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Influence of surface geometry and the cam-post mechanism on the kinematics of total knee replacement

机译:表面几何形状和凸轮柱机构对全膝关节置换运动学的影响

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Abnormal sagittal kinematics after total knee replacement (TKR) can adversely affect functional outcome. Two important determinants of knee kinematics are component geometry and the presence or absence of a posterior-stabilising mechanism (cam-post). We investigated the influence of these variables by comparing the kinematics of a TKR with a polyradial femur with a single radius design, both with and without a cam-post mechanism.We assessed 55 patients, subdivided into four groups, who had undergone a TKR one year earlier by using an established fluoroscopy protocol in order to examine their kinematics in vivo. The kinematic profile was obtained by measuring the patellar tendon angle through the functional knee flexion range (0° to 90°) and the results compared with 14 normal knees. All designs of TKR had abnormal sagittal kinematics compared with the normal knee. There was a significant (p < 0.05) difference between those of the two TKRs near to full extension. The presence of the cam-post mechanism did not influence the kinematics for either TKR design. These differences suggest that surface geometry is a stronger determinant of kinematics than the presence or absence of a cam-post mechanism for these two designs. This may be because the cam-post mechanism is ineffective.
机译:全膝关节置换(TKR)后矢状运动异常可对功能预后产生不利影响。膝部运动学的两个重要决定因素是部件的几何形状以及是否存在后稳定机制(凸轮柱)。我们通过比较具有单一R骨设计和不具有凸轮柱机制的多radius股骨的TKR的运动学来研究这些变量的影响。我们评估了55例患者,分为四组,其中一组经历了TKR一年以前,通过使用已建立的荧光检查规程来检查它们的体内运动学。通过在整个功能性膝关节屈曲范围(0°至90°)内测量pa肌腱角度来获得运动学轮廓,并将其结果与14个正常膝关节进行比较。与正常膝盖相比,所有TKR设计均具有异常的矢状运动学。接近完全扩展的两个TKR之间存在显着(p <0.05)差异。凸轮柱机构的存在不影响任何TKR设计的运动学。这些差异表明,对于这两种设计,与是否存在凸轮柱机构相比,表面几何形状对运动学的影响更大。这可能是因为凸轮柱机构无效。
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