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The effectivity of a passive arm support exoskeleton in reducing muscle activation and perceived exertion during plastering activities

机译:无源臂支撑外骨骼在涂抹活动期间减少肌肉活化和感知施加的实力

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摘要

The supportive effect of arm-support exoskeletons has been mainly studied for single postures or movements. The aim of this study is to analyse the effect of such an exoskeleton on shoulder muscle activity and perceived exertion, in six tasks of plasterers, each including multiple arm movements. The tasks of 'applying gypsum', 'screeding' and 'finishing' were performed at a ceiling and a wall, with exoskeleton (Exo) and without (NoExo). EMG was recorded of six muscles involved in upper arm elevation, four agonists and two antagonists, and plasterers rated their perceived exertion (RPE). In all tasks, the EMG amplitudes of three agonist muscles, Trapezius and Medial Deltoid, and Biceps Brachii, were lower in Exo vs NoExo, while the agonist, Anterior Deltoid, showed lower EMG values in Exo in most tasks. None of the antagonists (Triceps Brachii, Pectoralis Major) showed increased EMG values in the Exo condition. RPE's were lower in Exo condition for all tasks, except for 'applying gypsum to the wall'. Overall, the exoskeleton seems to reduce loads in realistic plastering tasks.Practitioner summary: Exoskeletons are an emerging technology in the field of ergonomics. Passive arm support exoskeletons have mainly been tested in lab studies using continuous overhead work, involving one posture or movement. However, in reality, working tasks generally involve multiple movements. This study investigates the effectiveness of an arm support exoskeleton in work that requires multiple arm movements, specifically in plastering. Muscle activity, as well as perceived exertion were both reduced when working with an exoskeleton.
机译:ARM-SUPPLE外骨骼的支持性效果主要研究了单姿势或运动。本研究的目的是分析这种外骨骼对肩部肌肉活动和感知施加的影响,其中六个泥水匠,每个都包括多个臂运动。 “应用石膏”,“刮削”和“整理”的任务是在天花板和墙壁上进行的,其中包括外骨骼(EXO)和没有(Noexo)。 EMG被记录在上臂高度,四个激动剂和两个拮抗剂中涉及六个肌肉,并且泥水匠评定了他们感知的劳动(RPE)。在所有任务中,三种激动剂肌肉,梯形和内侧三角形的EMG振幅和二头肌Brachii在exo与罕见中较低,而Agonist前三角形在大多数任务中展示了EXO中的较低的EMG值。没有一个拮抗剂(Triceps Brachii,Pectoralis Major)在EXO条件下表现出高的EMG值。所有任务的EXO条件下,RPE的exo条件较低,除了“将石膏施加到墙壁”之外。总体而言,外骨骼似乎减少了现实抹灰任务的负荷.Practitioner摘要:外骨骼是人体工程学领域的新兴技术。被动臂支持外骨骼主要在实验室研究中进行了使用连续的开销工作,涉及一种姿势或运动。然而,实际上,工作任务通常涉及多种运动。本研究调查了ARM支持外骨骼在需要多个臂运动的工作中的有效性,具体在于抹灰。在使用外骨骼时,肌肉活动以及感知劳累均均降低。

著录项

  • 来源
    《Ergonomics》 |2021年第6期|712-721|共10页
  • 作者单位

    TNO Sustainable Prod & Employabil Hlth Living Schipholweg 77 NL-2316 ZL Leiden Netherlands;

    TNO Sustainable Prod & Employabil Hlth Living Schipholweg 77 NL-2316 ZL Leiden Netherlands;

    TNO Sustainable Prod & Employabil Hlth Living Schipholweg 77 NL-2316 ZL Leiden Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Exoskeleton; construction; muscle activity; MSD; plastering;

    机译:外骨骼;施工;肌肉活动;MSD;抹灰;

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