首页> 外文期刊>The Journal of Bone and Joint Surgery. American Volume >Is there a biomechanical explanation for anterior knee pain in patients with patella alta?: influence of patellar height on patellofemoral contact force, contact area and contact pressure.
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Is there a biomechanical explanation for anterior knee pain in patients with patella alta?: influence of patellar height on patellofemoral contact force, contact area and contact pressure.

机译:ta骨患者前膝关节疼痛有生物力学解释吗::骨高度对pa股接触力,接触面积和接触压力的影响。

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摘要

The purpose of this study was to test the hypothesis that patella alta leads to a less favourable situation in terms of patellofemoral contact force, contact area and contact pressure than the normal patellar position, and thereby gives rise to anterior knee pain. A dynamic knee simulator system based on the Oxford rig and allowing six degrees of freedom was adapted in order to simulate and record the dynamic loads during a knee squat from 30 degrees to 120 degrees flexion under physiological conditions. Five different configurations were studied, with variable predetermined patellar heights. The patellofemoral contact force increased with increasing knee flexion until contact occurred between the quadriceps tendon and the femoral trochlea, inducing load sharing. Patella alta caused a delay of this contact until deeper flexion. As a consequence, the maximal patellofemoral contact force and contact pressure increased significantly with increasing patellar height (p < 0.01). Patella alta was associated with the highest maximal patellofemoral contact force and contact pressure. When averaged across all flexion angles, a normal patellar position was associated with the lowest contact pressures. Our results indicate that there is a biomechanical reason for anterior knee pain in patients with patella alta.
机译:这项研究的目的是检验以下假设,即al骨在in股接触力,接触面积和接触压力方面比正常than骨位置更不利,从而引起膝前疼痛。为了在生理条件下从30度屈曲到120度屈膝蹲下时模拟和记录动态负荷,对基于牛津钻机并允许6个自由度的动态膝部模拟器系统进行了调整。研究了五种不同的构型,其variable骨高度各不相同。 knee股肌的接触力随着膝关节屈曲的增加而增加,直到股四头肌与股骨滑车之间发生接触,从而导致负荷分担。 ella骨alta导致这种接触延迟直至更深的屈曲。结果,最大pa股接触力和接触压力随着pa骨高度的增加而显着增加(p <0.01)。 ella骨al与最大pa股最大接触力和接触压力相关。当平均所有屈曲角度时,pa骨的正常位置与最低的接触压力有关。我们的结果表明in骨患者存在膝关节前部疼痛的生物力学原因。

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