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  1. Sources of Phoneme Errors in Repetition: Perseverative, Neologistic, and Lesion Patterns in Jargon Aphasia.Emma Pilkington, James Keidel, Luke T. Kendrick, James D. Saddy, Karen Sage & Holly Robson - 2017 - Frontiers in Human Neuroscience 11.
  • The nature of music from a biological perspective.Isabelle Peretz - 2006 - Cognition 100 (1):1-32.
  • Faces and Voices Processing in Human and Primate Brains: Rhythmic and Multimodal Mechanisms Underlying the Evolution and Development of Speech.Maëva Michon, José Zamorano-Abramson & Francisco Aboitiz - 2022 - Frontiers in Psychology 13.
    While influential works since the 1970s have widely assumed that imitation is an innate skill in both human and non-human primate neonates, recent empirical studies and meta-analyses have challenged this view, indicating other forms of reward-based learning as relevant factors in the development of social behavior. The visual input translation into matching motor output that underlies imitation abilities instead seems to develop along with social interactions and sensorimotor experience during infancy and childhood. Recently, a new visual stream has been identified (...)
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  • Modalities of memory: Is reading lips like hearing voices?David W. Maidment, Bill Macken & Dylan M. Jones - 2013 - Cognition 129 (3):471-493.
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  • Language Learning Variability within the Dorsal and Ventral Streams as a Cue for Compensatory Mechanisms in Aphasia Recovery.Diana López-Barroso & Ruth de Diego-Balaguer - 2017 - Frontiers in Human Neuroscience 11.
  • One Lesson Learned: Frame Language Processing—Literal and Figurative—as a Human Brain Function.Marta Kutas - 2006 - Metaphor and Symbol 21 (4):285-325.
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  • How Sensorimotor Interactions Enable Sentence Imitation.Tzu-Wei Hung - 2015 - Minds and Machines 25 (4):321-338.
    Despite intensive debates regarding action imitation and sentence imitation, few studies have examined their relationship. In this paper, we argue that the mechanism of action imitation is necessary and in some cases sufficient to describe sentence imitation. We first develop a framework for action imitation in which key ideas of Hurley’s shared circuits model are integrated with Wolpert et al.’s motor selection mechanism and its extensions. We then explain how this action-based framework clarifies sentence imitation without a language-specific faculty. Finally, (...)
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  • Articulatory mediation of speech perception: A causal analysis of multi-modal imaging data.David W. Gow & Jennifer A. Segawa - 2009 - Cognition 110 (2):222-236.
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  • Evidence for Implicit Learning in Syntactic Comprehension.Alex B. Fine & T. Florian Jaeger - 2013 - Cognitive Science 37 (3):578-591.
    This study provides evidence for implicit learning in syntactic comprehension. By reanalyzing data from a syntactic priming experiment (Thothathiri & Snedeker, 2008), we find that the error signal associated with a syntactic prime influences comprehenders' subsequent syntactic expectations. This follows directly from error‐based implicit learning accounts of syntactic priming, but it is unexpected under accounts that consider syntactic priming a consequence of temporary increases in base‐level activation. More generally, the results raise questions about the principles underlying the maintenance of implicit (...)
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  • Lesion analysis of the brain areas involved in language comprehension.N. F. Dronkers, D. P. Wilkins, R. D. Valin, B. B. Redfern & J. J. Jaeger - 2003 - Cognition 92 (1-2):145-177.
  • Voxel-based lesion-parameter mapping: Identifying the neural correlates of a computational model of word production.Gary S. Dell, Myrna F. Schwartz, Nazbanou Nozari, Olufunsho Faseyitan & H. Branch Coslett - 2013 - Cognition 128 (3):380-396.
  • White Matter Integrity and Treatment-Based Change in Speech Performance in Minimally Verbal Children with Autism Spectrum Disorder.Karen Chenausky, Julius Kernbach, Andrea Norton & Gottfried Schlaug - 2017 - Frontiers in Human Neuroscience 11.
  • Topological Self‐Organization and Prediction Learning Support Both Action and Lexical Chains in the Brain.Fabian Chersi, Marcello Ferro, Giovanni Pezzulo & Vito Pirrelli - 2014 - Topics in Cognitive Science 6 (3):476-491.
    A growing body of evidence in cognitive psychology and neuroscience suggests a deep interconnection between sensory-motor and language systems in the brain. Based on recent neurophysiological findings on the anatomo-functional organization of the fronto-parietal network, we present a computational model showing that language processing may have reused or co-developed organizing principles, functionality, and learning mechanisms typical of premotor circuit. The proposed model combines principles of Hebbian topological self-organization and prediction learning. Trained on sequences of either motor or linguistic units, the (...)
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  • A Neurocomputational Model of the N400 and the P600 in Language Processing.Harm Brouwer, Matthew W. Crocker, Noortje J. Venhuizen & John C. J. Hoeks - 2017 - Cognitive Science 41 (S6):1318-1352.
    Ten years ago, researchers using event-related brain potentials to study language comprehension were puzzled by what looked like a Semantic Illusion: Semantically anomalous, but structurally well-formed sentences did not affect the N400 component—traditionally taken to reflect semantic integration—but instead produced a P600 effect, which is generally linked to syntactic processing. This finding led to a considerable amount of debate, and a number of complex processing models have been proposed as an explanation. What these models have in common is that they (...)
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  • On the emergence of modern humans.Daniele Amati & Tim Shallice - 2007 - Cognition 103 (3):358-385.