培训(气象学)
可穿戴计算机
计算机科学
康复
机器人
物理医学与康复
医疗机器人
人工智能
人机交互
模拟
医学
物理疗法
嵌入式系统
物理
气象学
作者
Yanggang Feng,Xingyu Hu,Y. J. Li,Ke Ma,Jiaxin Ren,Zhihao Zhou,Fuzhen Yuan,Yan Huang,Liu Wang,Qining Wang,Wuxiang Zhang,Xilun Ding
标识
DOI:10.1109/tro.2025.3552332
摘要
Knee pain is prevalent in over 20% of the population, limiting the mobility of those affected. In turn, isokinetic dynamometers and robots have been used to facilitate rehabilitation for those still capable of ambulation. However, there are at most only a few wearable robots capable of delivering isokinetic training for bedridden patients. Here, we developed a wearable robot that provides bedside isokinetic training by utilizing a variable stiffness actuator and dynamic energy regeneration. The efficacy of this device was validated in a study involving six subjects with debilitating knee injuries. During two courses of rehabilitation over a total of three weeks, the average peak torque, average torque, and average work produced by their affected knees increased significantly by 81.0%, 101.4%, and 117.6%, respectively. Furthermore, the device's energy regeneration features were found capable of extending its operating time to 198 days under normal usage, representing a 57.8% increase over the same device without regeneration. These results suggest potential methodologies for delivering isokinetic joint rehabilitation to bedridden patients in areas with limited infrastructure.
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