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  1. How brains make chaos in order to make sense of the world.Christine A. Skarda & Walter J. Freeman - 1987 - Behavioral and Brain Sciences 10 (2):161-173.
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  • 'Typical dreams' reflections of arousal.Rainer Schonhammer - 2005 - Journal of Consciousness Studies 12 (4-5):18-37.
    Dreams of chase or pursuit, falling, sex, flying, nudity, failing an examination, one's own and other's death, fire, teeth falling out and some other themes experienced, even if only rarely, by many people all over the world have been labelled 'typical dreams'. This essay argues that typical dreaming, rather a syndrome of themes than monothematic, reflects an extraordinary state of mind and brain. Odd and particularly memorable perceptions, as well as emerging awareness of sleep and dreaming -- i.e. parallels to (...)
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  • (1 other version)Consciousness, Intentionality, and Causality.Walter J. Freeman - 1999 - Journal of Consciousness Studies 6 (11-12):11-12.
    According to behavioural theories deriving from pragmatism, gestalt psychology, existentialism, and ecopsychology, knowledge about the world is gained by intentional action followed by learning. In terms of the neurodynamics described here, if the intending of an act comes to awareness through reafference, it is perceived as a cause. If the consequences of an act come to awareness through proprioception and exteroception, they are perceived as an effect. A sequence of such states of awareness comprises consciousness, which can grow in complexity (...)
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  • Neural correlates of consciousness in humans.Geraint Rees, G. Kreiman & Christof Koch - 2002 - Nature Reviews Neuroscience 3 (4):261-270.
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  • Consciousness and the binding problem.Wolf Singer - 2001 - Annals of the New York Academy of Sciences 929:123-46.
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  • Consciousness as a phenomenon in the operational architectonics of brain organization: Criticality and self-organization considerations.Andrew A. Fingelkurts, Alexander A. Fingelkurts & Carlos F. H. Neves - 2013 - Chaos, Solitons and Fractals 55:13-31.
    In this paper we aim to show that phenomenal consciousness is realized by a particular level of brain operational organization and that understanding human consciousness requires a description of the laws of the immediately underlying neural collective phenomena, the nested hierarchy of electromagnetic fields of brain activity – operational architectonics. We argue that the subjective mental reality and the objective neurobiological reality, although seemingly worlds apart, are intimately connected along a unified metastable continuum and are both guided by the universal (...)
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  • Mind as a nested operational architectonics of the brain.Andrew A. Fingelkurts & Alexander A. Fingelkurts - 2012 - Physics of Life Reviews 9 (1):49-50.
    The target paper of Dr. Feinberg is a testimony to an admirable scholarship and deep thoughtfulness. This paper develops a general theoretical framework of nested hierarchy in the brain that allows production of mind with consciousness. The difference between non-nested and nested hierarchies is the following. In a non-nested hierarchy the entities at higher levels of the hierarchy are physically independent from the entities at lower levels and there is strong constraint of higher upon lower levels. In a nested hierarchy, (...)
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  • Dreaming and the self-organizing brain.Allan Combs, David Kahn & Stanley Krippner - 2000 - Journal of Consciousness Studies 7 (7):4-11.
    We argue that the rapid eye movement dream experiences owe their structure and meaning to inherent self-organizing properties of the brain itself. Thus, we offer a common meeting ground for brain based studies of dreaming and traditional psychological dream theory. Our view is that the dreaming brain is a self-organizing system highly sensitive to internally generated influences. Several lines of evidence support a process view of the brain as a system near the edge of chaos, one that is highly sensitive (...)
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  • Binding in dreams: The bizarreness of dream images and the unity of consciousness.Antti Revonsuo & K. Tarkko - 2002 - Journal of Consciousness Studies 9 (7):3-24.
    Binding can be described at three different levels: In neuroscience it refers to the integration of single-cell activities to form functional neural assemblies, especially in response to global stimulus properties; in cognitive science it refers to the integration of distributed modular input processing to form unified representations for memory and action, and in consciousness studies it refers to the unity of phenomenal consciousness . To describe and explain the unity of consciousness, detailed phenomenological descriptions of binding at the phenomenal level (...)
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  • (1 other version)Science and method.Henri Poincaré - 1914 - New York]: Dover Publications. Edited by Francis Maitland.
    " Vivid . . . immense clarity . . . the product of a brilliant and extremely forceful intellect." — Journal of the Royal Naval Scientific Service "Still a sheer joy to read." — Mathematical Gazette "Should be read by any student, teacher or researcher in mathematics." — Mathematics Teacher The originator of algebraic topology and of the theory of analytic functions of several complex variables, Henri Poincare (1854–1912) excelled at explaining the complexities of scientific and mathematical ideas to lay (...)
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  • (1 other version)Science and method.Henri Poincaré - 1914 - Mineola, N.Y.: Dover Publications. Edited by Francis Maitland.
    " Vivid . . . immense clarity . . . the product of a brilliant and extremely forceful intellect." — Journal of the Royal Naval Scientific Service "Still a sheer joy to read." — Mathematical Gazette "Should be read by any student, teacher or researcher in mathematics." — Mathematics Teacher The originator of algebraic topology and of the theory of analytic functions of several complex variables, Henri Poincare (1854–1912) excelled at explaining the complexities of scientific and mathematical ideas to lay (...)
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  • Gedanken über das Trauma.Sándor Ferenczi - 2020 - Psyche 74 (5):364-378.
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  • Natural World Physical, Brain Operational, and Mind Phenomenal Space-Time.Andrew A. Fingelkurts, Alexander A. Fingelkurts & Carlos F. H. Neves - 2010 - Physics of Life Reviews 7 (2):195-249.
    Concepts of space and time are widely developed in physics. However, there is a considerable lack of biologically plausible theoretical frameworks that can demonstrate how space and time dimensions are implemented in the activity of the most complex life-system – the brain with a mind. Brain activity is organized both temporally and spatially, thus representing space-time in the brain. Critical analysis of recent research on the space-time organization of the brain’s activity pointed to the existence of so-called operational space-time in (...)
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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.
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  • Consciousness in waking and dreaming: The roles of neuronal oscillation and neuromodulation in determining similarities and differences.David Kahn, Edward F. Pace-Schott & J. Allan Hobson - 1997 - Neuroscience 78:13-38.
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  • The radiance of being: complexity, chaos, and the evolution of consciousness.Allan Combs - 1996 - St. Paul, Minn.: Paragon House.
    In this ground-breaking work, Allan Combs presents a wide-ranging survey of the nature and origins of consciousness research, viewing consciousness as a dynamic and self-organizing process with evolutionary potential. Combs reviews the work of evolutionary theorists such as Pierre Teilhard de Chardin, Ken Wilber, Jean Gebser, and Sri Aurobindo. What emerges is a fascinating study of consciousness that discloses itself as a rich and ongoing act of self-creation, poised at the edge of chaos between past and future.
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  • Dream Splicing: A New Technique for Assessing Thematic Coherence in Subjective Reports of Mental Activity.Robert Stickgold, Cynthia D. Rittenhouse & J. Allan Hobson - 1994 - Consciousness and Cognition 3 (1):114-128.
    A novel "dream splicing" technique allows the objective evaluation of thematic coherence in dreams. In this study, dream reports were cut into segments and segments randomly recombined to form spliced reports. Judges then attempted to distinguish spliced reports from intact ones. Five judges correctly scored 22 spliced and intact reports 82% of the time ; 13 of the 22 reports were correctly scored by all five judges . We conclude that most dream reports contain sufficient coherence to allow judges to (...)
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  • Reflections of the interaction of the mind and the brain.Benjamin Libet - 2006 - Progress in Neurobiology 78:322--326.
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