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首页> 外文期刊>Clinical biomechanics >Fixed and mobile bearing total knee arthroplasty--influence on wear generation, corresponding wear areas, knee kinematics and particle composition.
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Fixed and mobile bearing total knee arthroplasty--influence on wear generation, corresponding wear areas, knee kinematics and particle composition.

机译:固定和移动轴承全膝关节置换术-对磨损产生,相应磨损区域,膝关节运动学和颗粒成分的影响。

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摘要

BACKGROUND: Several studies in literature are dealing with a direct comparison between fixed and mobile bearing knee replacements, but to our knowledge there is no published data comparing the wear behaviour of the two design principles based on the same femur and superior gliding surface geometry. The objective of our study was to investigate a fixed and mobile bearing knee design with identical femoral articulation in regard to wear, tibio-femoral kinematics and particle size distribution. METHODS: In vitro wear simulation according to ISO 14243-1 has been performed with the Columbus knee system (Aesculap, Tuttlingen) in the configurations fixed and mobile bearing for five million cycles on a customized four station knee wear simulator. The tests were running under force control and the tibio-femoral kinematics were assessed. A particle analysis has been undergone after each inspection interval when the lubricant was replaced. FINDINGS: Due to the additional wear in the tibial articulation of the mobile bearing design the mean gravimetric wear rates are not statistically different between the two groups. Apart of that there is a substantial reduction in the amount of wear per area unit for the mobile versus the fixed bearing gliding surfaces. Both groups show comparable tibio-femoral kinematics and a similar wear debris morphology. INTERPRETATION: Our investigation of a fixed and mobile bearing knee design with identical femoral articulation demonstrates that there are no significant differences in wear rate, resulting kinematics and polyethylene particle release. Therefore it can be recommended that surgeons decision for one or the other design principle should be based on the individual patient profile.
机译:背景:文献中有几项研究直接比较固定和移动式膝关节置换,但据我们所知,尚无公开的数据比较两种基于相同股骨和卓越滑行表面几何设计原理的磨损行为。我们研究的目的是研究在磨损,胫股运动学和粒度分布方面具有相同股骨关节的固定和移动的膝关节设计。方法:在定制的四工位膝盖磨损模拟器上,使用固定和移动轴承的Columbus膝盖系统(Aesculap,Tuttlingen)按照ISO 14243-1进行了体外磨损仿真,进行了五百万次循环。测试在力的控制下进行,并评估了胫股运动学。在每个检查间隔后更换润滑剂时都进行了颗粒分析。结果:由于活动轴承设计的胫骨关节处额外的磨损,两组的平均重量磨损率在统计学上没有差异。除此之外,相对于固定的轴承滑动表面,单位面积的磨损量大大减少。两组均显示出类似的胫股骨运动学和相似的磨损碎片形态。解释:我们对具有相同股骨关节的固定式和活动式膝关节膝关节设计的研究表明,磨损率,运动学和聚乙烯颗粒释放没有显着差异。因此,建议外科医生决定一种或另一种设计原则应基于患者的个人资料。

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