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Development and Feasibility Study of a Sensory-enhanced Robot-aided Motor Training in Stroke Rehabilitation

机译:中风康复中感觉增强机器人辅助电机训练的开发与可行性研究

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Functional impairment of the upper limb is a major challenge faced by many stroke survivors. The present study aimed at developing a novel sensory-enhanced robot-aided motor training program and testing its feasibility in stroke rehabilitation. A specially designed robot handle was developed as an attachment to the Inmotion2 robotic system. This handle provided sensory stimulation through pins connected to small servo motors inside the handle. Vibration of the pins was activated during motor training once pressure on the handle reached a certain threshold indicating an active motion of the study subject. Nine chronic stroke survivors were randomly assigned to either a sensory-enhanced robot-aided motor training group (SERMT) or robot-aided motor training only group (RMT). All participants underwent a 6-week motor training program, performing target reaching movements with the specialized handle with or without vibration stimulation during training. Motor Status (MS) scores were measured for functional outcome prior to and after training. The results showed significant improvement in the total MS scores after training in both experimental groups. However, MS sub-scores for the shoulder/elbow and the wrist/hand increased significantly only in the SERMT group (p<0.05). Future studies are required to confirm these preliminary findings.
机译:上肢的功能损伤是许多中风幸存者面临的主要挑战。本研究旨在开发一种新颖的感官增强的机器人辅助电机训练计划,并在中风康复中测试其可行性。专门设计的机器人手柄是作为inmotion2机器人系统的附件开发的。该手柄通过连接到手柄内的小伺服电机的销提供感觉刺激。在电动机训练期间引脚激活引脚的振动,一旦手柄上的压力达到了某个阈值,指示研究对象的主动运动。九慢性中风幸存者被随机分配给感觉增强的机器人辅助电动机训练组(Sermt)或机器人辅助电机训练组(RMT)。所有参与者都接受了一个6周的电机训练计划,在训练期间,使用专门的手柄进行目标达到动作,或者在训练期间没有振动刺激。在培训之前和之后测量电动机状态(MS)分数用于功能结果。结果表明,在两种实验组训练后,MS分数的总体分数显着改善。然而,肩部/弯头和手腕/手柄的MS子分数仅在Sermt组中显着增加(P <0.05)。未来的研究是确认这些初步调查结果。

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