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Speech animation using electromagnetic articulography as motion capture data ...
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82 |
Audiovisual speech perception in children and adolescents with developmental dyslexia:No deficit with McGurk stimuli
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83 |
Auditory and auditory-visual Lombard speech perception by younger and older adults
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84 |
How far out? The effect of peripheral visual speech on speech perception
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85 |
Spontaneous synchronization between repetitive speech and rhythmic gesture
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87 |
Acoustic and visual adaptations in speech produced to counter adverse listening conditions
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88 |
Using multimodal speech production data to evaluate articulatory animation for audiovisual speech synthesis
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In: 3rd International Symposium on Facial Analysis and Animation - FAA 2012 ; https://hal.inria.fr/hal-00734464 ; 3rd International Symposium on Facial Analysis and Animation - FAA 2012, Sep 2012, Vienna, Austria (2012)
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89 |
VisArtico: a visualization tool for articulatory data
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In: 13th Annual Conference of the International Speech Communication Association - InterSpeech 2012 ; https://hal.inria.fr/hal-00730733 ; 13th Annual Conference of the International Speech Communication Association - InterSpeech 2012, Sep 2012, Portland, OR, United States (2012)
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90 |
Using multimodal speech production data to evaluate articulatory animation for audiovisual speech synthesis ...
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91 |
Tongue Gestures Awareness and Pronunciation Training
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In: 12th Annual Conference of the International Speech Communication Association - Interspeech 2011 ; https://hal.inria.fr/inria-00602418 ; 12th Annual Conference of the International Speech Communication Association - Interspeech 2011, Aug 2011, Florence, Italy (2011)
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92 |
Towards an articulatory tongue model using 3D EMA
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In: 9th International Seminar on Speech Production - ISSP'11 ; https://hal.inria.fr/inria-00602423 ; 9th International Seminar on Speech Production - ISSP'11, UQAM, Jun 2011, Montreal, Canada. pp.147-154 (2011)
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93 |
Estimating the control parameters of an articulatory model from electromagnetic articulograph data
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In: ISSN: 0001-4966 ; EISSN: 1520-8524 ; Journal of the Acoustical Society of America ; https://hal.inria.fr/inria-00578733 ; Journal of the Acoustical Society of America, Acoustical Society of America, 2011, Speech Production, 129 (5), pp.3245-3257. ⟨10.1121/1.3569714⟩ (2011)
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Abstract:
International audience ; Finding the control parameters of an articulatory model that result in given acoustics is an important problem in speech research. However, one should also be able to derive the same parameters from measured articulatory data. In this paper, a method to estimate the control parameters of model by Maeda from electromagnetic articulography (EMA) data, which allows the derivation of full sagittal vocal tract slices from sparse flesh-point information, is presented. First, the articulatory grid system involved in the model's definition is adapted to the speaker involved in the experiment, and EMA data are registered to it automatically. Then, articulatory variables that correspond to measurements defined by Maeda on the grid are extracted. An initial solution for the articulatory control parameters is found by a least-squares method, under constraints ensuring vocal tract shape naturalness. Dynamic smoothness of the parameter trajectories is then imposed by a variational regularization method. Generated vocal tract slices for vowels are compared with slices appearing in magnetic resonance imaging images of the same speaker or found in the literature. Formants synthesized on the basis of these generated slices are adequately close to those tracked in real speech recorded concurrently with EMA.
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Keyword:
[INFO.INFO-AI]Computer Science [cs]/Artificial Intelligence [cs.AI]; [INFO.INFO-LG]Computer Science [cs]/Machine Learning [cs.LG]; [INFO.INFO-TS]Computer Science [cs]/Signal and Image Processing; [SDV.OT]Life Sciences [q-bio]/Other [q-bio.OT]; [SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processing; ACM: J.: Computer Applications/J.2: PHYSICAL SCIENCES AND ENGINEERING/J.2.6: Engineering
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URL: https://doi.org/10.1121/1.3569714 https://hal.inria.fr/inria-00578733
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94 |
Investigating articulatory differences between upright and supine posture using 3D EMA
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In: 9th International Seminar on Speech Production - ISSP'11 ; https://hal.inria.fr/inria-00602427 ; 9th International Seminar on Speech Production - ISSP'11, UQAM, Jun 2011, Montreal, Canada (2011)
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Weight Optimization for Bimodal Unit-Selection Talking Head Synthesis
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In: 12thAnnual Conference of the International Speech Communication Association - Interspeech 2011 ; https://hal.inria.fr/inria-00602407 ; 12thAnnual Conference of the International Speech Communication Association - Interspeech 2011, Aug 2011, Florence, Italy (2011)
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96 |
Acoustic and EMA study of pharyngealization : Coarticulatory effects as index of stylistic and regional distinction
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In: Instrumental Studies in Arabic Phonetics ; https://hal.archives-ouvertes.fr/hal-00348775 ; M. Hassan and B. Heselwood. Instrumental Studies in Arabic Phonetics, Benjamins, pp.1-56, 2011, Current Issues in Linguistic Theory (2011)
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Acquisition de données articulatoires par un articulographe
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In: Typologie des rhétiques : manifestations phonétiques et enjeux phonologiques ; https://hal.inria.fr/hal-00934377 ; Typologie des rhétiques : manifestations phonétiques et enjeux phonologiques, Jun 2011, Paris, France (2011)
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98 |
Tongue Control and Implication in Pronunciation Training
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In: Natural Language Processing and Language Learning Workshop (NaTAL'10), ; https://hal.inria.fr/hal-00934374 ; Natural Language Processing and Language Learning Workshop (NaTAL'10),, Jun 2010, Nancy, France (2010)
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99 |
Studying pharyngealisation using an articulograph
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In: International Workshop on Pharyngeals and Pharyngealisation ; https://hal.archives-ouvertes.fr/hal-00431829 ; International Workshop on Pharyngeals and Pharyngealisation, Mar 2009, Newcastle, United Kingdom (2009)
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Pronunciation Training: The Role of Eye and Ear
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In: Interspeech 2008 ; https://hal.archives-ouvertes.fr/hal-00327687 ; Interspeech 2008, Sep 2008, Brisbane, Australia. pp.FriSe3.O4-2 (2008)
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