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首页> 外文期刊>International Journal of Neuroscience >Human scalp recorded sigma activity is modulated by slow EEG oscillations during deep sleep.
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Human scalp recorded sigma activity is modulated by slow EEG oscillations during deep sleep.

机译:人类头皮记录的sigma活动受深度睡眠期间缓慢的EEG振荡调节。

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The EEG during deep sleep exhibits a distinct cortically generated slow oscillation of around and below 1 Hz which can be distinguished from other delta (0.5-3.5 Hz) activity. Intracranial studies showed that this slow oscillation triggers and groups cortical network firing. In the present study, we examined whether the phases of the slow oscillation during sleep stage 4 are correlated with the magnitude of sigma (12-16 Hz) and gamma (> 20 Hz) scalp activity. For this purpose, 10-min segments of uninterrupted stage 4 sleep EEG from 9 subjects were analyzed by applying wavelet techniques. We found that scalp recorded sigma, but not gamma, activity is modulated by the phases of the slow oscillation during deep sleep. Enhancement of sigma activity was observed to be triggered by the peak of the surface positive slow wave component, whereas reduction of sigma activity started around the peak of the negative component.
机译:深度睡眠期间的脑电图表现出明显的皮质产生的大约1Hz以下的缓慢振荡,这可与其他增量(0.5-3.5 Hz)活动区分开。颅内研究表明,这种缓慢的振荡触发并分组皮质网络射击。在本研究中,我们检查了睡眠阶段4中缓慢振荡的相位是否与sigma(12-16 Hz)和γ(> 20 Hz)头皮活动的大小相关。为此,通过应用小波技术分析了来自9位受试者的4分钟睡眠EEG的10分钟片段。我们发现头皮记录的西格玛活动,而不是伽玛活动是由深度睡眠期间的缓慢振荡的相位调制的。观察到西格玛活性的增强是由表面正慢波成分的峰值触发的,而西格玛活性的降低始于负成分的峰值附近。

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