Zhang Kai, Chen Xiaofeng, Liu Fei, Tang Haili, Wang Jing, Wen Weina
Institute of Robotics and Intelligent System, School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
Shaanxi Key Laboratory of Intelligent Robots, Xi'an 710049, China.
Behav Neurol. 2018 Dec 13;2018:6737056. doi: 10.1155/2018/6737056. eCollection 2018.
Neurological impairments such as stroke cause damage to the functional mobility of survivors and affect their ability to perform activities of daily living. Recently, robotic treatment for upper limb stroke rehabilitation has received significant attention because it can provide high-intensity and repetitive movement therapy. In this review, the current status of upper limb rehabilitation robots is explored. Firstly, an overview of mechanical design of robotics for upper-limb rehabilitation and clinical effects of part robots are provided. Then, the comparisons of human-machine interactions, control strategies, driving modes, and training modes are described. Finally, the development and the possible future directions of the upper limb rehabilitation robot are discussed.
中风等神经损伤会损害幸存者的功能移动能力,并影响他们进行日常生活活动的能力。最近,上肢中风康复的机器人治疗受到了广泛关注,因为它可以提供高强度和重复性的运动疗法。在这篇综述中,探讨了上肢康复机器人的现状。首先,概述了用于上肢康复的机器人的机械设计以及部分机器人的临床效果。然后,描述了人机交互、控制策略、驱动模式和训练模式的比较。最后,讨论了上肢康复机器人的发展及未来可能的方向。