A passive upper limb exoskeleton effectively reduces shoulder muscle activity over a large shoulder workspace.

IF 2.8 Q2 ENGINEERING, BIOMEDICAL
Wearable technologies Pub Date : 2025-09-03 eCollection Date: 2025-01-01 DOI:10.1017/wtc.2025.10025
Leon Lauret, Brent James Raiteri, Paolo Tecchio, Daniel Hahn
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Abstract

Industrial upper limb exoskeletons offload the upper limb during overhead tasks to help prevent musculoskeletal disorders to the shoulder. Although numerous studies showed reduced shoulder muscle activity during upper limb exoskeleton use for overhead postures, it remains unknown whether and how upper limb exoskeletons provide support over a large shoulder workspace beyond overhead work. Therefore, this study evaluated the Ottobock Paexo Shoulder over a large shoulder workspace from overhead to hip height with shoulder abduction and adduction. Upper body kinematics, muscle activity, and subjective user feedback were obtained by three-dimensional motion capture, surface EMG, and questionnaires, respectively, and captured while participants performed static and dynamic work tasks with an electric screwdriver. Participants completed these tasks (1) without the exoskeleton, (2) with a disengaged exoskeleton, (3) with moderate exoskeleton support, and (4) with high exoskeleton support. Exoskeleton support reduced deltoid muscle activity (-9 to -24 s%, p ≤ .001) in postures with an abducted shoulder, including nonoverhead postures. Exoskeleton support modestly decreased shoulder flexion (-3 to -5°, p ≤ .001) and increased shoulder abduction (2 to 5°, p ≤ .032), but the movement patterns during the dynamic task were unaffected. Additionally, exoskeleton-related effects increased with increasing support, but the subjective perception of change also increased, and perceived comfort decreased. Our results indicate that the tested exoskeleton provides support beyond overhead work and that there is a trade-off between exoskeleton support and subjective perception. Accordingly, further optimization of user-exoskeleton interaction is warranted for long-term prevention of musculoskeletal disorders in overhead workers.

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一个被动式上肢外骨骼有效地减少肩部肌肉活动在一个大的肩部工作空间。
工业上肢外骨骼在头顶任务时卸载上肢,以帮助防止肩部肌肉骨骼疾病。尽管大量研究表明,在使用上肢外骨骼进行头顶姿势时,肩部肌肉活动减少,但目前尚不清楚上肢外骨骼是否以及如何在头顶工作之外的大型肩部工作空间提供支撑。因此,本研究评估了Ottobock Paexo肩部从头顶到髋部高度的大肩部工作空间,肩部外展和内收。在参与者使用电动螺丝刀执行静态和动态工作任务时,分别通过三维运动捕捉、表面肌电图和问卷调查获得上半身运动学、肌肉活动和主观用户反馈。参与者完成了这些任务(1)没有外骨骼,(2)没有外骨骼,(3)有适度的外骨骼支持,(4)有高度的外骨骼支持。外骨骼支持降低三角肌活动(- 9%至- 24%,p≤0.001),肩关节外展的姿势,包括非头顶姿势。外骨骼支持适度减少肩部屈曲(-3°至-5°,p≤0.001),增加肩部外展(2°至5°,p≤0.032),但动态任务期间的运动模式不受影响。此外,外骨骼相关效应随着支撑的增加而增加,但主观感知变化也增加,感知舒适度下降。我们的研究结果表明,测试的外骨骼提供了超出头顶工作的支持,并且在外骨骼支持和主观感知之间存在权衡。因此,进一步优化用户-外骨骼相互作用是保证长期预防架空工人的肌肉骨骼疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.80
自引率
0.00%
发文量
0
审稿时长
11 weeks
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