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在小鼠大脑皮层的行为状态下,低频活动的高度动态时空组织。

Highly Dynamic Spatiotemporal Organization of Low-Frequency Activities During Behavioral States in the Mouse Cerebral Cortex.

机构信息

INSERM U1028, CNRS UMR5292, Lyon Neuroscience Research Center, Integrative Physiology of the Brain Arousal System Team, Lyon Cedex 08 F-69000, France.

Lyon Neuroscience Research Center, University Lyon 1, Lyon Cedex 08 F-69000, France.

出版信息

Cereb Cortex. 2017 Dec 1;27(12):5444-5462. doi: 10.1093/cercor/bhw311.

Abstract

Although low-frequency (LF < 10 Hz) activities have been considered as a hallmark of nonrapid eye movement (NREM) sleep, several studies have recently reported LF activities in the membrane potential of cortical neurons from different areas in awake mice. However, little is known about the spatiotemporal organization of LF activities across cortical areas during wakefulness and to what extent it differs during NREM sleep. We have thus investigated the dynamics of LF activities across cortical areas in awake and sleeping mice using chronic simultaneous local field potential recordings. We found that LF activities had higher amplitude in somatosensory and motor areas during quiet wakefulness and decreased in most areas during active wakefulness, resulting in a global state change that was overall correlated with motor activity. However, we also observed transient desynchronization of cortical states between areas, indicating a more local state regulation. During NREM sleep, LF activities had higher amplitude in all areas but slow-wave activity was only poorly correlated across cortical areas. Despite a maximal amplitude during NREM sleep, the coherence of LF activities between areas that are not directly connected dropped from wakefulness to NREM sleep, potentially reflecting a breakdown of long-range cortical integration associated with loss of consciousness.

摘要

尽管低频(LF<10Hz)活动被认为是非快速眼动(NREM)睡眠的标志,但最近有几项研究报告称,在清醒小鼠不同脑区的皮质神经元膜电位中存在 LF 活动。然而,目前对于清醒和 NREM 睡眠期间 LF 活动在皮质区域中的时空组织及其在 NREM 睡眠期间的差异程度知之甚少。因此,我们使用慢性同步局部场电位记录来研究清醒和睡眠小鼠的 LF 活动的动力学。我们发现,在安静的清醒状态下,LF 活动在感觉和运动区域的振幅较高,而在活跃的清醒状态下,大多数区域的振幅降低,导致整体与运动活动相关的全局状态变化。然而,我们还观察到脑区之间皮质状态的短暂去同步,表明存在更局部的状态调节。在 NREM 睡眠期间,所有区域的 LF 活动振幅均较高,但慢波活动在皮质区域之间相关性较差。尽管在 NREM 睡眠期间振幅最大,但不直接相连的脑区之间 LF 活动的相干性从清醒状态到 NREM 睡眠状态下降,这可能反映了与意识丧失相关的长程皮质整合的破坏。

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