Resting brain activity varies with dream recall frequency between subjects.
Jean-Baptiste Eichenlaub, Alain Nicolas, Jérôme Daltrozzo, Jérôme Redouté, Nicolas Costes, Perrine Ruby
Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology June 1, 2014 DOI: 10.1038/npp.2014.6 (opens in new tab) via PubMed
Summary
AI-generated from the abstractPeople who frequently recall dreams show higher blood flow in two brain regions—the temporoparietal junction (TPJ) and the medial prefrontal cortex (MPFC)—both during sleep and while awake, compared with people who rarely recall dreams. High recallers averaged 5.2 dream recalls per week, low recallers 0.5. The findings support the idea that these parts of the default mode network are involved in producing and encoding dreams, not just in recalling them after waking. Increased TPJ activity may also help orient attention to external stimuli and promote brief awakenings that aid memory encoding.
Study at a glance
| Characteristics | Observational cohort Peer reviewed |
|---|---|
| Population | Healthy subjects with high and low dream recall frequencies |
| Key finding | High dream recallers showed higher regional cerebral blood flow in the temporoparietal junction during REM sleep, N3 sleep, and wakefulness, and in the medial prefrontal cortex during REM sleep and wakefulness, compared with low recallers. |
Abstract
Dreaming is still poorly understood. Notably, its cerebral underpinning remains unclear. Neuropsychological studies have shown that lesions in the temporoparietal junction (TPJ) and/or the white matter of the medial prefrontal cortex (MPFC) lead to the global cessation of dream reports, suggesting that these regions of the default mode network have key roles in the dreaming process (forebrain 'dream-on' hypothesis). To test this hypothesis, we measured regional cerebral blood flow (rCBF) using [(15)O]H2O positron emission tomography in healthy subjects with high and low dream recall frequencies (DRFs) during wakefulness (rest) and sleep (rapid eye movement (REM) sleep, N2, and N3). Compared with Low recallers (0.5 ± 0.3 dream recall per week in average), High recallers (5.2 ± 1.4) showed higher rCBF in the TPJ during REM sleep, N3, and wakefulness, and in the MPFC during REM sleep and wakefulness. We demonstrate that the resting states of High recallers and Low recallers differ during sleep and wakefulness. It coheres with previous ERP results and confirms that a high/low DRF is associated with a specific functional organization of the brain. These results support the forebrain 'dream-on' hypothesis and suggest that TPJ and MPFC are not only involved in dream recall during wakefulness but also have a role in dreaming during sleep (production and/or encoding). Increased activity in the TPJ and MPFC might promote the mental imagery and/or memory encoding of dreams. Notably, increased activity in TPJ might facilitate attention orienting toward external stimuli and promote intrasleep wakefulness, facilitating the encoding of the dreams in memory.