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Greater Transfer to Walking of Lower Extremity Training with Robotics and Virtual Reality than Robotics Training Alone: Preliminary Findings

机译:通过机器人技术和虚拟现实技术将更多的知识转移到步行下肢训练上,这比单独进行机器人训练要多:初步发现

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Virtual reality systems have been used to deliver goal directed repetitive training to promote rehabilitation of individuals post-stroke. Lower extremity training of individuals post-stroke who used a robot coupled with virtual environment has been shown to transfer to improved overground locomotion. To isolate the active components of training in this study we compared the outcomes of training with the robot-virtual reality (VR) system to the robot alone. Four individuals post-stroke participated in a four-week training protocol. One group trained with the robot-VR system and the other group with the robot alone. The improvement in walking speed and endurance for the robot-VR group was greater than the robot group alone. Adherence as well as the number of exercises performed in each session was comparable for the two groups. The duration of training sessions was comparable at the beginning of the study. However, subjects in the robot group reported higher fatigue and produced 16% fewer minutes of training towards the end of the study. These findings support the use of virtual environments coupled with a robot for transfer of training from the virtual to the real world environment
机译:虚拟现实系统已用于提供目标定向的重复训练,以促进中风后个体的康复。研究表明,使用机器人结合虚拟环境的中风后个体的下肢训练可以改善地面运动。为了隔离本研究中培训的积极组成部分,我们将使用机器人虚拟现实(VR)系统的培训结果与单独的机器人进行了比较。中风后有四个人参加了为期四周的训练方案。一组接受了机器人-VR系统的培训,另一组接受了仅机器人的培训。机器人-VR组的步行速度和耐力提高比单独的机器人组更大。两组的每次练习的坚持性和次数均相当。在研究开始时,培训课程的持续时间是可比的。但是,机器人组的受试者报告较高的疲劳度,并且在研究结束时训练的分钟数减少了16%。这些发现支持将虚拟环境与机器人结合使用,以将培训从虚拟环境转移到现实环境

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