Aplicación de métodos acústicos lineales y no lineales en parálisis cordales unilaterales

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2014
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Corporación Universitaria Iberoamericana
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https://arete.ibero.edu.co/article/view/354
Palabra clave:
Algorithms
Vocal cord paralysis
Analytical methods
Algoritmos
Parálisis de los pliegues vocales
Técnicas de análisis
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network_acronym_str IBERO
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repository_id_str
dc.title.none.fl_str_mv Aplicación de métodos acústicos lineales y no lineales en parálisis cordales unilaterales
Application of acoustic methods linear and nonlinear in chordal unilateral paralysis
title Aplicación de métodos acústicos lineales y no lineales en parálisis cordales unilaterales
spellingShingle Aplicación de métodos acústicos lineales y no lineales en parálisis cordales unilaterales
Elisei, Natalia Gabriela
Algorithms
Vocal cord paralysis
Analytical methods
Algoritmos
Parálisis de los pliegues vocales
Técnicas de análisis
title_short Aplicación de métodos acústicos lineales y no lineales en parálisis cordales unilaterales
title_full Aplicación de métodos acústicos lineales y no lineales en parálisis cordales unilaterales
title_fullStr Aplicación de métodos acústicos lineales y no lineales en parálisis cordales unilaterales
title_full_unstemmed Aplicación de métodos acústicos lineales y no lineales en parálisis cordales unilaterales
title_sort Aplicación de métodos acústicos lineales y no lineales en parálisis cordales unilaterales
dc.creator.none.fl_str_mv Elisei, Natalia Gabriela
Evin, Diego Alexis
Goméz Fernández, Francisco
Gurlekian, Jorge Alberto
author Elisei, Natalia Gabriela
author_facet Elisei, Natalia Gabriela
Evin, Diego Alexis
Goméz Fernández, Francisco
Gurlekian, Jorge Alberto
author_role author
author2 Evin, Diego Alexis
Goméz Fernández, Francisco
Gurlekian, Jorge Alberto
author2_role author
author
author
dc.subject.none.fl_str_mv Algorithms
Vocal cord paralysis
Analytical methods
Algoritmos
Parálisis de los pliegues vocales
Técnicas de análisis
topic Algorithms
Vocal cord paralysis
Analytical methods
Algoritmos
Parálisis de los pliegues vocales
Técnicas de análisis
publishDate 2014
dc.date.none.fl_str_mv 2014-10-06 00:00:00
2014-10-06 00:00:00
2014-10-06
2022-06-14T20:55:13Z
2022-06-14T20:55:13Z
dc.type.none.fl_str_mv Artículo de revista
http://purl.org/coar/resource_type/c_6501
http://purl.org/coar/resource_type/c_2df8fbb1
http://purl.org/coar/version/c_970fb48d4fbd8a85
Text
info:eu-repo/semantics/article
Sección Investigativa
Investigative Section
http://purl.org/redcol/resource_type/ART
info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.none.fl_str_mv 2463-2252
1657-2513
https://repositorio.ibero.edu.co/handle/001/2996
https://arete.ibero.edu.co/article/view/354
identifier_str_mv 2463-2252
1657-2513
url https://repositorio.ibero.edu.co/handle/001/2996
https://arete.ibero.edu.co/article/view/354
dc.language.none.fl_str_mv spa
language spa
dc.relation.none.fl_str_mv https://arete.ibero.edu.co/article/download/354/319
Núm. 1 , Año 2012
32
1
24
12
Areté
Aasen, T. (1993). Chaos theory applied to the caloric response of the vestibular system. Computers and Biomedical Research (26):556-567.
Bergé, P., & Pomeau y Vidal, C. (1984). Orderwithin chaos: towards a deterministic approach to turbulence. New York: U.S.A.,Wiley.
Berry, D. A., Herzel, H., Titze, I. R., & Story, B.H. (1996). Bifurcations in excised larynx experiments. Journal of Voice (10): 29-138.
Bielamowicz, S., Kreiman, J., Gerratt, B. R.,Dauer, M. S., & Berke, G. S. (1996). Comparison of voice analysis systems for perturbation measurements. J. Speech Hear.Res. (39): 126–134.
Eckmann, J. P., & Ruelle, D. (1992). Fundamental limitations for estimating dimensions and Lyapunov exponents in dynamical systems.Physica D (56), 185–187.
Giovanni, A., Ouaknine, M., & Triglia, J. M.(1999). Determination of largest Lyapunovexponents of vocal signal: application to unilateral laryngeal paralysis. J. Voice (13:341-354.
Gstoettner, W., Baumgartner, W., Hamzavi, J.,Felix, D., Svozil, K., Meyer, R., y otros(1996). Auditory fractal random signals:Experimental data and clinical application.Acta Otolaryngol (116): 222-223.
Herzel, H., Berry, D., Titze, I. R., & Saleh, M.(1994). Analysis of vocal disorders with methods from nonlinear dynamics. J. Speach Hear. Res. (37): 1008-1019.
Hilborn, R. (2001). Chaos and Nonlinear Dynamics.An Introduction for Scientists and Engineers(2nd ed.). Oxford Univerity Press.
Hirano, M. (1981). Clinical Examination of thevoice. New York: U.S.A. Springer Verlag.
Holzfuss, J., & Lauterborn, W. (1989). Lyapunov exponents from a time series of acousticchaos. Phys. Rev. A (39): 2146–2152.
Horii, Y. (1979). Fundamental Frequency Perturbation Observed in Sustained Phonation.Journal of Speech and Hearing Research (22): 5-19.
Jiang, J., Zhang, Y., & Ford, C. N. (2003).Nonlinear dynamics of phonations in excised larynx experiments. J. Acoust. Soc. Am114 (4 pt1): 2198-205
Kumar, A., & Mullick, S. K. (1996). Nonlinear dynamical analysis of speech. J.Acoust.Soc. Am. (100): 615–629.
Milenkovic, P. (1987). Least mean square measures of voice perturbation. J. Speech Hear. Res. (30): 529–538.
Narayanan, S. S., & Alwan, A. A. (1995). A nonlinear dynamical systems analysis of fricative consonants. J. Acoust. Soc. Am. (97):2511.
Peitgen, H. O., Jurgens, H., & Saupe, D. (1992). Chaos and Fractals, New Frontiers of Science.New York: U.S.A. Springer-Verlag.
Titze, I. R. (1995). Workshop on acoustic voice analysis; Summary Statement. National Center for Voice and Speech, Denver.
Titze, I. R., Horii, I., & Scherer, R. C. (1987). Some technical considerations in voice perturbationmeasurements. J Speech HearingResearch (30): 252-260.
Wolf, A., Swift, J. B., Swinney, H. L., & Vastano,J. A. (1985). Determining Lyapunov exponentsfrom a time series. Physica D (16):285–317.
Yu, P., Garrel, R., Nicollas, R., Ouaknine, M.,& Giovanni, A. (2007). Objective VoiceAnalysis in Dysphonic Patients: New Data Including Nonlinear Measurements. FoliaPhoniatr Logop , 1 (59): 20-30.
Yu, P., Ouaknine, M., & Giovanni, A. (2000).Intérêt clinique du calcul des coefficients de Lyapunov pour l’analyse objective desdysphonies. Rev. laryngol. otol. Rhinol, 5(121): 301-305.
Zhang, Y., & Jiang, J. (2003). Nonlinear dynamicanalysis of signal typing of pathologicalhuman voices. Electron. Lett. (39):1021–1023.
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spelling Aplicación de métodos acústicos lineales y no lineales en parálisis cordales unilateralesApplication of acoustic methods linear and nonlinear in chordal unilateral paralysisElisei, Natalia GabrielaEvin, Diego AlexisGoméz Fernández, FranciscoGurlekian, Jorge AlbertoAlgorithmsVocal cord paralysisAnalytical methodsAlgoritmosParálisis de los pliegues vocalesTécnicas de análisisCorporación Universitaria Iberoamericana2014-10-06 00:00:002022-06-14T20:55:13Z2014-10-06 00:00:002022-06-14T20:55:13Z2014-10-06Artículo de revistahttp://purl.org/coar/resource_type/c_6501http://purl.org/coar/resource_type/c_2df8fbb1http://purl.org/coar/version/c_970fb48d4fbd8a85Textinfo:eu-repo/semantics/articleSección InvestigativaInvestigative Sectionhttp://purl.org/redcol/resource_type/ARTinfo:eu-repo/semantics/publishedVersionapplication/pdf2463-22521657-2513https://repositorio.ibero.edu.co/handle/001/2996https://arete.ibero.edu.co/article/view/354https://arete.ibero.edu.co/article/view/354reponame:Repositorio Iberoinstname:Corporación Universitaria Iberoamericanainstacron:Corporación Universitaria Iberoamericanaspahttps://arete.ibero.edu.co/article/download/354/319Núm. 1 , Año 20123212412AretéAasen, T. (1993). Chaos theory applied to the caloric response of the vestibular system. Computers and Biomedical Research (26):556-567.Bergé, P., & Pomeau y Vidal, C. (1984). Orderwithin chaos: towards a deterministic approach to turbulence. New York: U.S.A.,Wiley.Berry, D. A., Herzel, H., Titze, I. R., & Story, B.H. (1996). Bifurcations in excised larynx experiments. Journal of Voice (10): 29-138.Bielamowicz, S., Kreiman, J., Gerratt, B. R.,Dauer, M. S., & Berke, G. S. (1996). Comparison of voice analysis systems for perturbation measurements. J. Speech Hear.Res. (39): 126–134.Eckmann, J. P., & Ruelle, D. (1992). Fundamental limitations for estimating dimensions and Lyapunov exponents in dynamical systems.Physica D (56), 185–187.Giovanni, A., Ouaknine, M., & Triglia, J. M.(1999). Determination of largest Lyapunovexponents of vocal signal: application to unilateral laryngeal paralysis. J. Voice (13:341-354.Gstoettner, W., Baumgartner, W., Hamzavi, J.,Felix, D., Svozil, K., Meyer, R., y otros(1996). Auditory fractal random signals:Experimental data and clinical application.Acta Otolaryngol (116): 222-223.Herzel, H., Berry, D., Titze, I. R., & Saleh, M.(1994). Analysis of vocal disorders with methods from nonlinear dynamics. J. Speach Hear. Res. (37): 1008-1019.Hilborn, R. (2001). Chaos and Nonlinear Dynamics.An Introduction for Scientists and Engineers(2nd ed.). Oxford Univerity Press.Hirano, M. (1981). Clinical Examination of thevoice. New York: U.S.A. Springer Verlag.Holzfuss, J., & Lauterborn, W. (1989). Lyapunov exponents from a time series of acousticchaos. Phys. Rev. A (39): 2146–2152.Horii, Y. (1979). Fundamental Frequency Perturbation Observed in Sustained Phonation.Journal of Speech and Hearing Research (22): 5-19.Jiang, J., Zhang, Y., & Ford, C. N. (2003).Nonlinear dynamics of phonations in excised larynx experiments. J. Acoust. Soc. Am114 (4 pt1): 2198-205Kumar, A., & Mullick, S. K. (1996). Nonlinear dynamical analysis of speech. J.Acoust.Soc. Am. (100): 615–629.Milenkovic, P. (1987). Least mean square measures of voice perturbation. J. Speech Hear. Res. (30): 529–538.Narayanan, S. S., & Alwan, A. A. (1995). A nonlinear dynamical systems analysis of fricative consonants. J. Acoust. Soc. Am. (97):2511.Peitgen, H. O., Jurgens, H., & Saupe, D. (1992). Chaos and Fractals, New Frontiers of Science.New York: U.S.A. Springer-Verlag.Titze, I. R. (1995). Workshop on acoustic voice analysis; Summary Statement. National Center for Voice and Speech, Denver.Titze, I. R., Horii, I., & Scherer, R. C. (1987). Some technical considerations in voice perturbationmeasurements. J Speech HearingResearch (30): 252-260.Wolf, A., Swift, J. B., Swinney, H. L., & Vastano,J. A. (1985). Determining Lyapunov exponentsfrom a time series. Physica D (16):285–317.Yu, P., Garrel, R., Nicollas, R., Ouaknine, M.,& Giovanni, A. (2007). Objective VoiceAnalysis in Dysphonic Patients: New Data Including Nonlinear Measurements. FoliaPhoniatr Logop , 1 (59): 20-30.Yu, P., Ouaknine, M., & Giovanni, A. (2000).Intérêt clinique du calcul des coefficients de Lyapunov pour l’analyse objective desdysphonies. Rev. laryngol. otol. Rhinol, 5(121): 301-305.Zhang, Y., & Jiang, J. (2003). Nonlinear dynamicanalysis of signal typing of pathologicalhuman voices. Electron. Lett. (39):1021–1023.info:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2https://creativecommons.org/licenses/by-nc-sa/4.0/2023-03-10T13:05:24Z