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外骨骼 4 号肩部外骨骼在模拟高于肩部的职业任务时,能有效减少肌肉和关节的负荷。

The Exo4Work shoulder exoskeleton effectively reduces muscle and joint loading during simulated occupational tasks above shoulder height.

机构信息

Human Movement Biomechanics Research Group, Department of Movement Sciences, Katholieke Universiteit Leuven, Leuven, Belgium.

Robotics & Multibody Mechanics Research Group (R&MM), Department of Mechanical Engineering of the VUB, Belgium and Flanders Make, Brussels, Belgium.

出版信息

Appl Ergon. 2022 Sep;103:103800. doi: 10.1016/j.apergo.2022.103800. Epub 2022 May 19.

Abstract

INTRODUCTION

Excessive physical shoulder musculoskeletal loading (muscle and joint contact forces), known to contribute to work-related shoulder disorders, can be reduced by a passive shoulder exoskeleton during quasi-static tasks. However, its effect on neighboring joints i.e. elbow, lower back, hip, and knee and its effect on joint contact forces have not been investigated. Furthermore, the effect of the exoskeleton's assistance versus movement adaptation when wearing the exoskeleton on musculoskeletal loading remains unexplored.

METHODS

3D motion capture and ground reaction forces were measured while 16 participants performed 5 simulated occupational tasks with and without the exoskeleton. A musculoskeletal modeling workflow was used to calculate musculoskeletal loading. Shoulder muscle fatigue was quantified using surface EMG. In addition, exoskeletons usability was quantified using the system usability scale.

RESULTS

When wearing the passive shoulder exoskeleton, shoulder and elbow musculoskeletal loading decreased during the high lift and overhead wiring task, without increasing the musculoskeletal load at the back, hip and knee. In contrast, musculoskeletal loading in the shoulder, as well as in the knee increased while lifting a box from the ground to knee height and from elbow height to shoulder height. When wearing the exoskeleton, muscle activity of the Trapezius descendens, Deltoideus medius and Biceps brachii were reduced during the high lift.

CONCLUSION

The passive shoulder exoskeleton reduces musculoskeletal loading in the lower back, shoulder and elbow during simulated occupational tasks above shoulder height. In contrast, for tasks below shoulder height, the use of the exoskeleton needs to be critically reviewed to avoid increased musculoskeletal loading also in neighboring joints due to altered movement execution when wearing the exoskeleton.

摘要

简介

已知过度的肩部肌肉骨骼负荷(肌肉和关节接触力)会导致与工作相关的肩部疾病,而在准静态任务中,被动式肩部外骨骼可减少这种负荷。然而,其对相邻关节(即肘部、下背部、臀部和膝盖)的影响以及对关节接触力的影响尚未得到研究。此外,当佩戴外骨骼时,外骨骼的辅助作用与运动适应对肌肉骨骼负荷的影响仍未得到探索。

方法

16 名参与者在佩戴和不佩戴外骨骼的情况下进行了 5 项模拟作业任务,同时测量了 3D 运动捕捉和地面反作用力。使用肌肉骨骼建模工作流程来计算肌肉骨骼负荷。使用表面肌电图来量化肩部肌肉疲劳。此外,使用系统可用性量表来量化外骨骼的可用性。

结果

当佩戴被动式肩部外骨骼时,在高抬和架空布线任务中,肩部和肘部肌肉骨骼负荷会降低,而背部、臀部和膝盖的肌肉骨骼负荷不会增加。相比之下,当从地面抬起箱子到膝盖高度和从肘部高度抬起到肩部高度时,肩部和膝盖的肌肉骨骼负荷会增加。当佩戴外骨骼时,在高抬过程中,斜方肌下部、三角肌中部和肱二头肌的肌肉活动会减少。

结论

在模拟作业任务中,当肩部高度以上时,被动式肩部外骨骼可减少下背部、肩部和肘部的肌肉骨骼负荷。相比之下,对于肩部高度以下的任务,需要对外骨骼的使用进行严格审查,以避免因佩戴外骨骼而改变运动执行方式导致相邻关节的肌肉骨骼负荷增加。

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