IEEE Trans Neural Syst Rehabil Eng. 2024;32:708-717. doi: 10.1109/TNSRE.2024.3359658. Epub 2024 Feb 8.
Work-related musculoskeletal disorders represent a major occupational disability issue, and 53.4% of these disorders occur in the back or shoulders. Various types of passive shoulder exoskeletons have been introduced to support the weight of the upper arm and work tools during overhead work, thereby preventing injuries and improving the work environment. The general passive shoulder exoskeleton is constructed with rigid links and joints to implement shoulder rotation, but there exists a challenge to align with the flexible joint movements of the human shoulder. Also, a force-generating part using mechanical springs require additional mechanical components to generate torque similar to the shoulder joint, resulting in increased overall volume and inertia to the upper arm. In this study, we propose a new type of passive shoulder exoskeleton that uses magnetic spring joint and link chain. The redundant degrees of freedom in the link chains enables to follow the shoulder joint movement in the horizontal direction, and the magnetic spring joint generates torque without additional parts in a compact form. Conventional exoskeletons experience a loss in the assisting torque when the center of shoulder rotation changed during arm elevation. Our exoskeleton minimizes the torque loss by customizing the installation height and initial angle of the magnetic spring joint. The performances of the proposed exoskeleton were verified by an electromyographic evaluation of shoulder-related muscles in overhead work and box lifting task.
工作相关的肌肉骨骼疾病是一个主要的职业残疾问题,其中 53.4%发生在背部或肩部。各种类型的被动式肩部外骨骼已经被引入,以在头顶工作时支撑上臂和工作工具的重量,从而预防伤害并改善工作环境。一般的被动式肩部外骨骼由刚性连杆和关节构成,以实现肩部旋转,但存在与人体肩部灵活关节运动匹配的挑战。此外,使用机械弹簧的力产生部分需要额外的机械部件来产生类似于肩关节的扭矩,导致上臂的总体积和惯性增加。在这项研究中,我们提出了一种使用磁弹簧关节和连杆链的新型被动式肩部外骨骼。连杆链中的冗余自由度可以在水平方向上跟随肩部关节运动,而磁弹簧关节以紧凑的形式生成扭矩,无需额外的部件。传统的外骨骼在手臂抬高过程中肩部旋转中心发生变化时会失去辅助扭矩。我们的外骨骼通过定制磁弹簧关节的安装高度和初始角度,最小化了扭矩损失。通过对头顶工作和箱子提起任务中与肩部相关的肌肉进行肌电图评估,验证了所提出的外骨骼的性能。