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膝关节假体约束困境:内翻-外翻约束型植入物与旋转铰链假体的生物力学比较。尸体研究。

The knee prosthesis constraint dilemma: Biomechanical comparison between varus-valgus constrained implants and rotating hinge prosthesis. A cadaver study.

机构信息

Department of Orthopaedics and Trauma, Villalba General Hospital, Madrid, Spain.

Departamento de Bioingeniería e Ingeniería Aeroespacial, Universidad Carlos III de Madrid, Madrid, Spain.

出版信息

J Orthop Res. 2021 Jul;39(7):1533-1539. doi: 10.1002/jor.24844. Epub 2020 Sep 14.

Abstract

The real degree of constriction of rotating hinge knee (RHK) and condylar constrained prostheses (CCK) is a matter of discussion in revision knee arthroplasty. The objectives of this study are to compare the tibial rotation of both implants and validate the use of inertial sensors with optical tracking system as movement measurement tools. A total of 16 cadaver knees were used. Eight knees were replaced using a RHK (Endomodel LINK), and the remaining eight received a CCK prosthesis (LCCK, Zimmer). Tibial rotation range of motion was measured in full extension and at 30°, 60°, and 90° of flexion, with four continuous waveforms for each measurement. Measurements were made using two inertial sensors with specific software and compared with measurements obtained using the gold standard technique - the motion capture camera. The comparison of the accuracy of both measurement methods showed no statistically significant differences between inertial sensors and motion capture cameras, with p > .1; the mean error for tibial rotation was 0.21°. Tibial rotation in the RHK was significantly greater than in the CCK (5.25° vs. 2.28°, respectively), p < .05. We have shown that RHK permit greater tibial rotation, being closer to physiological values than CCKs. Inertial sensors have been validated as an effective and accurate method of measuring knee movement. The clinical significance: RHK appears to represent a lower constriction degree than CCK systems.

摘要

旋转铰链膝关节(RHK)和髁限制型假体(CCK)的实际旋转受限程度是膝关节翻修手术中的一个讨论点。本研究的目的是比较两种假体的胫骨旋转,并验证使用惯性传感器结合光学跟踪系统作为运动测量工具的有效性。共使用了 16 个尸体膝关节。其中 8 个膝关节采用 RHK(Endomodel LINK)置换,其余 8 个膝关节采用 CCK 假体(LCCK,Zimmer)置换。在完全伸展以及 30°、60°和 90°屈曲时测量胫骨旋转活动范围,每个测量值有四个连续波。使用两个带有特定软件的惯性传感器进行测量,并与使用黄金标准技术-运动捕捉摄像机获得的测量值进行比较。两种测量方法的准确性比较表明,惯性传感器和运动捕捉摄像机之间没有统计学上的显著差异,p>.1;胫骨旋转的平均误差为 0.21°。RHK 的胫骨旋转明显大于 CCK(分别为 5.25°和 2.28°),p<.05。我们已经表明,RHK 允许更大的胫骨旋转,更接近生理值,而 CCK 则不然。惯性传感器已被验证为测量膝关节运动的有效且准确的方法。临床意义:RHK 似乎比 CCK 系统具有更低的限制程度。

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