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在保留后十字韧带的全膝关节置换术中对滑动距离和交叉剪切的体内分析。

In-vivo analysis of sliding distance and cross-shear in Bi-cruciate retaining total knee arthroplasty.

机构信息

Department of Orthopaedic Surgery, Massachusetts General Hospital, Harvard Medical School, USA.

Department of Orthopaedic Surgery, Massachusetts General Hospital, Harvard Medical School, USA.

出版信息

J Biomech. 2018 Aug 22;77:8-15. doi: 10.1016/j.jbiomech.2018.06.009. Epub 2018 Jun 18.

Abstract

Polyethylene remains the most popular bearing material for total knee arthroplasty (TKA). Despite its widespread use, wear continue to be one of major factors implicated in revision surgery. Sliding distance, cross-shear, and contact stress are the major factors influencing polyethylene wear. As previous studies have either relied on wear simulations, computational modeling, or in vitro measurements to quantify sliding distance and cross-shear, in vivo subject-specific sliding distance and cross-shear after bi-cruciate retaining (BCR) TKA has not been previously reported. The objective of this study was to quantify the 6°-of-freedom (6DOF) in vivo kinematics, sliding distance, and cross-shear in BCR TKA patients during gait. Twenty-nine unilateral BCR TKA patients performed level walking on a treadmill under dual fluoroscopic imaging system (DFIS) surveillance. Cumulative normalized sliding distances between the lateral and medial compartments did not change significantly (p > 0.05) during the gait cycle. Although the total normalized sliding distance was similar between the lateral and medial compartments, the cross-shear at the lateral compartment differed significantly from that at the medial compartment (p < 0.001). Significant differences in the relative length positions of the peak sliding distance and cross-shear were found between the lateral and medial bearing components. The flexion-extension motion of the reconstructed knee was more associated with the linear displacements (anterior-posterior, R = 0.6; lateral-medial, R = 0.8, proximal-distal, R = 0.7) than the angular displacement (varus-valgus, R = 0.18; internal-external rotation, R = 0.28). Despite some differences in peak sliding distance and cross-shear positons, our results suggest similar articular contact patterns between the lateral and medial compartments in BCR TKA patients during gait. The data could provide insights into understanding the potential wear patterns in BCR TKAs.

摘要

聚乙烯仍然是全膝关节置换术(TKA)最常用的轴承材料。尽管它被广泛使用,但磨损仍然是导致翻修手术的主要因素之一。滑动距离、横切和接触应力是影响聚乙烯磨损的主要因素。由于之前的研究要么依赖于磨损模拟、计算建模或体外测量来量化滑动距离和横切,因此之前没有报道过双交叉韧带保留(BCR)TKA 后活体受试者特定的滑动距离和横切。本研究的目的是量化 BCR TKA 患者在步态中 6 自由度(6DOF)的运动学、滑动距离和横切。29 例单侧 BCR TKA 患者在双荧光透视成像系统(DFIS)监测下在跑步机上进行水平行走。在步态周期中,外侧和内侧间隔之间的累积归一化滑动距离没有显著变化(p>0.05)。尽管外侧和内侧间隔之间的总归一化滑动距离相似,但外侧间隔的横切与内侧间隔明显不同(p<0.001)。在外侧和内侧承载部件之间,峰值滑动距离和横切的相对长度位置存在显著差异。重建膝关节的屈伸运动与线性位移(前后向,R=0.6;外侧-内侧,R=0.8,近-远侧,R=0.7)比角位移(内-外翻,R=0.18;内-外旋转,R=0.28)更相关。尽管峰值滑动距离和横切位置存在一些差异,但我们的结果表明,BCR TKA 患者在步态中,外侧和内侧间隔之间具有相似的关节接触模式。这些数据可以为理解 BCR TKA 的潜在磨损模式提供一些启示。

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