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Comparison of tibial rotation in fixed and mobile bearing total knee arthroplasty using computer navigation.

机译:使用计算机导航比较固定和移动轴承全膝关节置换术中胫骨旋转。

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摘要

Tibial rotation is an important aspect of knee function and can be altered after total knee arthroplasty (TKA). These alterations include decreased internal rotation with knee flexion as compared to the normal state and paradoxical external rotation with flexion. Mobile bearing total knee prostheses may allow greater unconstrained tibial rotation. I compared tibial rotation after fixed bearing or mobile bearing total knee arthroplasty in 82 patients who underwent TKA with the tibia cut first technique to ascertain any differences. Using intraoperative imageless computer navigation, measurements included the determination of tibial rotation from extension to 90 degrees flexion before and after prosthetic implantation with non-weight-bearing range of motion. I found that tibial rotation was significantly reduced after fixed bearing total knee replacement as compared to mobile bearing. In addition, the tibial position compared to the distal femur in extension was more external in fixed bearings compared to mobile bearings. Placing the fixed tibial tray with increased internal rotation could explain this difference.
机译:胫骨旋转是膝盖功能的重要方面,可以在全膝关节置换术(TKA)后改变。这些改变包括与正常状态相比膝盖屈曲时内部旋转减少和屈曲时自相矛盾的外部旋转。可移动的全膝关节假体可以允许更大的胫骨无限制旋转。我比较了82例接受TKA和先行胫骨切开术的患者中,固定固定或移动固定全膝关节置换术后的胫骨旋转。使用术中无图像计算机导航,测量包括在假体植入前后以非承重运动范围确定胫骨旋转范围(从伸展到屈曲90度)。我发现,与活动轴承相比,固定轴承全膝关节置换后胫骨旋转明显减少。此外,与可移动轴承相比,固定轴承中胫骨位置与股骨远端相比更靠外部。将固定的胫骨托放置在内部旋转增加的位置可以解释这种差异。

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