Miyaguchi Shota, Otsuru Naofumi, Kojima Sho, Yokota Hirotake, Saito Kei, Inukai Yasuto, Onishi Hideaki
Institute for Human Movement and Medical Sciences, Niigata University of Health and Welfare, Japan.
Institute for Human Movement and Medical Sciences, Niigata University of Health and Welfare, Japan.
Neurosci Lett. 2019 Feb 16;694:64-68. doi: 10.1016/j.neulet.2018.11.015. Epub 2018 Nov 13.
Transcranial alternating current stimulation (tACS) modulates neural connectivity in the cortical area under the electrodes. Although gamma tACS over the M1 and the cerebellar hemisphere has been shown to improve motor performance, the details of this effect remain unclear. This study aimed to clarify whether the effect of gamma tACS over the M1 and the cerebellar hemisphere is a phase-specific. We applied tACS at 70 Hz over the left M1 and the right cerebellar hemisphere to 20 healthy adults while they performed a visuomotor control task using their right index finger for 30 s. Three stimulation conditions were applied: (1) pseudo-stimulation (sham condition), (2) 180° phase difference in the two cortical target areas (anti-phase condition) and (3) 0° phase difference (in-phase condition). The anti-phase condition decreased task error compared to the sham condition (P = 0.021), but did not differ from the in-phase condition. Our study demonstrated that the effect of gamma tACS over the M1 and the cerebellar hemisphere has phase specificity. This result suggests that intercortical functional synchronization is involved in the improvement of motor performance during gamma tACS over the M1 and the cerebellar hemisphere.
经颅交流电刺激(tACS)可调节电极下方皮质区域的神经连接。尽管已证明在M1和小脑半球进行γ-tACS可改善运动表现,但其具体作用细节仍不清楚。本研究旨在阐明在M1和小脑半球进行γ-tACS的效果是否具有相位特异性。我们对20名健康成年人的左侧M1和右侧小脑半球施加70Hz的tACS,同时他们用右手食指执行视觉运动控制任务30秒。应用了三种刺激条件:(1)伪刺激(假刺激条件),(2)两个皮质目标区域的相位差为180°(反相条件)和(3)相位差为0°(同相条件)。与假刺激条件相比,反相条件下的任务误差降低(P = 0.021),但与同相条件无差异。我们的研究表明,在M1和小脑半球进行γ-tACS的效果具有相位特异性。这一结果表明,皮质间功能同步参与了在M1和小脑半球进行γ-tACS期间运动表现的改善。