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  1. The free-energy principle: a unified brain theory?Karl Friston - 2010 - Nature Reviews Neuroscience 11 (2):127–18.
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  • An integrated theory of language production and comprehension.Martin J. Pickering & Simon Garrod - 2013 - Behavioral and Brain Sciences 36 (4):329-347.
    Currently, production and comprehension are regarded as quite distinct in accounts of language processing. In rejecting this dichotomy, we instead assert that producing and understanding are interwoven, and that this interweaving is what enables people to predict themselves and each other. We start by noting that production and comprehension are forms of action and action perception. We then consider the evidence for interweaving in action, action perception, and joint action, and explain such evidence in terms of prediction. Specifically, we assume (...)
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  • Alpha-band oscillations, attention, and controlled access to stored information.Wolfgang Klimesch - 2012 - Trends in Cognitive Sciences 16 (12):606.
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  • The functional role of cross-frequency coupling.Ryan T. Canolty & Robert T. Knight - 2010 - Trends in Cognitive Sciences 14 (11):506-515.
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  • Contributions of memory circuits to language: the declarative/procedural model.Michael T. Ullman - 2004 - Cognition 92 (1-2):231-270.
    The structure of the brain and the nature of evolution suggest that, despite its uniqueness, language likely depends on brain systems that also subserve other functions. The declarative / procedural model claims that the mental lexicon of memorized word- specific knowledge depends on the largely temporal-lobe substrates of declarative memory, which underlies the storage and use of knowledge of facts and events. The mental grammar, which subserves the rule-governed combination of lexical items into complex representations, depends on a distinct neural (...)
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  • Overlapping memory replay during sleep builds cognitive schemata.Penelope A. Lewis & Simon J. Durrant - 2011 - Trends in Cognitive Sciences 15 (8):343-351.
    Sleep enhances integration across multiple stimuli, abstraction of general rules, insight into hidden solutions and false memory formation. Newly learned information is better assimilated if compatible with an existing cognitive framework or schema. This article proposes a mechanism by which the reactivation of newly learned memories during sleep could actively underpin both schema formation and the addition of new knowledge to existing schemata. Under this model, the overlapping replay of related memories selectively strengthens shared elements. Repeated reactivation of memories in (...)
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  • The extended argument dependency model: A neurocognitive approach to sentence comprehension across languages.Ina Bornkessel & Matthias Schlesewsky - 2006 - Psychological Review 113 (4):787-821.
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  • The role of REM sleep theta activity in emotional memory.Isabel C. Hutchison & Shailendra Rathore - 2015 - Frontiers in Psychology 6.
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  • A Predictive Coding Perspective on Beta Oscillations during Sentence-Level Language Comprehension.Ashley G. Lewis, Jan-Mathijs Schoffelen, Herbert Schriefers & Marcel Bastiaansen - 2016 - Frontiers in Human Neuroscience 10.
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  • The case against memory consolidation in Rem sleep.Robert P. Vertes & Kathleen E. Eastman - 2000 - Behavioral and Brain Sciences 23 (6):867-876.
    We present evidence disputing the hypothesis that memories are processed or consolidated in REM sleep. A review of REM deprivation (REMD) studies in animals shows these reports to be about equally divided in showing that REMD does, or does not, disrupt learning/memory. The studies supporting a relationship between REM sleep and memory have been strongly criticized for the confounding effects of very stressful REM deprivation techniques. The three major classes of antidepressant drugs, monoamine oxidase inhibitors (MAOIs), tricyclic antidepressants (TCAs), and (...)
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  • Links of Consciousness, Perception, and Memory by Means of Delta Oscillations of Brain.Erol Başar & Aysel Düzgün - 2016 - Frontiers in Psychology 7.
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  • The effect of sleep upon retention.E. A. Graves - 1936 - Journal of Experimental Psychology 19 (3):316.
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