Simultaneous stomach-brain electrophysiology reveals dynamic coupling in human sleep
Rao, A. A.; Fredericks, M.; Dresler, M.; Rebollo, I.; Zeitzer, J. M.; Schoch, S. F.; Coleman, T. P.
Show abstract
Sleep involves continuous communication between the brain and body, yet the dynamics of peripheral signals during human sleep remain poorly understood. Here we tested whether gastric electrophysiology exhibits infraslow structure and coordinated fluctuations with cortical rhythms indicative of sleep physiology. Simultaneous high-density electroencephalography (EEG) and electrogastrography (EGG) were recorded across sixty participants and three nights. Gastric power was consistently higher during NREM than REM sleep and declined across successive cycles, consistent with stage-dependent autonomic modulation of visceral activity. For the first time, we show that the gastric rhythm itself exhibits intrinsic infraslow amplitude modulations ([~]0.007 Hz), which are selectively amplified during NREM sleep and temporally aligned with infraslow fluctuations in cortical sigma power, strongest during N3 sleep. Event-locked analyses further revealed transient increases in gastric amplitude following cortical slow wave oscillations, particularly when accompanied by sleep spindles. Across nights, variance in gastric infraslow amplitude predicted subjective sleep quality beyond standard polysomnographic and cardiac measures. Together, these findings position the human stomach as a peripheral oscillator whose infraslow dynamics track thalamocortical activity during sleep and predict subjective sleep quality, extending the interoceptive regulatory loop into the sleeping brain.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The Aging Slow Wave: A Shifting Amalgam of Distinct Slow Wave and Spindle Coupling Subtypes Define Slow Wave Sleep Across the Human Lifespan 96%
- Theta-gamma coupling depends on breathing rate 96%
- Schizophrenia-associated variation at ZNF804A correlates with altered experience-dependent dynamics of sleep slow-waves and spindles in healthy young adults 96%
Similar papers in this journal
Similar papers in this journal
- Dynamic respiration-neural coupling in substantia nigra across sleep and anesthesia 97%
- Sleep differentially affects early and late neuronal responses to sounds in auditory and perirhinal cortices 96%
- Relating pupil diameter and blinking to cortical activity and hemodynamics across arousal states 95%
Similar papers in this journal
- Twitches emerge postnatally during quiet sleep in human infants and are synchronized with sleep spindles 96%
- Sleep-like changes in neural processing emerge during sleep deprivation in early auditory cortex 96%
- Deficient synaptic neurotransmission results in a persistent sleep-like cortical activity across vigilance states in mice 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.