Cell Reports
Volume 42, Issue 2, 28 February 2023, 112053
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Report
Cortical neuronal assemblies coordinate with EEG microstate dynamics during resting wakefulness

https://doi.org/10.1016/j.celrep.2023.112053Get rights and content
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Highlights

  • The somatosensory cortex is imaged across the full sleep-wake cycle in mice

  • Cortical neural assembly activity is not different during quiet wake vs. sleep

  • Assembly activity is only coordinated with global brain dynamics during wake

Summary

The disruption of cortical assembly activity has been associated with anesthesia-induced loss of consciousness. However, the relationship between cortical assembly activity and the variations in consciousness associated with natural vigilance states remains unclear. Here, we address this by performing vigilance state-specific clustering analysis on 2-photon calcium imaging data from the sensorimotor cortex in combination with global electroencephalogram (EEG) microstate analysis derived from multi-EEG signals obtained over widespread cortical locations. We report no difference in the structure of assembly activity during quiet wakefulness (QW), non-rapid eye movement sleep (NREMs), or REMs, despite the latter two vigilance states being associated with significantly reduced levels of consciousness relative to QW. However, we describe a significant coordination between global EEG microstate dynamics and general local cortical assembly activity during periods of QW, but not sleep. These results suggest that the coordination of cortical assembly activity with global brain dynamics could be a key factor of sustained conscious experience.

Keywords

calcium imaging
cortical assemblies
EEG microstates
vigilance states
consciousness

Research topic(s)

CP: Neuroscience

Data and code availability

  • All data reported in this paper will be shared by the lead contact upon request.

  • This paper does not report original code.

  • Any additional information required to reanalyze the data reported in this work paper is available from the lead contact upon request.

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