Department of Biomedical Engineering, Faculty of Engineering, University of Malaya, Kuala Lumpur 50603, Malaysia.
Department of Electrical and Computer Engineering, Faculty of Engineering, International Islamic University Malaysia, Kuala Lumpur 53100, Malaysia.
Biomed Tech (Berl). 2020 Aug 27;65(4):461-468. doi: 10.1515/bmt-2019-0191.
Functional electrical stimulation (FES) has been used to produce force-related activities on the paralyzed muscle among spinal cord injury (SCI) individuals. Early muscle fatigue is an issue in all FES applications. If not properly monitored, overstimulation can occur, which can lead to muscle damage. A real-time mechanomyography (MMG)-based FES system was implemented on the quadriceps muscles of three individuals with SCI to generate an isometric force on both legs. Three threshold drop levels of MMG-root mean square (MMG-RMS) feature (thr50, thr60, and thr70; representing 50%, 60%, and 70% drop from initial MMG-RMS values, respectively) were used to terminate the stimulation session. The mean stimulation time increased when the MMG-RMS drop threshold increased (thr50: 22.7 s, thr60: 25.7 s, and thr70: 27.3 s), indicating longer sessions when lower performance drop was allowed. Moreover, at thr70, the torque dropped below 50% from the initial value in 14 trials, more than at thr50 and thr60. This is a clear indication of muscle fatigue detection using the MMG-RMS value. The stimulation time at thr70 was significantly longer (p = 0.013) than that at thr50. The results demonstrated that a real-time MMG-based FES monitoring system has the potential to prevent the onset of critical muscle fatigue in individuals with SCI in prolonged FES sessions.
功能性电刺激 (FES) 已被用于产生脊髓损伤 (SCI) 个体瘫痪肌肉的与力相关的活动。早期肌肉疲劳是所有 FES 应用中的一个问题。如果不进行适当的监测,可能会发生过度刺激,从而导致肌肉损伤。一个基于实时肌电图 (MMG) 的 FES 系统已被应用于三位 SCI 患者的股四头肌,以在双腿上产生等长力。使用三种 MMG-均方根 (MMG-RMS) 特征的阈值下降水平 (thr50、thr60 和 thr70;分别代表从初始 MMG-RMS 值下降 50%、60%和 70%)来终止刺激会话。当 MMG-RMS 下降阈值增加时,平均刺激时间增加(thr50:22.7s,thr60:25.7s,thr70:27.3s),表明允许较低性能下降时,会话时间更长。此外,在 thr70 下,14 次试验中有 14 次的扭矩从初始值下降超过 50%,比 thr50 和 thr60 更明显。这清楚地表明使用 MMG-RMS 值可以检测肌肉疲劳。在 thr70 时的刺激时间明显长于 thr50(p=0.013)。结果表明,实时基于 MMG 的 FES 监测系统有可能防止 SCI 患者在长时间 FES 会话中发生严重的肌肉疲劳。