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Wear Simulation of Total Disc Arthroplasties: Sensitivity to Device Design and Test Parameters

机译:全椎间盘置换术的磨损模拟:对设备设计和测试参数的敏感性

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The challenges of measuring in vivo total disc replacement (TDR) kinematics are well recognized, meaning that it is difficult to establish appropriate input conditions for wear simulation. Therefore it is desirable to ascertain the sensitivity of implant wear in vitro to perturbations of the kinematics and other testing parameters. It has previously been demonstrated in other metal-on-polyethylene joint replacements that cross-shear strongly influences wear rate. This study investigates this phenomenon by altering the phasing of the inputs by making the lag in the flexion-extension and lateral bend displacements zero. Further, the effect of an additional anterior-posterior shear, which has been reported in vivo, was investigated for two different TDR designs using an extra load or displacement input in addition to those prescribed by the standard ISO 18192-1. Altering the standard ISO 18192-1 waveform phasing significantly reduced the mean wear rate of the constrained polyethylene disc. The addition of an anterior-posterior input showed no significant change in the rate of wear for the constrained TDR but was increased for the unconstrained device. These results data demonstrate the strong dependency of the wear in these types of joints to the input conditions as well as the device design parameters. Hence, these factors should be given prime consideration when designing both the device itself and the assessment regime in which the construct is to be tested.
机译:测量体内总椎间盘置换(TDR)运动学的挑战已得到公认,这意味着很难为磨损模拟建立合适的输入条件。因此,需要确定植入物在体外对运动学和其他测试参数的扰动的敏感性。以前在其他金属-聚乙烯接头替代物中已经证明,交叉剪切会严重影响磨损率。本研究通过使屈伸和横向弯曲位移的滞后为零来改变输入的相位来研究这种现象。此外,除了标准ISO 18192-1规定的载荷或位移输入外,还针对两种不同的TDR设计,使用了额外的载荷或位移输入,研究了体内已报道的附加前后剪切效应。更改标准ISO 18192-1波形定相可显着降低受约束聚乙烯盘的平均磨损率。前后输入的增加对于受约束的TDR磨损率没有显着变化,但对于不受约束的设备,磨损率增加了。这些结果数据证明了这些类型的接头的磨损与输入条件以及设备设计参数的强烈相关性。因此,在设计设备本身和要在其中测试构造的评估方案时,应首先考虑这些因素。

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