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Preferential superior surface motion in wear simulations of the Charité total disc replacement.

机译:在Charité全盘更换的磨损模拟中,具有优越的表面运动性。

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摘要

Laboratory wear simulations of the dual-bearing surface Charité total disc replacement (TDR) are complicated by the non-specificity of the device's center of rotation (CoR). Previous studies have suggested that articulation of the Charité preferentially occurs at the superior-bearing surface, although it is not clear how sensitive this phenomenon is to lubrication conditions or CoR location. In this study, a computational wear model is used to study the articulation kinematics and wear of the Charité TDR. Implant wear was found to be insensitive to the CoR location, although seemingly non-physiologic endplate motion can result. Articulation and wear were biased significantly to the superior-bearing surface, even in the presence of significant perturbations of loading and friction. The computational wear model provides novel insight into the mechanics and wear of the Charité TDR, allowing for better interpretation of in vivo results, and giving useful insight for designing future laboratory physical tests.
机译:由于设备旋转中心(CoR)的非特异性,双轴承表面Charité全盘置换(TDR)的实验室磨损模拟变得复杂。先前的研究表明,Charité的铰接优先发生在上轴承表面,尽管尚不清楚这种现象对润滑条件或CoR位置的敏感程度。在这项研究中,使用计算磨损模型来研究CharitéTDR的关节运动学和磨损。发现植入物磨损对CoR位置不敏感,尽管看似会导致非生理性终板运动。即使在负载和摩擦存在明显扰动的情况下,关节运动和磨损也会明显偏向上轴承表面。计算磨损模型为CharitéTDR的力学和磨损提供了新颖的见解,从而可以更好地解释体内结果,并为设计未来的实验室物理测试提供有用的见解。

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