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  1. Associative judgment and vector space semantics.Sudeep Bhatia - 2017 - Psychological Review 124 (1):1-20.
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  • Topics in semantic representation.Thomas L. Griffiths, Mark Steyvers & Joshua B. Tenenbaum - 2007 - Psychological Review 114 (2):211-244.
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  • Nested incremental modeling in the development of computational theories: The CDP+ model of reading aloud.Conrad Perry, Johannes C. Ziegler & Marco Zorzi - 2007 - Psychological Review 114 (2):273-315.
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  • Extensional versus intuitive reasoning: The conjunction fallacy in probability judgment.Amos Tversky & Daniel Kahneman - 1983 - Psychological Review 90 (4):293-315.
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  • A spreading-activation theory of semantic processing.Allan M. Collins & Elizabeth F. Loftus - 1975 - Psychological Review 82 (6):407-428.
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  • Mental imagery in associative learning and memory.Allan Paivio - 1969 - Psychological Review 76 (3):241-263.
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  • Toward a method of selecting among computational models of cognition.Mark A. Pitt, In Jae Myung & Shaobo Zhang - 2002 - Psychological Review 109 (3):472-491.
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  • DRC: A dual route cascaded model of visual word recognition and reading aloud.Max Coltheart, Kathleen Rastle, Conrad Perry, Robyn Langdon & Johannes Ziegler - 2001 - Psychological Review 108 (1):204-256.
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  • Familiarity breeds differentiation: A subjective-likelihood approach to the effects of experience in recognition memory.James L. McClelland & Mark Chappell - 1998 - Psychological Review 105 (4):724-760.
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  • Orthographic processing in visual word recognition: A multiple read-out model.Jonathan Grainger & Arthur M. Jacobs - 1996 - Psychological Review 103 (3):518-565.
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  • A solution to Plato's problem: The latent semantic analysis theory of acquisition, induction, and representation of knowledge.Thomas K. Landauer & Susan T. Dumais - 1997 - Psychological Review 104 (2):211-240.
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  • An Integrated Theory of the Mind.John R. Anderson, Daniel Bothell, Michael D. Byrne, Scott Douglass, Christian Lebiere & Yulin Qin - 2004 - Psychological Review 111 (4):1036-1060.
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  • Computing the Meanings of Words in Reading: Cooperative Division of Labor Between Visual and Phonological Processes.Michael W. Harm & Mark S. Seidenberg - 2004 - Psychological Review 111 (3):662-720.
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  • A symbolic-connectionist theory of relational inference and generalization.John E. Hummel & Keith J. Holyoak - 2003 - Psychological Review 110 (2):220-264.
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  • The Basic Works of Aristotle. [REVIEW]E. A. M. - 1941 - Journal of Philosophy 38 (20):553-555.
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  • (1 other version)Finding Structure in Time.Jeffrey L. Elman - 1990 - Cognitive Science 14 (2):179-211.
    Time underlies many interesting human behaviors. Thus, the question of how to represent time in connectionist models is very important. One approach is to represent time implicitly by its effects on processing rather than explicitly (as in a spatial representation). The current report develops a proposal along these lines first described by Jordan (1986) which involves the use of recurrent links in order to provide networks with a dynamic memory. In this approach, hidden unit patterns are fed back to themselves: (...)
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  • The e-z reader model of eye-movement control in reading: Comparisons to other models.Erik D. Reichle, Keith Rayner & Alexander Pollatsek - 2003 - Behavioral and Brain Sciences 26 (4):445-476.
    The E-Z Reader model (Reichle et al. 1998; 1999) provides a theoretical framework for understanding how word identification, visual processing, attention, and oculomotor control jointly determine when and where the eyes move during reading. In this article, we first review what is known about eye movements during reading. Then we provide an updated version of the model (E-Z Reader 7) and describe how it accounts for basic findings about eye movement control in reading. We then review several alternative models of (...)
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  • Perceptions of perceptual symbols.Lawrence Barsalou - 1999 - Behavioral and Brain Sciences 22 (4):637-660.
    Various defenses of amodal symbol systems are addressed, including amodal symbols in sensory-motor areas, the causal theory of concepts, supramodal concepts, latent semantic analysis, and abstracted amodal symbols. Various aspects of perceptual symbol systems are clarified and developed, including perception, features, simulators, category structure, frames, analogy, introspection, situated action, and development. Particular attention is given to abstract concepts, language, and computational mechanisms.
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  • (1 other version)Studies in the logic of explanation.Carl Gustav Hempel & Paul Oppenheim - 1948 - Philosophy of Science 15 (2):135-175.
    To explain the phenomena in the world of our experience, to answer the question “why?” rather than only the question “what?”, is one of the foremost objectives of all rational inquiry; and especially, scientific research in its various branches strives to go beyond a mere description of its subject matter by providing an explanation of the phenomena it investigates. While there is rather general agreement about this chief objective of science, there exists considerable difference of opinion as to the function (...)
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  • The affective meanings of automatic social behaviors: Three mechanisms that explain priming.Tobias Schröder & Paul Thagard - 2013 - Psychological Review 120 (1):255-280.
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  • Integrating experiential and distributional data to learn semantic representations.Mark Andrews, Gabriella Vigliocco & David Vinson - 2009 - Psychological Review 116 (3):463-498.
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  • An interactive activation model of context effects in letter perception: I. An account of basic findings.James L. McClelland & David E. Rumelhart - 1981 - Psychological Review 88 (5):375-407.
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  • SWIFT: A Dynamical Model of Saccade Generation During Reading.Ralf Engbert, Antje Nuthmann, Eike M. Richter & Reinhold Kliegl - 2005 - Psychological Review 112 (4):777-813.
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  • 10 years of BAWLing into affective and aesthetic processes in reading: what are the echoes?Arthur M. Jacobs, Melissa L.-H. Võ, Benny B. Briesemeister, Markus Conrad, Markus J. Hofmann, Lars Kuchinke, Jana Lüdtke & Mario Braun - 2015 - Frontiers in Psychology 6:127321.
    Reading is not only “cold” information processing, but involves affective and aesthetic processes that go far beyond what current models of word recognition, sentence processing, or text comprehension can explain. To investigate such “hot” reading processes, standardized instruments that quantify both psycholinguistic and emotional variables at the sublexical, lexical, inter-, and supralexical levels (e.g., phonological iconicity, word valence, arousal-span, or passage suspense) are necessary. One such instrument, the Berlin Affective Word List (BAWL) has been used in over 50 published studies (...)
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