Use of Aerodynamic Measures in Clinical Voice Assessment
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[1] Michael S. Howe,et al. Compact Green's functions extend the acoustic theory of speech production , 2007, J. Phonetics.
[2] A. Löfqvist,et al. Initial validation of an indirect measure of subglottal pressure during vowels. , 1982, The Journal of the Acoustical Society of America.
[3] J. Perkell,et al. Methods for using a noninvasive technique for estimating glottal functions from oral measurements , 1984 .
[4] Ingo R Titze,et al. Biological mechanisms underlying voice changes due to dehydration. , 2002, Journal of speech, language, and hearing research : JSLHR.
[5] S. Zeitels,et al. CURRENT DIAGNOSTICS AND OFFICE PRACTICE: Appropriate use of objective measures of vocal function in the multidisciplinary management of voice disorders , 1997 .
[6] I. Titze. Phonation threshold pressure: a missing link in glottal aerodynamics. , 1991, The Journal of the Acoustical Society of America.
[7] Joseph S. Perkell,et al. Phonatory function associated with hyperfunctionally related vocal fold lesions , 1990 .
[8] T J Hixon,et al. Age and laryngeal airway resistance during vowel production. , 1989, The Journal of speech and hearing disorders.
[9] I. Titze,et al. Further studies of phonation threshold pressure in a physical model of the vocal fold mucosa. , 1997, The Journal of the Acoustical Society of America.
[10] J. Perkell,et al. Objective assessment of vocal hyperfunction: an experimental framework and initial results. , 1989, Journal of speech and hearing research.
[11] T. Hixon,et al. A clinical method for estimating laryngeal airway resistance during vowel production. , 1981, The Journal of speech and hearing disorders.
[12] Alison Behrman,et al. Common practices of voice therapists in the evaluation of patients. , 2005, Journal of voice : official journal of the Voice Foundation.
[13] J. Perkell,et al. Relationships between intra-speaker variation in aerodynamic measures of voice production and variation in SPL across repeated recordings. , 1994, Journal of speech and hearing research.
[14] A. Keilmann,et al. Development of aerodynamic aspects in children's voice. , 1995, International journal of pediatric otorhinolaryngology.
[15] R. Netsell,et al. Developmental patterns of laryngeal and respiratory function for speech production. , 1994, Journal of voice : official journal of the Voice Foundation.
[16] E. Stathopoulos,et al. Vocal efficiency as a function of vocal intensity: a study of children, women, and men. , 1995, The Journal of the Acoustical Society of America.
[17] J. Perkell,et al. Glottal airflow and transglottal air pressure measurements for male and female speakers in soft, normal, and loud voice. , 1988, The Journal of the Acoustical Society of America.
[18] E. Stathopoulos. Relationship between intraoral air pressure and vocal intensity in children and adults. , 1986, Journal of speech and hearing research.
[19] J. Perkell,et al. Aerodynamic and acoustic voice measurements of patients with vocal nodules: variation in baseline and changes across voice therapy. , 2003, Journal of voice : official journal of the Voice Foundation.
[20] Jack J. Jiang,et al. The minimum glottal airflow to initiate vocal fold oscillation. , 2007, The Journal of the Acoustical Society of America.
[21] G Weismer,et al. Oral airflow and air pressure during speech production: a comparative study of children, youths and adults. , 1985, Folia phoniatrica.