经脊髓刺激前辅助步训练重组神经元兴奋性和抑制网络的功能在脊髓损伤:一个随机对照试验。

Abdullah M Sayed Ahmad, Morad Zaaya, Noam Y Harel, Maria Knikou
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引用次数: 0

摘要

导读:在这个随机的随机对照临床试验中,我们描述了在运动训练之前进行经脊髓刺激时,人类脊髓损伤(SCI)脊髓神经元和神经网络的兴奋性。方法:14名慢性脊髓损伤患者在站立状态下平均接受40次30 Hz经脊髓刺激,每次30分钟(活动:n= 4;假手术:n= 5)或仰卧(活动:n= 5),然后进行30分钟的机器人辅助步骤训练。在训练结束前和训练结束后1-2天,我们评估了比目鱼h反射同突触抑制和比目鱼h反射募集曲线,以及对抗性腓总神经条件刺激后的互反和突触前抑制量。结果:运动训练前经脊髓刺激增加了活动站立组和活动仰卧组的同突触抑制量,而对Ia传入终端的突触前抑制在所有研究组中均有所增加。假站立组和活动仰卧组的Ia互抑性增强,各组Ia肌群传入神经兴奋性阈值均降低。结论:本研究表明,运动训练前经脊髓刺激可部分恢复慢性脊髓损伤的自然脊髓抑制,并产生神经网络重组。无创经脊髓刺激可以增加运动训练的益处,使脊髓神经网络在慢性脊髓损伤中处于更功能的状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transspinal stimulation preceding assisted step training reorganizes neuronal excitability and function of inhibitory networks in spinal cord injury: A randomized controlled trial.

Introduction: In this pilot randomized sham-controlled clinical trial, we characterized the spinal neuronal and network excitability in human spinal cord injury (SCI) when transspinal stimulation preceded locomotor training within the same session.

Methods: Fourteen participants with chronic SCI received an average of 40 sessions with 30 Hz transspinal stimulation delivered for 30 minutes during standing (active: n= 4; sham: n= 5) or supine (active: n= 5) followed by 30-minutes of robotic assisted step training. Before and 1-2 days after completion of all training sessions, we assessed the soleus H-reflex homosynaptic depression and soleus H-reflex recruitment curve, and the amount of reciprocal and presynaptic inhibition following conditioning stimulation of the antagonistic common peroneal nerve.

Results: Transspinal stimulation administered before locomotor training increased the amount of homosynaptic depression in the active-standing and active-supine groups, while presynaptic inhibition exerted on Ia afferent terminals increased in all study groups. Reciprocal Ia inhibition improved in the sham-standing and active-supine groups while in all groups the excitability threshold of muscle group Ia afferents was decreased in all groups.

Conclusion: This study demonstrated that transspinal stimulation preceding locomotor training partially restores natural spinal inhibition and produces network reorganization in chronic SCI. Noninvasive transspinal stimulation can increase the benefits of locomotor training, bringing spinal neuronal networks to a more functional state in chronic SCI.

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