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软气动肘外骨骼可减少持物和搬运过程中的肌肉活动、代谢成本和疲劳。

Soft pneumatic elbow exoskeleton reduces the muscle activity, metabolic cost and fatigue during holding and carrying of loads.

机构信息

Department of Electrical and Computer Engineering, Technical University of Munich, 80333, Munich, Germany.

Institute of Sport Science, Technical University Darmstadt, 64289, Darmstadt, Germany.

出版信息

Sci Rep. 2021 Jun 15;11(1):12556. doi: 10.1038/s41598-021-91702-5.

Abstract

To minimize fatigue, sustain workloads, and reduce the risk of injuries, the exoskeleton Carry was developed. Carry combines a soft human-machine interface and soft pneumatic actuation to assist the elbow in load holding and carrying. We hypothesize that the assistance of Carry would decrease, muscle activity, net metabolic rate, and fatigue. With Carry providing 7.2 Nm of assistance, we found reductions of up to 50% for the muscle activity, up to 61% for the net metabolic rate, and up to 99% for fatigue in a group study of 12 individuals. Analyses of operation dynamics and autonomous use demonstrate the applicability of Carry to a variety of use cases, presumably with increased benefits for increased assistance torque. The significant benefits of Carry indicate this device could prevent systemic, aerobic, and/or possibly local muscle fatigue that may increase the risk of joint degeneration and pain due to lifting, holding, or carrying.

摘要

为了最大限度地减少疲劳、维持工作量并降低受伤风险,开发了外骨骼 Carry。Carry 结合了柔软的人机界面和软气动致动,以帮助肘部保持和携带负载。我们假设 Carry 的辅助作用将降低肌肉活动、净代谢率和疲劳。在一项由 12 人组成的小组研究中,我们发现 Carry 提供 7.2 Nm 的辅助时,肌肉活动减少了高达 50%,净代谢率减少了高达 61%,疲劳减少了高达 99%。对操作动力学和自主使用的分析表明,Carry 适用于各种用例,可能随着辅助扭矩的增加而带来更大的好处。Carry 的显著好处表明,该设备可以防止因举重、保持或携带而导致的全身性、需氧性和/或局部肌肉疲劳,从而增加关节退化和疼痛的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68b5/8206112/4c8dd260a22d/41598_2021_91702_Fig1_HTML.jpg

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