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Mehta Daryush PhD Thesis Proposal FINAL

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Mehta Daryush PhD Thesis Proposal FINAL
HST GRADUATE COMMITTEE c/o Academic Office, E25-518
Dear HST Graduate Committee Chair,
Daryush Mehta presented his PhD thesis proposal on November 25, 2008 in the RLE Haus Room
(36-428) at MIT to the following committee:
Chair:
Co-Supervisor:
Co-Supervisor:
Reader:

Joseph S. Perkell, PhD, MIT, whose areas of expertise are the sensorymotor control of speech production and voice/speech production and acoustics Robert E. Hillman, PhD, MGH, whose area of expertise is in the clinical evaluation of human voice production.
Thomas F. Quatieri, ScD, MIT Lincoln Laboratory, whose area of expertise is in biologically-inspired speech signal processing.
Dimitar D. Deliyski, PhD, University of South Carolina, whose areas of expertise are in the acoustic analysis of voice and the development of laryngeal high-speed videoendoscopy.

The proposal, which is enclosed, was favorably received by the Committee, and we approved the scientific content and proposed work as being suitable for a PhD thesis.
All of the above members of the Committee have agreed to serve on the Thesis Committee.
Sincerely,

______________________________
Joseph S. Perkell
Thesis Committee Chair

______________________________
Robert E. Hillman, PhD
Thesis Co-Supervisor

Enc:

Thesis Proposal
Supervisor Agreements
Reader Agreement

______________________________
Thomas F. Quatieri, ScD
Thesis Co-Supervisor

PhD Thesis Committee Members
1. Joseph S. Perkell, PhD (Chair)
a. Title: Senior Research Scientist, Speech Communication Group, Research Laboratory of
Electronics, Massachusetts Institute of Technology
b. Major Discipline: Sensory-motor control of speech production
c. Justification: Dr. Perkell fills the role of Chair as a non-supervisor and senior researcher at MIT. Dr. Perkell offers a wide knowledge range from voice and speech production to speech acoustics and motor involvement in pathological speakers.
2. Robert. E. Hillman, PhD (Co-Supervisor)
a. Title: Co-Director/Research Director, Center for



Cited: American Speech-Language-Hearing Association (2002). "Consensus Auditory-Perceptual Evaluation of Voice (CAPE-V)." Berry, D. A., Herzel, H., Titze, I. R., and Story, B. H. (1996). "Bifurcations in excised larynx experiments," J Boersma, P., and Weenink, D. (2007). Praat: Doing phonetics by computer (Amsterdam, The Netherlands) Bonilha, H. S., Deliyski, D. D., and Gerlach, T. T. (2008a). "Phase asymmetries in normophonic speakers: Visual judgments and objective findings," Am Bonilha, H. S., Gerlach, T. T., Whiteside, J. P., and Deliyski, D. D. (2008b). "Vocal fold phase asymmetries in patients: A study across visualization techniques," Am Deliyski, D. D. (2005). "Endoscope motion compensation for laryngeal high-speed videoendoscopy," J Deliyski, D. D., and Petrushev, P. (2003). "Methods for objective assessment of high-speed videoendoscopy," in 6th International Conference: Advances in Quantitative Laryngology, Voice and December 18, 2008 Deliyski, D E. (2008). "Clinical implementation of laryngeal high-speed videoendoscopy: Challenges and evolution," Folia Phoniatr Döllinger, M., Braunschweig, T., Lohscheller, J., Eysholdt, U., and Hoppe, U. (2003). "Normal voice production: Computation of driving parameters from endoscopic digital high speed images," Dresel, C., Mergell, P., Hoppe, U., and Eysholdt, U. (2006). "An asymmetric smooth contour twomass model for recurrent laryngeal nerve paralysis," Log. Phon. Voc. 31(2), 61-75. Eysholdt, U., Rosanowski, F., and Hoppe, U. (2003). "Vocal fold vibration irregularities caused by different types of laryngeal asymmetry," Eur Farnsworth, D. W. (1940). "High-speed motion pictures of the human vocal cords," Bell Laboratories Record 18, 203-208. Gallivan, G. J., Gallivan, H. K., and Eitnier, C. M. (2008). "Dual intracordal unilateral vocal fold cysts: a perplexing diagnostic and therapeutic challenge," J Granqvist, S., Hertegård, S., Larsson, H., and Sundberg, J. (2003). "Simultaneous analysis of vocal fold vibration and transglottal airflow: Exploring a new experimental setup," J Haben, C. M., Kost, K., and Papagiannis, G. (2003). "Lateral phase mucosal wave asymmetries in the clinical voice laboratory," J Hammarberg, B. (1995). "High-speed observations of diplophonic phonation," in Vocal Fold Physiology: Voice Quality Control, edited by O Hanson, H. M. (1997). "Glottal characteristics of female speakers: Acoustic correlates," J. Acoust. Hillman, R. E., Holmberg, E. B., Perkell, J. S., Walsh, M., and Vaughan, C. (1990). "Phonatory function associated with hyperfunctionally related vocal fold lesions," J Hirano, M., Kurita, S., Yukizane, K., and Hibi, S. (1989). "Asymmetry of the laryngeal framework: A morphologic study of cadaver larynges," Annals of Otology Rhinology and Laryngology Holmberg, E. B., Hillman, R. E., and Perkell, J. S. (1988). "Glottal airflow and transglottal air pressure measurements for male and female speakers in soft, normal, and loud voice," J. Holmberg, E. B., Hillman, R. E., and Perkell, J. S. (1989). "Glottal airflow and transglottal air pressure measurements for male and female speakers in low, normal, and high pitch," J. Holmberg, E. B., Hillman, R. E., Perkell, J. S., and Gress, C. (1994). "Relationships between intraspeaker variation in aerodynamic measures of voice production and variation in SPL across repeated recordings," J Ishizaka, K., and Flanagan, J. L. (1972). "Synthesis of voiced sounds from a two-mass model of the vocal cords," Bell System Technical Journal 51, 1233-1268. Isshiki, N., Tanabe, M., Ishizaka, K., and Broad, D. (1977). "Clinical significance of asymmetrical vocal cord tension," Ann Jiang, J. J., Zhang, Y., and McGilligan, C. (2006). "Chaos in voice, from modeling to measurement," J Kaiser, H. F., and Serlin, R. H. (1978). "Contributions to the method of paired comparisons," Applied Psychological Measurement 2, 421-430. December 18, 2008 Kay Elemetrics Corporation (2006) Krane, M. H. (2005). "Aeroacoustic production of low-frequency unvoiced speech sounds," J. Lohscheller, J., Döllinger, M., McWhorter, A. J., and Kunduk, M. (2008a). "Preliminary study on the quantitative analysis of vocal loading effects on vocal fold dynamics using Lohscheller, J., Eysholdt, U., Toy, H., and Döllinger, M. (2008b). "Phonovibrography: Mapping high-speed movies of vocal fold vibrations into 2-D diagrams for visualizing and analyzing Maunsell, R., Ouaknine, M., Giovanni, A., and Crespo, A. (2006). "Vibratory pattern of vocal folds under tension asymmetry," Otolaryngol Maurer, D., Hess, M., and Gross, M. (1996). "High-speed imaging of vocal fold vibrations and larynx movements within vocalizations of different vowels," Ann McGowan, R. S., and Howe, M. S. (2007). "Compact Green 's functions extend the acoustic theory of speech production," Journal of Phonetics 35(2), 259-270. Mehta, D. (2006). "Aspiration noise during phonation: Synthesis, analysis, and pitch-scale modification," Master of Science thesis, Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, MA, 2006. Meltzner, G. S., and Hillman, R. E. (2005). "Impact of aberrant acoustic properties on the perception of sound quality in electrolarynx speech," J

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