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首页> 外文期刊>The Journal of Physiology >Rapid-rate paired associative stimulation of the median nerve and motor cortex can produce long-lasting changes in motor cortical excitability in humans
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Rapid-rate paired associative stimulation of the median nerve and motor cortex can produce long-lasting changes in motor cortical excitability in humans

机译:正中神经和运动皮层的快速配对联合刺激可以在人类的运动皮层兴奋性中产生持久的变化

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Repetitive transcranial magnetic stimulation (rTMS) or repetitive electrical peripheral nerve stimulation (rENS) can induce changes in the excitability of the human motor cortex (Ml) that is often short-lasting and variable, and occurs only after prolonged periods of stimulation. In 10 healthy volunteers, we used a newrepetitive paired associative stimulation (rPAS) protocol to facilitate and prolong the effects of rENS and rTMS on cortical excitability. Sub-motor threshold 5 Hz rENS of the right median nerve was synchronized with submotor threshold 5 Hz rTMS of the left Ml at a constant interval for 2 min. The interstimulus interval (ISI) between the peripheral stimulus and the transcranial stimulation was set at 10 ms (5 Hz rPAS_(10ms)) or 25 ms (5 Hz rPAS_(25ms)). TMS was given over the hot spot of the right abductor pollicis brevis (APB) muscle. Before and after rPAS, we measured the amplitude of the unconditioned motor evoked potential (MEP), intracortical inhibition (ICI) and facilitation (ICF), short- and long-latency afferent inhibition (SAI and LAI) in the conditioned Ml. The 5 Hz rPAS_(25ms) protocol but not the 5 Hz rPAS10_(ms) protocol caused a somatotopically specific increase in mean MEP amplitudes in the relaxed APB muscle. The 5 Hz rPAS_(25ms) protocol also led to a loss of SAI, but there was no correlation between individual changes in SAI and coiticospinal excitability. These after-effects were still present 6 h after 5 Hz rPAS_(25ms). There was no consistent effect on ICI, ICF and LAI. The 5 Hz rENS and 5 Hz rTMS protocols failed to induce any change in corticospinal excitability when given alone. These findings show that 2 min of 5 Hz rPAS_(25ms) produce a long-lasting and somatotopically specific increase in corticospinal excitability, presumably by sensorimotor disinhibition.
机译:反复经颅磁刺激(rTMS)或反复电周围神经刺激(rENS)可以诱发人类运动皮层(M1)的兴奋性变化,这种变化通常是持续的且可变的,并且仅在长时间的刺激后才会发生。在10名健康志愿者中,我们使用了新的重复配对联想刺激(rPAS)方案来促进和延长rENS和rTMS对皮层兴奋性的影响。右中神经的亚运动阈值5 Hz rENS与左M1的亚运动阈值5 Hz rTMS以恒定间隔同步2分钟。周围刺激与经颅刺激之间的刺激间隔(ISI)设置为10 ms(5 Hz rPAS_(10ms))或25 ms(5 Hz rPAS_(25ms))。在右外展短脊肌(APB)肌肉的热点上进行TMS。在rPAS之前和之后,我们测量了条件性M1中未调节的运动诱发电位(MEP),皮质内抑制(ICI)和促进(ICF),短时和长时延传入抑制(SAI和LAI)的幅度。 5 Hz rPAS_(25ms)协议而不是5 Hz rPAS10_(ms)协议导致松弛的APB肌肉的平均MEP振幅出现体位特异性增加。 5 Hz rPAS_(25ms)协议也导致SAI的丧失,但SAI的个体变化与Coiticospinal兴奋性之间没有相关性。在5 Hz rPAS_(25毫秒)后6小时,这些后效应仍然存在。对ICI,ICF和LAI没有一致的影响。当单独使用时,5 Hz rENS和5 Hz rTMS方案不能引起皮质脊髓兴奋性的任何变化。这些发现表明,2分钟的5 Hz rPAS_(25ms)可能会导致皮层脊髓兴奋性的持久性和体位特异性增加,这大概是由于感觉运动抑制。

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