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运动学对齐全膝关节置换术的静态对线和运动学的变异性。

Variability in static alignment and kinematics for kinematically aligned TKA.

作者信息

Theodore Willy, Twiggs Joshua, Kolos Elizabeth, Roe Justin, Fritsch Brett, Dickison David, Liu David, Salmon Lucy, Miles Brad, Howell Stephen

机构信息

School of Computer Science, Engineering and Mathematics, Flinders University, Adelaide, SA 5042, Australia.

Biomedical Engineering, AMME, University of Sydney, Sydney, NSW 2006, Australia.

出版信息

Knee. 2017 Aug;24(4):733-744. doi: 10.1016/j.knee.2017.04.002. Epub 2017 May 30.

Abstract

BACKGROUND

Total knee arthroplasty (TKA) significantly improves pain and restores a considerable degree of function. However, improvements are needed to increase patient satisfaction and restore kinematics to allow more physically demanding activities that active patients consider important. The aim of our study was to compare the alignment and motion of kinematically and mechanically aligned TKAs.

METHODS

A patient specific musculoskeletal computer simulation was used to compare the tibio-femoral and patello-femoral kinematics between mechanically aligned and kinematically aligned TKA in 20 patients.

RESULTS

When kinematically aligned, femoral components on average resulted in more valgus alignment to the mechanical axis and internally rotated to surgical transepicondylar axis whereas tibia component on average resulted in more varus alignment to the mechanical axis and internally rotated to tibial AP rotational axis. With kinematic alignment, tibio-femoral motion displayed greater tibial external rotation and lateral femoral flexion facet centre (FFC) translation with knee flexion than mechanical aligned TKA. At the patellofemoral joint, patella lateral shift of kinematically aligned TKA plateaued after 20 to 30° flexion while in mechanically aligned TKA it decreased continuously through the whole range of motion.

CONCLUSIONS

Kinematic alignment resulted in greater variation than mechanical alignment for all tibio-femoral and patello-femoral motion. Kinematic alignment places TKA components patient specific alignment which depends on the preoperative state of the knee resulting in greater variation in kinematics. The use of computational models has the potential to predict which alignment based on native alignment, kinematic or mechanical, could improve knee function for patient's undergoing TKA.

摘要

背景

全膝关节置换术(TKA)能显著改善疼痛并恢复相当程度的功能。然而,仍需改进以提高患者满意度并恢复膝关节运动学,从而允许进行更具体力要求的活动,而这些活动对于活跃的患者来说很重要。我们研究的目的是比较运动学对齐和机械对齐的全膝关节置换术的对线和运动情况。

方法

使用患者特异性肌肉骨骼计算机模拟,比较20例患者中机械对齐和运动学对齐的全膝关节置换术的胫股和髌股运动学。

结果

在进行运动学对齐时,股骨组件平均相对于机械轴有更多的外翻对线,并相对于手术经髁轴内旋,而胫骨组件平均相对于机械轴有更多的内翻对线,并相对于胫骨前后旋转轴内旋。与机械对齐的全膝关节置换术相比,在运动学对齐时,胫股运动在膝关节屈曲时显示出更大的胫骨外旋和股骨外侧髁屈曲小面中心(FFC)平移。在髌股关节,运动学对齐的全膝关节置换术在屈曲20至30°后髌骨外侧移位趋于平稳,而在机械对齐的全膝关节置换术中,在整个运动范围内髌骨外侧移位持续减少。

结论

对于所有胫股和髌股运动,运动学对齐比机械对齐导致更大的变化。运动学对齐使全膝关节置换术组件根据患者的具体情况进行对线,这取决于膝关节的术前状态,从而导致运动学上有更大的变化。使用计算模型有可能根据患者自身的对线情况(运动学或机械学)预测哪种对线方式可以改善接受全膝关节置换术患者的膝关节功能。

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