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Evaluation of the Effect of High-Dorsiflexion Assistive Robotic Technology on Voluntary Ankle Movement

机译:高背屈辅助机器人技术对踝关节自愿运动影响的评估

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The proposed high-dorsiflexion assistive robotic technology (RT) is aimed to assist ankle movement during gait rehabilitation. A McKibben-type artificial muscle facilitates dorsiflexion in the swing phase by lifting a forefoot of a stroke patient’s paralyzed side. In spite of the great potential of improving dorsiflexion owing to the proposed RT observed in the previous clinical results, the current approach is applicable only to the passive ankle gait rehabilitation with full assistance. It is believed that ensuring patients’ voluntary effort in rehabilitation is the key for long-term recovery. In the present research, we conducted an experiment to evaluate our RT’s effects on six healthy participants, and analyzed whether their voluntary ankle movements were affected due to the current assistance strategy. Compared with normal walk, significant decrease in processed surface electromyography signal (p = 8.62×10-3), significant early timing of a push-off motion (p =2.60×10-4), and significant smaller push-off angle (p = 1.50×10-4) were observed compared with intervention of the proposed RT. On the other hand, a significant trend of decrease in the ankle dorsiflexion rate in the swing phase is observed during intervention (p = 0.06949). Based on the obtained results, we concluded that unlike the contraction speed of an artificial muscle that did not show any considerable impact, the excessively early activation of the RT assistance affected voluntary ankle movement.
机译:拟议中的高背屈辅助机器人技术(RT)旨在在步态康复过程中帮助脚踝运动。 McKibben型人造肌肉可通过抬起中风患者瘫痪侧的前脚来促进秋千的背屈。尽管由于在先前的临床结果中观察到了建议的逆行疗法而具有改善背屈的巨大潜力,但目前的方法仅适用于在全力协助下进行的被动式脚踝步态康复。人们认为,确保患者自愿参加康复工作是长期康复的关键。在本研究中,我们进行了一项实验,以评估RT对六名健康参与者的影响,并分析了当前的援助策略是否影响了他们自愿的脚踝运动。与正常行走相比,处理后的表面肌电信号显着下降(p = 8.62×10-3),明显的下推运动早期时间(p = 2.60×10-4)和明显较小的下推角(p与建议的RT干预相比,观察到= 1.50×10-4)。另一方面,在干预期间观察到摆动阶段的踝背屈率有明显下降的趋势(p = 0.06949)。根据获得的结果,我们得出结论,与未显示任何明显影响的人造肌肉的收缩速度不同,RT辅助的过早激活会影响踝关节的自主运动。

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