Department of Mechanical and Materials Engineering, Faculty of Engineering, Spencer Engineering Building, Room 2075, The University of Western Ontario, London, Ontario, Canada N6A 5B9.
J Biomech. 2011 Apr 29;44(7):1271-6. doi: 10.1016/j.jbiomech.2011.02.013. Epub 2011 Mar 11.
Variable stiffness shoes that have a stiffer lateral than medial sole may reduce the external knee adduction moment (EKAM) and pain during walking in patients with medial compartment knee osteoarthritis (OA). However, the mechanism by which EKAM may be reduced in the OA knee with this intervention remains unclear. Three hypotheses were tested in this study: (1) The reduction in EKAM during walking with the variable stiffness shoe is associated with a reduction in GRF magnitude and/or (2) frontal plane lever arm. (3) A reduction in frontal plane lever arm occurs either by moving the center of pressure laterally under the shoe and/or by dynamically reducing the medial component of GRF. Thirty-two subjects (20 male, 12 female; age: 58.7 ± 9.3 years; height: 1.62 ± 0.08 m; mass: 81.3 ± 14.6 kg) with medial compartment knee osteoarthritis were studied walking in a gait laboratory. The frontal plane lever arm was significantly reduced (1.62%, 0.07%ht, p=0.02) on the affected side while the magnitude of the GRF was not significantly changed. The reduction in the lever arm was weakly correlated with a medial shift in the COP. However, the combined medial shift in the COP and reduction in the medial GRF explained 50% of the change of the frontal plane lever arm. These results suggest that the medial shift in the COP at the foot produced by the intervention shoe stimulates an adaptive dynamic response during gait that reduces the frontal plane lever arm.
具有外侧鞋底比内侧鞋底更硬的可变刚度鞋可能会降低内侧间室膝骨关节炎(OA)患者行走时的膝关节外侧内收力矩(EKAM)和疼痛。然而,这种干预措施如何降低 OA 膝关节的 EKAM 机制尚不清楚。本研究测试了三个假设:(1)穿着可变刚度鞋行走时 EKAM 的减少与 GRF 幅度的减少有关,和/或(2)额状面杠杆臂。(3)通过将鞋下的压力中心侧向移动和/或通过动态减小 GRF 的内侧分量来减小额状面杠杆臂。研究了 32 名受试者(20 名男性,12 名女性;年龄:58.7±9.3 岁;身高:1.62±0.08 m;体重:81.3±14.6 kg)在步态实验室中行走时的内侧间室膝骨关节炎。在受影响的一侧,额状面杠杆臂显着减小(1.62%,0.07%ht,p=0.02),而 GRF 的幅度没有显着变化。杠杆臂的减小与 COP 的内侧移位呈弱相关。然而,COP 的内侧移位和内侧 GRF 的减少共同解释了额状面杠杆臂变化的 50%。这些结果表明,干预鞋产生的足部 COP 的内侧移位刺激了步态中的适应性动态反应,从而减小了额状面杠杆臂。