Krueger-Beck Eddy, Scheeren Eduardo M, Nogueira-Neto Guilherme N, Button Vera Lucia S N, Nohama Percy
Federal Technological University of Paraná, (UTFPR), Curitiba, PR, Av. Sete de Setembro 3165, CEP 80230-901, Brazil.
Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:626-9. doi: 10.1109/IEMBS.2010.5627274.
Mechanomyography (MMG) registers lateral oscillations of contracting muscles. Functional electrical stimulation (FES) improves the rehabilitation of paraplegic subjects and can be used in neuroprosthesis control. During FES application, muscular contraction responses may vary, possibly due to fatigue or adaptation of nerve cells face to electrical stimuli. This study measured the differences in MMG RMS and median frequency (MF) features between healthy (HV) and spinal cord injury (SCI) volunteers. Ten HV and three SCI participated in the research. FES waveform consisted of a monophasic square wave, 1kHz pulse frequency, 100us active pulse period and 3ms active burst period with burst frequency of 70Hz. For each stimulation series, three analysis windows were inspected. RMS and MF variations were inversely related. The obtained results may help to create new strategies of muscular closed-loop control.
肌动图(MMG)记录收缩肌肉的横向振荡。功能性电刺激(FES)可改善截瘫患者的康复情况,并可用于神经假体控制。在应用FES期间,肌肉收缩反应可能会有所不同,这可能是由于疲劳或神经细胞对电刺激的适应性所致。本研究测量了健康志愿者(HV)和脊髓损伤(SCI)志愿者之间MMG均方根(RMS)和中频(MF)特征的差异。十名HV和三名SCI参与了该研究。FES波形由单相方波组成,脉冲频率为1kHz,有效脉冲周期为100μs,有效爆发周期为3ms,爆发频率为70Hz。对于每个刺激系列,检查了三个分析窗口。RMS和MF变化呈负相关。所得结果可能有助于制定新的肌肉闭环控制策略。