Shi Xiangqian, Yang Chengyu, Lee Pak Chung, Xie Disheng, Ye Zhongping, Li Zheng, Tong Raymond Kai-Yu
Department of Biomedical Engineering, The Chinese University of Hong Kong, Hong Kong SAR, China.
Hopebotic Limited, Hong Kong SAR, China.
Wearable Technol. 2025 Feb 3;6:e4. doi: 10.1017/wtc.2024.10. eCollection 2025.
We have developed an interactive system comprising a soft wearable robot hand and a wireless task board, facilitating the interaction between the hand and regular daily objects for task-oriented training in stroke rehabilitation. A ring-reinforced soft actuator (RSA) to accommodate different hand sizes and enable flexion and extension movements was introduced in this paper. Individually controlled finger actuators assist stroke patients during various grasping tasks. A wireless task board was developed to support the training, allowing for the placement of training objects and seamless interaction with the soft robotic hand. Evaluation with seven stroke subjects shows significant improvements in upper limb functions (FMA), hand-motor abilities (ARAT, BBT), and maximum grip strengths after 20 sessions of this task-oriented training. These improvements were observed to persist for at least 3 months post-training. The results demonstrate its potential to enhance stroke rehabilitation and promote hand-motor recovery. This lightweight, user-friendly interactive system facilitates frequent hand practice and easily integrates into regular rehabilitation therapy routines.
我们开发了一种交互式系统,该系统由一个可穿戴的柔性机器人手和一个无线任务板组成,便于手部与日常物品之间进行交互,以用于中风康复的任务导向训练。本文介绍了一种环形加强柔性致动器(RSA),它能够适应不同的手型尺寸,并实现屈伸运动。单独控制的手指致动器在各种抓握任务中协助中风患者。开发了一个无线任务板来支持训练,允许放置训练物品并与柔性机器人手进行无缝交互。对七名中风受试者的评估表明,经过20次这种任务导向训练后,上肢功能(FMA)、手部运动能力(ARAT、BBT)和最大握力有显著改善。观察到这些改善在训练后至少持续3个月。结果证明了其在增强中风康复和促进手部运动恢复方面的潜力。这种轻便、用户友好的交互式系统便于频繁进行手部练习,并易于融入常规康复治疗程序。