D'Lima D D, Trice M, Urquhart A G, Colwell C W
Division of Orthopaedics, Scripps Clinic, La Jolla, CA 92037, USA.
Clin Orthop Relat Res. 2000 Nov(380):151-7. doi: 10.1097/00003086-200011000-00020.
Rotating platform mobile bearing knee implants allow for increased tibiofemoral articular conformity without restricting axial rotation. In the current study, the effect of rotating platform knee replacement with and without posterior cruciate ligament substitution on knee kinematics was investigated. Five knees were implanted sequentially implanted with standard (fixed) bearings and then with rotating platform prostheses, each in posterior cruciate retaining and substituting designs. Three-dimensional kinematics for all knees were measured in an Oxford Knee Rig, which simulates dynamic quadriceps-driven closed kinetic chain knee extension under load. Rotating bearings did not significantly change knee kinematics when compared with fixed bearings. In this in vitro model, the cruciate retaining designs stayed more anterior, and had greater net femoral roll back and tibiofemoral valgus angulation with flexion than cruciate substituting designs.
旋转平台活动轴承膝关节植入物可增加胫股关节的贴合度,同时不限制轴向旋转。在本研究中,研究了有无后交叉韧带替代的旋转平台膝关节置换对膝关节运动学的影响。对五具膝关节依次植入标准(固定)轴承,然后植入旋转平台假体,每种假体都有后交叉韧带保留和替代设计。在牛津膝关节试验台上测量所有膝关节的三维运动学,该试验台模拟了在负荷下动态股四头肌驱动的闭链膝关节伸展。与固定轴承相比,旋转轴承并未显著改变膝关节运动学。在这个体外模型中,与后交叉韧带替代设计相比,后交叉韧带保留设计的膝关节在屈曲时更靠前,股骨净后滚和胫股外翻角度更大。