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Models of consciousness and memory

In Michael S. Gazzaniga (ed.), The Cognitive Neurosciences. MIT Press (1995)

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  1. "Consciousness". Selected Bibliography 1970 - 2004.Thomas Metzinger - unknown
    This is a bibliography of books and articles on consciousness in philosophy, cognitive science, and neuroscience over the last 30 years. There are three main sections, devoted to monographs, edited collections of papers, and articles. The first two of these sections are each divided into three subsections containing books in each of the main areas of research. The third section is divided into 12 subsections, with 10 subject headings for philosophical articles along with two additional subsections for articles in cognitive (...)
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  • On the relationship between cognitive models and spiritual maps. Evidence from Hebrew language mysticism.Brian L. Lancaster - 2000 - Journal of Consciousness Studies 7 (11-12):11-12.
    It is suggested that the impetus to generate models is probably the most fundamental point of connection between mysticism and psychology. In their concern with the relation between ‘unseen’ realms and the ‘seen’, mystical maps parallel cognitive models of the relation between ‘unconscious’ and ‘conscious’ processes. The map or model constitutes an explanation employing terms current within the respective canon. The case of language mysticism is examined to illustrate the premise that cognitive models may benefit from an understanding of the (...)
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  • Temporal binding, binocular rivalry, and consciousness.Andreas K. Engel, Pascal Fries, Peter König, Michael Brecht & Wolf Singer - 1999 - Consciousness and Cognition 8 (2):128-51.
    Cognitive functions like perception, memory, language, or consciousness are based on highly parallel and distributed information processing by the brain. One of the major unresolved questions is how information can be integrated and how coherent representational states can be established in the distributed neuronal systems subserving these functions. It has been suggested that this so-called ''binding problem'' may be solved in the temporal domain. The hypothesis is that synchronization of neuronal discharges can serve for the integration of distributed neurons into (...)
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  • Unconscious cognition isn’t that smart: Modulation of masked repetition priming effect in the word naming task.Sachiko Kinoshita, Kenneth I. Forster & Michael C. Mozer - 2008 - Cognition 107 (2):623-649.
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  • Intrusive images in psychological disorders: Characteristics, neural mechanisms, and treatment implications.Chris R. Brewin, James D. Gregory, Michelle Lipton & Neil Burgess - 2010 - Psychological Review 117 (1):210-232.
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  • The neural-cognitive basis of the Jamesian stream of thought.Russell Epstein - 2000 - Consciousness and Cognition 9 (4):550-575.
    William James described the stream of thought as having two components: (1) a nucleus of highly conscious, often perceptual material; and (2) a fringe of dimly felt contextual information that controls the entry of information into the nucleus and guides the progression of internally directed thought. Here I examine the neural and cognitive correlates of this phenomenology. A survey of the cognitive neuroscience literature suggests that the nucleus corresponds to a dynamic global buffer formed by interactions between different regions of (...)
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  • Representation and knowledge are not the same thing.Leslie Smith - 1999 - Behavioral and Brain Sciences 22 (5):784-785.
    Two standard epistemological accounts are conflated in Dienes & Perner's account of knowledge, and this conflation requires the rejection of their four conditions of knowledge. Because their four metarepresentations applied to the explicit-implicit distinction are paired with these conditions, it follows by modus tollens that if the latter are inadequate, then so are the former. Quite simply, their account misses the link between true reasoning and knowledge.
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  • Working memory and everyday conditional reasoning: Retrieval and inhibition of stored counterexamples.Wim De Neys, Walter Schaeken & Géry D'Ydewalle - 1995 - Thinking and Reasoning 11 (4):349-381.
    Two experiments examined the contribution of working memory (WM) to the retrieval and inhibition of background knowledge about counterexamples (alternatives and disablers, Cummins, ) during conditional reasoning. Experiment 1 presented a conditional reasoning task with everyday, causal conditionals to a group of people with high and low WM spans. High spans rejected the logically invalid AC and DA inferences to a greater extent than low spans, whereas low spans accepted the logically valid MP and MT inferences less frequently than high (...)
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