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旋转肢体对线参数对髌骨关节运动学的显著影响:一项体外研究

Significant influence of rotational limb alignment parameters on patellar kinematics: an in vitro study.

作者信息

Keshmiri Armin, Maderbacher Günther, Baier Clemens, Zeman Florian, Grifka Joachim, Springorum Hans Robert

机构信息

Department of Orthopaedic Surgery, University of Regensburg, Kaiser-Karl-V Allee 3, 93077, Bad Abbach, Germany.

Centre for Clinical Studies, Franz-Josef-Strauß-Allee 11, 93053, Regensburg, Germany.

出版信息

Knee Surg Sports Traumatol Arthrosc. 2016 Aug;24(8):2407-14. doi: 10.1007/s00167-014-3434-2. Epub 2014 Nov 16.

Abstract

PURPOSE

Component malrotation has a major impact on patellar kinematics in total knee arthroplasty. The influence of natural rotational limb alignment on patellar kinematics is unclear so far. Based on recent clinical investigations, we hypothesized that rotational limb alignment significantly influences patellar kinematics.

METHODS

Patellar kinematics of ten cadaveric knees was measured using computer navigation during passive motion. Data were correlated with different rotational limb alignment parameters of preoperative CT scans.

RESULTS

Femoral antetorsion showed a significant influence on patellar rotation, while tibial tubercle-posterior cruciate ligament distance additionally displayed a significant influence on patellar mediolateral shift (p < 0.05). Femoral posterior condylar angle was sensitive to patellar epicondylar distance, rotation and tilt (p < 0.05). Patellar rotation was influenced by five out of eight rotational limb alignment parameters (p < 0.05).

CONCLUSIONS

Rotational limb alignment should be paid more attention in terms of clinical evaluation of patellar tracking and future biomechanical and clinical investigations.

摘要

目的

组件旋转不良对全膝关节置换术中髌骨运动学有重大影响。目前尚不清楚自然下肢旋转对线对髌骨运动学的影响。基于最近的临床研究,我们假设下肢旋转对线会显著影响髌骨运动学。

方法

在被动运动期间,使用计算机导航测量10具尸体膝关节的髌骨运动学。数据与术前CT扫描的不同下肢旋转对线参数相关。

结果

股骨前倾角对髌骨旋转有显著影响,而胫骨结节-后交叉韧带距离对髌骨内外侧移位也有显著影响(p<0.05)。股骨后髁角对髌骨上髁距离、旋转和倾斜敏感(p<0.05)。八个下肢旋转对线参数中有五个对髌骨旋转有影响(p<0.05)。

结论

在髌骨轨迹的临床评估以及未来的生物力学和临床研究方面,应更加关注下肢旋转对线。

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