Tian Jin, Zhu Haiqi, Lu Changjia, Yang Chifu, Liu Yingjie, Wei Baichun, Yi Chunzhi
IEEE Trans Biomed Eng. 2025 Feb;72(2):734-746. doi: 10.1109/TBME.2024.3469242. Epub 2025 Jan 21.
Overhead tasks are a primary inducement to work-related musculoskeletal disorders. Aiming to reduce shoulder physical loads, passive shoulder exoskeletons are increasingly prevalent in the industry due to their lightweight, affordability, and effectiveness. However, they can only handle specific tasks and struggle to balance compactness with a sufficient range of motion effectively.
We proposed a novel passive occupational shoulder exoskeleton designed to handle various overhead tasks at different arm elevation angles, ensuring sufficient ROM while maintaining compactness. By formulating kinematic models and simulations, an ergonomic shoulder structure was developed. Then, we presented a torque generator equipped with an adjustable peak assistive torque angle to switch between low and high assistance phases through a passive clutch mechanism. Ten healthy participants were recruited to validate its functionality by performing the screwing task.
Measured range of motion results demonstrated that the exoskeleton can ensure a sufficient ROM in both sagittal (164) and horizontal (158) flexion/extension movements. The experimental results of the screwing task showed that the exoskeleton could reduce muscle activation (up to 49.6), perceived effort and frustration, and provide an improved user experience (scored 79.7 out of 100).
These results indicate that the proposed exoskeleton can guarantee natural movements and provide efficient assistance during overhead work, and thus have the potential to reduce the risk of musculoskeletal disorders.
The proposed exoskeleton provides insights into multi-task adaptability and efficient assistance, highlighting the potential for expanding the application of exoskeletons.
头顶作业是导致与工作相关的肌肉骨骼疾病的主要诱因。为了减轻肩部的物理负荷,被动式肩部外骨骼因其轻便、价格实惠且有效而在行业中越来越普遍。然而,它们只能处理特定任务,并且难以在紧凑性与足够的运动范围之间有效平衡。
我们提出了一种新型的被动式职业肩部外骨骼,旨在处理不同手臂抬高角度下的各种头顶作业,在保持紧凑性的同时确保足够的活动范围。通过建立运动学模型和进行模拟,开发了一种符合人体工程学的肩部结构。然后,我们展示了一种配备可调节峰值辅助扭矩角度的扭矩发生器,通过被动离合器机制在低辅助阶段和高辅助阶段之间切换。招募了10名健康参与者,通过执行拧螺丝任务来验证其功能。
测量的活动范围结果表明,外骨骼在矢状面(164)和水平面(158)的屈伸运动中都能确保足够的活动范围。拧螺丝任务的实验结果表明,外骨骼可以减少肌肉激活(高达49.6)、感知到的努力和挫败感,并提供更好的用户体验(在100分制中得分为79.7)。
这些结果表明,所提出的外骨骼可以保证自然运动,并在头顶作业期间提供有效的辅助,因此有可能降低肌肉骨骼疾病的风险。
所提出的外骨骼为多任务适应性和有效辅助提供了见解,突出了扩大外骨骼应用的潜力。