首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Single-trial estimation of quasi-static EMG-to-joint-mechanical-impedance relationship over a range of joint torques
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Single-trial estimation of quasi-static EMG-to-joint-mechanical-impedance relationship over a range of joint torques

机译:一系列关节扭矩的准静态EMG与联合机械阻抗关系的单试估计

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摘要

Joint mechanical impedance is commonly measured by applying dynamic perturbations about a joint at a fixed operating point/background torque, and quantifying torque change vs. angle change. Impedance characterization in functional tasks, therefore, requires multiple experimental trials over a range of operating points-a cumbersome, invasive, time-consuming and impractical task. As an alternative, studies have related EMG to impedance, after which EMG can estimate impedance without applying joint perturbations. But, the cumbersome calibration trials are still required. We describe a method of single contraction perturbations in which the background torque slowly ramps over the operating range, with EMG simultaneously acquired. Using one such "quasi-static" contraction for model training and another for testing, we show this method to be a reasonable surrogate for traditional second-order, linear impedance modeling. A simple, short-duration calibration results. We compared our single-trial ramp method to multiple constant background torque trials at 10, 20, 30, and 40% maximum effort (extension and flexion), finding only limited differences in traditional vs. EMG-based ramp impedance estimates (12-22%, most prominent at the two lower contraction levels). Such constant force and slowly-variable force contractions are relevant to many practical applications, including ergonomics assessment, prosthetic control and clinical biomechanics.
机译:通过在固定的操作点/背景扭矩下施加关于接头的动态扰动和量化扭矩变化与角度变化来通常通过施加动态扰动来测量接头机械阻抗。因此,功能任务中的阻抗表征需要在一系列操作点 - 一个繁琐,侵入性,耗时和不切实际的任务范围内进行多种实验试验。作为一种替代方案,研究与阻抗有关的EMG,之后EMG可以估计阻抗而不应用关节扰动。但是,仍然需要麻烦的校准试验。我们描述了一种单一收缩扰动的方法,其中背景扭矩在操作范围内缓慢斜坡,EMG同步地获取。使用一个这样的“准静态”收缩进行模型培训和另一个用于测试,我们将这种方法显示为传统二阶线性阻抗建模的合理代理。简单,短期校准结果。我们将单次试验斜坡方法与10,20,30和40%的最大努力(延长和屈曲)进行了多种恒定的背景扭矩试验,发现了基于EMG的斜坡阻抗估计的传统与EMG的差异有限(12-22 %,在两个较低的收缩水平上突出)。这种恒定力和缓慢变量的力收缩与许多实际应用相关,包括人体工程学评估,假论和临床生物力学。

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