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Source Modeling Sleep Slow Waves

机译:源建模睡眠慢波

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摘要

Slow waves are the most prominent electroencephalographic (EEG) feature of sleep. These waves arise from the synchronization of slow oscillations in the membrane potentials of millions of neurons. Scalp-level studies have indicated that slow waves are not instantaneous events, but rather they travel across the brain. Previous studies of EEG slow waves were limited by the poor spatial resolution of EEGs and by the difficulty of relating scalp potentials to the activity of the underlying cortex. Here we use high-density EEG (hd-EEG) source modeling to show that individual spontaneous slow waves have distinct cortical origins, propagate uniquely across the cortex, and involve unique subsets of cortical structures. However, when the waves are examined en masse, we find that there are diffuse hot spots of slow wave origins centered on the lateral sulci. Furthermore, slow wave propagation along the anterior-posterior axis of the brain is largely mediated by a cingulate highway. As a group, slow waves are associated with large currents in the medial frontal gyrus, the middle frontal gyrus, the inferior frontal gyrus, the anterior cingulate, the precuneus, and the posterior cingulate. These areas overlap with the major connectional backbone of the cortex and with many parts of the default network.
机译:慢波是睡眠的最突出的脑电图(EEG)特征。这些波源于数百万个神经元的膜电位缓慢振荡的同步。头皮级别的研究表明,慢波不是瞬时事件,而是它们在大脑中传播。先前对EEG慢波的研究受到EEG较差的空间分辨率以及将头皮电位与基础皮层活动联系起来的难度所限制。在这里,我们使用高密度脑电图(hd-EEG)源模型来显示各个自发的慢波具有不同的皮质起源,在整个皮质中唯一地传播,并且涉及皮质结构的唯一子集。但是,当对波浪进行整体检查时,我们发现存在以侧向沟为中心的慢波起源的分散热点。此外,沿着大脑前后轴的慢波传播很大程度上是由扣带状高速公路介导的。作为一组,慢波与内侧额回,中额额回,额额下回,前扣带回,前突神经节和后扣带大电流相关。这些区域与皮质的主要连接主干以及默认网络的许多部分重叠。

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