A new open-access database, DREAM, combines sleep magneto/electroencephalography (M/EEG) recordings with standardized dream reports to enable large-scale neurocognitive research on dreaming. The initial release includes 20 datasets from 561 participants and 2649 awakenings, each with at least 20 seconds of high-frequency M/EEG data and a classification of the subject's experience. Analyses demonstrate that features extracted from EEG can predict whether a person reports having had a conscious experience during both REM and NREM sleep. The database aims to overcome the limitations of small sample sizes and methodological variability in dream research, allowing new questions to be addressed at a scale unattainable by individual labs.
Combining virtual reality (VR) with lucid dreaming—where a person knows they are dreaming—can create more profound experiences than VR alone. In this study, four frequent lucid dreamers experienced a VR simulation called Ripple, which previously reduced self-other boundaries and enhanced feelings of interconnectedness. Afterward, during REM sleep, sounds from Ripple were played quietly. Three participants had lucid dreams about Ripple, and all four reported dreams containing elements of the VR experience. Lucid dreams were validated in real time via physiological signals. The findings confirm that people can have lucid dreams that recapitulate prior VR experiences, suggesting a synergistic benefit for immersive exploration.