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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >REPETITION SUPPRESSION IN TRANSCRANIAL MAGNETIC STIMULATION-INDUCED MOTOR-EVOKED POTENTIALS IS MODULATED BY CORTICAL INHIBITION
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REPETITION SUPPRESSION IN TRANSCRANIAL MAGNETIC STIMULATION-INDUCED MOTOR-EVOKED POTENTIALS IS MODULATED BY CORTICAL INHIBITION

机译:跨壁磁刺激诱导的电机诱发电位中的重复抑制通过皮层抑制来调节

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摘要

Transcranial magnetic stimulation (TMS) can be applied to modulate cortical phenomena. The modulation effect is dependent on the applied stimulation frequency. Repetition suppression (RS) has been demonstrated in the motor system using TMS with short suprathreshold 1-Hz stimulation trains repeated at long inter-train intervals. RS has been reported to occur in the resting motor-evoked potentials (MEPs) with respect to the first pulse in a train of stimuli. Although this RS in the motor system has been described in previous studies, the neuronal origin of the phenomenon is still poorly understood. The present study evaluated RS in three TMS-induced motor responses; resting and active MEPs as well as corticospinal silent periods (SPs) in order to clarify the mechanism behind TMSinduced RS. We studied 10 healthy right-handed subjects using trains of four stimuli with stimulation intensities of 120% of the resting motor threshold (rMT) and 120% of the silent period threshold for an SP duration of 30 ms (SPT30). Inter-trial interval was 20 s, with a 1-s interstimulus interval within the trains. We confirmed that RS appears in resting MEPs (p < 0.001), whereas active MEPs did not exhibit RS (p > 0.792). SPs, on the contrary, lengthened (p < 0.001) indicating modulation of cortical inhibition. The effects of the two stimulation intensities exhibited a similar trend; however, the SPT30 evoked a more profound inhibitory effect compared to that achieved by rMT. Moreover, the resting MEP amplitudes and SP durations correlated (rho <= -0.674, p < 0.001) and the pre-TMS EMG level did not differ between stimuli in resting MEPs (F = 0.0, p >= 0.999). These results imply that the attenuation of response size seen in resting MEPs might originate from increasing activity of inhibitory GABAergic interneurons which relay the characteristics of SPs. (C) 2015 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:经颅磁刺激(TMS)可用于调节皮层现象。调制效果取决于所施加的刺激频率。在使用TMS的电机系统中已经证实了重复抑制(RS),其中短阈上1 Hz刺激序列以较长的序列间间隔重复进行。据报道,相对于一系列刺激中的第一个脉冲,RS发生在静止的电机诱发电位(MEP)中。尽管在先前的研究中已经描述了运动系统中的这种RS,但是对这种现象的神经元起源仍知之甚少。本研究评估了三项TMS诱发的运动反应中的RS。静息和活动的MEP以及皮质脊髓静默期(SP),以阐明TMS诱发RS的机制。我们研究了10名健康的右撇子受试者,使用了四个刺激训练,刺激强度分别为静息运动阈值(rMT)的120%和静默期阈值的120%,SP持续时间为30 ms(SPT30)。试验间隔时间为20 s,火车内的刺激间隔为1 s。我们确认,RS出现在静止的MEP中(p <0.001),而活跃的MEP则没有RS(p> 0.792)。相反,SP延长(p <0.001),表明调节了皮质抑制。两种刺激强度的影响表现出相似的趋势。然而,与rMT相比,SPT30引起了更深刻的抑制作用。此外,静息MEP振幅和SP持续时间相关(rho <= -0.674,p <0.001),且静息MEP中刺激之间的TMS肌电图前水平无差异(F = 0.0,p> = 0.999)。这些结果暗示在静息MEP中看到的反应大小的衰减可能源于抑制性GABA能中间神经元的活性增加,所述中间神经元传递了SP的特征。 (C)2015年IBRO。由Elsevier Ltd.出版。保留所有权利。

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