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Balancing Prediction and Surprise: A Role for Active Sleep at the Dawn of Consciousness?

Matthew N Van de Poll, Bruno van Swinderen

Frontiers in systems neuroscience January 1, 2021 DOI: 10.3389/fnsys.2021.768762 via PubMed

Summary

AI-generated from the abstract

The brain’s ability to predict is vital, yet it must also adapt to surprises. Emotional responses to unexpected events can significantly influence memory consolidation, with positive or negative cues shaping internal models of the world. In a study involving diverse species, including invertebrates, it was proposed that active sleep—characterized by REM—is crucial for optimizing predictive processing. This mechanism may help maintain a balance between prediction and surprise, providing insights into the evolution of consciousness across various animals.

Study at a glance

Characteristics Theoretical or philosophical paper Peer reviewed
Keywords Rem sleep Consciousness Emotions Invertebrate Predictive coding
Citations 23
Key finding Active sleep may have evolved as a mechanism for optimizing predictive processing in motile creatures confronted with constantly changing environments.

Abstract

The brain is a prediction machine. Yet the world is never entirely predictable, for any animal. Unexpected events are surprising, and this typically evokes prediction error signatures in mammalian brains. In humans such mismatched expectations are often associated with an emotional response as well, and emotional dysregulation can lead to cognitive disorders such as depression or schizophrenia. Emotional responses are understood to be important for memory consolidation, suggesting that positive or negative 'valence' cues more generally constitute an ancient mechanism designed to potently refine and generalize internal models of the world and thereby minimize prediction errors. On the other hand, abolishing error detection and surprise entirely (as could happen by generalization or habituation) is probably maladaptive, as this might undermine the very mechanism that brains use to become better prediction machines. This paradoxical view of brain function as an ongoing balance between prediction and surprise suggests a compelling approach to study and understand the evolution of consciousness in animals. In particular, this view may provide insight into the function and evolution of 'active' sleep. Here, we propose that active sleep - when animals are behaviorally asleep but their brain seems awake - is widespread beyond mammals and birds, and may have evolved as a mechanism for optimizing predictive processing in motile creatures confronted with constantly changing environments. To explore our hypothesis, we progress from humans to invertebrates, investigating how a potential role for rapid eye movement (REM) sleep in emotional regulation in humans could be re-examined as a conserved sleep function that co-evolved alongside selective attention to maintain an adaptive balance between prediction and surprise. This view of active sleep has some interesting implications for the evolution of subjective awareness and consciousness in animals.

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