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Conditioning the cortical silent period with paired transcranial magnetic stimulation

机译:配对经颅磁刺激调节皮质沉默期

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Background: A single supra-threshold pulse of transcranial magnetic stimulation (TMS) over human motor cortex elicits multiple descending volleys (I-waves) that generate a motor evoked potential (MEP) followed by a period of electromyographic silence in the tonically contracted target muscle (silent period; SP). A sub-threshold conditioning stimulus (CS) delivered at inter-pulse intervals (IPIs) of 1-5 ms after a supra-threshold test stimulus (TS) conditions I-waves elicited by TS and can increase MEP amplitude (short-interval intracortical facilitation; SICF), however its effect on the SP remains unknown. Objective: We investigated whether it is possible to modulate the SP resulting from a TS by delivering a sub-threshold CS 1-5 ms later. Methods: Paired-pulse TMS was delivered while subjects performed slight contraction of the first dorsal interosseous muscle. SICF and SP duration were measured at each IPI and compared to amplitude-matched MEPs evoked by single-pulse TMS. Results: Paired stimulation at IPI 2-5 ms prolonged the SP by 21 ± 3% (P 0.001) but had no effect on MEP amplitude. At shorter IPIs the CS increased MEP amplitude (by 170 ± 31%), but the SP was not prolonged when compared to an amplitude-matched single-pulse stimulus. Conclusion: The SP can be modified by a CS applied during the early phase of its genesis. We suggest that this is in keeping with an early GABAA contribution to the SP, and it is possible that this new conditioning paradigm may offer another means for probing the excitability of cortical inhibitory networks in human motor cortex.
机译:背景:人类运动皮层上的单次超阈值经颅磁刺激(TMS)会引起多个下降的凌空(I波),从而产生运动诱发电位(MEP),随后在声带收缩的目标肌肉中出现一段肌电图沉默(静音期; SP)。在超阈值测试刺激(TS)之后,以1-5毫秒的脉冲间间隔(IPIs)传递的亚阈值条件刺激(CS)调节由TS引发的I波,并可能增加MEP振幅(短间隔皮质内便利; SICF),但其对SP的影响仍未知。目的:我们研究了是否可以通过在1-5毫秒后传送一个亚阈值CS来调制由TS产生的SP。方法:在受试者对第一背骨间部肌肉进行轻微收缩的同时进行配对脉冲TMS。在每个IPI上测量SICF和SP持续时间,并与单脉冲TMS引起的幅度匹配MEP进行比较。结果:在IPI 2-5 ms配对刺激可使SP延长21±3%(P <0.001),但对MEP振幅无影响。在较短的IPI时,CS增加了MEP振幅(增加了170±31%),但与振幅匹配的单脉冲刺激相比,SP并未延长。结论:SP可以在其起源的早期通过CS进行修饰。我们建议,这与早期GABAA对SP的贡献保持一致,并且这种新的条件范式可能会提供另一种手段来探测人类运动皮层中的皮质抑制网络的兴奋性。

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