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The Effects of Upper-Body Exoskeletons on Human Metabolic Cost and Thermal Response during Work Tasks—A Systematic Review

机译:上半身外骨骼对工作任务期间人类代谢成本和热响应的影响 - 系统评价

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摘要

Background: New wearable assistive devices (exoskeletons) have been developed for assisting people during work activity or rehabilitation. Although exoskeletons have been introduced into different occupational fields in an attempt to reduce the risk of work-related musculoskeletal disorders, the effectiveness of their use in workplaces still needs to be investigated. This systematic review focused on the effects of upper-body exoskeletons (UBEs) on human metabolic cost and thermophysiological response during upper-body work tasks. Methods: articles published until 22 September 2020 were selected from Scopus, Web of Science, and PubMed for eligibility and the potential risk of bias was assessed. Results: Nine articles resulted in being eligible for the metabolic aspects, and none for the thermal analysis. All the studies were based on comparisons between conditions with and without exoskeletons and considered a total of 94 participants (mainly males) performing tasks involving the trunk or overhead work, 7 back-support exoskeletons, and 1 upper-limb support exoskeleton. Eight studies found a significant reduction in the mean values of the metabolic or cardiorespiratory parameters considered and one found no differences. Conclusions: The reduction found represents a preliminary finding that needs to be confirmed in a wider range of conditions, especially in workplaces, where work tasks show different characteristics and durations compared to those simulated in the laboratory. Future developments should investigate the dependence of metabolic cost on specific UBE design approaches during tasks involving the trunk and the possible statistical correlation between the metabolic cost and the surface ElectroMyoGraphy (sEMG) parameters. Finally, it could be interesting to investigate the effect of exoskeletons on the human thermophysiological response.
机译:背景:新的可穿戴辅助设备(外骨骼)是为协助人员在工作活动或康复期间提供的。虽然已经引入了外骨骼的不同职业领域,但试图降低与工作相关的肌肉骨骼障碍的风险,但他们在工作场所的使用情况仍然需要调查。这种系统综述重点是上半身外骨骼(UBES)对上半身工作任务期间人类代谢成本和热性医学反应的影响。方法:发表的文章于2020年9月22日选自Scopus,科学网站,以及可靠性的PubMed,并评估偏见的潜在风险。结果:九篇文章导致资格获得代谢方面,无用于热分析。所有研究均基于患有和没有外骨骼的条件之间的比较,并且考虑共有94名参与者(主要是男性)执行涉及躯干或开销工作的任务,7个后支持外骨骼和1个上肢支持外骨骼。八项研究发现,所考虑的代谢或心肺参数的平均值显着降低,一个发现没有差异。结论:发现的减少代表了需要在更广泛的条件下进行证实的初步发现,特别是在工作场所,工作任务与实验室模拟的那些相比显示不同的特征和持续时间。未来的发展应研究代谢成本对涉及躯干的任务期间特定UBE设计方法的依赖性以及代谢成本与表面肌电图(SEMG)参数之间的可能统计相关性。最后,研究外骨骼对人体热性生理反应的影响可能是有趣的。

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