首页> 美国卫生研究院文献>Frontiers in Neuroscience >Priming With Intermittent Theta Burst Transcranial Magnetic Stimulation Promotes Spinal Plasticity Induced by Peripheral Patterned Electrical Stimulation
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Priming With Intermittent Theta Burst Transcranial Magnetic Stimulation Promotes Spinal Plasticity Induced by Peripheral Patterned Electrical Stimulation

机译:间歇性Theta爆破经颅磁刺激引发可促进周围模式电刺激诱导的脊髓可塑性。

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摘要

This study explored the effect of corticospinal activity on spinal plasticity by examining the interactions between intermittent theta burst transcranial magnetic stimulation (iTBS) of the motor cortex and peripheral patterned electrical stimulation (PES) of the common peroneal nerve (CPN). Healthy volunteers (n = 10) received iTBS to the tibialis anterior (TA) muscle zone of the motor cortex and PES of the CPN in three separate sessions: (1) iTBS-before-PES, (2) iTBS-after-PES, and (3) sham iTBS-before-PES. The PES protocol used 10 100-Hz pulses every 2 s for 20 min. Reciprocal inhibition (RI) from the TA to soleus muscle and motor cortical excitability of the TA and soleus muscles were assessed at baseline, before PES, and 0, 15, 30, and 45 min after PES. When compared to the other protocols, iTBS-before-PES significantly increased changes in disynaptic RI for 15 min and altered long-loop presynaptic inhibition immediately after PES. Moreover, the iTBS-induced cortical excitability changes in the TA before PES were correlated with the enhancement of disynaptic RI immediately after PES. These results demonstrate that spinal plasticity can be modified by altering cortical excitability. This study provides insight into the interactions between modulation of corticospinal excitability and spinal RI, which may help in developing new rehabilitation strategies.
机译:这项研究通过检查运动皮层的间歇性θ爆破经颅磁刺激(iTBS)与腓总神经(CPN)的外周模式电刺激(PES)之间的相互作用,探讨了皮质脊髓活动对脊柱可塑性的影响。健康志愿者(n = 10)在三个不同的阶段分别接受了iTBS到运动皮层的胫前肌(TA)和CPN的PES:(1)iTBS-PES之前,(2)iTBS-PES之后, (3)假装iTBS-before-PES。 PES协议每2秒钟使用10个100 Hz脉冲,持续20分钟。在基线时,PES之前以及PES后0、15、30和45分钟,评估从TA到比目鱼肌的相互抑制(RI),以及TA和比目鱼肌的运动皮层兴奋性。与其他协议相比,PES之前的iTBS-PES显着增加了突触RI的变化15分钟,并在PES之后立即改变了长环突触前抑制。此外,iTBS诱导的PES之前TA中的皮质兴奋性变化与PES之后立即解除突触RI的增强有关。这些结果表明,通过改变皮层兴奋性可以改变脊柱的可塑性。这项研究提供了对皮质脊髓兴奋性调节和脊柱RI之间相互作用的见解,这可能有助于制定新的康复策略。

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