Verlinden C, Uvin P, Labey L, Luyckx J P, Bellemans J, Vandenneucker H
Department of Orthopaedics University Hospital Leuven, Weligerveld 1, 3212 Pellenberg, Lubbeek, Belgium.
J Bone Joint Surg Br. 2010 May;92(5):737-42. doi: 10.1302/0301-620X.92B5.22603.
Malrotation of the femoral component is a cause of patellofemoral maltracking after total knee arthroplasty. Its precise effect on the patellofemoral mechanics has not been well quantified. We have developed an in vitro method to measure the influence of patellar maltracking on contact. Maltracking was induced by progressively rotating the femoral component either internally or externally. The contact mechanics were analysed using Tekscan. The results showed that excessive malrotation of the femoral component, both internally and externally, had a significant influence on the mechanics of contact. The contact area decreased with progressive maltracking, with a concomitant increase in contact pressure. The amount of contact area that carries more than the yield stress of ultra-high molecular weight polyethylene significantly increases with progressive maltracking. It is likely that the elevated pressures noted in malrotation could cause accelerated and excessive wear of the patellar button.
股骨部件旋转不良是全膝关节置换术后髌股关节轨迹不良的一个原因。其对髌股关节力学的确切影响尚未得到很好的量化。我们开发了一种体外方法来测量髌股关节轨迹不良对接触的影响。通过逐渐将股骨部件向内或向外旋转来诱导轨迹不良。使用Tekscan分析接触力学。结果表明,股骨部件过度的内旋和外旋对接触力学有显著影响。随着轨迹不良的进展,接触面积减小,同时接触压力增加。承受超过超高分子量聚乙烯屈服应力的接触面积随着轨迹不良的进展而显著增加。旋转不良时所观察到的压力升高很可能会导致髌骨假体加速和过度磨损。