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全膝关节置换术中胫骨旋转对线的评估:尸体研究。

Evaluation of tibial rotational alignment in total knee arthroplasty: a cadaver study.

机构信息

Department of Orthopaedics and Traumatology, Mauriziano "Umberto I" Hospital, University of Turin Medical School, Largo Turati 62, 10128 Turin, Italy.

出版信息

Knee Surg Sports Traumatol Arthrosc. 2010 Jul;18(7):889-93. doi: 10.1007/s00167-009-1023-6. Epub 2010 Jan 8.

Abstract

Various techniques exist for establishing tibial rotational alignment during total knee arthroplasty (TKA). The purpose of this study is to establish the most precise and reproducible method to assess tibial component rotational alignment during TKA by comparing the flexion-extension technique (ROM) and the Posterior-lateral Corner Locked Technique (PLCL). Twenty posterior stabilized TKAs were performed on cadavers. The rotation angles of the tibial components obtained using the two techniques were evaluated. The tibial component rotation axis obtained using the ROM technique and the PLCL method averaged, respectively, 0.35 degrees (+ or - 4.2 degrees ) externally rotated and 0.34 degrees (+ or - 3 degrees ) internally rotated to the Akagi line. No significant differences between the two methods were found and a high correlation exists between the two techniques (Pearson's coefficient = 0.88). The ROM and PLCL techniques are both precise and reproducible methods to assess tibial component rotation during TKA. However, while the ROM technique is dependent on the correct positioning of the femoral component and the soft tissue balancing, the PCLC method is easier if a complete visualization of the posterior-lateral corner of the cut tibial plateau is achieved.

摘要

在全膝关节置换术(TKA)中,存在多种用于确定胫骨旋转对线的技术。本研究旨在通过比较屈伸技术(ROM)和后外侧角锁定技术(PLCL),确定评估 TKA 时胫骨组件旋转对线最精确和可重复的方法。对 20 例后稳定型 TKA 尸体标本进行了研究。评估了两种技术获得的胫骨组件旋转角度。使用 ROM 技术和 PLCL 方法获得的胫骨组件旋转轴平均分别向 Akagi 线外旋转 0.35 度(+/-4.2 度)和内旋转 0.34 度(+/-3 度)。两种方法之间无显著差异,两种技术之间存在高度相关性(Pearson 系数=0.88)。ROM 和 PLCL 技术都是评估 TKA 时胫骨组件旋转的精确和可重复的方法。然而,虽然 ROM 技术依赖于股骨组件的正确定位和软组织平衡,但如果能够完全观察到切割胫骨平台的后外侧角,则更容易使用 PLCL 方法。

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