Biorobotics and Biomechanics Lab, Faculty of Mechanical Engineering, Technion-Israel Institute of Technology, Haifa, Israel.
J Orthop Res. 2011 Nov;29(11):1668-74. doi: 10.1002/jor.21422. Epub 2011 Apr 13.
The knee adduction moment (KAM) provides a major contribution to the elevated load in the medial compartment of the knee. An abnormally high KAM has been linked with the progression of knee osteoarthritis (OA). Footwear-generated biomechanical manipulations reduce the magnitude of this moment by conveying a more laterally shifted trajectory of the foot's center of pressure (COP), reducing the distance between the ground reaction force and the center of the knee joint, thus lowering the magnitude of the torque. We sought to examine the outcome of a COP shift in a cohort of female patients suffering from medial knee OA. Twenty-two female patients suffering from medial compartment knee OA underwent successive gait analysis testing and direct pedobarographic examination of the COP trajectory with a foot-worn biomechanical device allowing controlled manipulation of the COP. Modulation of the COP coronal trajectory from medial to lateral offset resulted in a significant reduction of the KAM. This trend was demonstrated in subjects with mild-to-moderate OA and in patients suffering from severe stages of the disease. Our results indicate that controlled manipulation of knee coronal kinetics in individuals suffering from medial knee OA can be facilitated by customized COP modification.
膝关节内收力矩(KAM)对膝关节内侧间室的高负荷有很大贡献。异常高的 KAM 与膝骨关节炎(OA)的进展有关。鞋类产生的生物力学操纵通过传递足部压力中心(COP)更向外侧的轨迹来减小这个力矩的幅度,从而减小地面反作用力和膝关节中心之间的距离,降低力矩的幅度。我们试图在患有内侧膝关节 OA 的女性患者队列中检查 COP 转移的结果。22 名患有内侧膝关节 OA 的女性患者接受了连续步态分析测试和足底压力计的直接 COP 轨迹检查,该足底压力计采用一种可穿戴的生物力学设备,允许对 COP 进行受控操纵。从内侧到外侧偏移的 COP 冠状轨迹的调制导致 KAM 显著降低。在轻度至中度 OA 患者和患有严重疾病阶段的患者中均观察到了这一趋势。我们的结果表明,通过定制的 COP 修正,可以促进患有内侧膝关节 OA 的个体的膝关节冠状动力学的受控操纵。