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  1. Toward an interpretation of dynamic neural activity in terms of chaotic dynamical systems.Ichiro Tsuda - 2001 - Behavioral and Brain Sciences 24 (5):793-810.
    Using the concepts of chaotic dynamical systems, we present an interpretation of dynamic neural activity found in cortical and subcortical areas. The discovery of chaotic itinerancy in high-dimensional dynamical systems with and without a noise term has motivated a new interpretation of this dynamic neural activity, cast in terms of the high-dimensional transitory dynamics among “exotic” attractors. This interpretation is quite different from the conventional one, cast in terms of simple behavior on low-dimensional attractors. Skarda and Freeman (1987) presented evidence (...)
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  • Complexity and coherency: integrating information in the brain.Giulio Tononi, Gerald M. Edelman & Olaf Sporns - 1998 - Trends in Cognitive Sciences 2 (12):474-484.
    The brains of higher mammals are extraordinary integrative devices. Signals from large numbers of functionally specialized groups of neurons distributed over many brain regions are integrated to generate a coherent, multimodal scene. Signals from the environment are integrated with ongoing, patterned neural activity that provides them with a meaningful context. We review recent advances in neurophysiology and neuroimaging that are beginning to reveal the neural mechanisms of integration. In addition, we discuss concepts and measures derived from information theory that lend (...)
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  • Radical embodiment: Neural dynamics and consciousness.Evan Thompson & Francisco J. Varela - 2001 - Trends in Cognitive Sciences 5 (10):418-425.
  • Consciousness, dreams and virtual realities.Antti Revonsuo - 1995 - Philosophical Psychology 8 (1):35-58.
    In this paper I develop the thesis that dreams are essential to an understanding of waking consciousness. In the first part I argue in opposition to the philosophers Malcolm and Dennett that empirical evidence now shows dreams to be real conscious experiences. In the second part, three questions concerning consciousness research are addressed. (1) How do we isolate the system to be explained (consciousness) from other systems? (2) How do we describe the system thus isolated? (3) How do we reveal (...)
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  • In search of common foundations for cortical computation.William A. Phillips & Wolf Singer - 1997 - Behavioral and Brain Sciences 20 (4):657-683.
    It is worthwhile to search for forms of coding, processing, and learning common to various cortical regions and cognitive functions. Local cortical processors may coordinate their activity by maximizing the transmission of information coherently related to the context in which it occurs, thus forming synchronized population codes. This coordination involves contextual field (CF) connections that link processors within and between cortical regions. The effects of CF connections are distinguished from those mediating receptive field (RF) input; it is shown how CFs (...)
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  • Toward a quantitative description of large-scale neocortical dynamic function and EEG.Paul L. Nunez - 2000 - Behavioral and Brain Sciences 23 (3):371-398.
    A general conceptual framework for large-scale neocortical dynamics based on data from many laboratories is applied to a variety of experimental designs, spatial scales, and brain states. Partly distinct, but interacting local processes (e.g., neural networks) arise from functional segregation. Global processes arise from functional integration and can facilitate (top down) synchronous activity in remote cell groups that function simultaneously at several different spatial scales. Simultaneous local processes may help drive (bottom up) macroscopic global dynamics observed with electroencephalography (EEG) or (...)
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  • Review of The Computational Brain by Patricia S. Churchland and Terrence J. Sejnowski. [REVIEW]Brian P. McLaughlin - 1996 - Philosophy of Science 63 (1):137-139.
  • Gestalt isomorphism and the primacy of subjective conscious experience: A gestalt bubble model.Steven Lehar - 2003 - Behavioral and Brain Sciences 26 (4):357-408.
    A serious crisis is identified in theories of neurocomputation, marked by a persistent disparity between the phenomenological or experiential account of visual perception and the neurophysiological level of description of the visual system. In particular, conventional concepts of neural processing offer no explanation for the holistic global aspects of perception identified by Gestalt theory. The problem is paradigmatic and can be traced to contemporary concepts of the functional role of the neural cell, known as the Neuron Doctrine. In the absence (...)
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  • A field theory of consciousness.E. Roy John - 2001 - Consciousness and Cognition 10 (2):184-213.
    This article summarizes a variety of current as well as previous research in support of a new theory of consciousness. Evidence has been steadily accumulating that information about a stimulus complex is distributed to many neuronal populations dispersed throughout the brain and is represented by the departure from randomness of the temporal pattern of neural discharges within these large ensembles. Zero phase lag synchronization occurs between discharges of neurons in different brain regions and is enhanced by presentation of stimuli. This (...)
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  • On the possibility of universal neural coding of subjective experience.Santosh A. Helekar - 1999 - Consciousness and Cognition 8 (4):423-446.
    Various neurophysiological experiments have revealed remarkable correlations between cortical neuronal activity and subjective experiences. However, the mere presence of neuronal electrical activity does not appear to be sufficient to produce these experiences. It has been suggested that the explanation for the neural basis of consciousness might lie in understanding the reason that some types of neuronal activity possess subjective correlates and others do not. Here I propose and develop the idea that this difference may be caused by the existence of (...)
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  • Operational architectonics of the human brain biopotential field: Toward solving the mind-brain problem.Andrew A. Fingelkurts & Alexander A. Fingelkurts - 2001 - Brain and Mind 2 (3):261-296.
    The understanding of the interrelationship between brain and mind remains far from clear. It is well established that the brain's capacity to integrate information from numerous sources forms the basis for cognitive abilities. However, the core unresolved question is how information about the "objective" physical entities of the external world can be integrated, and how unifiedand coherent mental states (or Gestalts) can be established in the internal entities of distributed neuronal systems. The present paper offers a unified methodological and conceptual (...)
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  • Attractive and in-discrete: A critique of two putative virtues of the dynamicist theory of mind.Chris Eliasmith - 2001 - Minds and Machines 11 (3):417-426.
    I argue that dynamicism does not provide a convincing alternative to currently available cognitive theories. First, I show that the attractor dynamics of dynamicist models are inadequate for accounting for high-level cognition. Second, I argue that dynamicist arguments for the rejection of computation and representation are unsound in light of recent empirical findings. This new evidence provides a basis for questioning the importance of continuity to cognitive function, challenging a central commitment of dynamicism. Coupled with a defense of current connectionist (...)
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  • Cortical coordination dynamics and cognition.Steven L. Bressler & J. A. Scott Kelso - 2001 - Trends in Cognitive Sciences 5 (1):26-36.
  • A dynamical systems perspective on agent-environment interaction.Randall D. Beer - 1995 - Artificial Intelligence 72 (1-2):173-215.
  • Précis of neural organization: Structure, function, and dynamics.Michael A. Arbib & Péter Érdi - 2000 - Behavioral and Brain Sciences 23 (4):513-533.
    Neural organization: Structure, function, and dynamics shows how theory and experiment can supplement each other in an integrated, evolving account of the brain's structure, function, and dynamics. (1) Structure: Studies of brain function and dynamics build on and contribute to an understanding of many brain regions, the neural circuits that constitute them, and their spatial relations. We emphasize Szentágothai's modular architectonics principle, but also stress the importance of the microcomplexes of cerebellar circuitry and the lamellae of hippocampus. (2) Function: Control (...)
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  • Psychology From an Empirical Standpoint.Franz Brentano - 1874 - Routledge.
  • Facing up to the problem of consciousness.David Chalmers - 1995 - Journal of Consciousness Studies 2 (3):200-19.
    To make progress on the problem of consciousness, we have to confront it directly. In this paper, I first isolate the truly hard part of the problem, separating it from more tractable parts and giving an account of why it is so difficult to explain. I critique some recent work that uses reductive methods to address consciousness, and argue that such methods inevitably fail to come to grips with the hardest part of the problem. Once this failure is recognized, the (...)
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  • What Might Cognition Be, If Not Computation?Tim Van Gelder - 1995 - Journal of Philosophy 92 (7):345 - 381.
  • The Brain from 25,000 Feet: High Level Explorations of Brain Complexity, Perception, Induction and Vagueness.Mark A. Changizi - 2004 - Synthese 141 (2):277-285.
  • The role of temporal cortical areas in perceptual organization.D. L. Sheinberg & Nikos K. Logothetis - 1997 - Proceedings of the National Academy of Sciences Usa 94:3408-3413.
  • Thagard’s coherentism. [REVIEW]Majid Amini - 2000 - Philosophical Books 43 (2):136-140.
  • Towards a cognitive robotics.Andy Clark & Rick Grush - 1999 - Adaptive Behavior 7 (1):5-16.
    There is a definite challenge in the air regarding the pivotal notion of internal representation. This challenge is explicit in, e.g., van Gelder, 1995; Beer, 1995; Thelen & Smith, 1994; Wheeler, 1994; and elsewhere. We think it is a challenge that can be met and that (importantly) can be met by arguing from within a general framework that accepts many of the basic premises of the work (in new robotics and in dynamical systems theory) that motivates such scepticism in the (...)
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  • Facing up to the problem of consciousness.D. J. Chalmers - 1996 - Toward a Science of Consciousness:5-28.
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  • Prospects for a scientific research program on consciousness.Antti Revonsuo - 2000 - In Thomas Metzinger (ed.), Neural Correlates of Consciousness. MIT Press.
  • The Principles of Psychology.William James - 1890 - Les Etudes Philosophiques 11 (3):506-507.
     
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  • Conceptual coordination: Abstraction without description.William J. Clancey - 1996 - International Journal of Educational Research 27 (1):5-19.
    Conceptual coordination is a learning process that relates multiple perceptual - motor modalities in time. Lower-order categorizations are thus related by sequence and simultaneity, as shown by neurological dysfunctions. Heretofore, many theories of abstraction have only considered verbal behavior and assumed that the neural mechanism itself consists of manipulation of descriptions. This broader view better relates physical and intellectual skills.
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  • Brain electric microstates and momentary conscious mind states as building blocks of spontaneous thinking: I.Daniel Lehmann, W. K. Strik, B. Henggeler & T. Koenig - 1998 - Visual Imagery and Abstract Thoughts. International Journal of Psychophysiology 29:1-11.
  • 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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  • Binding in models of perception and brain function.Christoph von der Malsburg - 1995 - Current Opinion in Neurobiology 5:520-28.
    The development of the issue of binding as fundamental to neural dynamics has made possible recent advances in the modeling of difficult problems of perception and brain function. Among them is perceptual segmentation, invariant pattern recognition and one-shot learning. Also, longer-term conceptual developments that have led to this success are reviewed.
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  • Discovering Complexity.William Bechtel, Robert C. Richardson & Scott A. Kleiner - 1996 - History and Philosophy of the Life Sciences 18 (3):363-382.
  • Temporal coding in the visual cortex: New vistas on integration in the nervous system.Andreas K. Engel, P. Kreiter Konig & Schillen A. K. - 1992 - Trends in Neurosciences 15:218-26.
  • The bounded brain: Toward quantitative neuroanatomy.Christopher Cherniak - 1990 - Journal of Cognitive Neuroscience 2 (1).
  • Can functional brain imaging discover consciousness in the brain?Antti Revonsuo - 2001 - Journal of Consciousness Studies 8 (3):3-23.
    If we assume that consciousness is a natural biological phenomenon in the brain, should we expect the current brain sensing and imaging methods to somehow ‘discover’ consciousness? The answer depends on the following points: What kind of level of biological organization do we assume consciousness to be? What would count as the discovery of this level? What are the levels of organization from which the currently available research instruments pick signals and acquire data? Single-cell recordings, PET, fMRI, EEG and MEG (...)
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  • Oscillatory responses in cat visual cortex exhibit inter-columnar synchronization which reflects global stimulus properties.Charles M. Gray, P. Kreiter Konig, Andreas K. Engel & Wolf Singer - 1992 - Nature 338:334-7.
  • The neurophysics of consciousness.E. Roy John - 2002 - Brain Research Reviews 39 (1):1-28.