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人类初级运动皮层的短期和长期可塑性相互作用。

Short-term and long-term plasticity interaction in human primary motor cortex.

机构信息

Neuromed Institute, Sapienza University of Rome, Viale dell'Università, 30 00185 Rome, Italy.

出版信息

Eur J Neurosci. 2011 May;33(10):1908-15. doi: 10.1111/j.1460-9568.2011.07674.x. Epub 2011 Apr 14.

Abstract

Repetitive transcranial magnetic stimulation (rTMS) over primary motor cortex (M1) elicits changes in motor evoked potential (MEP) size thought to reflect short- and long-term forms of synaptic plasticity, resembling short-term potentiation (STP) and long-term potentiation/depression (LTP/LTD) observed in animal experiments. We designed this study in healthy humans to investigate whether STP as elicited by 5-Hz rTMS interferes with LTP/LTD-like plasticity induced by intermittent and continuous theta-burst stimulation (iTBS and cTBS). The effects induced by 5-Hz rTMS and iTBS/cTBS were indexed as changes in MEP size. We separately evaluated changes induced by 5-Hz rTMS, iTBS and cTBS applied alone and those induced by iTBS and cTBS delivered after priming 5-Hz rTMS. Interactions between 5-Hz rTMS and iTBS/cTBS were investigated under several experimental conditions by delivering 5-Hz rTMS at suprathreshold and subthreshold intensity, allowing 1 and 5 min intervals to elapse between 5-Hz rTMS and TBS, and delivering one and ten 5-Hz rTMS trains. We also investigated whether 5-Hz rTMS induces changes in intracortical excitability tested with paired-pulse transcranial magnetic stimulation. When given alone, 5-Hz rTMS induced short-lasting and iTBS/cTBS induced long-lasting changes in MEP amplitudes. When M1 was primed with 10 suprathreshold 5-Hz rTMS trains at 1 min before iTBS or cTBS, the iTBS/cTBS-induced after-effects disappeared. The 5-Hz rTMS left intracortical excitability unchanged. We suggest that STP elicited by suprathreshold 5-Hz rTMS abolishes iTBS/cTBS-induced LTP/LTD-like plasticity through non-homeostatic metaplasticity mechanisms. Our study provides new information on interactions between short-term and long-term rTMS-induced plasticity in human M1.

摘要

经颅重复磁刺激(rTMS)作用于初级运动皮层(M1)可引起运动诱发电位(MEP)幅度的变化,这些变化被认为反映了短期和长期形式的突触可塑性,类似于动物实验中观察到的短期增强(STP)和长期增强/抑制(LTP/LTD)。我们在健康人中设计了这项研究,以探讨 5-Hz rTMS 诱发的 STP 是否会干扰间歇性和连续性 theta 爆发刺激(iTBS 和 cTBS)诱导的类似 LTP/LTD 的可塑性。通过 MEP 幅度的变化来标记 5-Hz rTMS 和 iTBS/cTBS 诱导的效果。我们分别评估了单独应用 5-Hz rTMS、iTBS 和 cTBS 以及在 5-Hz rTMS 激发后应用 iTBS 和 cTBS 所引起的变化。通过在阈上和阈下强度下施加 5-Hz rTMS、在 5-Hz rTMS 和 TBS 之间留出 1 分钟和 5 分钟的间隔、施加一个和十个 5-Hz rTMS 训练,在几种实验条件下研究了 5-Hz rTMS 和 iTBS/cTBS 之间的相互作用。我们还研究了 5-Hz rTMS 是否会引起经颅磁刺激配对脉冲测试的皮质内兴奋性的变化。当单独给予时,5-Hz rTMS 引起短暂的变化,而 iTBS/cTBS 引起持久的 MEP 幅度变化。当在 iTBS 或 cTBS 前 1 分钟用 10 个阈上的 5-Hz rTMS 训练刺激 M1 进行预处理时,iTBS/cTBS 引起的后效消失。5-Hz rTMS 对皮质内兴奋性没有影响。我们认为,阈上 5-Hz rTMS 诱发的 STP 通过非平衡的代谢性可塑性机制消除了 iTBS/cTBS 诱导的类似 LTP/LTD 的可塑性。我们的研究提供了关于人类 M1 中短期和长期 rTMS 诱导的可塑性之间相互作用的新信息。

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