The most frequently occurring types of voice disorders are those that are related to vocal abuse and/or misuse, i.e., """"""""vocal hyperfunction"""""""". However, there is a paucity of hard data concerning: l) specific physiologic and acoustic manifestations of vocal hyperfunction and 2) the actual role of hyperfunction in the development and maintenance of voice disorders. Thus, the major goal of this project is to further develop and use quantitative measures of voice production to provide objective descriptions of conditions referred to as vocal hyperfunction. This work will involve the use of non-invasive, indirect measures of glottal air flow, transglottal air pressure, relative vocal fold contact area (EGG), respiratory function, neck surface electromyography (EMG) and a number of derived measures to study both organic (nodules, polyps, contact ulcers) and non-organic (functional dysphonia/aphonia) manifestations of vocal hyperfunction. These measures will be examined in relation to encoded descriptions of the pathophysiologic status of the larynx (from videolaryngoscopy/stroboscopy), pertinent medical and psychosocial factors and perceptual characteristics of the voice. Interpretation of results will be aided through use of a simple model of vocal-fold vibration. The overall design of this project continues to be based on a set of interrelated hypotheses which form a descriptive framework for vocal hyperfunctionally-related voice disorders. Data analysis and interpretation will continue to be related to this framework. The proposed work will build on previous efforts by focusing on a number of specific investigations related to hyperfunctional and normal voice production including: l) a group-based study of different types of hyperfunctional voice disorders; 2) continuation of a study examining the efficacy of behaviorally-based treatment of vocal nodules in women; 3) perceptual evaluation of pathological vocal function (particularly related to changes in vocal function with treatment); and 4) exploration of underlying mechanisms through the use of vocal fold modeling. Studies of normal voice production will focus on enlargement of our normative data base with increased representation of males and older age groups. We will extend data analysis to the multivariate level in the hopes of developing more effective statistical models of vocal function. Additional studies will focus on the direct examination of specific relationships between new combinations of measures obtained from selected normal and pathological subjects. The information gained from these efforts should lead to new insights concerning the etiology of vocal hyperfunction, and to improvements in clinical methods used to diagnosis and treat these disorders.

Agency
National Institute of Health (NIH)
Institute
National Institute on Deafness and Other Communication Disorders (NIDCD)
Type
Research Project (R01)
Project #
2R01DC000266-12
Application #
2125312
Study Section
Sensory Disorders and Language Study Section (CMS)
Project Start
1984-09-01
Project End
2000-06-30
Budget Start
1995-07-01
Budget End
1996-06-30
Support Year
12
Fiscal Year
1995
Total Cost
Indirect Cost
Name
Massachusetts Eye and Ear Infirmary
Department
Type
DUNS #
073825945
City
Boston
State
MA
Country
United States
Zip Code
02114
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Slifka, Janet (2003) Respiratory constraints on speech production: starting an utterance. J Acoust Soc Am 114:3343-53
Holmberg, E B; Hillman, R E; Hammarberg, B et al. (2001) Efficacy of a behaviorally based voice therapy protocol for vocal nodules. J Voice 15:395-412
Cheyne, H A; Nuss, R C; Hillman, R E (1999) Electroglottography in the pediatric population. Arch Otolaryngol Head Neck Surg 125:1105-8
Kobler, J B; Hillman, R E; Zeitels, S M et al. (1998) Assessment of vocal function using simultaneous aerodynamic and calibrated videostroboscopic measures. Ann Otol Rhinol Laryngol 107:477-85
Holmberg, E B; Hillman, R E; Perkell, J S et al. (1995) Comparisons among aerodynamic, electroglottographic, and acoustic spectral measures of female voice. J Speech Hear Res 38:1212-23
Holmberg, E B; Perkell, J S; Hillman, R E et al. (1994) Individual variation in measures of voice. Phonetica 51:30-7
Holmberg, E B; Hillman, R E; Perkell, J S et al. (1994) Relationships between intra-speaker variation in aerodynamic measures of voice production and variation in SPL across repeated recordings. J Speech Hear Res 37:484-95
Perkell, J S; Hillman, R E; Holmberg, E B (1994) Group differences in measures of voice production and revised values of maximum airflow declination rate. J Acoust Soc Am 96:695-8
Perkell, J S; Holmberg, E B; Hillman, R E (1991) A system for signal processing and data extraction from aerodynamic, acoustic, and electroglottographic signals in the study of voice production. J Acoust Soc Am 89:1777-81