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Development of a multichannel current-EMG system for coherence modulation with visual biofeedback

机译:开发具有视觉生物反馈的相干调制的多通道电流-EMG系统

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摘要

By means of biofeedback, neuromotor control can be modified. Recent biofeedback experiments have used the power of the electromyogram of one muscle in different frequency bands to control a two-dimensional cursor. However, the human body usually requires coherent activation of multiple muscles to achieve daily life tasks. Additionally, electromyography (EMG) instrumentation has remained the same for decades, and might not be the most suitable to measure coherent activations from pennated muscles according to recent experiments by von Tscharner and colleagues. In this study, we propose the development of a multichannel current-based EMG amplifier to use intermuscular coherence as the control feature of a visual biofeedback system. The system was used in a leg extension protocol to voluntarily increase intermuscular coherence between the vastii muscles. Results from ten subjects show that it is possible to increase intermuscular coherence through visual biofeedback. Such a system can have applications in endurance training and rehabilitation.
机译:通过生物反馈,可以改变神经运动控制。最近的生物反馈实验已使用了一条肌肉在不同频带中的肌电图功率来控制二维光标。但是,人体通常需要多个肌肉的协调激活才能完成日常生活任务。此外,根据von Tscharner及其同事最近进行的实验,肌电图(EMG)仪器几十年来一直保持不变,并且可能不是最适合于测量垂肌的相干激活的仪器。在这项研究中,我们提出了一种基于电流的多通道EMG放大器的开发,该放大器将肌间连贯性用作视觉生物反馈系统的控制特征。该系统被用于腿部伸展方案中,以自愿增加巨大肌之间的肌肉间连贯性。十名受试者的结果表明,可以通过视觉生物反馈提高肌肉间的连贯性。这样的系统可以在耐力训练和康复中应用。

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