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The effects of stress cues on continuous speech segmentation: An event-related brain potential study. Brain Research. 1123, 168-178.(2006).
Time course and functional neuroanatomy of speech segmentation in adults. NeuroImage. 48, 541-553.(2009).
Different neurophysiological mechanisms underlying word and rule learning. PLoS One. 2, e1175.doi:10.1371/journal.pone.0001175.(2007).
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Different ERP profiles for learning rules over consonants and vowels. Neuropsychologia. 97, 104-111.(2017).
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Discrimination of acoustic patterns in rats using the water T-maze. Psicologica. 35, 195-208.(2014).
Do humans and non-human animals share the grouping principles of the Iambic-Trochaic Law?. Attention, Perception & Psychophysics. 75, 92-100.(2013).
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Two cases of linguistic specialization: Perceptual narrowing and functional asymmetries. Language Learning: New Research. 169-184.(2012).
The role of perceptual salience during the segmentation of connected speech. European Journal of Cognitive Psychology. 21, 786-800.(2009).
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Stress placement and word segmentation by Spanish speakers. Psicologica. 28, 167-176.(2007).
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Generalizing prosodic patterns by a non-vocal learning mammal. Animal Cognition. 20, 179-185.(2017).
The effects of backward speech and speaker variability in language discrimination by rats. Journal of Experimental Psychology: Animal Behavior Processes. 31, 95-100.(2005).
Frequency-based organization of speech sequences in a nonhuman animal. Cognition. 146, 1-7.(2016).
The contribution of language-specific knowledge in the selection of statistically-coherent word candidates. Journal of Memory and Language. 64, 171-180.(2011).