The vision of dreams: from ontogeny to dream engineering in blindness.
Helene Vitali, Claudio Campus, Valentina De Giorgis, Sabrina Signorini, Monica Gori
Journal of clinical sleep medicine : JCSM : official publication of the American Academy of Sleep Medicine August 1, 2022 DOI: 10.5664/jcsm.10026 (opens in new tab) via PubMed
Summary
AI-generated from the abstractDreams originate through multiple brain mechanisms, not a single generator. Frontoparietal regions support dream recall, consistent with the Global Workspace theory of consciousness, but dreams in different sleep stages show distinct features, implying several generators. Blind individuals, including those congenitally blind, can still produce visual dreams, suggesting bottom-up mechanisms linked to innate body schemes or multisensory integration. A new dream-engineering technique may clarify multisensory integration during sleep and offer rehabilitation possibilities for sensory-impaired people. The Theory of Proto-consciousness proposes that waking and dreaming brain states interact for optimal functioning, potentially making dreaming a rehabilitative tool.
Study at a glance
| Characteristics | Review Peer reviewed |
|---|---|
| Keywords | Blindness Dream development Dream engineering Sleeping brain |
| Key finding | Dreams originate from multiple brain generators, and congenitally blind individuals can produce visual dreams, suggesting bottom-up mechanisms in dream generation. |
Abstract
The mechanisms involved in the origin of dreams remain one of the great unknowns in science. In the 21st century, studies in the field have focused on 3 main topics: functional networks that underlie dreaming, neural correlates of dream contents, and signal propagation. We review neuroscientific studies about dreaming processes, focusing on their cortical correlations. The involvement of frontoparietal regions in the dream-retrieval process allows us to discuss it in light of the Global Workspace theory of consciousness. However, dreaming in distinct sleep stages maintains relevant differences, suggesting that multiple generators are implicated. Then, given the strong influence of light perception on sleep regulation and the mostly visual content of dreams, we investigate the effect of blindness on the organization of dreams. Blind individuals represent a worthwhile population to clarify the role of perceptual systems in dream generation, and to make inferences about their top-down and/or bottom-up origin. Indeed, congenitally blind people maintain the ability to produce visual dreams, suggesting that bottom-up mechanisms could be associated with innate body schemes or multisensory integration processes. Finally, we propose the new dream-engineering technique as a tool to clarify the mechanisms of multisensory integration during sleep and related mental activity, presenting possible implications for rehabilitation in sensory-impaired individuals. The Theory of Proto-consciousness suggests that the interaction of brain states underlying waking and dreaming ensures the optimal functioning of both. Therefore, understanding the origin of dreams and capabilities of our brain during a dreamlike state, we could introduce it as a rehabilitative tool. Vitali H, Campus C, De Giorgis V, Signorini S, Gori M. The vision of dreams: from ontogeny to dream engineering in blindness. J Clin Sleep Med. 2022;18(8):2051-2062.