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额叶皮质的电刺激会增强低频脑电活动并导致困倦。

Electrical stimulation of the frontal cortex enhances slow-frequency EEG activity and sleepiness.

作者信息

D'Atri A, De Simoni E, Gorgoni M, Ferrara M, Ferlazzo F, Rossini P M, De Gennaro L

机构信息

Department of Psychology, University of Rome "Sapienza", Via dei Marsi 78, 00185 Rome, Italy; IRCCS San Raffaele Pisana, Via della Pisana 235, 00163 Rome, Italy.

Department of Psychology, University of Rome "Sapienza", Via dei Marsi 78, 00185 Rome, Italy.

出版信息

Neuroscience. 2016 Jun 2;324:119-30. doi: 10.1016/j.neuroscience.2016.03.007. Epub 2016 Mar 8.

Abstract

Our aim was to enhance the spontaneous slow-frequency EEG activity during the resting state using oscillating transcranial direct currents (tDCS) with a stimulation frequency that resembles the spontaneous oscillations of sleep onset. Accordingly, in this preliminary study, we assessed EEG after-effects of a frontal oscillatory tDCS with different frequency (0.8 vs. 5 Hz) and polarity (anodal, cathodal, and sham). Two single-blind experiments compared the after effects on the resting EEG of oscillatory tDCS [Exp. 1=0.8 Hz, 10 subjects (26.2 ± 2.5 years); Exp. 2=5 Hz, 10 subjects (27.4 ± 2.4 years)] by manipulating its polarity. EEG signals recorded (28 scalp derivations) before and after stimulation [slow oscillations (0.5-1 Hz), delta (1-4 Hz), theta (5-7 Hz), alpha (8-12 Hz), beta 1 (13-15 Hz) and beta 2 (16-24 Hz)] were compared between conditions as a function of polarity (anodal vs. cathodal vs. sham) and frequency of stimulation (0.8 vs. 5 Hz). We found a significant relative enhancement of the delta activity after the anodal tDCS at 5 Hz compared to that at 0.8 Hz. This increase, even though not reaching the statistical significance compared to sham, is concomitant to a significant increase of subjective sleepiness, as assessed by a visual analog scale. These two phenomena are linearly related with a regional specificity, correlations being restricted to cortical areas perifocal to the stimulation site. We have shown that a frontal oscillating anodal tDCS at 5 Hz results in an effective change of both subjective sleepiness and spontaneous slow-frequency EEG activity. These changes are critically associated to both stimulation polarity (anodal) and frequency (5 Hz). However, evidence of frequency-dependence seems more unequivocal than evidence of polarity-dependence.

摘要

我们的目标是使用振荡经颅直流电刺激(tDCS)来增强静息状态下的自发低频脑电活动,其刺激频率类似于睡眠起始的自发振荡。因此,在这项初步研究中,我们评估了不同频率(0.8赫兹与5赫兹)和极性(阳极、阴极和假刺激)的额叶振荡tDCS对脑电图的后续影响。两项单盲实验通过操纵其极性比较了振荡tDCS对静息脑电图的后续影响[实验1 = 0.8赫兹,10名受试者(26.2±2.5岁);实验2 = 5赫兹,10名受试者(27.4±2.4岁)]。比较了刺激前后记录的脑电图信号(28个头皮导联)[慢振荡(0.5 - 1赫兹)、δ波(1 - 4赫兹)、θ波(5 - 7赫兹)、α波(8 - 12赫兹)、β1波(13 - 15赫兹)和β2波(16 - 24赫兹)],作为极性(阳极与阴极与假刺激)和刺激频率(0.8赫兹与5赫兹)的函数。我们发现,与0.8赫兹相比,5赫兹阳极tDCS后δ波活动有显著的相对增强。尽管与假刺激相比未达到统计学显著性,但这种增加与主观嗜睡的显著增加同时出现,主观嗜睡通过视觉模拟量表进行评估。这两种现象具有区域特异性的线性关系,相关性仅限于刺激部位周围的皮质区域。我们已经表明,5赫兹的额叶振荡阳极tDCS会导致主观嗜睡和自发低频脑电活动的有效变化。这些变化与刺激极性(阳极)和频率(5赫兹)都密切相关。然而,频率依赖性的证据似乎比极性依赖性的证据更明确。

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