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Three dimensional shape optimization of total knee replacements for reduced wear

机译:全膝关节置换的三维形状优化,减少了磨损

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This paper presents the design optimization of a total knee replacement (TKR) using a parametric three-dimensional finite element (FE) model, considering wear of the ultra high molecular weight polyethylene (UHMWPE) insert. A framework has been developed to generate three-dimensional FE models of the femoral component and UHMWPE insert of a TKR design in a batch mode process, then simulate an ISO standard TKR wear test. A modified version of Archard’s wear model calculates abrasive wear as a function of contact pressure, sliding distance and an experimentally determined wear factor. The UHMWPE wear was reduced by modifying the contact geometry of both components in the frontal and sagittal planes. Wear was reduced by 18.5%, from 55.248 to 45.013 mm3 per year by reducing the radii of curvature of the femoral condyles in the sagittal planes, increasing the radii in the frontal plane, and reducing conformity between the implant components.
机译:本文介绍了使用参数化三维有限元(FE)模型进行的全膝关节置换(TKR)的设计优化,同时考虑了超高分子量聚乙烯(UHMWPE)插入件的磨损。已经开发了一种框架,可以以批处理方式生成TKR设计的股骨组件和UHMWPE插件的三维有限元模型,然后模拟ISO标准TKR磨损测试。修改后的Archard磨损模型可根据接触压力,滑动距离和实验确定的磨损系数来计算磨料磨损。通过修改额面和矢状面中两个组件的接触几何形状,可以减少UHMWPE的磨损。通过减少矢状面内股骨dy的曲率半径,增加额骨面内的半径以及减少植入物组件之间的整合,磨损每年减少了18.5%,从55.248 mm3降低至45.013 mm3

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