Luyckx T, Didden K, Vandenneucker H, Labey L, Innocenti B, Bellemans J
University Hospitals UZ Pellenberg, Weligerveld 1, 3212 Pellenberg, Belgium.
J Bone Joint Surg Br. 2009 Mar;91(3):344-50. doi: 10.1302/0301-620X.91B3.21592.
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.
相较于正常髌骨位置,高位髌骨会导致髌股关节接触力、接触面积和接触压力处于更不利的状况,进而引发膝前痛。基于牛津器械并具备六个自由度的动态膝关节模拟器系统被加以改进,以便在生理条件下模拟并记录膝关节从30度屈曲至120度深蹲过程中的动态负荷。研究了五种不同的配置,其髌骨高度预先设定为可变值。髌股关节接触力随着膝关节屈曲度增加而增大,直至股四头肌肌腱与股骨滑车之间发生接触,从而引发负荷分担。高位髌骨导致这种接触延迟至更大的屈曲度。结果,最大髌股关节接触力和接触压力随着髌骨高度增加而显著增大(p < 0.01)。高位髌骨与最大髌股关节接触力和接触压力最高相关。当对所有屈曲角度进行平均时,正常髌骨位置与最低接触压力相关。我们的结果表明,高位髌骨患者出现膝前痛存在生物力学原因。