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1
Voice modulation, self-perception and motor branch of the superior laryngeal nerve ; Modulation vocale, ressenti et branche motrice du nerf laryngé supérieur
In: ISSN: 1879-7296 ; EISSN: 1879-730X ; European Annals of Otorhinolaryngology, Head and Neck Diseases ; https://hal.archives-ouvertes.fr/hal-03504625 ; European Annals of Otorhinolaryngology, Head and Neck Diseases, Elsevier Masson, 2021, 138 (4), pp.241-245. ⟨10.1016/j.anorl.2020.11.007⟩ (2021)
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2
Emoción, percepción, producción: un estudio psicolingüístico para detectar emociones en el habla
Gibson, M. (Mark); González-Machorro, M. (Mónica). - 2020
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3
Pitch as the Main Determiner of Italian Lexical Stress Perception Across the Lifespan : Evidence From Typical Development and Dyslexia
M. Caccia; G. Presti; A. Toraldo. - : Frontiers, 2019
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4
СОПОСТАВЛЕНИЕ АКУСТИЧЕСКОЙ ПРИРОДЫ СЛОВЕСНОГО УДАРЕНИЯ В СЕРБСКОМ И РУССКОМ ЯЗЫКАХ
Панова, Екатерина. - : Федеральное государственное бюджетное образовательное учреждение высшего профессионального образования "Государственная академия славянской культуры", 2015
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5
Variabilidad intra- e inter-hablante de la fricativa sibilante /s/ en el español de Argentina ; Intra- and inter-speaker variability of sibilant fricative /s/ in Argentine Spanish
In: Estudios de fonética experimental; 2014: Vol.: 23; p. 95-124 (2015)
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6
Acoustic correlates of masculinity in voices of Lebanese women with Reinke's edema
In: International Seminar on Speech Production (ISSP) 10 ; https://hal.archives-ouvertes.fr/hal-01507720 ; International Seminar on Speech Production (ISSP) 10, May 2014, Cologne, Germany. pp.273-276 (2014)
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7
Analogy between Laryngeal Gesture in Mongolian Long Song and Supracricoid Partial Laryngectomy
In: ISSN: 0269-9206 ; EISSN: 1464-5076 ; Clinical Linguistics & Phonetics ; https://halshs.archives-ouvertes.fr/halshs-00675031 ; Clinical Linguistics & Phonetics, Taylor & Francis, 2012, 26 (1), pp.86-99. ⟨10.3109/02699206.2011.590920⟩ (2012)
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8
Quantitative microlaryngoscopic measurements of vocal fold polyps, glottal gap and their relation to vocal function
In: Medicina ; Volume 44 ; Issue 4 (2008)
Abstract: Objectives. The purpose of this study was to quantify the size of vocal fold polyps and to investigate the relationship between the glottal gap and parameters of acoustic voice analysis and phonetography. Material and methods. Eighty-one microlaryngoscopic images and digital recordings of voices (acoustic analysis and phonetogram) acquired from the patients with vocal fold polyps (VFPs) were employed in this study. Vocal fold (VF) images were collected during routine direct microlaryngoscopy using Moller-Wedel Universa 300 surgical microscope, 3-CCD Elmo 768×576- pixel color video camera and a 300 W Xenon light source. Acoustic voice analysis and phonetography were established using Dr. Speech (Tiger Electronics Inc.) software. Microlaryngoscopic images were processed by original software created by ELINTA and displayed on a monitor. The relative lengths and widths of vocal fold polyps as well as percentage area of VFP were calculated. The Pearson’s correlation was applied to reveal the correlation between VFP dimensions and acoustic voice parameters. Results. There were no statistically significant differences between the dimensions of left and right vocal folds and VFPs. Statistically significant slight to mild correlations between measured dimensions of VFP acoustic and phonetogram parameters were revealed, with HNR and phonetogram area showing the strongest correlation to the size of VFPs. Conclusion. The results of our study confirm that quantitative microlaryngoscopic measurements of vocal fold polyp and glottal gap dimensions may be a useful tool for objective assessment of glottic incompetence and voice impairment.
Keyword: acoustic voice parameters; glottal gap; microlaryngoscopic images; vocal fold polyps
URL: https://doi.org/10.3390/medicina44040034
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9
Cognitive maturation and the use of pitch and rate information in making similarity judgments of a single talker
In: JOURNAL OF SPEECH LANGUAGE AND HEARING RESEARCH , 51 (2) 485 - 501. (2008) (2008)
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10
Analysis, Vocal-tract modeling, and Automatic Detection of Vowel Nasalization
Pruthi, Tarun. - 2007
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11
Calgary Working Papers in Linguistics, Volume 16, Winter 1994 ...
Unkn Unknown. - : University of Calgary, 1994
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12
Parameters for Automatic Speaker Recognition over LPC (Linear Predictive-Coding) Systems.
In: DTIC AND NTIS (1986)
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13
www.elsevier.com/locate/specom Acoustic parameters for automatic detection of nasal manner
In: http://www.isr.umd.edu/Labs/SCL/publications/journal/pruthi_espy_sc_04.pdf
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