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Low frequency BOLD fluctuations during resting wakefulness and light sleep: a simultaneous EEG-fMRI study.

机译:静息清醒和轻度睡眠期间的低频BOLD波动:一项同步的EEG-fMRI研究。

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摘要

Recent blood oxygenation level dependent functional MRI (BOLD fMRI) studies of the human brain have shown that in the absence of external stimuli, activity persists in the form of distinct patterns of temporally correlated signal fluctuations. In this work, we investigated the spontaneous BOLD signal fluctuations during states of reduced consciousness such as drowsiness and sleep. For this purpose, we performed BOLD fMRI on normal subjects during varying levels of consciousness, from resting wakefulness to light (non-slow wave) sleep. Depth of sleep was determined based on concurrently acquired EEG data. During light sleep, significant increases in the fluctuation level of the BOLD signal were observed in several cortical areas, among which visual cortex was the most significant. Correlations among brain regions involved with the default-mode network persisted during light sleep. These results suggest that activity in areas such as the default-mode network and primary sensory cortex, as measured from BOLD fMRI fluctuations, does not require a level of consciousness typical of wakefulness.
机译:对人脑的最新血液氧合水平依赖性功能性MRI(BOLD fMRI)研究表明,在没有外部刺激的情况下,活动以时间相关信号波动的不同模式持续存在。在这项工作中,我们研究了昏睡和睡眠等意识下降状态下的自发BOLD信号波动。为了这个目的,我们在从静息清醒到轻度(非慢波)睡眠的不同意识水平下对正常受试者进行了大胆功能磁共振成像。根据同时获取的EEG数据确定睡眠深度。在轻度睡眠期间,在几个皮质区域观察到BOLD信号的波动水平显着增加,其中视觉皮质最为明显。轻度睡眠期间,与默认模式网络有关的大脑区域之间的相关性持续存在。这些结果表明,根据BOLD fMRI波动测量,默认模式网络和主要感觉皮层等区域的活动不需要觉醒所特有的意识水平。

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