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Wear-simulation Analysis of Rotating-platform Mobile-bearing Knees

机译:旋转平台移动式膝关节的磨损模拟分析

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摘要

The wear and wear debris from rotating-platform mobile-bearing knees and fixed-bearing knees were compared in knee joint-simulator studies. The wear rate of the fixed-bearing knees was found to increase as the kinematics were increased because of an increase in internal-external rotation and an increase in anteroposterior (AP) translation. The wear rate of the rotating-platform mobile-bearing knees was found to be significantly lower than that of the fixed-bearing knees. The rotating-platform mobile-bearing knee was able to decouple the complex kinematics to pure rotation at the inferior tibial articulating surface and linear flexion-extension and AP sliding at the superior femoral articulating interface, substantially reducing cross-shear and wear. No difference was found in the wear debris between the rotating-platform and fixed-bearing knees. This resulted in a substantially reduced functional biological activity or osteolytic potential for the rolaling-platform mobile-bearing knees due to the lower wear rates.
机译:在膝关节模拟器研究中比较了旋转平台活动式膝关节和固定式膝关节的磨损碎片。研究发现,随着运动学的增加,固定膝关节的磨损率也会增加,这是因为内外旋转的增加和前后(AP)的平移的增加。发现旋转平台活动式膝关节的磨损率明显低于固定式膝关节。旋转平台活动轴承膝关节能够将复杂的运动学解耦到胫骨下关节表面的纯旋转运动,以及在股骨上关节界面处的线性屈伸和AP滑动,从而大大减少了交叉剪切和磨损。旋转平台膝盖和固定轴承膝盖之间的磨损碎片没有发现差异。由于较低的磨损率,这导致了对带滚轮平台的活动式膝盖的功能性生物活性或溶骨潜力的显着降低。

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