Neuromuscular electrical stimulation (NMES) is a self-directed homebased therapeutic tool in early rehabilitation for musculoskeletal (MSK) conditions.However, the effectiveness of traditional NMES is fundamentally constrained by muscle fatigue.To address this limitation, this work proposes a detection system, which simultaneously records multifrequency electrical impedance myography (EIM) and surface electromyography (sEMG) in real time for time-frequency analysis of muscle activation, contraction, and fatigue.To demonstrate the ability to monitor these muscle physiological states, two experiments involving weightless and weighted dynamic contractions of the biceps brachii muscle were performed.Results from these experiments show synchronous changes in sEMG and EIM spectra during contractions, and clear trends in sEMG's mean power frequency (MPF) and EIM spectra with fatigue progression.Additionally, the configurable 4-channel NMES has been electrically evaluated for clinical use, demonstrating the feasibility of the proposed system for closed-loop stimulation.This work showcases the potential of sEMG and multi-frequency EIM to enhance the effectiveness of NMES for MSK conditions by capturing the behavior of distinct mechanisms of muscle fatigue.
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Schrunder et al. (2024) studied this question.
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