Department of Orthopedic Biomaterial Science, Osaka University Graduate School of Medicine, Suita, Osaka, Japan.
J Arthroplasty. 2011 Oct;26(7):1031-7. doi: 10.1016/j.arth.2011.01.008. Epub 2011 Mar 23.
The objective of this study was to investigate the effects of weight-bearing (WB) condition on the kinematics of total knee arthroplasty. We investigated 17 patients (20 knees) implanted with a high-flexion posterior-stabilized total knee arthroplasty using 2- to 3-dimensional registration techniques. In vivo kinematics of dynamic deep knee flexion under WB and non-WB (NWB) conditions were compared. Six degree-of-freedom kinematics and articular contacts including post-cam contact were evaluated. At midflexion, femorotibial contact points were located significantly more anteriorly under NWB than WB conditions. As a result, post-cam engagement occurred significantly earlier under NWB than WB conditions. With NWB conditions, early engagement of the femoral cam engages at the top part of tibial post, which puts it at risk of jumping the tibial post particularly if there is instability in midflexion.
本研究旨在探讨负重(WB)状态对全膝关节置换术运动学的影响。我们使用二维到三维配准技术对 17 例(20 膝)植入高屈曲后稳定型全膝关节置换的患者进行了研究。比较了 WB 和非 WB(NWB)条件下动态深度屈膝的体内运动学。评估了六自由度运动学和关节接触,包括后凸轮接触。在中屈时,NWB 条件下的股骨胫接触点比 WB 条件下更靠前。结果,NWB 条件下后凸轮的啮合发生得比 WB 条件下更早。在 NWB 条件下,股骨凸轮的早期啮合发生在胫骨后顶部,这使其有跳跃胫骨后凸的风险,尤其是在中屈时不稳定的情况下。