Department of Physical Therapy, Niigata University of Health and Welfare, 1398 Shimami-cho, Kita-ku, Niigata-shi, Niigata, 950-3198, Japan.
Institute for Human Movement and Medical Sciences, Niigata University of Health and Welfare, 1398 Shimami-cho, Kita-ku, Niigata-shi, Niigata, 950-3198, Japan.
Sci Rep. 2024 Sep 27;14(1):22394. doi: 10.1038/s41598-024-72875-1.
In transcranial static magnetic field stimulation (tSMS), a strong and small magnet placed over the head can modulate cortical functions below the magnet as well as those in the region remote from the magnet. We studied the neuromodulation induced by tSMS using transcranial magnetic stimulation (TMS) combined with simultaneous electroencephalography (EEG) to clarify the neurophysiological underpinnings of tSMS. tSMS or sham stimulation was applied over the left primary motor cortex (M1) for 20 min in 15 healthy subjects. Single pulse TMS was delivered over the left M1 before and after the intervention, while recording EEG. The amplitude around the P30 of the TMS-evoked potentials (TEPs) in the left primary sensorimotor area (SM1) significantly decreased after the real tSMS, and that around the N60 of the TEPs in the right SM1 significantly increased after the real tSMS. In addition, the alpha power of the TMS-induced oscillatory responses (IORs) in the left and right SM1 significantly decreased after the real tSMS. TMS-EEG is a powerful tool for studying local and global cortical reactivity to external stimuli at high temporal resolution. tSMS altered TEPs and IORs both at the stimulated cortex and at the contralateral cortex. These findings would be related to the neurophysiological mechanisms underlying the neuromodulation induced by tSMS.
在经颅静磁场刺激(tSMS)中,将一个强而小的磁铁放置在头部上方,可以调节磁铁下方以及远离磁铁区域的皮质功能。我们使用经颅磁刺激(TMS)结合同时进行的脑电图(EEG)来研究 tSMS 诱导的神经调节,以阐明 tSMS 的神经生理学基础。在 15 名健康受试者中,将 tSMS 或假刺激应用于左侧初级运动皮层(M1)20 分钟。在干预前后,在左侧 M1 上给予单脉冲 TMS,并记录 EEG。在左侧初级感觉运动区(SM1)中 TMS 诱发的电位(TEPs)的 P30 周围的振幅在真实 tSMS 后显著降低,而在右侧 SM1 中的 TEPs 的 N60 周围的振幅在真实 tSMS 后显著增加。此外,在真实 tSMS 后,左侧和右侧 SM1 中的 TMS 诱导的振荡反应(IOR)的 alpha 功率显著降低。TMS-EEG 是一种强大的工具,可用于以高时间分辨率研究对外界刺激的局部和全局皮质反应。tSMS 改变了刺激皮层和对侧皮层的 TEPs 和 IORs。这些发现与 tSMS 诱导的神经调节的神经生理学机制有关。