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肌肉-肌腱力学解释了外骨骼辅助对步行过程中代谢率产生的意外影响。

Muscle-tendon mechanics explain unexpected effects of exoskeleton assistance on metabolic rate during walking.

作者信息

Jackson Rachel W, Dembia Christopher L, Delp Scott L, Collins Steven H

机构信息

Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA

Department of Mechanical Engineering, Stanford University, Stanford, CA 94305, USA.

出版信息

J Exp Biol. 2017 Jun 1;220(Pt 11):2082-2095. doi: 10.1242/jeb.150011. Epub 2017 Mar 24.

Abstract

The goal of this study was to gain insight into how ankle exoskeletons affect the behavior of the plantarflexor muscles during walking. Using data from previous experiments, we performed electromyography-driven simulations of musculoskeletal dynamics to explore how changes in exoskeleton assistance affected plantarflexor muscle-tendon mechanics, particularly for the soleus. We used a model of muscle energy consumption to estimate individual muscle metabolic rate. As average exoskeleton torque was increased, while no net exoskeleton work was provided, a reduction in tendon recoil led to an increase in positive mechanical work performed by the soleus muscle fibers. As net exoskeleton work was increased, both soleus muscle fiber force and positive mechanical work decreased. Trends in the sum of the metabolic rates of the simulated muscles correlated well with trends in experimentally observed whole-body metabolic rate (=0.9), providing confidence in our model estimates. Our simulation results suggest that different exoskeleton behaviors can alter the functioning of the muscles and tendons acting at the assisted joint. Furthermore, our results support the idea that the series tendon helps reduce positive work done by the muscle fibers by storing and returning energy elastically. We expect the results from this study to promote the use of electromyography-driven simulations to gain insight into the operation of muscle-tendon units and to guide the design and control of assistive devices.

摘要

本研究的目的是深入了解踝关节外骨骼在行走过程中如何影响跖屈肌的行为。利用先前实验的数据,我们进行了肌电图驱动的肌肉骨骼动力学模拟,以探究外骨骼辅助的变化如何影响跖屈肌肌腱力学,特别是比目鱼肌。我们使用肌肉能量消耗模型来估计个体肌肉代谢率。随着外骨骼平均扭矩增加,同时未提供净外骨骼功,肌腱回缩减少导致比目鱼肌纤维进行的正向机械功增加。随着净外骨骼功增加,比目鱼肌纤维力和正向机械功均降低。模拟肌肉代谢率总和的趋势与实验观察到的全身代谢率趋势(=0.9)密切相关,这为我们的模型估计提供了信心。我们的模拟结果表明,不同的外骨骼行为可以改变作用于辅助关节的肌肉和肌腱的功能。此外,我们的结果支持这样一种观点,即串联肌腱通过弹性储存和返回能量,有助于减少肌肉纤维所做的正向功。我们期望本研究的结果能促进肌电图驱动模拟的应用,以深入了解肌肉肌腱单元的运作,并指导辅助设备的设计和控制。

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