Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8841236 | Neuroscience | 2017 | 12 Pages |
Abstract
Although recent studies have reported that gamma-aminobutyric acid (GABA) neurons in the parafacial zone (PZ) of the rostral medulla are needed for the induction of slow-wave sleep (SWS) and that the PZ is a medullary SWS-promoting center, it remains unknown whether the PZ contains SWS-active or sleep-promoting neurons. In the present study, a total of 125 neurons were recorded, for the first time, in non-anesthetized, head-restrained mice during the complete wake-sleep cycle throughout the PZ of the rostral medulla. The vast majority (87.2%) of the neurons displayed increased activity during both wakefulness (W) and paradoxical (or rapid eye movement) sleep (PS) compared to during SWS (W/PS-active neurons) and a few (8.0%) discharged phasically and selectively during PS (PS-active neurons), but none discharged maximally during SWS (SWS-active neurons) or displayed a higher rate of spontaneous discharge during both SWS and PS than during W (SWS/PS-active neurons). These findings do not support the view that the GABAergic PZ is a medullary SWS-promoting center.
Keywords
intermediate reticular nucleusIRTSWSdrowsy stateNTSREMPSTgamma-aminobutyric acidElectroencephalogramEMGelectromyogramWakefulnessquiet wakefulnessfunctional magnetic resonance imagingfMRIrapid eye movementslow-wave sleepParadoxical sleeplocus coeruleusEEGnucleus of the solitary tractChATcholine acetyltransferaseGABA
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Authors
K. Sakai,