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一种被动式上肢外骨骼在增强现实交互中减少了肌肉负荷。

A passive upper-limb exoskeleton reduced muscular loading during augmented reality interactions.

机构信息

Department of Industrial Engineering, Sungkyunkwan University, Corvallis, OR, USA.

College of Public Health and Human Sciences, Oregon State University, Corvallis, OR, USA.

出版信息

Appl Ergon. 2023 May;109:103982. doi: 10.1016/j.apergo.2023.103982. Epub 2023 Feb 3.

Abstract

The aim of this study was to evaluate a passive upper-limb exoskeleton as an ergonomic control to reduce the musculoskeletal load in the shoulders associated with augmented reality (AR) interactions. In a repeated-measures laboratory study, each of the 20 participants performed a series of AR tasks with and without a commercially-available upper-limb exoskeleton. During the AR tasks, muscle activity (anterior, middle, posterior deltoid, and upper trapezius), shoulder joint postures/moment, and self-reported discomfort were collected. The results showed that the exoskeleton significantly reduced muscle activity in the upper trapezius and deltoid muscle groups and self-reported discomfort. However, the shoulder postures and task performance measures were not affected by the exoskeleton during the AR interactions. Given the significant decrease in muscle activity and discomfort without compromising task performance, a passive exoskeleton can be an effective ergonomic control measure to reduce the risks of developing musculoskeletal discomfort or injuries in the shoulder regions.

摘要

本研究旨在评估一种被动式上肢外骨骼作为一种人体工程学控制装置,以减少与增强现实 (AR) 交互相关的肩部肌肉骨骼负荷。在一项重复测量的实验室研究中,每个 20 名参与者都在使用和不使用市售上肢外骨骼的情况下完成了一系列 AR 任务。在 AR 任务期间,收集了肌肉活动(前三角肌、中三角肌、后三角肌和上斜方肌)、肩关节姿势/力矩和自我报告的不适。结果表明,外骨骼可显著降低上斜方肌和三角肌肌肉群的肌肉活动和自我报告的不适。然而,在 AR 交互过程中,外骨骼并没有影响肩部姿势和任务表现测量。鉴于肌肉活动和不适显著减少而不影响任务表现,被动式外骨骼可以作为一种有效的人体工程学控制措施,以降低肩部肌肉骨骼不适或损伤的风险。

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