Functional connectivity drifts during sleep as a marker of fluctuations in the level of consciousness.
João Patriota, Giulia Moreni, Jorge F Mejías, Lucia Talamini, Umberto Olcese
Neuroscience of consciousness January 1, 2025 DOI: 10.1093/nc/niaf061 via PubMed
Summary
AI-generated from the abstractDuring the sleep-wake cycle, consciousness changes, and this is thought to relate to how brain areas integrate. Recent work found that people can have conscious experiences during NREM sleep, which is usually considered unconscious. This study tested whether functional connectivity between neurons varies within brain states in a way that matches fluctuating consciousness. Researchers examined directed functional connectivity between neurons across the wake-sleep cycle in rats, over seconds. They observed that NREM sleep contains epochs where inter-areal connectivity patterns resemble those during wakefulness and REM sleep, and vice versa. Thus, circuit-level connectivity patterns are not fixed by brain state but may reflect other factors, such as changes in consciousness level within as well as between brain states.
Study at a glance
| Characteristics | Observational study Peer reviewed |
|---|---|
| Population | Rats |
| Keywords | Brain states Consciousness Functional connectivity Sleep |
| Key finding | NREM sleep contains epochs in which patterns of inter-areal functional connectivity are comparable to those observed in wakefulness and REM sleep, indicating that circuit-level connectivity patterns are not univocally determined by brain state. |
Abstract
During the wake-sleep cycle, consciousness waxes and wanes, and this is thought to be reflected in varying levels of integration between brain areas. Recent studies challenged the notion that consciousness is homogeneously present or absent in a brain state, as exemplified by conscious reports found in otherwise unconscious Non-rapid eye movement (NREM) sleep. Here, we tested if functional connectivity (FC) between neurons varies within brain states in a way compatible with a fluctuating level of consciousness. We examined directed FC between neurons across the wake-sleep cycle in rats, at a scale of a few seconds. We observed that NREM sleep contains epochs in which patterns of inter-areal FC are comparable to those observed in wakefulness and REM sleep, and vice versa. Thus, circuit-level connectivity patterns are not univocally determined by the brain state in which they occur, but could rather reflect other factors such as the fluctuation in the level of consciousness that takes place not only between but also within brain states.