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首页> 外文期刊>Brain stimulation >Close to threshold transcranial electrical stimulation preferentially activates inhibitory networks before switching to excitation with higher intensities
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Close to threshold transcranial electrical stimulation preferentially activates inhibitory networks before switching to excitation with higher intensities

机译:接近阈值经颅电刺激优先激活抑制网络,然后以更高的强度切换到激发

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Background: Recently we have shown that transcranial random noise (tRNS) and 140 Hz transcranial alternating current stimulations (tACS), applied over the primary motor cortex (M1) and using 10 min stimulation duration and 1 mA intensity, significantly increases cortical excitability as measured by motor evoked potentials at rest before and after stimulation. Objective/hypothesis: Here, by decreasing the stimulation intensity in 0.2 mA steps from 1.0 mA, we investigate to what extent intensity depends on the induced after-effects. Methods: All twenty-five subjects participated in two different experimental sessions each. They received tACS using 140 Hz frequency and full spectrum tRNS at five different intensities on separate days. Sham stimulation was used as a control. Results: Instead of receiving a simple threshold, unexpectedly, in these two independent data sets at threshold intensities of 0.4 mA we found a switch of the already known excitation achieved with an intensity of 1 mA to inhibition. The intermediate intensity ranges of 0.6 and 0.8 mA had no effect at all. Interestingly, the inhibition produced by 140 Hz tACS was stronger than that induced by tRNS. Conclusions: In summary, we have shown here the possibility of selectively controlling the enhancement or reduction of M1 excitability by applying different intensities of high frequency transcranial electrical stimulation.
机译:背景:最近我们已经表明,在初级电机皮层(M1)上施加的经颅随机噪声(TRNS)和140Hz经颅交流刺激(TAC),使用10分钟刺激持续时间和1 mA强度,显着提高了测量的皮质兴奋性通过刺激前后休息的电机诱发电位。目标/假设:这里,通过从1.0 mA减少0.2 mA步的刺激强度,我们研究了强度取决于诱导的后果的程度。方法:所有二十五名受试者每次参加两次不同的实验宿舍。它们在单独的日子上使用140 Hz频率和全谱TRNS在五个不同的强度下接收到TAC。假刺激用作对照。结果:在这两个独立的数据集中而不是接收简单的阈值,而是在阈值强度为0.4 mA的阈值,我们发现已经已知的已知激励的开关,其强度为1 mA抑制。中间强度范围为0.6和0.8 mA根本没有影响。有趣的是,140Hz TAC产生的抑制比TRNS诱导的抑制力强。结论:总之,我们已经示出了通过应用高频经颅电刺激的不同强度选择性地控制增强或降低M1兴奋的可能性。

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