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Gait Symmetry Can Reduce Dependence on the Intact Limb during Walking with Constraint of Unilateral Metatarsophalangeal Joints

机译:步态对称可以减少步行时单侧Meta指关节约束对完整肢体的依赖性

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摘要

Our previous research showed that healthy subjects exhibited asymmetrical walking gait when their unilateral metatarsophalangeal (MTP) joints were constrained. They relied more on their intact limb for the compensation of missing functions of their constrained limb, which may result in poor balance, increased metabolic cost, and higher risks of falls. We examined how subjects would respond if gait asymmetry in stance time was improved using a split-belt treadmill. Twelve healthy subjects were instructed to walk on a split-belt treadmill at comfortable and fast speeds with their unilateral MTP joints constrained. The walking trials were performed in two conditions, i.e., tied-belt walking (TBW, both belts moved at the same speed), and split-belt walking (SBW, the speed of the belt on the constrained leg was appropriately slower than that of the contralateral leg). The ground reaction forces (GRF) and electromyography (EMG) data during walking were collected. Results showed that the GRF and impulses on the constrained foot at fast speed SBW significantly increased, compared with TBW, and the activation of medial gastrocnemius and soleus of the intact lower limb decreased significantly, which suggest that improved symmetry in stance time may reduce dependence on the intact limb for humans with the constraint of unilateral MTP joints.
机译:我们以前的研究表明,健康的受试者在单侧meta趾(MTP)关节受约束时表现出不对称的步态。他们更多地依靠完整的肢体来补偿其受限肢体的缺失功能,这可能导致平衡不佳,新陈代谢成本增加和跌倒风险更高。我们研究了如果使用皮带式跑步机改善了站立时间的步态不对称性,受试者将如何应对。指示十二名健康受试者,在单侧MTP关节受约束的情况下,以舒适,快速的速度在皮带式跑步机上行走。步行试验是在两种情况下进行的,即绑带步行(TBW,两条皮带都以相同的速度移动)和分开皮带步行(SBW,约束腿上的皮带速度适当地慢于皮带的速度)。对侧腿)。收集步行过程中的地面反作用力(GRF)和肌电图(EMG)数据。结果显示,与TBW相比,快速SBW的约束脚上的GRF和冲动显着增加,而完整腓肠肌和完整下肢比目鱼肌的激活明显减少,这表明姿势时间对称性的改善可以减少对SBW的依赖单侧MTP关节约束的人类完整肢体。

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