Wang Yao, Hou Peiyun, Li Wenjing, Zhang Mingxing, Zheng Hongliang, Chen Xiaogang
School of Life Sciences, Tiangong University, Tianjin, China.
School of Precision Instruments and Optoelectronics Engineering, Tianjin University, Tianjin, China.
Front Hum Neurosci. 2022 Aug 17;16:934382. doi: 10.3389/fnhum.2022.934382. eCollection 2022.
Transcranial alternating current stimulation (tACS) applies a sinusoidal oscillating current to modulate intrinsic oscillatory activity. Relevant studies of tACS have indicated that tACS can increase spontaneous brain activity in the occipital area. However, few studies have compared the effects of tACS with different current intensities on spontaneous brain activity in the occipital region. In this study, 10-Hz tACS was delivered to the occipital region at different current intensities (i.e., 1 and 2 mA). We investigated the effect of the tACS on both eyes-open and eyes-closed resting-state electroencephalography (EEG). A total of 20 subjects and fifteen subjects were recruited to participate in the 1-mA tACS experiment and the 2-mA tACS experiment, respectively. Ten subjects participated in both experiments. The experimental results demonstrated that both 1-mA tACS and 2-mA tACS could increase occipital resting-state EEG activities. For the eyes-open condition, alpha activity elicited by 2-mA tACS increased significantly greater than that elicited by 1-mA tACS, while 1-mA tACS could produce greater alpha activity compared to 2 mA for the eyes-closed condition. These results suggested that the optimal current intensity might be different for the eyes-open and eyes-closed resting-state conditions, laying a foundation for the subsequent study of occipital tACS on task-state EEG activities.
经颅交流电刺激(tACS)通过施加正弦振荡电流来调节内在振荡活动。tACS的相关研究表明,tACS可以增加枕叶区域的自发脑活动。然而,很少有研究比较不同电流强度的tACS对枕叶区域自发脑活动的影响。在本研究中,以不同电流强度(即1和2毫安)将10赫兹的tACS施加到枕叶区域。我们研究了tACS对睁眼和闭眼静息态脑电图(EEG)的影响。分别招募了20名受试者和15名受试者参与1毫安tACS实验和2毫安tACS实验。10名受试者参与了两个实验。实验结果表明,1毫安tACS和2毫安tACS均可增加枕叶静息态EEG活动。对于睁眼状态,2毫安tACS诱发的α活动比1毫安tACS诱发的α活动显著增加更多,而对于闭眼状态,1毫安tACS比2毫安能产生更大的α活动。这些结果表明,睁眼和闭眼静息态条件下的最佳电流强度可能不同,为后续研究枕叶tACS对任务态EEG活动的影响奠定了基础。