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首页> 外文期刊>Journal of Rehabilitation and Assistive Technologies Engineering >Unilateral changes in walking surface compliance evoke dorsiflexion in paretic leg of impaired walkers:
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Unilateral changes in walking surface compliance evoke dorsiflexion in paretic leg of impaired walkers:

机译:步行表面顺应性的单方面变化会引起受损步行者的腿部背屈:

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IntroductionGait impairments due to stroke impact millions of individuals throughout the world. Despite the growing interest in automating gait therapy with robotic devices, there is no clear evidence that robot-assisted gait therapy is superior to traditional treadmill-based therapy.MethodsThis work investigates the effect of perturbations to the compliance of the walking surface on the paretic leg of impaired walkers. Using a novel robotic device, the variable stiffness treadmill, we apply perturbations to the compliance of the walking surface underneath the non-paretic leg of two hemi-paretic walkers and analyze the kinematic and neuromuscular response of the contralateral (paretic) leg with motion capture and surface electromyography systems.ResultsWe present results of evoked muscle activity (predominately tibialis anterior) and increased dorsiflexion in the paretic leg during the swing phase of gait at stiffness values of 60?kN/m and less for all subjects.ConclusionsThis work provides evidence for t...
机译:简介由于中风导致的步态障碍影响了全球数百万的人。尽管人们越来越关注使用机器人设备进行步态治疗的自动化,但尚无明确证据表明机器人辅助步态治疗优于传统的基于跑步机的步伐治疗方法。这项研究旨在研究微扰对步行腿顺行性的影响。步行者受损。使用新型机器人设备,可变刚度跑步机,我们将扰动应用于两个半parparetic步行者的非paretic腿下方的行走表面的顺应性,并通过运动捕捉分析对侧(paretic)腿的运动学和神经肌肉反应结果我们提供了在步态摆动阶段在60?kN / m的刚度值下对所有对象均表现为诱发的肌肉活动(主要是胫前肌)和腹股沟小腿背屈增加的结果。结论这项工作为以下方面提供了证据t ...

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