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Theta Burst Stimulation of the Cerebellum Modifies the TMS-Evoked N100 Potential a Marker of GABA Inhibition

机译:小脑的θ爆裂刺激改变了TMS诱发的N100电位这是GABA抑制的标志

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Theta burst stimulation (TBS) of the cerebellum, a potential therapy for neurological disease, can modulate corticospinal excitability via the dentato-thalamo-cortical pathway, but it is uncertain whether its effects are mediated via inhibitory or facilitatory networks. The aim of this study was to investigate the effects of 30Hz cerebellar TBS on the N100 waveform of the TMS-evoked potential (TEP), a marker of intracortical GABAB-mediated inhibition. 16 healthy participants (aged 18–30 years; 13 right handed and 3 left handed) received 30Hz intermittent TBS (iTBS), continuous TBS (cTBS) or sham stimulation over the right cerebellum, in three separate sessions. The first 8 participants received TBS at a stimulus intensity of 80% of active motor threshold (AMT), while the remainder received 90% of AMT. Motor evoked potentials (MEP) and TEP were recorded before and after each treatment, by stimulating the first dorsal interosseus area of the left motor cortex. Analysis of the 13 right handed participants showed that iTBS at 90% of AMT increased the N100 amplitude compared to sham and cTBS, without significantly altering MEP amplitude. cTBS at 80% of active motor threshold decreased the N100 amplitude and cTBS overall reduced resting MEP amplitude. The study demonstrates effects of 30Hz cerebellar TBS on inhibitory cortical networks that may be useful for treatment of neurological conditions associated with dysfunctional intracortical inhibition.
机译:小脑的Theta爆发刺激(TBS)是一种神经疾病的潜在疗法,可通过齿下-丘脑-皮质途径调节皮质脊髓兴奋性,但尚不确定其作用是通过抑制性网络还是促进性网络来介导。本研究的目的是研究30Hz小脑TBS对TMS诱发电位(TEP)的N100波形的影响,TMP诱发电位是皮质内GABA B介导的抑制作用的标志。 16位健康参与者(年龄18-30岁;右手13位,左手3位)在三个独立的阶段中接受了30Hz间歇性TBS(iTBS),连续TBS(cTBS)或假性刺激。前8名参与者以80%的主动运动阈值(AMT)刺激强度接受TBS,其余参与者则接受90%的AMT刺激。通过刺激左运动皮层的第一背骨间骨区域,在每次治疗之前和之后记录运动诱发电位(MEP)和TEP。对13位右撇子参与者的分析显示,与假手术和cTBS相比,iMT处于AMT的90%时可增加N100振幅,而不会显着改变MEP振幅。在活动电机阈值的80%时,cTBS降低了N100幅度,而cTBS总体上降低了静息MEP幅度。这项研究证明了30Hz小脑TBS对抑制性皮质网络的影响,该网络可用于治疗与功能失常的皮质内抑制有关的神经系统疾病。

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