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Articulatory Suppression Effects on Induced Rumination
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In: ISSN: 2474-7394 ; Collabra: Psychology ; https://hal.univ-grenoble-alpes.fr/hal-03583399 ; Collabra: Psychology, 2022, 8 (1), ⟨10.1525/collabra.31051⟩ (2022)
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Dissociating facial electromyographic correlates of visual and verbal induced rumination ...
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Can we decode phonetic features in inner speech using surface electromyography?
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In: PLoS One (2020)
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Abstract:
Although having a long history of scrutiny in experimental psychology, it is still controversial whether wilful inner speech (covert speech) production is accompanied by specific activity in speech muscles. We present the results of a preregistered experiment looking at the electromyographic correlates of both overt speech and inner speech production of two phonetic classes of nonwords. An automatic classification approach was undertaken to discriminate between two articulatory features contained in nonwords uttered in both overt and covert speech. Although this approach led to reasonable accuracy rates during overt speech production, it failed to discriminate inner speech phonetic content based on surface electromyography signals. However, exploratory analyses conducted at the individual level revealed that it seemed possible to distinguish between rounded and spread nonwords covertly produced, in two participants. We discuss these results in relation to the existing literature and suggest alternative ways of testing the engagement of the speech motor system during wilful inner speech production.
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Keyword:
Research Article
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URL: http://www.ncbi.nlm.nih.gov/pubmed/32459800 https://doi.org/10.1371/journal.pone.0233282 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7252628/
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The ConDialInt Model: Condensation, Dialogality, and Intentionality Dimensions of Inner Speech Within a Hierarchical Predictive Control Framework
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In: EISSN: 1664-1078 ; Frontiers in Psychology ; https://hal.archives-ouvertes.fr/hal-02290943 ; Frontiers in Psychology, Frontiers, 2019, Exploring the Nature, Content, and Frequency of Intrapersonal Communication, 10, pp.2019. ⟨10.3389/fpsyg.2019.02019⟩ ; https://www.frontiersin.org/article/10.3389/fpsyg.2019.02019 (2019)
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Neural correlates of inner speaking, imitating and hearing: an fMRI study
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In: ICPhS 2019 - 19th International Congress of Phonetic Sciences ; https://hal.archives-ouvertes.fr/hal-02367806 ; ICPhS 2019 - 19th International Congress of Phonetic Sciences, Aug 2019, Melbourne, Australia ; https://www.icphs2019.org (2019)
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Can we decode phonetic features in inner speech using surface electromyography? ...
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The ConDialInt Model: Condensation, Dialogality, and Intentionality Dimensions of Inner Speech Within a Hierarchical Predictive Control Framework
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Langage Intérieur
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In: Traité de Neurolinguistique : du cerveau au langage ; https://hal.archives-ouvertes.fr/hal-01467107 ; Pinto, S. & Sato, M. Traité de Neurolinguistique : du cerveau au langage, De Boeck Supérieur, pp.109-123, 2016, Neuropsychologie, 9782353273393 ; http://www.deboecksuperieur.com/ouvrage/9782353273393-traite-de-neurolinguistique (2016)
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Orofacial electromyographic correlates of induced verbal rumination
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In: Embodied and Situated Language Processing: Stepping out of the Frame (ESLP 2015) ; https://hal.archives-ouvertes.fr/hal-01250854 ; Embodied and Situated Language Processing: Stepping out of the Frame (ESLP 2015), Jul 2015, Lyon, France. 2015 ; http://eslp2015.sciencesconf.org/program (2015)
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