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  1. 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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  • 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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  • Assessing metacognitive skills in waking and sleep: A psychometric analysis of the Metacognitive, Affective, Cognitive Experience (MACE) questionnaire.Tracey L. Kahan & Kieran T. Sullivan - 2012 - Consciousness and Cognition 21 (1):340-352.
    The Metacognitive, Affective, Cognitive Experience questionnaire was designed to assess metacognition across sleep and waking . The present research evaluates the psychometric properties of the MACE. Data from two recent studies were used to assess the inter-item consistency, test–retest reliability, and factorial, convergent, and discriminant validity of the MACE. Results show that the MACE is a reliable measure with good construct validity. Exploratory factor analyses revealed one self-regulation and two monitoring factors. One monitoring factor emphasized monitoring internal conditions; the other (...)
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  • Dreaming and waking: Similarities and differences revisited.Tracey L. Kahan & Stephen P. LaBerge - 2011 - Consciousness and Cognition 20 (3):494-514.
    Dreaming is often characterized as lacking high-order cognitive skills. In two studies, we test the alternative hypothesis that the dreaming mind is highly similar to the waking mind. Multiple experience samples were obtained from late-night REM sleep and waking, following a systematic protocol described in Kahan . Results indicated that reported dreaming and waking experiences are surprisingly similar in their cognitive and sensory qualities. Concurrently, ratings of dreaming and waking experiences were markedly different on questions of general reality orientation and (...)
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  • Seeking patterns in dream content: A systematic approach to word searches.Kelly Bulkeley - 2009 - Consciousness and Cognition 18 (4):905-916.
    This paper systematizes the word search potential of DreamBank.net by formulating and testing a set of word strings that can be used as default analytic categories in future investigations. The word strings are applied to the 981 dream reports of college students gathered by Hall and Van de Castle and the 136 dream reports of an 80-year old male gathered by Bulkeley . The results show a basic compatibility with the frequencies identified by Hall and Van de Castle’s labor-intensive method (...)
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  • Is Lucid Dreamless Sleep Really Lucid?Adriana Alcaraz-Sánchez - 2024 - Review of Philosophy and Psychology 15 (1):1-27.
    Recently, the construct ‘lucid dreamless sleep’ has been proposed to explain the state of ‘clear light’ described by Tibetan Buddhist traditions, a special state of consciousness during deep sleep in which we’re told to be able to recognise the nature or essence of our mind (Padmasambhava & Gyatrul 2008; Ponlop 2006; Wangyal 1998). To explain the sort of awareness experienced during this state, some authors have appealed to the sort of lucidity acquired during lucid dreaming and suggested a link between (...)
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  • Neurocognitive dynamics of spontaneous offline simulations: Re-conceptualizing (dream)bizarreness.Manuela Kirberg - 2022 - Philosophical Psychology 35 (7):1072-1101.
    Although we are beginning to understand the neurocognitive processes that underlie the emergence of dreaming, what accounts for the bizarre phenomenology of dreams remains debated. I address this question by comparing dreaming with waking mind wandering and challenging previous accounts that utilize bizarreness to mark a sharp divide between conscious experiences in waking and sleeping. Instead, I propose that bizarreness is a common, non-deficient feature of spontaneous offline simulations occurring across the sleep-wake cycle and can be tied to the specific (...)
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  • The impact of September 11 on dreaming☆.Kelly Bulkeley & Tracey L. Kahan - 2008 - Consciousness and Cognition 17 (4):1248-1256.
    This study focuses on a set of dreams related to the September 11, 2001 terrorist attacks and their aftermath, using content analysis and cognitive psychology to explore the interweaving of external public catastrophe and internal psychological processes. The study tests several recent claims in contemporary dream research, including the central image theory of Hartmann [Hartmann, E., & Basile, R. . Dream imagery becomes more intense after 9/11/01. Dreaming, 13, 61–66; Hartmann, E., & Brezler, T. . A systematic change in dreams (...)
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  • Differentiating dreaming and waking reports with automatic text analysis and Support Vector Machines.Xiaofang Zheng & Richard Schweickert - 2023 - Consciousness and Cognition 107 (C):103439.
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  • Digital dream analysis: A revised method.Kelly Bulkeley - 2014 - Consciousness and Cognition 29:159-170.
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