References
- 1Babineau, M., Havron, N., Dautriche, I., de Carvalho, A., & Christophe, A. (2022). Learning to predict and predicting to learn: Before and beyond the syntactic bootstrapper. Language acquisition, 1–24. DOI: 10.1080/10489223.2022.2078211
- 2Bates, D., Maechler, M., Bolker, B., & Walker, S. (2015). Fitting linear mixed-effects models using lme4. Journal of Statistical Software, 67(1), 1–48. DOI: 10.18637/jss.v067.i01
- 3Borovsky, A., Kutas, M., & Elman, J. (2010). Learning to use words: Event-related potentials index single-shot contextual word learning. Cognition, 116(2), 289–296. DOI: 10.1016/j.cognition.2010.05.004
- 4Brod, G., Breitwieser, J., Hasselhorn, M., & Bunge, S. A. (2019). Being proven wrong elicits learning in children–but only in those with higher executive function skills. Developmental science,
e12916 . DOI: 10.1111/desc.12916 - 5Carneiro, P., Lapa, A., & Finn, B. (2018). The effect of unsuccessful retrieval on children’s subsequent learning. Journal of Experimental Child Psychology, 166, 400–420. DOI: 10.1016/j.jecp.2017.09.010
- 6Chang, F., Dell, G. S., & Bock, K. (2006). Becoming syntactic. Psychological Review, 113(2), 234–272. DOI: 10.1037/0033-295X.113.2.234
- 7Cooper, E., Greve, A., & Henson, R. N. (2019). Little evidence for Fast Mapping (FM) in adults: A review and discussion. Cognitive neuroscience, 10(4), 196–209. DOI: 10.1080/17588928.2018.1542376
- 8Crepaldi, D., Amenta, S., Mandera, P., Keuleers, E., & Brysbaert, M. (2015). SUBTLEX-IT. Subtitle-based word frequency estimates for Italian Annual Meeting of the Italian Association for Experimental Psychology, Rovereto.
https://lrlac.sissa.it/publications/subtlex-it-subtitle-based-word-frequency-estimates-italian - 9Davis, M. H., & Gaskell, M. G. (2009). A complementary systems account of word learning: neural and behavioural evidence. Philosophical Transactions of the Royal Society B: Biological Sciences, 364(1536), 3773–3800. DOI: 10.1098/rstb.2009.0111
- 10Duszkiewicz, A. J., McNamara, C. G., Takeuchi, T., & Genzel, L. (2019). Novelty and dopaminergic modulation of memory persistence: a tale of two systems. Trends in Neurosciences, 42(2), 102–114. DOI: 10.1016/j.tins.2018.10.002
- 11Faran, Y., Osher, Y., Sofen, Y., & Shalom, D. B. (2017). Errorful and errorless learning in preschoolers: at what age does the errorful advantage appear? Cognitive development, 44, 150–156. DOI: 10.1016/j.cogdev.2017.10.002
- 12Fazekas, J., Jessop, A., Pine, J., & Rowland, C. (2020). Do children learn from their prediction mistakes? A registered report evaluating error-based theories of language acquisition. Royal Society open science, 7(11),
180877 . DOI: 10.1098/rsos.180877 - 13Fernald, A., & Marchman, V. A. (2012). Individual differences in lexical processing at 18 months predict vocabulary growth in typically developing and late-talking toddlers. Child Development, 83(1), 203–222. DOI: 10.1111/j.1467-8624.2011.01692.x
- 14Gambi, C., Jindal, P., Sharpe, S., Pickering, M. J., & Rabagliati, H. (2021). The relation between preschoolers’ vocabulary development and their ability to predict and recognize words. Child Development, 92(3), 1048–1066. DOI: 10.1111/cdev.13465
- 15Gambi, C., Pickering, M.J., & Rabagliati, H. (2021). Prediction error boosts retention of novel words in adults but not in children. Cognition, 211,
104650 . DOI: 10.1016/j.cognition.2021.104650 - 16Ghetti, S., & Bunge, S. A. (2012). Neural changes underlying the development of episodic memory during middle childhood. Developmental cognitive neuroscience, 2(4), 381–395. DOI: 10.1016/j.dcn.2012.05.002
- 17Gómez, R. L., & Edgin, J. O. (2016). The extended trajectory of hippocampal development: Implications for early memory development and disorder. Developmental cognitive neuroscience, 18, 57–69. DOI: 10.1016/j.dcn.2015.08.009
- 18Greve, A., Cooper, E., Kaula, A., Anderson, M. C., & Henson, R. (2017). Does prediction error drive one-shot declarative learning? Journal of Memory and Language, 94, 149–165. DOI: 10.1016/j.jml.2016.11.001
- 19Gruber, M. J., Hsieh, L.-T., Staresina, B. P., Elger, C. E., Fell, J., Axmacher, N., & Ranganath, C. (2018). Theta phase synchronization between the human hippocampus and prefrontal cortex increases during encoding of unexpected information: a case study. Journal of Cognitive Neuroscience, 30(11), 1646–1656. DOI: 10.1162/jocn_a_01302
- 20Halberda, J. (2003). The development of a word-learning strategy. Cognition, 87(1), B23–B34. DOI: 10.1016/S0010-0277(02)00186-5
- 21Havron, N., de Carvalho, A., Fiévet, A. C., & Christophe, A. (2019). Three-to four-year-old children rapidly adapt their predictions and use them to learn novel word meanings. Child Development, 90(1), 82–90. DOI: 10.1111/cdev.13113
- 22Henderson, L., Weighall, A., & Gaskell, G. (2013). Learning new vocabulary during childhood: Effects of semantic training on lexical consolidation and integration. Journal of Experimental Child Psychology, 116(3), 572–592. DOI: 10.1016/j.jecp.2013.07.004
- 23Henson, R. N., & Gagnepain, P. (2010). Predictive, interactive multiple memory systems. Hippocampus, 20(11), 1315–1326. DOI: 10.1002/hipo.20857
- 24Ito, A., Gambi, C., Pickering, M. J., Fuellenbach, K., & Husband, E. M. (2020). Prediction of phonological and gender information: An event-related potential study in Italian. Neuropsychologia, 136,
107291 . DOI: 10.1016/j.neuropsychologia.2019.107291 - 25Jeffreys, H. (1939). Theory of probability. Oxford: Clarendon Press.
- 26Lee, J. K., Ekstrom, A. D., & Ghetti, S. (2014). Volume of hippocampal subfields and episodic memory in childhood and adolescence. NeuroImage, 94, 162–171. DOI: 10.1016/j.neuroimage.2014.03.019
- 27Lee, J. K., Wendelken, C., Bunge, S. A., & Ghetti, S. (2016). A time and place for everything: Developmental differences in the building blocks of episodic memory. Child Development, 87(1), 194–210. DOI: 10.1111/cdev.12447
- 28Lelonkiewicz, J. R., Ktori, M., & Crepaldi, D. (2023). Morphemes as letter chunks: Linguistic information enhances the learning of visual regularities. Journal of Memory and Language, 130,
104411 . DOI: 10.1016/j.jml.2023.104411 - 29Mak, M. H., Hsiao, Y., & Nation, K. (2021). Anchoring and contextual variation in the early stages of incidental word learning during reading. Journal of Memory and Language, 118,
104203 . DOI: 10.1016/j.jml.2020.104203 - 30McRae, K., Ferretti, Todd R., & Liane Amyote, T. R. (1997). Thematic roles as verb-specific concepts. Language and Cognitive Processes, 12(2–3), 137–176. DOI: 10.1080/016909697386835
- 31Messenger, K., Branigan, H., Buckle, L., & Lindsay, L. (2022).
How does syntactic priming experience support language development? In K. Messenger (Ed.), Syntactic Priming in Language Acquisition Representations, mechanisms and applications. (pp. 57–82). John Benjamins. DOI: 10.1075/tilar.31.04mes - 32Metcalfe, J., & Finn, B. (2012). Hypercorrection of high confidence errors in children. Learning and Instruction, 22(4), 253–261. DOI: 10.1016/j.learninstruc.2011.10.004
- 33Milne, A. E., Bianco, R., Poole, K. C., Zhao, S., Oxenham, A. J., Billig, A. J., & Chait, M. (2021). An online headphone screening test based on dichotic pitch. Behavior Research Methods, 53(4), 1551–1562. DOI: 10.3758/s13428-020-01514-0
- 34Newcombe, N. S. (2015). Commentary: Memory development: Halfway there? International Journal of Behavioral Development, 39(4), 304–305. DOI: 10.1177/0165025415573647
- 35Peter, M., Chang, F., Pine, J. M., Blything, R., & Rowland, C. F. (2015). When and how do children develop knowledge of verb argument structure? Evidence from verb bias effects in a structural priming task. Journal of Memory and Language, 81, 1–15. DOI: 10.1016/j.jml.2014.12.002
- 36Picard, L., Cousin, S., Guillery-Girard, B., Eustache, F., & Piolino, P. (2012). How do the different components of episodic memory develop? Role of executive functions and short-term feature-binding abilities. Child Development, 83(3), 1037–1050. DOI: 10.1111/j.1467-8624.2012.01736.x
- 37Quent, J. A., Henson, R. N., & Greve, A. (2021). A predictive account of how novelty influences declarative memory. Neurobiology of Learning and Memory, 179,
107382 . DOI: 10.1016/j.nlm.2021.107382 - 38R Development Core Team. (Version 3.5.1). [Computer Software].
http://www.R-project.org - 39Ramscar, M. (2021). A discriminative account of the learning, representation and processing of inflection systems. Language, Cognition and Neuroscience. DOI: 10.1080/23273798.2021.2014062
- 40Ramscar, M., Dye, M., & Klein, J. (2013). Children value informativity over logic in word learning. Psychological Science, 24(6), 1017–1023. DOI: 10.1177/0956797612460691
- 41Ramscar, M., Dye, M., & McCauley, S. M. (2013). Error and expectation in language learning: The curious absence of mouses in adult speech. Language, 89(4), 760–793. DOI: 10.1353/lan.2013.0068
- 42Ramscar, M., Yarlett, D., Dye, M., Denny, K., & Thorpe, K. (2010). The effects of feature-label-order and their implications for symbolic learning. Cognitive Science, 34(6), 909–957. DOI: 10.1111/j.1551-6709.2009.01092.x
- 43Remon, D., Loevenbruck, H., Deudon, M., Girardie, O., Bouyer, K., Pascalis, O., & Thorpe, S. (2020). 24-Month-olds and over remember novel object names after a single learning event. Journal of Experimental Child Psychology, 196,
104859 . DOI: 10.1016/j.jecp.2020.104859 - 44Rescorla, R. A., & Wagner, A. R. (1972). A theory of Pavlovian conditioning: Variations in the effectiveness of reinforcement and nonreinforcement. Classical conditioning II: Current research and theory, 2, 64–99.
- 45Reuter, T., Borovsky, A., & Lew-Wlliams, C. (2019). Predict and redicrect: Prediction errors support children’s word learning. Developmental psychology, 55(8), 1656–1665. DOI: 10.1037/dev0000754
- 46Romeo, R. R., Leonard, J. A., Robinson, S. T., West, M. R., Mackey, A. P., Rowe, M. L., & Gabrieli, J. D. (2018). Beyond the 30-Million-Word Gap: Children’s Conversational Exposure Is Associated With Language-Related Brain Function. Psychological Science. DOI: 10.1177/0956797617742725
- 47Rugg, M. D., Vilberg, K. L., Mattson, J. T., Sarah, S. Y., Johnson, J. D., & Suzuki, M. (2012). Item memory, context memory and the hippocampus: fMRI evidence. Neuropsychologia, 50(13), 3070–3079. DOI: 10.1016/j.neuropsychologia.2012.06.004
- 48Schad, D. J., Nicenboim, B., Bürkner, P. C., Betancourt, M., & Vasishth, S. (2022). Workflow techniques for the robust use of bayes factors. Psychological Methods. Advance online publication. DOI: 10.1037/met0000472
- 49Shohamy, D., & Adcock, R. A. (2010). Dopamine and adaptive memory. Trends in Cognitive Sciences, 14(10), 464–472. DOI: 10.1016/j.tics.2010.08.002
- 50SjPlot. (Version 2.6.3). Data Visualization for Statistics in Social Science. In [Computer Software]. Lüdecke, D.
https://CRAN.R-project.org/package=sjPlot . - 51Trueswell, J. C., Medina, T. N., Hafri, A., & Gleitman, L. R. (2013). Propose but verify: Fast mapping meets cross-situational word learning. Cognitive Psychology, 66(1), 126–156. DOI: 10.1016/j.cogpsych.2012.10.001
- 52Van Heuven, W. J., Mandera, P., Keuleers, E., & Brysbaert, M. (2014). SUBTLEX-UK: A new and improved word frequency database for British English. Quarterly Journal of Experimental Psychology, 67(6), 1176–1190. DOI: 10.1080/17470218.2013.850521
- 53Westfall, J., Kenny, D. A., & Judd, C. M. (2014). Statistical power and optimal design in experiments in which samples of participants respond to samples of stimuli. Journal of Experimental Psychology: General, 143(5), 2020–2045. DOI: 10.1037/xge0000014
- 54Yarkoni, T., Balota, D., & Yap, M. (2008). Moving beyond Coltheart’s N: A new measure of orthographic similarity. Psychonomic Bulletin & Review, 15(5), 971–979. DOI: 10.3758/PBR.15.5.971
