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Towards an articulatory-driven neural vocoder for speech synthesis
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In: ISSP 2020 - 12th International Seminar on Speech Production ; https://hal.archives-ouvertes.fr/hal-03184762 ; ISSP 2020 - 12th International Seminar on Speech Production, Dec 2020, Providence (virtual), United States (2020)
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Malayalam three-way rhotics contrast: Articulatory modelling based on MRI data
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In: ISSP 2020 - 12th International Seminar on Speech Production ; https://hal.archives-ouvertes.fr/hal-03132829 ; ISSP 2020 - 12th International Seminar on Speech Production, Dec 2020, Providence (virtual), United States (2020)
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Rehabilitation of speech disorders following glossectomy, based on ultrasound visual illustration and feedback
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In: ISSN: 0269-9206 ; EISSN: 1464-5076 ; Clinical Linguistics & Phonetics ; https://hal.archives-ouvertes.fr/hal-01977670 ; Clinical Linguistics & Phonetics, Taylor & Francis, 2020, 34 (9), pp.826-843. ⟨10.1080/02699206.2019.1700310⟩ ; https://www.tandfonline.com/doi/abs/10.1080/02699206.2019.1700310?tab=permissions&scroll=top (2020)
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An MRI-based articulatory characterization of Kannada coronal consonant contrasts
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In: https://hal.archives-ouvertes.fr/hal-03031319 ; 2020 (2020)
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Which way to the dawn of speech?: Reanalyzing half a century of debates and data in light of speech science
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Automatic animation of an articulatory tongue model from ultrasound images of the vocal tract
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In: ISSN: 0167-6393 ; EISSN: 1872-7182 ; Speech Communication ; https://hal.archives-ouvertes.fr/hal-01578315 ; Speech Communication, Elsevier : North-Holland, 2017, 93, pp.63 - 75. ⟨10.1016/j.specom.2017.08.002⟩ (2017)
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Using a Biomechanical Model and Articulatory Data for the Numerical Production of Vowels
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Dabbaghchian, Saeed; Guasch, Oriol; Stavness, Ian; Badin, Pierre; Arnela, Marc; Engwall, Olov. - : KTH, Tal, musik och hörsel, TMH, 2016. : GTM Grup de recerca en Tecnologies Mèdia, La Salle, Universitat Ramon Llull, Barcelona, Spain, 2016
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Abstract:
We introduce a framework to study speech production using a biomechanical model of the human vocal tract, ArtiSynth. Electromagnetic articulography data was used as input to an inverse tracking simulation that estimates muscle activations to generate 3D jaw and tongue postures corresponding to the target articulator positions. For acoustic simulations, the vocal tract geometry is needed, but since the vocal tract is a cavity rather than a physical object, its geometry does not explicitly exist in a biomechanical model. A fully-automatic method to extract the 3D geometry (surface mesh) of the vocal tract by blending geometries of the relevant articulators has therefore been developed. This automatic extraction procedure is essential, since a method with manual intervention is not feasible for large numbers of simulations or for generation of dynamic sounds, such as diphthongs. We then simulated the vocal tract acoustics by using the Finite Element Method (FEM). This requires a high quality vocal tract mesh without irregular geometry or self-intersections. We demonstrate that the framework is applicable to acoustic FEM simulations of a wide range of vocal tract deformations. In particular we present results for cardinal vowel production, with muscle activations, vocal tract geometry, and acoustic simulations. ; QC 20160920 ; EUNISON
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Keyword:
biomechanical articulatory model; Computer Sciences; Datavetenskap (datalogi); Finite Element Method; Fluid Mechanics and Acoustics; speech production; Strömningsmekanik och akustik; vocal tract acoustics; vocal tract geometry
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URL: https://doi.org/10.21437/Interspeech.2016-1500 http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-192602
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Introduction to the proceedings of the SLaTE 2013 workshop on Speech and Language Technology in Education
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In: Proceedings of the SLaTE 2013 workshop on Speech and Language Technology in Education ; SLaTE 2013 - Speech and Language Technology in Education ; https://hal.archives-ouvertes.fr/hal-00960360 ; SLaTE 2013 - Speech and Language Technology in Education, Aug 2013, Grenoble, France. pp.8-10 (2013)
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Sensorimotor characteristics of speech production
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In: Audiovisual Speech Processing ; https://hal.archives-ouvertes.fr/hal-00694313 ; G. Bailly, P. Perrier and E. Vatikiotis-Bateson (Eds.). Audiovisual Speech Processing, Cambridge University Press, pp.368-396, 2012, 978-1107006829 (2012)
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