首页> 外文会议>2014 IEEE 19th International Functional Electrical Stimulation Society Annual Conference >A pilot study of the stability of the ankle joint moment and M-wave evoked by intermittent stimulation
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A pilot study of the stability of the ankle joint moment and M-wave evoked by intermittent stimulation

机译:间歇性刺激诱发踝关节力矩和M波稳定性的初步研究

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摘要

We examined the stability of the ankle joint moment (AM) and M-wave amplitude evoked by electrical stimulation of the gastrocnemius and soleus muscle. The use of functional electrical stimulation (FES) is associated with some problems, including the fact that the muscle activity evoked by electrical stimulation decreases with muscle fatigue. Also, when electrical stimulation is delivered via surface electrodes, the stimulation reaching the muscle can vary according to the impedance between the electrode and the skin. In this paper, we performed experiments to (1) examine the relation between AM and stimulation intensity and between M-wave amplitude and stimulation intensity; (2) determine the change in this relation over a long duration; and (3) identify a strategy to allow the muscle to recover from fatigue. In the first experiment, M-wave amplitude and AM changed similarly with respect to the stimulation voltage. In the second experiment, the pattern of the M-wave and AM both showed downward. The pattern, however, was not similar at the soleus. In the third experiment, M-wave and AM remained almost constant compared with fatigued response in the second experiment. We showed that it is possible to generate a stable AM using electrical stimulation of the muscle. To ensure the stability of AM, it is necessary to consider the characteristics of the muscle (e.g., the proportion of fast and slow twitch fibers), the stimulation area, and the state of the muscles (e.g., fatigue).
机译:我们检查了腓肠肌和比目鱼肌电刺激引起的踝关节力矩(AM)和M波振幅的稳定性。功能性电刺激(FES)的使用会带来一些问题,包括以下事实:电刺激引起的肌肉活动会随着肌肉疲劳而降低。同样,当通过表面电极传递电刺激时,到达肌肉的刺激会根据电极和皮肤之间的阻抗而变化。在本文中,我们进行了以下实验:(1)检查AM与刺激强度之间以及M波振幅与刺激强度之间的关系; (2)长期确定这种关系的变化; (3)确定使肌肉从疲劳中恢复的策略。在第一个实验中,M波振幅和AM相对于刺激电压的变化类似。在第二个实验中,M波和AM的模式均显示为向下。然而,这种模式在比目鱼市场上并不相似。在第三个实验中,与第二个实验中的疲劳响应相比,M波和AM几乎保持不变。我们表明,利用肌肉的电刺激可以产生稳定的AM。为了确保AM的稳定性,有必要考虑肌肉的特性(例如快和慢的抽搐纤维的比例),刺激区域和肌肉的状态(例如疲劳)。

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