运动障碍的步态辅助和训练外骨骼

S. Agrawal, S. K. Banala, K. Mankala, V. Sangwan, J. Scholz, V. Krishnamoorthy, W. Hsu
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引用次数: 24

摘要

机器人技术是一种很有前途的训练人类功能运动的工具。目前该领域的研究主要集中在上肢运动方面。本文描述了三种下肢外骨骼的新设计,用于运动障碍患者的步态辅助和训练。每一个外骨骼的设计都是新颖而不同的。外骨骼上的力和位置传感器在训练期间向用户提供反馈。外骨骼已经在健康和中风幸存者身上进行了有限的测试,以评估他们在跑步机上行走的潜力。GBO是一种重力平衡的非电动矫形器,它可以改变在摆动过程中作用于髋关节和膝关节的重力。ALEX是一种主动驱动的腿部外骨骼,它可以通过关节上的马达来调节脚的运动轨迹。SUE是一种双侧摆动辅助非电动外骨骼,用于在步态时推动腿部。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exoskeletons for Gait Assistance and Training of the Motor-Impaired
Robotics is emerging as a promising tool for training of human functional movement. The current research in this area is focused primarily on upper extremity movements. This paper describes novel designs of three lower extremity exoskeletons, intended for gait assistance and training of motor-impaired patients. The design of each of these exoskeletons is novel and different. Force and position sensors on the exoskeleton provide feedback to the user during training. The exoskeletons have undergone limited tests on healthy and stroke survivors to assess their potential for treadmill walking. GBO is a gravity balancing un-motorized orthosis which can alter the gravity acting at the hip and knee joints during swing. ALEX is an actively driven leg exoskeleton which can modulate the foot trajectory using motors at the joints. SUE is a bilateral swing-assist un-motorized exoskeleton to propel the leg during gait.
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