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  1. A delay in processing for repeated letters: Evidence from megastudies.Iliyana V. Trifonova & James S. Adelman - 2019 - Cognition 189:227-241.
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  • Troubles with Bayesianism: An introduction to the psychological immune system.Eric Mandelbaum - 2018 - Mind and Language 34 (2):141-157.
    A Bayesian mind is, at its core, a rational mind. Bayesianism is thus well-suited to predict and explain mental processes that best exemplify our ability to be rational. However, evidence from belief acquisition and change appears to show that we do not acquire and update information in a Bayesian way. Instead, the principles of belief acquisition and updating seem grounded in maintaining a psychological immune system rather than in approximating a Bayesian processor.
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  • On the Dissociation of Word/Nonword Repetition Effects in Lexical Decision: An Evidence Accumulation Account.Manuel Perea, Ana Marcet, Marta Vergara-Martínez & Pablo Gomez - 2016 - Frontiers in Psychology 7.
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  • Slower Perception Followed by Faster Lexical Decision in Longer Words: A Diffusion Model Analysis.Yulia Oganian, Eva Froehlich, Ulrike Schlickeiser, Markus J. Hofmann, Hauke R. Heekeren & Arthur M. Jacobs - 2015 - Frontiers in Psychology 6.
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  • Word-Initial Letters Influence Fixation Durations during Fluent Reading.Christopher J. Hand, Patrick J. O’Donnell & Sara C. Sereno - 2012 - Frontiers in Psychology 3.
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  • Rational analysis, intractability, and the prospects of ‘as if’-explanations.Iris van Rooij, Johan Kwisthout, Todd Wareham & Cory Wright - 2018 - Synthese 195 (2):491-510.
    Despite their success in describing and predicting cognitive behavior, the plausibility of so-called ‘rational explanations’ is often contested on the grounds of computational intractability. Several cognitive scientists have argued that such intractability is an orthogonal pseudoproblem, however, since rational explanations account for the ‘why’ of cognition but are agnostic about the ‘how’. Their central premise is that humans do not actually perform the rational calculations posited by their models, but only act as if they do. Whether or not the problem (...)
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  • An amorphous model for morphological processing in visual comprehension based on naive discriminative learning.R. Harald Baayen, Petar Milin, Dusica Filipović Đurđević, Peter Hendrix & Marco Marelli - 2011 - Psychological Review 118 (3):438-481.
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  • Tea With Milk? A Hierarchical Generative Framework of Sequential Event Comprehension.Gina R. Kuperberg - 2021 - Topics in Cognitive Science 13 (1):256-298.
    Inspired by, and in close relation with, the contributions of this special issue, Kuperberg elegantly links event comprehension, production, and learning. She proposes an overarching hierarchical generative framework of processing events enabling us to make sense of the world around us and to interact with it in a competent manner.
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  • Task modulation of brain responses in visual word recognition as studied using EEG/MEG and fMRI.Y. Chen, M. H. Davis, F. Pulvermüller & O. Hauk - 2013 - Frontiers in Human Neuroscience 7.
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  • Adults with poor reading skills: How lexical knowledge interacts with scores on standardized reading comprehension tests.Gail McKoon & Roger Ratcliff - 2016 - Cognition 146 (C):453-469.
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  • The effect of word predictability on reading time is logarithmic.Nathaniel J. Smith & Roger Levy - 2013 - Cognition 128 (3):302-319.
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  • Using eye tracking to investigate failure to notice word transpositions in reading.Kuan-Jung Huang & Adrian Staub - 2021 - Cognition 216 (C):104846.
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  • Shortlist B: A Bayesian model of continuous speech recognition.Dennis Norris & James M. McQueen - 2008 - Psychological Review 115 (2):357-395.
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  • Beyond Single‐Level Accounts: The Role of Cognitive Architectures in Cognitive Scientific Explanation.Richard P. Cooper & David Peebles - 2015 - Topics in Cognitive Science 7 (2):243-258.
    We consider approaches to explanation within the cognitive sciences that begin with Marr's computational level or Marr's implementational level and argue that each is subject to fundamental limitations which impair their ability to provide adequate explanations of cognitive phenomena. For this reason, it is argued, explanation cannot proceed at either level without tight coupling to the algorithmic and representation level. Even at this level, however, we argue that additional constraints relating to the decomposition of the cognitive system into a set (...)
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  • A predictive coding model of the N400.Samer Nour Eddine, Trevor Brothers, Lin Wang, Michael Spratling & Gina R. Kuperberg - 2024 - Cognition 246 (C):105755.
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  • More why, less how: What we need from models of cognition.Dennis Norris & Anne Cutler - 2021 - Cognition 213 (C):104688.
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  • Learning words in space and time: Contrasting models of the suspicious coincidence effect.Gavin W. Jenkins, Larissa K. Samuelson, Will Penny & John P. Spencer - 2021 - Cognition 210 (C):104576.
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  • Chunking and data compression in verbal short-term memory.Dennis Norris & Kristjan Kalm - 2021 - Cognition 208 (C):104534.
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  • Language Processing as Cue Integration: Grounding the Psychology of Language in Perception and Neurophysiology.Andrea E. Martin - 2016 - Frontiers in Psychology 7.
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  • Optimal processing times in reading: a formal model and empirical investigation.Nathaniel J. Smith & Roger Levy - 2008 - In B. C. Love, K. McRae & V. M. Sloutsky (eds.), Proceedings of the 30th Annual Conference of the Cognitive Science Society. Cognitive Science Society.
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  • Imagination as a skill: A Bayesian proposal.Andrea Blomkvist - 2022 - Synthese 200 (2):1-23.
    In recent works, Kind has argued that imagination is a skill, since it possesses the two hallmarks of skill: improvability by practice, and control. I agree with Kind that and are indeed hallmarks of skill, and I also endorse her claim that imagination is a skill in virtue of possessing these two features. However, in this paper, I argue that Kind’s case for imagination’s being a skill is unsatisfactory, since it lacks robust empirical evidence. Here, I will provide evidence for (...)
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  • Holographic String Encoding.Thomas Hannagan, Emmanuel Dupoux & Anne Christophe - 2011 - Cognitive Science 35 (1):79-118.
    In this article, we apply a special case of holographic representations to letter position coding. We translate different well-known schemes into this format, which uses distributed representations and supports constituent structure. We show that in addition to these brain-like characteristics, performances on a standard benchmark of behavioral effects are improved in the holographic format relative to the standard localist one. This notably occurs because of emerging properties in holographic codes, like transposition and edge effects, for which we give formal demonstrations. (...)
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  • Early Brain Sensitivity to Word Frequency and Lexicality During Reading Aloud and Implicit Reading.Luís Faísca, Alexandra Reis & Susana Araújo - 2019 - Frontiers in Psychology 10.
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  • Using Statistical Models of Morphology in the Search for Optimal Units of Representation in the Human Mental Lexicon.Sami Virpioja, Minna Lehtonen, Annika Hultén, Henna Kivikari, Riitta Salmelin & Krista Lagus - 2018 - Cognitive Science 42 (3):939-973.
    Determining optimal units of representing morphologically complex words in the mental lexicon is a central question in psycholinguistics. Here, we utilize advances in computational sciences to study human morphological processing using statistical models of morphology, particularly the unsupervised Morfessor model that works on the principle of optimization. The aim was to see what kind of model structure corresponds best to human word recognition costs for multimorphemic Finnish nouns: a model incorporating units resembling linguistically defined morphemes, a whole-word model, or a (...)
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  • The overlap model: A model of letter position coding.Pablo Gomez, Roger Ratcliff & Manuel Perea - 2008 - Psychological Review 115 (3):577-600.
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  • It’s all in the delivery: Effects of context valence, arousal, and concreteness on visual word processing.Bryor Snefjella & Victor Kuperman - 2016 - Cognition 156 (C):135-146.
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  • A detailed comparison of optimality and simplicity in perceptual decision making.Shan Shen & Wei Ji Ma - 2016 - Psychological Review 123 (4):452-480.
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  • The Adaptive Nature of Eye Movements in Linguistic Tasks: How Payoff and Architecture Shape Speed‐Accuracy Trade‐Offs.Richard L. Lewis, Michael Shvartsman & Satinder Singh - 2013 - Topics in Cognitive Science 5 (3):581-610.
    We explore the idea that eye-movement strategies in reading are precisely adapted to the joint constraints of task structure, task payoff, and processing architecture. We present a model of saccadic control that separates a parametric control policy space from a parametric machine architecture, the latter based on a small set of assumptions derived from research on eye movements in reading (Engbert, Nuthmann, Richter, & Kliegl, 2005; Reichle, Warren, & McConnell, 2009). The eye-control model is embedded in a decision architecture (a (...)
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  • Modeling task effects in human reading with neural network-based attention.Michael Hahn & Frank Keller - 2023 - Cognition 230 (C):105289.
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  • A Rational Model of Word Skipping in Reading: Ideal Integration of Visual and Linguistic Information.Yunyan Duan & Klinton Bicknell - 2020 - Topics in Cognitive Science 12 (1):387-401.
    When we read, we do not fixate on each word! How does that work? By deep theory those sorts of decisions must be the result of complex decisions involving the specific “word,” the linguistic context in which it appears, and visual information. But is reading really all that difficult? After all, simple heuristics models of reading seem to do sort of okay by only considering the additive effects of word and context. Entropy measures do well at predicting word “skipping” and (...)
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  • Words with and without internal structure: What determines the nature of orthographic and morphological processing?Hadas Velan & Ram Frost - 2011 - Cognition 118 (2):141-156.
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  • Computational Rationality: Linking Mechanism and Behavior Through Bounded Utility Maximization.Richard L. Lewis, Andrew Howes & Satinder Singh - 2014 - Topics in Cognitive Science 6 (2):279-311.
    We propose a framework for including information‐processing bounds in rational analyses. It is an application of bounded optimality (Russell & Subramanian, 1995) to the challenges of developing theories of mechanism and behavior. The framework is based on the idea that behaviors are generated by cognitive mechanisms that are adapted to the structure of not only the environment but also the mind and brain itself. We call the framework computational rationality to emphasize the incorporation of computational mechanism into the definition of (...)
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  • Contra assertions, feedback improves word recognition: How feedback and lateral inhibition sharpen signals over noise.James S. Magnuson, Anne Marie Crinnion, Sahil Luthra, Phoebe Gaston & Samantha Grubb - 2024 - Cognition 242 (C):105661.
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  • Editorial: The Variable Mind? How Apparently Inconsistent Effects Might Inform Model Building.Simona Amenta & Davide Crepaldi - 2016 - Frontiers in Psychology 7.
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  • A rational account of perceptual compensation for coarticulation.Morgan Sonderegger & Alan Yu - 2010 - In S. Ohlsson & R. Catrambone (eds.), Proceedings of the 32nd Annual Conference of the Cognitive Science Society. Cognitive Science Society. pp. 375--380.
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  • Neural evidence for Bayesian trial-by-trial adaptation on the N400 during semantic priming.Nathaniel Delaney-Busch, Emily Morgan, Ellen Lau & Gina R. Kuperberg - 2019 - Cognition 187 (C):10-20.
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  • Cognitive theory development as we know it: specificity, explanatory power, and the brain.Davide Crepaldi & Simona Amenta - 2013 - Frontiers in Psychology 4.
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  • Quixotic Reasoning: Counterfactuals, Causation and Literary Storyworlds.Karin Kukkonen - 2014 - Paragraph 37 (1):47-61.
    Bayesian probability calculus has recently emerged as a model for how the mind learns about fictional and cultural environments. This essay considers reading a narrative as a process of learning about the probabilities of the fictional world and explores two novels about Quixotic readers from a Bayesian perspective. The juxtaposition of the fictional and the real, which the standard understanding of the Quixote relies on, is replaced by an outline of the dynamics of the learning process in Quixotes who already (...)
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  • The Role of Semantic Diversity in Word Recognition across Aging and Bilingualism.Brendan T. Johns, Christine L. Sheppard, Michael N. Jones & Vanessa Taler - 2016 - Frontiers in Psychology 7:195083.
    Frequency effects are pervasive in studies of language, with higher frequency words being recognized faster than lower frequency words. However, the exact nature of frequency effects has recently been questioned, with some studies finding that contextual information provides a better fit to lexical decision and naming data than word frequency ( Adelman et al., 2006 ). Recent work has cemented the importance of these results by demonstrating that a measure of the semantic diversity of the contexts that a word occurs (...)
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  • Get rich quick: The signal to respond procedure reveals the time course of semantic richness effects during visual word recognition.Ian S. Hargreaves & Penny M. Pexman - 2014 - Cognition 131 (2):216-242.
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  • Fast Pairs: A visual word recognition paradigm for measuring entrenchment, top-down effects, and subjective phenomenology☆.Catherine L. Caldwell-Harris & Alison L. Morris - 2008 - Consciousness and Cognition 17 (4):1063-1081.
    When word pairs having a familiar order are sequentially flashed on a computer in their non-familiar order, , observers have a strong phenomenology of seeing them in familiar order . Reversal errors remained frequent even when participants obtained perceptual experience of reverse-display items by beginning with a block of longer-duration trials. A forced-choice order-detection procedure reduced but did not eliminate reversal errors, showing that “fast pairs” is a robust perceptual illusion. Even adjective + noun pairs showed reversal errors, and reversal (...)
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  • Probability and surprisal in auditory comprehension of morphologically complex words.Laura Winther Balling & R. Harald Baayen - 2012 - Cognition 125 (1):80-106.
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