.2019.03.027. Epub 2019 Mar 23.

DOI:10.1016/j.jbiomech.2019.03.027
PMID:30940359
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6499703/
Abstract

A leading cause of long-term failure of total knee replacements (TKRs) is osteolysis caused by polyethylene wear particles. The current gold standard for preclinical wear testing of TKRs is mechanical knee simulators. The definition of the femoral center of flexion-extension rotation (CoR) has been identified as one possible source of variability within TKR wear tests, since the femoral curvature varies from distal to posterior. The magnitude of the influence on wear due to changes in location of femoral CoR has not been investigated in depth. During this study, a computational framework utilizing finite element analysis for modelling wear of TKRs was developed and used to investigate the influence of the location of femoral CoR on TKR polyethylene wear during standardized displacement controlled testing (ISO 14243-3:2014). The study was carried out using a 40-point Latin Hypercube Design of Experiments approach. Volumetric wear was highly correlated to femoral CoR in both the superior/inferior and anterior/posterior directions, with a stronger relationship in the superior/inferior direction. In addition, wear scars showing linear penetration were examined, with large differences in simulations at the extreme ends of the sampling region. In this study, it was found that variations in the location of the femoral center of rotation can represent a large source of variability in the preclinical testing and evaluation of the wear performance of total knee replacements. This study represents the first attempt at quantifying the effect on wear of different femoral center of rotations across a large sampling space.

摘要

全膝关节置换术(TKR)长期失败的一个主要原因是聚乙烯磨损颗粒引起的骨溶解。目前,TKR 临床前磨损测试的金标准是机械膝关节模拟器。已经确定股骨屈伸旋转中心(CoR)的定义是 TKR 磨损测试中可能存在的一种变异性来源,因为股骨曲率从远端到后部发生变化。股骨 CoR 位置变化对磨损的影响程度尚未深入研究。在这项研究中,开发了一种利用有限元分析来模拟 TKR 磨损的计算框架,并用于研究在标准化位移控制测试(ISO 14243-3:2014)期间股骨 CoR 位置对 TKR 聚乙烯磨损的影响。该研究使用 40 点拉丁超立方设计实验方法进行。在上下和前后两个方向上,体积磨损与股骨 CoR 高度相关,在上下方向上的相关性更强。此外,还检查了显示线性穿透的磨损痕迹,在采样区域的极端处模拟结果存在较大差异。在这项研究中,发现股骨旋转中心位置的变化可能是全膝关节置换临床前测试和磨损性能评估中存在大量变异性的一个主要来源。这项研究首次尝试在大采样空间中量化不同股骨旋转中心对磨损的影响。

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