可变步态条件下比目鱼同心圆收缩的自动检测,以改进外太空服控制

R. Nuckols, K. Swaminathan, Sangjun Lee, L. Awad, C. Walsh, R. Howe
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引用次数: 7

摘要

外装可以减少代谢需求,改善步态。控制器明确源自反映用户关节或肌肉动态的生物机制,理论上应该允许个性化的辅助,并能够适应不断变化的步态。为了开发一种基于肌肉力量的外骨骼控制策略,我们提出了一种实时估计比目鱼肌何时开始产生正能量的方法。一个低姿态的超声系统记录了行走个体比目鱼肌的b型图像。使用光流的自动化程序将数据分割为标准化的步态周期,并以实时速率(~130Hz)估计同心收缩的开始。与使用地面反作用力相比,分割误差在步态周期的1%以内。对同心收缩开始的估计具有高相关性(R2=0.92),相对于人工估计,RMSE为2.6%的步态周期。我们证明了在健康个体中固定速度行走时同心收缩开始的能力,其范围从步态周期的39.3%到45.8%,以及在两个人中风后以舒适的行走速度行走时的可行性。我们还展示了当生物系统从水平行走适应到倾斜行走时,测量发病时间提前7%的能力。最后,我们提供了一个初步的评估,即同心收缩的开始如何用于水平和倾斜行走时的外衣控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automated detection of soleus concentric contraction in variable gait conditions for improved exosuit control
Exosuits can reduce metabolic demand and improve gait. Controllers explicitly derived from biological mechanisms that reflect the user's joint or muscle dynamics should in theory allow for individualized assistance and enable adaptation to changing gait. With the goal of developing an exosuit control strategy based on muscle power, we present an approach for estimating, at real time rates, when the soleus muscle begins to generate positive power. A low-profile ultrasound system recorded B-mode images of the soleus in walking individuals. An automated routine using optical flow segmented the data to a normalized gait cycle and estimated the onset of concentric contraction at real-time rates (~130Hz). Segmentation error was within 1% of the gait cycle compared to using ground reaction forces. Estimation of onset of concentric contraction had a high correlation (R2=0.92) and an RMSE of 2.6% gait cycle relative to manual estimation. We demonstrated the ability to estimate the onset of concentric contraction during fixed speed walking in healthy individuals that ranged from 39.3% to 45.8% of the gait cycle and feasibility in two persons post-stroke walking at comfortable walking speed. We also showed the ability to measure a shift in onset timing to 7% earlier when the biological system adapts from level to incline walking. Finally, we provided an initial evaluation for how the onset of concentric contraction might be used to inform exosuit control in level and incline walking.
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