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In vivo determination of cam-post engagement in fixed and mobile-bearing TKA knee

机译:固定和移动式TKA膝关节中凸轮柱接合的体内测定

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Background: Kinematics vary, sometimes in important ways, among the different types of total knee arthroplasty (TKA) designs, yet differences between the in vivo mechanisms of cam-post engagement in rotating-platform posterior-stabilized (PS) TKA, bicruciate-stabilized TKA, and fixed-bearing PS TKA designs remain largely uncharacterized. Questions/purposes: The objective of this study was to determine the cam-post mechanism interaction for subjects implanted with three different TKA designs. Methods: In vivo, analysis was conducted for patients implanted with nine rotating-platform PS TKAs, five knees with a fixed-bearing PS TKA, and 10 knees with a bicruciate-stabilized TKA while performing a deep knee bend. Three-dimensional kinematics of the implant components were determined by analysis of fluoroscopic images during flexion. The distances between the interacting surfaces were measured throughout flexion and instances and locations of contact were identified. Results: Seven of the 10 bicruciate-stabilized knees analyzed had the femoral component engaged with the anterior aspect of the tibial post at full extension. Posterior cam-post engagement occurred at 34 for the bicruciate-stabilized (range, 17 -68), 93 for the fixed-bearing PS (range, 88 -100), and at 97 (range, 90 -104) for rotating-platform PS TKA. In bicruciate-stabilized and fixed-bearing PS knees, the contact initially occurred on the medial aspect of the posterior surface of the tibial post and then moved centrally and superiorly with increasing flexion. For rotating-platform PS TKA, it was located centrally on the posterior surface of the post at all times. Conclusions: This study suggests that mobility of the polyethylene might play an important role in ensuring central cam-post interaction in PS TKA. The polyethylene insert rotates axially in accordance with the rotating femur, maintaining central cam-post contact. This phenomenon was not observed in the fixed-bearing PS TKAs analyzed in this study. Clinical Relevance: We speculate that this centralized symmetrical contact between the cam and posterior surface of the post could be beneficial clinically in terms of reducing wear of the posterior surface and particularly at the medial extremes of it. Level of Evidence: Level III, therapeutic study. See Guidelines for Authors for a complete description of levels of evidence.
机译:背景:在不同类型的全膝关节置换术(TKA)设计之间,运动学有时会以重要的方式发生变化,但旋转平台后稳定(PS)TKA,双小球稳定后的凸轮柱接合的体内机制之间存在差异TKA和固定轴承PS TKA设计在很大程度上仍然没有特征。问题/目的:这项研究的目的是确定植入了三种不同TKA设计的受试者的凸轮柱机构相互作用。方法:在体内,对植入了9个旋转平台PS TKA,5个膝关节固定PS TKA和10个双十字稳定TKA的患者进行了分析,同时进行了深膝弯曲。通过分析屈曲过程中的透视图像来确定植入物组件的三维运动学。在整个弯曲过程中测量相互作用表面之间的距离,并确定接触的实例和位置。结果:分析的10个双尿酸稳定膝盖中,有7个股骨部分在完全伸展时与胫骨柱的前侧接合。双十字稳定的后凸轮柱接合发生在34(范围17 -68),固定轴承PS发生在后凸轮柱接合(范围88 -100),旋转平台发生在97(范围90 -104) PS TKA。在双小腿稳定且固定支撑的PS膝盖中,接触最初发生在胫骨柱后表面的内侧,然后随着弯曲的增加而向中上方移动。对于旋转平台PS TKA,它始终位于柱子后表面的中央。结论:这项研究表明聚乙烯的流动性可能在确保PS TKA中的中央凸轮-柱相互作用中起重要作用。聚乙烯插入物根据旋转的股骨轴向旋转,保持中央凸轮柱接触。在此研究中分析的固定轴承PS TKA中未观察到此现象。临床意义:我们推测,凸轮和柱子后表面之间的这种集中对称接触在减少后表面的磨损方面,特别是在其中间极端处,在临床上可能是有益的。证据级别:III级,治疗研究。有关证据水平的完整说明,请参见《作者指南》。

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