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一个过渡点:在使用耗能型外骨骼或生物力学能量收集器进行行走辅助时,辅助幅度是一个关键参数。

A transition point: Assistance magnitude is a critical parameter when providing assistance during walking with an energy-removing exoskeleton or biomechanical energy harvester.

机构信息

Department of Mechanical and Materials Engineering, Queen's University, Kingston, Canada.

Department of Electrical and Computer Engineering, Queen's University, Kingston, Canada.

出版信息

PLoS One. 2023 Aug 10;18(8):e0289811. doi: 10.1371/journal.pone.0289811. eCollection 2023.

Abstract

Researchers and engineers have developed exoskeletons capable of reducing the energetic cost of walking by decreasing the force their users' muscles are required to produce while contracting. The metabolic effect of assisting concentric and isometric muscle contractions depends, in part, on assistance magnitude. We conducted human treadmill experiments to explore the effects of assistance magnitude on the biomechanics and energetics of walking with an energy-removing exoskeleton designed to assist eccentric muscle contractions. Our results demonstrate that the assistance magnitude of an energy-removing device significantly affects the energetics, muscle activity, and biomechanics of walking. Under the moderate assistance magnitude condition, our device reduced the metabolic cost of walking below that of normal walking by 3.4% while simultaneously producing 0.29 W of electricity. This reduction in the energetic cost of walking was also associated with an 8.9% decrease in hamstring activity. Furthermore, we determined that there is an assistance magnitude threshold that, when crossed, results in the device transitioning from assisting to hindering its user. This transition is marked by significant increases in muscle activity and the metabolic cost of walking. These results could aid in the future design of exoskeletons and biomechanical energy harvesters, as well as adaptive control systems, that identify user-specific control parameters associated with minimum energy expenditure.

摘要

研究人员和工程师已经开发出了外骨骼,可以通过减少使用者肌肉收缩时所需的力量来降低步行的能量消耗。辅助向心和等长肌肉收缩的代谢效应部分取决于辅助程度。我们进行了人类跑步机实验,以探索一种旨在辅助离心肌肉收缩的能量去除外骨骼对步行生物力学和能量学的影响。我们的结果表明,能量去除装置的辅助程度显著影响步行的能量学、肌肉活动和生物力学。在中等辅助程度下,我们的装置将步行的代谢成本降低了 3.4%,同时产生了 0.29 瓦特的电力。这种步行能量消耗的降低也与腘绳肌活动减少 8.9%有关。此外,我们确定存在一个辅助程度的阈值,当超过该阈值时,装置会从辅助使用者转变为阻碍使用者。这种转变的标志是肌肉活动和步行代谢成本的显著增加。这些结果可以帮助未来设计外骨骼和生物力学能量收集器,以及自适应控制系统,这些系统可以识别与最低能量消耗相关的特定于用户的控制参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bf5/10414649/56a4cce580d0/pone.0289811.g001.jpg

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