Science · 2017 · 178 citations · 66 references
How the brain effectively switches between and maintains global states, such as sleep and wakefulness, is not yet understood. We used brainwide functional imaging at single-cell resolution to show that during the developmental stage of lethargus, the <i>Caenorhabditis elegans</i> brain is predisposed to global quiescence, characterized by systemic down-regulation of neuronal activity. Only a few specific neurons are exempt from this effect. In the absence of external arousing cues, this quiescent brain state arises by the convergence of neuronal activities toward a fixed-point attractor embedded in an otherwise dynamic neural state space. We observed efficient spontaneous and sensory-evoked exits from quiescence. Our data support the hypothesis that during global states such as sleep, neuronal networks are drawn to a baseline mode and can be effectively reactivated by signaling from arousing circuits.
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A default mode of brain function
Marcus E. Raichle, Ann Mary MacLeod, Abraham Z. Snyder et al. · Proceedings of the National Academy of Sciences · 2001 · 12.2K citations
Rest in Drosophila Is a Sleep-like State
Joan C. Hendricks, Stefanie M Finn, Karen Panckeri et al. · Neuron · 2000 · 1.1K citations · Full text
Biology, Sleep Disorders, Sleep +8