- (1 other version)Implicit learning and statistical learning: One phenomenon, two approaches.Pierre Perruchet & Sebastien Pacton - 2006 - Trends in Cognitive Sciences 10 (5):233-238.details
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MDLChunker: A MDL-Based Cognitive Model of Inductive Learning.Vivien Robinet, Benoît Lemaire & Mirta B. Gordon - 2011 - Cognitive Science 35 (7):1352-1389.details
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The self-organizing consciousness.Pierre Perruchet & Annie Vinter - 2002 - Behavioral and Brain Sciences 25 (3):297-388.details
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(2 other versions)Vision: Variations on Some Berkeleian Themes.Robert Schwartz & David Marr - 1985 - Philosophical Review 94 (3):411.details
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Modeling human performance in statistical word segmentation.Michael C. Frank, Sharon Goldwater, Thomas L. Griffiths & Joshua B. Tenenbaum - 2010 - Cognition 117 (2):107-125.details
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Zipfian frequency distributions facilitate word segmentation in context.Chigusa Kurumada, Stephan C. Meylan & Michael C. Frank - 2013 - Cognition 127 (3):439-453.details
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Whatever next? Predictive brains, situated agents, and the future of cognitive science.Andy Clark - 2013 - Behavioral and Brain Sciences 36 (3):181-204.details
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When learning goes beyond statistics: Infants represent visual sequences in terms of chunks.Lauren K. Slone & Scott P. Johnson - 2018 - Cognition 178 (C):92-102.details
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Infants use temporal regularities to chunk objects in memory.Melissa M. Kibbe & Lisa Feigenson - 2016 - Cognition 146 (C):251-263.details
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The metamorphosis of the statistical segmentation output: Lexicalization during artificial language learning.Tânia Fernandes, Régine Kolinsky & Paulo Ventura - 2009 - Cognition 112 (3):349-366.details
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(1 other version)More Than Words: The Role of Multiword Sequences in Language Learning and Use.Morten H. Christiansen & Inbal Arnon - 2017 - Topics in Cognitive Science 9 (3):542-551.details
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A Bayesian framework for word segmentation: Exploring the effects of context.Sharon Goldwater, Thomas L. Griffiths & Mark Johnson - 2009 - Cognition 112 (1):21-54.details
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Lexical and Sublexical Units in Speech Perception.Ibrahima Giroux & Arnaud Rey - 2009 - Cognitive Science 33 (2):260-272.details
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The time course and characteristics of procedural learning in schizophrenia patients and healthy individuals.Yael Adini, Yoram S. Bonneh, Seva Komm, Lisa Deutsch & David Israeli - 2015 - Frontiers in Human Neuroscience 9.details
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Incremental implicit learning of bundles of statistical patterns.Ting Qian, T. Florian Jaeger & Richard N. Aslin - 2016 - Cognition 157 (C):156-173.details
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The learnability of abstract syntactic principles.Amy Perfors, Joshua B. Tenenbaum & Terry Regier - 2011 - Cognition 118 (3):306-338.details
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Frequent frames as a cue for grammatical categories in child directed speech.Toben H. Mintz - 2003 - Cognition 90 (1):91-117.details
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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.details
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Distributional regularity and phonotactic constraints are useful for segmentation.Michael R. Brent & Timothy A. Cartwright - 1996 - Cognition 61 (1-2):93-125.details
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Exploiting Multiple Sources of Information in Learning an Artificial Language: Human Data and Modeling.Pierre Perruchet & Barbara Tillmann - 2010 - Cognitive Science 34 (2):255-285.details
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Learning in reverse: Eight-month-old infants track backward transitional probabilities.Bruna Pelucchi, Jessica F. Hay & Jenny R. Saffran - 2009 - Cognition 113 (2):244-247.details
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(1 other version)Fading out of the rule vs. no-rule.Pierre Perruchet & Sebastien Pacton - 2006 - Trends in Cognitive Sciences 10 (5):233-238.details
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TRACX: A recognition-based connectionist framework for sequence segmentation and chunk extraction.Robert M. French, Caspar Addyman & Denis Mareschal - 2011 - Psychological Review 118 (4):614-636.details
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