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Effects of antiepileptic drugs on cortical excitability in humans: A TMS‐EMG and TMS‐EEG study

机译:抗癫痫药对人类皮质兴奋性的影响:TMS-EMG和TMS-EEG研究

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摘要

Brain responses to transcranial magnetic stimulation (TMS) recorded by electroencephalography (EEG) are emergent noninvasive markers of neuronal excitability and effective connectivity in humans. However, the underlying physiology of these TMS‐evoked EEG potentials (TEPs) is still heavily underexplored, impeding a broad application of TEPs to study pathology in neuropsychiatric disorders. Here we tested the effects of a single oral dose of three antiepileptic drugs with specific modes of action (carbamazepine, a voltage‐gated sodium channel (VGSC) blocker; brivaracetam, a ligand to the presynaptic vesicle protein VSA2; tiagabine, a gamma‐aminobutyric acid (GABA) reuptake inhibitor) on TEP amplitudes in 15 healthy adults in a double‐blinded randomized placebo‐controlled crossover design. We found that carbamazepine decreased the P25 and P180 TEP components, and brivaracetam the N100 amplitude in the nonstimulated hemisphere, while tiagabine had no effect. Findings corroborate the view that the P25 represents axonal excitability of the corticospinal system, the N100 in the nonstimulated hemisphere propagated activity suppressed by inhibition of presynaptic neurotransmitter release, and the P180 late activity particularly sensitive to VGSC blockade. Pharmaco‐physiological characterization of TEPs will facilitate utilization of TMS‐EEG in neuropsychiatric disorders with altered excitability and/or network connectivity.
机译:脑对脑电图(EEG)记录的经颅磁刺激(TMS)的反应是人类神经元兴奋性和有效连接性的新兴非侵入性标记。然而,这些TMS诱发的EEG电位(TEP)的潜在生理学仍未得到充分开发,这阻碍了TEP在神经精神疾病中研究病理学的广泛应用。在这里,我们测试了三种具有特定作用方式(卡马西平,电压门控钠通道(VGSC)阻滞剂;溴瓦西坦,突触前囊泡蛋白VSA2的配体;氨甲西汀,γ-氨基丁酸)的单次口服剂量对三种抗癫痫药的影响双盲随机安慰剂对照交叉设计对15位健康成年人的TEP振幅进行酸(GABA再摄取抑制剂)研究。我们发现,卡马西平降低了P25和P180 TEP成分,而非那西坦在未刺激的半球中降低了N100的幅度,而替加滨则没有影响。研究结果证实了以下观点:P25代表皮质脊髓系统的轴突兴奋性,非刺激性半球中的N100通过抑制突触前神经递质的释放而抑制了其活动,而P180的后期活性对VGSC阻断特别敏感。 TEP的药理生理学特征将促进TMS-EEG在神经精神疾病中的兴奋性和/或网络连接性改变。

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