首页> 外文期刊>Journal of Neuroscience Methods >Autogenic EMG-controlled functional electrical stimulation for ankle dorsiflexion control.
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Autogenic EMG-controlled functional electrical stimulation for ankle dorsiflexion control.

机译:自体肌电图控制功能电刺激脚踝背屈控制。

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摘要

Our objectives were to develop and test a new system for the potential for stable, real-time cancellation of residual stimulation artefacts (RSA) using surface electrode autogenic electromyography-controlled functional electrical stimulator (aEMGcFES). This type of closed-loop FES could be used to provide more natural, continuous control of lower extremity paretic muscles. We built upon work that has been done in the field of FES with one major technological innovation, an adaptive Gram-Schmidt filtering algorithm, which allowed us to digitally cancel RSA in real-time. This filtering algorithm resulted in a stable real-time estimation of the volitional intent of the stimulated muscle, which then acted as the direct signal for continuously controlling homonymous muscle stimulation. As a first step toward clinical application, we tested the viability of our aEMGcFES system to continuously control ankle dorsiflexion in a healthy subject. Our results indicate positively that an aEMGcFES device with adaptive filtering can respond proportionally to voluntary EMG and activate forceful movements to assist dorsiflexion during controlled isometric activation at the ankle. We also verified that normal ankle joint range of movement could be maintained while using the aEMGcFES system. We suggest that real-time cancellation of both primary and RSA is possible with surface electrode aEMGcFES in healthy subjects and shows promising potential for future clinical application to gait pathologies such as drop foot related to hemiparetic stroke.
机译:我们的目标是使用表面电极自体肌电图控制的功能性电刺激器(aEMGcFES)开发和测试新的系统,以稳定,实时地消除残留刺激伪影(RSA)。这种类型的闭环FES可用于提供对下肢皮肌的更自然,连续的控制。我们基于FES领域的一项重大技术创新,即自适应的Gram-Schmidt过滤算法,使我们能够实时数字地消除RSA。该滤波算法可对被刺激的肌肉的意图进行稳定的实时估计,然后将其用作连续控制同形肌肉刺激的直接信号。作为临床应用的第一步,我们测试了aEMGcFES系统在健康受试者中持续控制踝背屈的可行性。我们的结果肯定地表明,具有自适应过滤功能的aEMGcFES设备可以按比例响应自愿肌电图并激活有力的运动,以在踝关节的等距激活中辅助背屈。我们还验证了使用aEMGcFES系统时可以保持正常的踝关节运动范围。我们建议,在健康受试者中使用表面电极aEMGcFES可以实时消除原发性和RSA病毒,并显示出未来临床应用的潜力,可用于步态性疾病(如与偏瘫性中风相关的跌脚)。

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