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Prediction of Wear on Tibial Inserts Made of UHMWPE, PEEK, and CFR-PEEK in Total Knee Arthroplasty Using Finite-Element Analysis

机译:用有限元分析预测UHMWPE,PEEK和CFR-PEEK制成的胫骨假体在全膝关节置换术中的磨损

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The wear of tibial inserts in total knee arthroplasty (TKA) remains a major limitation of longevity. However, wear tests are expensive and time-consuming. Computational wear prediction using a finite-element (FE) model followed by validation through comparison with experimental data is effective for assessing new prosthetic designs or materials prior to functional testing and surgical implementation. In this study, the kinematics, volumetric wear, and wear depth of tibial inserts made of different materials (ultrahigh-molecular weight polyethylene (UHMWPE), polyetheretherketone (PEEK), and carbon fiber-reinforced PEEK (CFR–PEEK)) in TKA were evaluated by employing FE models and analysis. The differences among the materials were evaluated using adaptive wear modeling to predict the wear depth, volumetric wear, and kinematics under a gait loading condition. The volumetric wear and wear depth of the CFR–PEEK decreased by 87.4% and 61.3%, respectively, compared with those of the UHMWPE, whereas the PEEK exhibited increased volumetric wear and wear depth. These results suggest that CFR–PEEK is a good alternative to UHMWPE as a promising and suitable material for tibial inserts used in TKA. However, orthopedic research should be performed to evaluate the threshold conditions and appropriate applications for the newly developed and introduced biomaterial.
机译:全膝关节置换术(TKA)中胫骨插入物的磨损仍然是长寿的主要限制。但是,磨损测试既昂贵又费时。使用有限元(FE)模型进行计算磨损预测,然后通过与实验数据进行比较进行验证,可以有效地评估功能测试和手术之前的新假体设计或材料。在这项研究中,在TKA中由不同材料(超高分子量聚乙烯(UHMWPE),聚醚醚酮(PEEK)和碳纤维增强PEEK(CFR–PEEK))制成的胫骨嵌件的运动学,体积磨损和磨损深度为通过采用有限元模型和分析进行评估。使用自适应磨损模型评估材料之间的差异,以预测步态载荷条件下的磨损深度,体积磨损和运动学。与UHMWPE相比,CFR–PEEK的体积磨损和磨损深度分别减少了87.4%和61.3%,而PEEK的体积磨损和磨损深度却增加了。这些结果表明,CFR-PEEK是UHMWPE的良好替代品,是用于TKA的胫骨插入物的有希望的合适材料。但是,应该进行骨科研究以评估新开发和引入的生物材料的阈值条件和适当的应用。

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