Microdream Neurophenomenology
Oxford Handbooks Online April 5, 2018 DOI: 10.1093/oxfordhb/9780190464745.013.11
Summary
AI-generated from the abstractThe fleeting dream images of sleep onset, called microdreams, are briefer and simpler than REM dreams and more accessible to study. Examining their phenomenology has helped develop a classification system for dreaming's core features (Windt's oneiragic spectrum), establish a structure for assessing dreaming's multiple memory inputs, uncover two new types of imagery (autosensory and exosensory), and provide a framework for explaining microdreaming processes through multisensory integration. Continued focus on microdream neurophenomenology may help resolve questions about dreaming's core features, brain correlates, and memory sources.
Study at a glance
| Characteristics | Theoretical or philosophical paper Peer reviewed |
|---|---|
| Citations | 1 |
| Key finding | A focus on microdream phenomenology has contributed to developing a classification system for dreaming's core phenomenology, establishing a structure for assessing dreaming's multiple memory inputs, uncovering two new types of imagery, and providing a framework for explaining microdreaming processes. |
Abstract
The fleeting dream images of sleep onset afford a rare glimpse at how experience is transformed from the perceptually grounded consciousness of wakefulness to the hallucinatory simulations of dreaming. These images, or microdreams, are briefer, simpler, and more accessible to phenomenological scrutiny than are the long REM dreams traditionally recorded in the sleep lab. This chapter shows that a focus on microdream phenomenology has thus far contributed to (1) developing a classification system for dreaming’s core phenomenology (Windt`s oneiragogic spectrum), (2) establishing a structure for assessing dreaming’s multiple memory inputs (multi-temporal memory sources), (3) furthering Silberer’s project for sleep onset imagery by uncovering two new types of imagery (autosensory imagery, exosensory imagery), and (4) providing a larger framework for explaining some microdreaming processes (multisensory integration approach). A continued focus on microdream neurophenomenology may help resolve outstanding questions about dreaming’s core features, neurophysiological correlates, and memory sources.