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The effect of a passive trunk exoskeleton on metabolic costs during lifting and walking

机译:被动躯干外骨骼对升降期间代谢成本的影响

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摘要

The objective of this study was to assess how wearing a passive trunk exoskeleton affects metabolic costs, movement strategy and muscle activation during repetitive lifting and walking. We measured energy expenditure, kinematics and muscle activity in 11 healthy men during 5min of repetitive lifting and 5min of walking with and without exoskeleton. Wearing the exoskeleton during lifting, metabolic costs decreased as much as 17%. In conjunction, participants tended to move through a smaller range of motion, reducing mechanical work generation. Walking with the exoskeleton, metabolic costs increased up to 17%. Participants walked somewhat slower with shortened steps while abdominal muscle activity slightly increased when wearing the exoskeleton. Wearing an exoskeleton during lifting decreased metabolic costs and hence may reduce the development of fatigue and low back pain risk. During walking metabolic costs increased, stressing the need for a device that allows disengagement of support depending on activities performed.Practitioner summary: Physiological strain is an important risk factor for low back pain. We observed that an exoskeleton reduced metabolic costs during lifting, but had an opposite effect while walking. Therefore, exoskeletons may be of benefit for lifting by decreasing physiological strain but should allow disengagement of support when switching between tasks.Abbreviations: COM: centre of mass; EMG: electromyography; LBP: low back pain; MVC: maximum voluntary isometric contraction; NIOSH: National Institute for Occupational Safety and Health; PLAD: personal lift augmentation device; PWS: preferred walking speed without exoskeleton; PWSX: preferred walking speed with exoskeleton; ROM: range of motion; RER: respiratory exchange ratio; V .O2max: maximum rate of oxygen consumption
机译:本研究的目的是评估穿着被动躯干外骨骼的如何影响代谢成本,运动策略和肌肉激活在重复升降和行走期间。在5分钟的重复升降和5分钟的携带和没有外骨架的5分钟内测量了11名健康男性的能量支出,运动学和肌肉活动。在提升期间穿着外骨骼,代谢成本降低多达17%。结合,参与者倾向于穿过较小的运动范围,减少机械工作。散步与外骨骼,代谢成本高达17%。参与者随着缩短步骤而稍微慢一点,腹部肌肉活动佩戴外骨骼时略微增加。在提升过程中穿着外骨骼降低代谢成本下降,因此可能会降低疲劳和低疼痛风险的发展。在步骤代谢成本增加期间,压力需要根据所进行的活动脱离支持的装置.PRACTINCER概述:生理菌株是低腰痛的重要危险因素。我们观察到,在升降期间,外骨骼降低了代谢成本,但行走时有相反的效果。因此,通过减少生理菌株来提升外骨骼可能是有益的,但是在任务之间切换时应该允许脱离支持:COM:COM:质量中心; EMG:肌电图; LBP:低腰疼; MVC:最大自愿等距收缩; Niosh:国家职业安全与健康研究所; Plad:个人升降装置; PWS:没有外骨骼的首选步行速度; PWSX:优选的步行速度与外骨骼; ROM:运动范围; RER:呼吸交流率; v .2max:最大氧气消耗速率

著录项

  • 来源
    《Ergonomics》 |2019年第7期|903-916|共14页
  • 作者单位

    Rehabil Ctr Heliomare Dept Res & Dev NL-1940 Wijk Aan Zee Netherlands|Vrije Univ Amsterdam Fac Behav & Movement Sci Dept Human Movement Sci Amsterdam Netherlands;

    Vrije Univ Amsterdam Fac Behav & Movement Sci Dept Human Movement Sci Amsterdam Netherlands;

    Vrije Univ Amsterdam Fac Behav & Movement Sci Dept Human Movement Sci Amsterdam Netherlands;

    Vrije Univ Amsterdam Fac Behav & Movement Sci Dept Human Movement Sci Amsterdam Netherlands;

    Rehabil Ctr Heliomare Dept Res & Dev NL-1940 Wijk Aan Zee Netherlands;

    Rehabil Ctr Heliomare Dept Res & Dev NL-1940 Wijk Aan Zee Netherlands|Vrije Univ Amsterdam Fac Behav & Movement Sci Dept Human Movement Sci Amsterdam 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

    Assistive device; low back pain; oxygen consumption; movement behaviour; EMG;

    机译:辅助装置;腰痛;氧气消耗;运动行为;EMG;
  • 入库时间 2022-08-18 21:22:09

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