首页> 外文期刊>The Journal of arthroplasty >Wear of Polyethylene Against Oxidized Zirconium Femoral Components. Effect of Aggressive Kinematic Conditions and Malalignment in Total Knee Arthroplasty
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Wear of Polyethylene Against Oxidized Zirconium Femoral Components. Effect of Aggressive Kinematic Conditions and Malalignment in Total Knee Arthroplasty

机译:聚乙烯对氧化锆锆股骨成分的磨损。积极的运动学状况和错位对全膝关节置换术的影响

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摘要

Metallic femoral components with ceramic articulating surfaces can substantially lower polyethylene (PE) wear during walking activities under conditions of normal knee alignment. It is unknown whether these types of components can maintain low wear rates under conditions of knee malalignment and the harsher kinematics associated with younger, athletically active patients. Wear was measured in non-cross-linked, ethylene oxide-sterilized PE inserts against oxidized zirconium or cobalt-chrome femoral components in a knee wear simulator. The vertical load was modified to replicate knee varus malalignment of 3°, and the range of tibial rotation was increased to 20°. Mean gravimetric and volumetric wear rate over 5 million cycles was 55% lower in the oxidized zirconium group. An oxidized zirconium femoral component can significantly reduce PE wear under simulated conditions of athletically active patients with modestly malaligned total knee arthroplasty prostheses.
机译:在正常的膝盖对齐条件下的步行活动中,具有陶瓷铰接表面的金属股骨组件可大大降低聚乙烯(PE)的磨损。尚不清楚这些类型的组件在膝关节错位和与年轻,运动活跃的患者相关的运动学较差的情况下是否能维持低磨损率。在膝盖磨损模拟器中测量了非交联的,经环氧乙烷灭菌的PE插件对氧化锆或钴铬合金股骨组件的磨损。修改垂直载荷以复制3°的膝内翻畸形,并将胫骨旋转范围增加至20°。氧化锆组在500万次循环中的平均重量和体积磨损率降低了55%。氧化锆的股骨组件可以在运动状况良好的全膝关节置换术不适当假体的模拟患者中显着减少PE磨损。

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