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International Bulletin of Otorhinolaryngology

Methods for assessment of vocal characteristics in dental treatment

M. Stoykov, M. Milkov, S. Peev

Abstract

A phonetically correct articulation after teeth treatment and prosthetics is an important decision for a socially comfortable, meaningful, and high quality life. Dental treatment and prosthetics contribute to the preservation of normal speech ability, beyond just contributing to the preservation and re-establishing of the masticatory and aesthetic functions. While the last two roles of dental treatment and prosthetics are well understood, the phonetic recovering is still poorly comprehended and rather unvalued. The purpose of this article is to review the methods for assessing voice characteristics in dental treatment.

Keywords

vocal characteristics, dental treatment, methods, assessment

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References

American Speech-Language-Hearing Association: Consensus Auditory-Perceptual Evaluation of Voice (CAPE-V). Rockville Pike, American Speech-Language-Hearing Association, 2002

Awan SN, Roy N. Toward the development of an objective index of dysphonia severity: A four-factor acoustic model. Clinical Linguistics and Phonetics. 2006;20:35–49

Chan RW, Titze IR. Dependence of phonation threshold pressure on vocal tract acoustics and vocal fold tissue mechanics. Journal of the Acoustical Society of America. 2006;119:2351–2362

Chen SH. Voice range profile of Taiwanese normal young adults: a preliminary study. Zhonghua Yi Xue Za Zhi (Taipei). 1996;58(6):414-20

De Bodt MS, Wuyts FL, Van de Heyning PH, Croux C: Test-retest study of the GRBAS scale: influence of experience and professional background on perceptual ratings of voice quality. J Voice 1997;11:74–8

Dimitriev L, Kiselev A. Relationship between the formant structure of different types of supraglottic cavities. Folia Phoniat. 1979;32:238-41

Fex S: Perceptual evaluation. J Voice 1992;6: 155–158

Garcia RAS, Campiotto AR. Distúrbios vocais x distúrbios musculares orais: possíveis relaçöes. Pró-fono. 1995;7(2):33-9

Hacki T. Vocal capabilities of nonprofessional singers evaluated by measurement and superimposition of their speaking, shouting and singing voice range profiles. HNO. 1999;47:809–15

Hamlet SL, Geoffrey VC, Bartlett DM, Effect of a Dental Prosthesis on Speaker-Specific Characteristics of Voice, Dec. 1976d. J. Speech and Hearing Research Vol. 19, pp. 639-650

Hammarberg B, Gauffin J: Perceptual and acoustic correlates of quality differences in pathological voices as related to physiological aspects; in Fujimura O, Hirano M: Vocal Fold Physiology. Voice Quality Control. San Diego, Singular, 1995, pp 283–303

Hirano M: Clinical Examination of Voice. New York, Springer, 1981, pp 83–84

Holmberg EB, Ihre E, Sodersten M. Phonetograms as a tool in the voice clinic: changes across voice therapy for patients with vocal fatigue. Logoped Phoniatr Vocol. 2007;32(3):113-27

Ikeda Y, Masuda T, Manako H, Yamashita H, Yamamoto T, Komiyama S. Quantitative evaluation of the voice range profile in patients with voice disorder. Eur Arch Otorhinolaryngol. 1999;256:S51-5

Laine Т., Malocclusion traits and articulatory components of speech. European J. Orthodontics 1992 14(4):302-309

Laver J. The phonetic description of voice quality. Cambridge Studies in Linguistics London. 1980;31:1-86

Leino T, Laukkanen AM, Ilomäki I, Mäki E. Assessment of vocal capacity of finnish university students. Folia Phoniatr Logop. 2008;60(4):199-209

Ma E, Robertson J, Radford C, Vagne S, El-Halabi R, Yiu E. Reliability of speaking and maximum voice range measures in screening for dysphonia. J Voice. 2007;21(4):397-406

Moustafa AH.Clinical Complete Denture Prosthodontics, Post Insertion Denture Problems,Ist edition.King Saud University 2004;388

Murphy PJ. On first rahmonic amplitude in the analysis of synthesized aperiodic voice signals. Journal of the Acoustical Society of America. 2006;120:2896–2907

Murphy PJ, Akande OO. Noise estimation in voice signals using short-term cepstral analysis. Journal of the Acoustical Society of America. 2007;121:1679–1690

Oates J, Russell A: Learning voice analysis using an interactive multi-media package: development and preliminary evaluation. J Voice 1998;12:500–512

Oliveira VL, Pinho SMR. A qualidade da voz e o trato vocal nos indivíduos de face curta e face longa. In: PINHO, S.M.R. Tópicos em voz. Rio de Janeiro: Guanabara Koogan, 2001

Pribuisiene R, Uloza V, Saferis V. Multidimensional voice analysis of reflux laryngitis patients. Eur Arch Otorhinolaryngol. 2005;262(1):35-40

Ringel RL, Chodzko-Zajko WJ. Vocal indices of biological age. J. Voice. 1987;1:31-7

Schutte HK, Seidner W. Recommendation by the Union of European Phoniatricians (UEP), Folia-Phoniatr-(Basel). 1983;35(6):286-8

Schwarz R, Hoppe U, Schuster M, et al. Classification of unilateral vocal fold paralysis by endoscopic digital high-speed recordings and inversion of a biomechanical model. IEEE Transactions on Biomedical Engineering. 2006;53:1099–1108

Silva AMT, Morisso MF, Cielo CA. Relationship between the severity of temporomandibular disorder and voice. Pró-Fono. 2007;19(3):279-88

Siupsinskiene N. Quantitative analysis of professionally trained versus untrained voices. Medicina. 2003;39(1): 36-46

Sulter AM, Schutte HK, Miller DG. Differences in phonetogram features between male and female subjects with and without vocal training. J Voice. 1995;9(4):363-77

Tao C, Zhang Y, Jiang JJ. Extracting physiologically relevant parameters of vocal folds from high-speed video image series. IEEE Transactions on Biomedical Engineering. 2007;54:794–801

Wurzbacher T, Schwarz R, Döllinger M, et al. Model-based classification of nonstationary vocal fold vibrations. Journal of the Acoustical Society of America. 2006;120:1012–1027

Yan Y, Chen X, Bless D. Automatic tracing of vocal-fold motion from high-speed digital images. IEEE Transactions on Biomedical Engineering. 2006;53:1394–1400

Yan YL, Damrose E, Bless D. Functional analysis of voice using simultaneous high-speed imaging and acoustic recordings. Journal of Voice. 2007;21:604–616

Zhang Y, Jiang JJ. Acoustic analyses of sustained and running voices from patients with laryngeal pathologies. Journal of Voice. 2008;22:1–9

Zeitels SM, Blitzer A, Hillman RE, et al. Foresight in laryngology and laryngeal surgery: A 2020 vision. Annals of Otology, Rhinology, and Laryngology Supplement. 2007;198:2–16




DOI: http://dx.doi.org/10.14748/orl.v16i3.7257

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