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  1. The role of exposure to isolated words in early vocabulary development.Michael R. Brent & Jeffrey Mark Siskind - 2001 - Cognition 81 (2):B33-B44.
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  • Segmentation of the speech stream in a non-human primate: statistical learning in cotton-top tamarins.Marc D. Hauser, Elissa L. Newport & Richard N. Aslin - 2001 - Cognition 78 (3):B53-B64.
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  • Statistical learning of tone sequences by human infants and adults.Jenny R. Saffran, Elizabeth K. Johnson, Richard N. Aslin & Elissa L. Newport - 1999 - Cognition 70 (1):27-52.
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  • Learn Locally, Act Globally: Learning Language from Variation Set Cues.Luca Onnis, Heidi R. Waterfall & Shimon Edelman - 2008 - Cognition 109 (3):423.
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  • Do Infants Learn Words From Statistics? Evidence From English‐Learning Infants Hearing Italian.Amber Shoaib, Tianlin Wang, Jessica F. Hay & Jill Lany - 2018 - Cognitive Science 42 (8):3083-3099.
    Infants are sensitive to statistical regularities (i.e., transitional probabilities, or TPs) relevant to segmenting words in fluent speech. However, there is debate about whether tracking TPs results in representations of possible words. Infants show preferential learning of sequences with high TPs (HTPs) as object labels relative to those with low TPs (LTPs). Such findings could mean that only the HTP sequences have a word‐like status, and they are more readily mapped to a referent for that reason. But these findings could (...)
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  • Representation of letter position in spelling: Evidence from acquired dysgraphia.Simon Fischer-Baum, Michael McCloskey & Brenda Rapp - 2010 - Cognition 115 (3):466-490.
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  • Bootstrapping the lexicon: a computational model of infant speech segmentation.Eleanor Olds Batchelder - 2002 - Cognition 83 (2):167-206.
    Prelinguistic infants must find a way to isolate meaningful chunks from the continuous streams of speech that they hear. BootLex, a new model which uses distributional cues to build a lexicon, demonstrates how much can be accomplished using this single source of information. This conceptually simple probabilistic algorithm achieves significant segmentation results on various kinds of language corpora - English, Japanese, and Spanish; child- and adult-directed speech, and written texts; and several variations in coding structure - and reveals which statistical (...)
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  • Interference and memory capacity limitations.Ansgar D. Endress & Szilárd Szabó - 2017 - Psychological Review 124 (5):551-571.
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  • Three ideal observer models for rule learning in simple languages.Michael C. Frank & Joshua B. Tenenbaum - 2011 - Cognition 120 (3):360-371.
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  • Infants use rational decision criteria for choosing among models of their input.LouAnn Gerken - 2010 - Cognition 115 (2):362.
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  • The role of prosodic boundaries in the resolution of lexical embedding in speech comprehension.Anne Pier Salverda, Delphine Dahan & James M. McQueen - 2003 - Cognition 90 (1):51-89.
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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.
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  • The statistical signature of morphosyntax: A study of Hungarian and Italian infant-directed speech.Judit Gervain & Ramón Guevara Erra - 2012 - Cognition 125 (2):263-287.
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  • Bayesian learning and the psychology of rule induction.Ansgar D. Endress - 2013 - Cognition 127 (2):159-176.
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  • Memory constraints on infants’ cross-situational statistical learning.Haley A. Vlach & Scott P. Johnson - 2013 - Cognition 127 (3):375-382.
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  • The development of a word-learning strategy.Justin Halberda - 2003 - Cognition 87 (1):B23-B34.
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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.
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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.
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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.
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  • Serial position encoding of signs.Michele Miozzo, Anna Petrova, Simon Fischer-Baum & Francesca Peressotti - 2016 - Cognition 154 (C):69-80.
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