首页> 外文会议>Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Modulation of Ankle EMG in Spinally Contused Rats Through Application of Neuromuscular Electrical Stimulation Timed to Robotic Treadmill Training
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Modulation of Ankle EMG in Spinally Contused Rats Through Application of Neuromuscular Electrical Stimulation Timed to Robotic Treadmill Training

机译:通过应用神经肌肉电刺激定时对机械手跑步机训练来调制脊髓缺失大鼠的血栓血液

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While neuromuscular electrical stimulation (NMES) has enabled patients of neuromotor dysfunction to effectively regain some functions, analysis of neuromuscular changes underlying these functional improvements is lacking. We have developed an NMES system for a rodent model of SCI with the long term goal of creating a therapy which restores control over stepping back to the spinal circuitry. NMES was applied to the tibialis anterior (TA) and timed to the afferent feedback generated during robotic treadmill training (RTT). The effect of NMES+RTT on modifications in EMG was compared with that of RTT alone. A longitudinal study with a crossover design was conducted in which group 1 (n=7) received 2 weeks of RTT only followed by 2 weeks of NMES+RTT; group 2 (n=7) received 2 weeks of NMES+RTT followed by RTT only. On average, both types of training helped to modulate TA EMG activity over a gait cycle, resulting in EMG profiles across steps with peaks occurring just before or at the beginning of the swing phase, when ankle flexion is most needed. However, NMES+RTT resulted in concentration of EMG activation during the initial swing phase more than RTT only. In conjunction with these improvements in EMG activation presented here, a more complete analyses comparing changes after NMES+RTT vs. RTT is expected to further support the notion that NMES timed appropriately to hindlimb stepping could help to reinforce the motor learning that is induced by afferent activity generated by treadmill training.
机译:虽然神经肌肉电刺激(NMES)使神经大通功能障碍的患者能够有效地重新获得一些功能,但缺乏这些功能改进的神经肌肉变化的分析。我们开发了一种用于SCI啮齿动物模型的NMES系统,具有创建治疗的长期目标,该疗法将恢复对脊柱电路的控制恢复。 NMES被应用于Tibialis前(TA)并定时到机器人跑步机训练(RTT)中产生的传入反馈。 NMES + RTT对EMG的修饰的影响与单独的RTT相比。进行纵向研究,其中进行了交叉设计,其中第1族(N = 7)在rTT 2周的情况下仅接受2周的NMES + RTT;第2组(n = 7)收到2周的NMES + RTT,然后仅为RTT。平均而言,两种类型的培训有助于在步态周期上调制TA EMG活动,从而在最需要脚踝屈曲之前或在摆动阶段之前或在摆动阶段之前发生的峰值发生的EMG轮廓。然而,NMES + RTT仅导致初始摆动阶段的EMG激活浓度超过RTT。结合这些改进在此提出的EMG激活中,预计将进一步支持NMES + RTT与RTT的变化的更完整的分析,以进一步支持纽姆斯适当地定时到后肢步进的观念可以帮助加强由传入引起的电机学习跑步机训练产生的活动。

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