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软质外骨骼套装多关节辅助的生物力学与生理学评估

Biomechanical and Physiological Evaluation of Multi-Joint Assistance With Soft Exosuits.

作者信息

Ding Ye, Galiana Ignacio, Asbeck Alan T, De Rossi Stefano Marco Maria, Bae Jaehyun, Santos Thiago Ribeiro Teles, de Araujo Vanessa Lara, Lee Sangjun, Holt Kenneth G, Walsh Conor

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2017 Feb;25(2):119-130. doi: 10.1109/TNSRE.2016.2523250. Epub 2016 Jan 28.

Abstract

To understand the effects of soft exosuits on human loaded walking, we developed a reconfigurable multi-joint actuation platform that can provide synchronized forces to the ankle and hip joints. Two different assistive strategies were evaluated on eight subjects walking on a treadmill at a speed of 1.25 m/s with a 23.8 kg backpack: 1) hip extension assistance and 2) multi-joint assistance (hip extension, ankle plantarflexion and hip flexion). Results show that the exosuit introduces minimum changes to kinematics and reduces biological joint moments. A reduction trend in muscular activity was observed for both conditions. On average, the exosuit reduced the metabolic cost of walking by 0.21 ±0.04 and 0.67 ±0.09 W/kg for hip extension assistance and multi-joint assistance respectively, which is equivalent to an average metabolic reduction of 4.6% and 14.6%, demonstrating that soft exosuits can effectively improve human walking efficiency during load carriage without affecting natural walking gait. Moreover, it indicates that actuating multiple joints with soft exosuits provides a significant benefit to muscular activity and metabolic cost compared to actuating single joint.

摘要

为了解软外骨骼对人体负重行走的影响,我们开发了一种可重构的多关节驱动平台,该平台能够向踝关节和髋关节提供同步力。在8名受试者以1.25 m/s的速度在跑步机上行走并背负23.8 kg背包的情况下,评估了两种不同的辅助策略:1)髋关节伸展辅助和2)多关节辅助(髋关节伸展、踝关节跖屈和髋关节屈曲)。结果表明,外骨骼对运动学的改变最小,并降低了生物关节力矩。在两种情况下均观察到肌肉活动的减少趋势。平均而言,对于髋关节伸展辅助和多关节辅助,外骨骼分别将行走的代谢成本降低了0.21±0.04和0.67±0.09 W/kg,这相当于平均代谢降低了4.6%和14.6%,表明软外骨骼可以在不影响自然行走步态的情况下有效提高人体负重行走效率。此外,这表明与驱动单个关节相比,用软外骨骼驱动多个关节对肌肉活动和代谢成本有显著益处。

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