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2009 Nicolas Andry Award: Clinical Biomechanics of Third Body Acceleration of Total Hip Wear

机译:2009年Nicolas Andry奖:第三次全髋关节磨损加速的临床生物力学

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摘要

Aseptic loosening attributable to wear-related osteolysis historically has been the predominant cause of failure in THA. Advances in low-wear bearing couples show great promise to substantially reduce this long-standing problem. However, there always has been striking variability in wear rate in any given cohort of patients who are similarly implanted, with some individuals typically experiencing near order-of-magnitude elevations above group mean. Third-body wear is likely a major contributor to many of these most osteolysis-prone outliers. For the patients affected, third-body effects may obviate many of the gains otherwise achieved by contemporary bearing surface improvements. Toward heightening visibility in terms of consequences for patients, this review paper summarizes an interrelated series of investigations quantifying construct level manifestations of third-body wear. Long-term followup of a unique group of patients with elevated third-body challenge shows statistically significant and clinically important wear-rate increases. A series of finite element models, validated physically, shows the linkage of location of third-body damage with variability of volumetric wear-rate acceleration and shows the effects of various implant factors, surgeon factors, and patient factors in the presence of third-body challenge. Finally, a mechanism for third-body debris access to wear-critical locations on the bearing surface is identified analytically and corroborated in laboratory experiments and implant retrievals.
机译:历史上,可归因于与磨损相关的骨溶解的无菌性松动一直是THA失败的主要原因。低磨损轴承对的进步显示出巨大的希望,可以大大减少这一长期存在的问题。但是,在类似植入的任何给定患者队列中,磨损率始终存在惊人的变化,有些个体通常经历高于组均值的近数量级升高。第三身体磨损可能是导致这些最容易发生骨溶解的异常值的主要因素。对于受影响的患者,第三身体效应可能会消除当代轴承表面改善所带来的许多其他好处。为了提高对患者的后果的可见性,本综述总结了一系列相互关联的研究,这些研究量化了第三者身体磨损的结构水平表现。长期随访的一组独特的三体攻击率较高的患者显示出统计学上显着且临床上重要的磨损率增加。一系列经过物理验证的有限元模型,显示了第三体损伤的位置与体积磨损率加速度变化之间的联系,并显示了存在第三体时各种植入因素,外科医生因素和患者因素的影响挑战。最后,在实验室实验和植入物回收中,通过分析确定并证实了第三体碎片进入轴承表面上磨损关键位置的机制。

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