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  1. The reinterpretation of dreams: An evolutionary hypothesis of the function of dreaming.Antti Revonsuo - 2000 - Behavioral and Brain Sciences 23 (6):877-901.
    Several theories claim that dreaming is a random by-product of REM sleep physiology and that it does not serve any natural function. Phenomenal dream content, however, is not as disorganized as such views imply. The form and content of dreams is not random but organized and selective: during dreaming, the brain constructs a complex model of the world in which certain types of elements, when compared to waking life, are underrepresented whereas others are over represented. Furthermore, dream content is consistently (...)
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  • Dreams reflect nocturnal cognitive processes: Early-night dreams are more continuous with waking life, and late-night dreams are more emotional and hyperassociative.J. E. Malinowski & C. L. Horton - 2021 - Consciousness and Cognition 88:103071.
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  • The neural substrate for dreaming: Is it a subsystem of the default network?G. William Domhoff - 2011 - Consciousness and Cognition 20 (4):1163-1174.
    Building on the content, developmental, and neurological evidence that there are numerous parallels between waking cognition and dreaming, this article argues that the likely neural substrate that supports dreaming, which was discovered through converging lesion and neuroimaging studies, may be a subsystem of the waking default network, which is active during mind wandering, daydreaming, and simulation. Support for this hypothesis would strengthen the case for a more general neurocognitive theory of dreaming that starts with established findings and concepts derived from (...)
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  • Motivation and affect in REM sleep and the mentation reporting process.Mark Smith, John Antrobus, Evelyn Gordon, Matthew Tucker & Yasutaka Hirota - 2004 - Consciousness and Cognition 13 (3):501-511.
    Although the emotional and motivational characteristics of dreaming have figured prominently in folk and psychoanalytic conceptions of dream production, emotions have rarely been systematically studied, and motivation, never. Because emotions during sleep lack the somatic components of waking emotions, and they change as the sleeper awakens, their properties are difficult to assess. Recent evidence of limbic system activation during REM sleep suggests a basis in brain architecture for the interaction of motivational and cognitive properties in dreaming. Motivational and emotional content (...)
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  • The Functional Role of Dreaming in Emotional Processes.Serena Scarpelli, Chiara Bartolacci, Aurora D'Atri, Maurizio Gorgoni & Luigi De Gennaro - 2019 - Frontiers in Psychology 10.
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  • Poor recall of eye-movement signals from Stage 2 compared to REM sleep: Implications for models of dreaming.Russell Conduit, Sheila Gillard Crewther & Grahame Coleman - 2004 - Consciousness and Cognition 13 (3):484-500.
    An ongoing assumption made by sleep researchers is that since dreams are more often recalled on awakening from rapid eye movement sleep, dreams must occur more often during this stage of sleep. An alternative hypothesis is that cognition occurs throughout sleep, but the recall of this mentation differs on awakening. When a dream is not reported on awakening, there is no method of establishing whether it did not happen or was forgotten. The aim of the present study was to investigate (...)
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  • Dreaming and the brain: from phenomenology to neurophysiology.Yuval Nir & Giulio Tononi - 2010 - Trends in Cognitive Sciences 14 (2):88-100.
    Dreams are a remarkable experiment in psychology and neuroscience, conducted every night in every sleeping person. They show that the human brain, disconnected from the environment, can generate an entire world of conscious experiences by itself. Content analysis and developmental studies have promoted understanding of dream phenomenology. In parallel, brain lesion studies, functional imaging and neurophysiology have advanced current knowledge of the neural basis of dreaming. It is now possible to start integrating these two strands of research to address fundamental (...)
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  • Rem mentation in narcoleptics and normals: An empirical test of two neurocognitive theories.Roar Fosse - 2000 - Consciousness and Cognition 9 (4):488-509.
    This study tested the two main neurocognitive models of dreaming by using cognitive data elicited from REM sleep in normals and narcoleptics. The two models were the ''activation-only'' view which holds that, in the context of sleep, overall activation of the brain is sufficient for consciousness to proceed in the manner of dreaming (e.g., Antrobus, 1991; Foulkes, 1993; Vogel, 1978); and the Activation, Input source, Modulation (AIM model), which predicts that not only brain activation level but also neurochemical modulatory systems (...)
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  • Vividness and content.Peter Fazekas - 2024 - Mind and Language 39 (1):61-79.
    The notion of subjective vividness plays a fundamental role in comparing different conscious experiences, yet it is poorly understood and lacks proper definition. Philosophical reflection on this topic is especially scarce. This article proposes a novel account of vividness arguing that its standard operationalisation in psychology conflates two major modality‐general dimensions along which experiences vary—subjective intensity and subjective specificity—which themselves are determined by further modality‐specific factors. The article identifies the neural underpinnings of these factors in the visual domain, demonstrates the (...)
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  • Dreaming and the default network: A review, synthesis, and counterintuitive research proposal.G. William Domhoff & Kieran C. R. Fox - 2015 - Consciousness and Cognition 33:342-353.
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  • Daydreams and nap dreams: Content comparisons.Michelle Carr & Tore Nielsen - 2015 - Consciousness and Cognition 36:196-205.
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  • In the theater of dreams: global workspace theory, dreaming, and consciousness.Donald J. DeGracia & S. LaBerge - forthcoming - Consciousness and Cognition. In Submission.
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