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工业被动式助力外骨骼对举重任务中肌肉活动、耗氧量和主观反应的影响。

Effects of an industrial passive assistive exoskeleton on muscle activity, oxygen consumption and subjective responses during lifting tasks.

机构信息

School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou, China.

School of Mechanical, Aerospace and Civil Engineering, The University of Manchester, Manchester, United Kingdom.

出版信息

PLoS One. 2021 Jan 20;16(1):e0245629. doi: 10.1371/journal.pone.0245629. eCollection 2021.

Abstract

The purpose of this study was to evaluate the effects of an industrial passive assisted exoskeleton (IPAE) with simulated lifting tasks on muscle activity, oxygen consumption, perceived level of exertion, local perceived pressure, and systemic usability. Eight workers were required to complete two lifting tasks with and without the IPAE, that were single lifting tasks (repeated 5 times) and 15 min repeated lifting tasks respectively. Both of the tasks required subjects to remove a toolbox from the ground to the waist height. The test results showed that IPAE significantly reduced the muscle activity of the lumbar erector spinae, thoracic erector spinae, middle deltoid and labrum-biceps muscles; the reduction effect during the 15 min lifting task was reached 21%, 12%, 32% and 38% respectively. The exoskeleton did not cause significant differences in oxygen consumption and the perceived level of exertion, but local perceived pressure on the shoulders, thighs, wrists, and waist of the subjects could be produced. 50% of the subjects rated the usability of the equipment as acceptable. The results illustrate the good potential of the exoskeleton to reduce the muscle activity of the low back and upper arms. However, there is still a concern for the obvious contact pressure.

摘要

本研究旨在评估工业被动辅助式外骨骼(IPAE)在模拟举升任务中对肌肉活动、耗氧量、感知用力程度、局部感知压力和全身可用性的影响。要求 8 名工人分别完成两次有IPA 和无 IPA 的举升任务,分别为单次举升任务(重复 5 次)和 15 分钟重复举升任务。这两个任务都要求受试者将一个工具箱从地面抬到腰部高度。测试结果表明,IPA 显著降低了腰椎竖脊肌、胸腰椎竖脊肌、中三角肌和二头肌的肌肉活动;在 15 分钟的举升任务中,这种降低效果分别达到了 21%、12%、32%和 38%。外骨骼对耗氧量和感知用力程度没有产生显著差异,但会在受试者的肩部、大腿、手腕和腰部产生局部感知压力。50%的受试者认为设备的可用性可以接受。结果表明,外骨骼在降低腰部和上臂肌肉活动方面具有良好的潜力。然而,外骨骼的明显接触压力仍然令人担忧。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66d6/7816984/418f404fa72e/pone.0245629.g001.jpg

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