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在负载搬运过程中,下肢外骨骼装置对代谢成本和步态生物力学的影响。

Effects of a lower-body exoskeleton device on metabolic cost and gait biomechanics during load carriage.

机构信息

US Army Natick Soldier Research, Development and Engineering Center, Natick, MA, USA.

出版信息

Ergonomics. 2010 Oct;53(10):1263-75. doi: 10.1080/00140139.2010.512982.

Abstract

This study investigated the effects on metabolic cost and gait biomechanics of using a prototype lower-body exoskeleton (EXO) to carry loads. Nine US Army participants walked at 1.34 m/s on a 0% grade for 8 min carrying military loads of 20 kg, 40 kg and 55 kg with and without the EXO. Mean oxygen consumption (VO(2)) scaled to body mass and scaled to total mass were significantly higher, by 60% and 41% respectively, when the EXO was worn, compared with the control condition. Mean VO(2) and mean VO(2) scaled to body mass significantly increased with load. The kinematic and kinetic data revealed significant differences between EXO and control conditions, such as walking with a more flexed posture and braking with higher ground reaction force at heel strike when wearing the EXO. Study findings demonstrate that the EXO increased users' metabolic cost while carrying various loads and altered their gait biomechanics compared with conventional load carriage. STATEMENT OF RELEVANCE: An EXO designed to assist in load bearing was found to raise energy expenditure substantially when tested by soldiers carrying military loads. EXO weight, weight distribution and design elements that altered users' walking biomechanics contributed to the high energy cost. To realise the potential of EXOs, focus on the user must accompany engineering advances.

摘要

本研究旨在探讨使用原型下肢外骨骼(EXO)来携带负荷对代谢成本和步态生物力学的影响。九名美国陆军士兵以 1.34 米/秒的速度在 0%的坡度上行走 8 分钟,分别携带 20 公斤、40 公斤和 55 公斤的军用负荷,同时使用和不使用 EXO。与对照条件相比,当穿着 EXO 时,按体重和按总质量计算的平均耗氧量(VO(2))分别显著升高 60%和 41%。平均 VO(2)和按体重计算的平均 VO(2)随负荷的增加而显著增加。运动学和动力学数据显示了 EXO 和对照条件之间的显著差异,例如穿着 EXO 时,姿势更弯曲,脚跟着地时地面反作用力更大。研究结果表明,与传统的负荷携带相比,EXO 增加了使用者携带各种负荷时的代谢成本,并改变了他们的步态生物力学。研究的相关性在于:在士兵携带军用负荷进行测试时,设计用于辅助承重的 EXO 被发现会显著提高能量消耗。EXO 的重量、重量分布和改变使用者步行生物力学的设计元素导致了高能量成本。为了实现 EXO 的潜力,必须在工程进展的同时关注使用者。

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