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Suppression of EMG activity by subthreshold paired-pulse transcranial magnetic stimulation to the leg motor cortex

机译:阈下成对脉冲经颅磁刺激腿运动皮层抑制肌电活动

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摘要

Cortical activity driving a voluntary muscle contraction is inhibited by very low-intensity transcranial magnetic stimulation (TMS) and is reflected in the suppression of the average rectified EMG. This approach offers a method to test the contribution of cortical neurons actively involved in a motor task, but requires a large number of stimuli (~100) to suitably depress the average EMG. Here, we investigated whether two pulses of subthreshold TMS at interstimulus intervals (ISIs) ranging between 1 and 12 ms could enhance the amount of EMG suppression in the tibialis anterior muscle compared to a single pulse. Pairs of subthreshold TMS at an ISI of 7 ms produced the maximum EMG suppression that was 42% more than the inhibition elicited using a single pulse. In addition, the signal-to-noise ratio of the TMS-induced suppression was further increased by a second pulse, delivered 7 ms later. The reduction in the EMG at the 7 ms paired-pulse interval occurred without any short-latency excitation suggesting that the two stimuli increased the activation of cortical inhibitory neurons. Subthreshold paired-pulse TMS at ISIs of 1–3 ms was prone to EMG excitation in the period that immediately preceded the inhibition and is consistent with the recruitment of short-interval intracortical facilitation (SICF). We propose that pairs of subthreshold TMS outside the range of SICF with an inter-pulse interval of 7 ms is optimal to inhibit ongoing cortical activity during human motor movement.
机译:低强度的经颅磁刺激(TMS)抑制了驱动肌肉自动收缩的皮质活动,并反映在对平均整流EMG的抑制中。这种方法提供了一种方法来测试主动参与运动任务的皮层神经元的贡献,但需要大量刺激(〜100个)来适当地降低平均EMG。在这里,我们调查了两个脉冲间阈值间隔(ISIs)介于1到12 ms之间的亚阈值TMS脉冲是否比单个脉冲能增强胫前肌的EMG抑制量。在7 ms的ISI下,成对的亚阈值TMS产生的最大EMG抑制比单脉冲引起的抑制高42%。此外,TMS诱导的抑制的信噪比通过第二个脉冲进一步提高,该脉冲在7毫秒后发送。在7 ms的配对脉冲间隔内,EMG的降低没有任何短时延的激发,表明这两个刺激增加了皮层抑制性神经元的激活。在抑制之前的ISI内,亚阈值成对脉冲TMS在1-3 ms时容易发生EMG兴奋,并且与短间隔皮质内促进(SICF)的募集相符。我们提出,在SICF范围外以7 ms的脉冲间间隔对的亚阈值下TMS是最佳的,以抑制人类运动过程中正在进行的皮质活动。

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