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股骨部件旋转不良对髌股生物力学的影响。

The effect of femoral component malrotation on patellar biomechanics.

作者信息

Kessler Oliver, Patil Shantanu, Colwell Clifford W, D'Lima Darryl D

机构信息

Scientific Affairs, Stryker Europe, Thalwil, Switzerland.

出版信息

J Biomech. 2008 Dec 5;41(16):3332-9. doi: 10.1016/j.jbiomech.2008.09.032. Epub 2008 Nov 18.

Abstract

Patellofemoral complications are among the important reasons for revision knee arthroplasty. Femoral component malposition has been implicated in patellofemoral maltracking, which is associated with anterior knee pain, subluxation, fracture, wear, and aseptic loosening. Rotating-platform mobile bearings compensate for malrotation between the tibial and femoral components and may, therefore, reduce any associated patellofemoral maltracking. To test this hypothesis, we developed a dynamic model of quadriceps-driven open-kinetic-chain extension in a knee implanted with arthroplasty components. The model was validated using tibiofemoral and patellofemoral kinematics and forces measured in cadaver knees. Knee kinematics and patellofemoral forces were measured after simulating malrotation (+/-3 degrees ) of the femoral component. Rotational alignment of the femoral component affected tibial rotation near full extension and tibial adduction at higher flexion angles. External rotation of the femoral component increased patellofemoral lateral tilt, lateral shift, and lateral shear forces. Up to 21 degrees of bearing rotation relative to the tibia was noted in the rotating-bearing condition. However, the rotating bearing had minimal effect in reducing the patellofemoral maltracking or shear induced by femoral component rotation. The rotating platform does not appear to be forgiving of malalignment of the extensor mechanism resulting from femoral component malrotation. These results support the value of improving existing methodologies for accurate femoral component alignment in total knee arthroplasty.

摘要

髌股并发症是膝关节置换翻修的重要原因之一。股骨假体位置不当被认为与髌股轨迹不良有关,而髌股轨迹不良又与膝前疼痛、半脱位、骨折、磨损和无菌性松动相关。旋转平台活动轴承可补偿胫骨和股骨假体之间的旋转不良,因此可能减少相关的髌股轨迹不良。为验证这一假设,我们建立了一个植入关节置换组件的膝关节中股四头肌驱动的开放动力链伸展的动态模型。该模型通过在尸体膝关节中测量的胫股和髌股运动学及力进行验证。在模拟股骨假体旋转不良(±3度)后测量膝关节运动学和髌股力。股骨假体的旋转对线影响接近完全伸展时的胫骨旋转以及更高屈曲角度时的胫骨内收。股骨假体的外旋增加了髌股外侧倾斜、外侧移位和外侧剪切力。在旋转轴承情况下,相对于胫骨的轴承旋转可达21度。然而,旋转轴承在减少股骨假体旋转引起的髌股轨迹不良或剪切方面作用甚微。旋转平台似乎无法弥补因股骨假体旋转不良导致的伸肌机制对线不良。这些结果支持改进全膝关节置换术中准确股骨假体对线现有方法的价值。

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