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  1. Dreaming and Rem sleep are controlled by different brain mechanisms.Mark Solms - 2000 - Behavioral and Brain Sciences 23 (6):843-850.
    The paradigmatic assumption that REM sleep is the physiological equivalent of dreaming is in need of fundamental revision. A mounting body of evidence suggests that dreaming and REM sleep are dissociable states, and that dreaming is controlled by forebrain mechanisms. Recent neuropsychological, radiological, and pharmacological findings suggest that the cholinergic brain stem mechanisms that control the REM state can only generate the psychological phenomena of dreaming through the mediation of a second, probably dopaminergic, forebrain mechanism. The latter mechanism (and thus (...)
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  • Last night I had the strangest dream: Varieties of rational thought processes in dream reports.Richard N. Wolman & Miloslava Kozmová - 2007 - Consciousness and Cognition 16 (4):838-849.
    From the neurophysiological perspective, thinking in dreaming and the quality of dream thought have been considered hallucinatory, bizarre, illogical, improbable, or even impossible. This empirical phenomenological research concentrates on testing whether dream thought can be defined as rational in the sense of an intervening mental process between sensory perception and the creation of meaning, leading to a conclusion or to taking action. From 10 individual dream journals of male participants aged 22–59 years and female participants aged 25–49 years, we delimited (...)
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  • Cortical midline structures and the self.Georg Northoff & Felix Bermpohl - 2004 - Trends in Cognitive Sciences 8 (3):102-107.
  • A review of mentation in Rem and NRem sleep: “Covert” Rem sleep as a possible reconciliation of two opposing models. [REVIEW]Tore A. Nielsen - 2000 - Behavioral and Brain Sciences 23 (6):851-866.
    Numerous studies have replicated the finding of mentation in both rapid eye movement (REM) and nonrapid eye movement (NREM) sleep. However, two different theoretical models have been proposed to account for this finding: (1) a one-generator model, in which mentation is generated by a single set of processes regardless of physiological differences between REM and NREM sleep; and (2) a two-generator model, in which qualitatively different generators produce cognitive activity in the two states. First, research is reviewed demonstrating conclusively that (...)
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  • Lucid dreaming: Evidence and methodology.Stephen LaBerge - 2000 - Behavioral and Brain Sciences 23 (6):962-964.
    Lucid dreaming provides a test case for theories of dreaming. For example, whether or not “loss of self-reflective awareness” is characteristic of dreaming, it is not necessary to dreaming. The fact that lucid dreamers can remember to perform predetermined actions and signal to the laboratory allows them to mark the exact time of particular dream events, allowing experiments to establish precise correlations between physiology and subjective reports, and enabling the methodical testing of hypotheses. [Hobson et al.; Solms].
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  • Neuronal correlates of “free will” are associated with regional specialization in the human intrinsic/default network.Ilan Goldberg, Shimon Ullman & Rafael Malach - 2008 - Consciousness and Cognition 17 (3):587-601.
    Recently, we proposed a fundamental subdivision of the human cortex into two complementary networks—an “extrinsic” one which deals with the external environment, and an “intrinsic” one which largely overlaps with the “default mode” system, and deals with internally oriented and endogenous mental processes. Here we tested this hypothesis by contrasting decision making under external and internally-derived conditions. Subjects were presented with an external cue, and were required to either follow an external instruction or to ignore it and follow a voluntary (...)
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  • Dreaming and the brain: Toward a cognitive neuroscience of conscious states.J. Allan Hobson, Edward F. Pace-Schott & Robert Stickgold - 2000 - Behavioral and Brain Sciences 23 (6):793-842; 904-1018; 1083-1121.
    Sleep researchers in different disciplines disagree about how fully dreaming can be explained in terms of brain physiology. Debate has focused on whether REM sleep dreaming is qualitatively different from nonREM (NREM) sleep and waking. A review of psychophysiological studies shows clear quantitative differences between REM and NREM mentation and between REM and waking mentation. Recent neuroimaging and neurophysiological studies also differentiate REM, NREM, and waking in features with phenomenological implications. Both evidence and theory suggest that there are isomorphisms between (...)
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  • Neuromodulation: acetylcholine and memory consolidation.Michael E. Hasselmo - 1999 - Trends in Cognitive Sciences 3 (9):351-359.
    Clinical and experimental evidence suggests that hippocampal damage causes more severe disruption of episodic memories if those memories were encoded in the recent rather than the more distant past. This decrease in sensitivity to damage over time might reflect the formation of multiple traces within the hippocampus itself, or the formation of additional associative links in entorhinal and association cortices. Physiological evidence also supports a two-stage model of the encoding process in which the initial encoding occurs during active waking and (...)
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  • Appropriateness of dream feelings to dreamed situations.David Foulkes, Brenda Sullivan, Nancy H. Kerr & Lisa Brown - 1988 - Cognition and Emotion 2 (1):29-39.
  • The relation of eye movements during sleep to dream activity: An objective method for the study of dreaming.William Dement & Nathaniel Kleitman - 1957 - Journal of Experimental Psychology 53 (5):339.
  • The relation of eye movements, body motility, and external stimuli to dream content.William Dement & Edward A. Wolpert - 1958 - Journal of Experimental Psychology 55 (6):543.
  • Imaging the developing brain: what have we learned about cognitive development?B. J. Casey, N. Tottenham, C. Liston & S. Durston - 2005 - Trends in Cognitive Sciences 9 (3):104-110.
  • How does the dreaming brain explain the dreaming mind?John S. Antrobus - 2000 - Behavioral and Brain Sciences 23 (6):904-907.
    Recent work on functional brain architecture during dreaming provides invaluable clues for an understanding of dreaming, but identifying active brain regions during dreaming, together with their waking cognitive and cognitive functions, informs a model that accounts for only the grossest characteristics of dreaming. Improved dreaming models require cross discipline apprehension of what it is we want dreaming models to “explain.” [Hobson et al.; Neilsen; Revonsuo; Solms].
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  • Dreaming in the Late Morning: Summation of REM and Diurnal Cortical Activation.John Antrobus, Toshiaki Kondo, Ruth Reinsel & George Fein - 1995 - Consciousness and Cognition 4 (3):275-299.
    Since the discovery that the characteristics of dreaming sleep are far stronger in Stage 1 rapid eye movement sleep than in any other biological state, investigators have attempted to determine the relative responsibility of the tonic versus the phasic properties of REM sleep for the different characteristics of dreaming–features such as the amount of information in the dream report, the brightness and clarity of the visual images, shifts in thematic continuity, and incongruities of image and meaning. The present experiment is (...)
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  • Image and Brain: The Resolution of the Imagery Debate.Stephen M. Kosslyn - 1994 - MIT Press.
    This long-awaited work by prominent Harvard psychologist Stephen Kosslyn integrates a twenty-year research program on the nature of high-level vision and mental ...
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  • Children's Dreaming and the Development of Consciousness.David Foulkes - 1999 - Harvard University Press.
    In this book, which distills a lifetime of study, Foulkes shows that dreaming as we normally understand it--active stories in which the dreamer is an actor-...
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  • Wandering minds: the default network and stimulus-independent thought.M. F. Mason, M. I. Norton, J. D. van Horn, D. M. Wegner, S. T. Grafton & C. N. Macrae - 2007 - Science 315 (5810):393-395.
  • Neural correlates of consciousness in humans.Geraint Rees, G. Kreiman & Christof Koch - 2002 - Nature Reviews Neuroscience 3 (4):261-270.
  • Experience-dependent changes in cerebral activation during human Rem sleep.Pierre Maquet, Steven Laureys, Philippe Peigneux, Sonia Fuchs, Christophe Petiau, Christophe Phillips, Joel Aerts, Guy Del Fiore, Christian Degueldre, Thierry Meulemans, Andre Luxen, Georges Franck, Martial Van Der Linden, Carlyle Smith & Axel Cleeremans - 2000 - Nature Neuroscience 3 (8):831-36.
    Pierre Maquet1,2,6, Steven Laureys1,2, Philippe Peigneux1,2,3, Sonia Fuchs1, Christophe Petiau1, Christophe Phillips1,6, Joel Aerts1, Guy Del Fiore1, Christian Degueldre1, Thierry Meulemans3, André Luxen1, Georges Franck1,2, Martial Van Der Linden3, Carlyle Smith4 and Axel Cleeremans5.
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  • The cognitive neuroscience of sleep: Neuronal systems, consciousness and learning.J. Allan Hobson & Edward F. Pace-Schott - 2002 - Nature Reviews Neuroscience 3:679-93.