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I continue research efforts into the clinical analysis of normal and disordered voice production with particular emphasis on advanced statistical signal processing algorithms, ambulatory monitoring of daily voice use, and enhanced laryngeal imaging techniques.
I investigate the details of the relationship between the motion of the vocal folds (the "voice box") and the acoustics of voice production. My expertise is in signal processing and acoustic voice analysis, and I bring these engineering tools to clinical voice research. We have developed a comprehensive laryngeal high-speed videoendoscopy system to image and quantify vocal fold vibratory characteristics and relate them to voice-related sensor measurements and mathematical models. Other major efforts include the development of a smartphone platform for tracking voice use using an accelerometer taped to the neck.
I investigate the details of the relationship between the motion of the vocal folds (the "voice box") and the acoustics of voice production. My expertise is in signal processing and acoustic voice analysis, and I bring these engineering tools to clinical voice research. We have developed a comprehensive laryngeal high-speed videoendoscopy system to image and quantify vocal fold vibratory characteristics and relate them to voice-related sensor measurements and mathematical models. Other major efforts include the development of a smartphone platform for tracking voice use using an accelerometer taped to the neck.
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Journal of speech, language, and hearing research : JSLHRno. 3 (2024): 753-781
Perspectives of the ASHA Special Interest Groupsno. 6 (2023): 1363-1379
Journal of voice : official journal of the Voice Foundation (2023)
Jarrad H. Van Stan, James Burns,Tiffiny Hron,Steven Zeitels,Bharat A. Panuganti, Phillip R. Purnell,Daryush D. Mehta,Robert E. Hillman,Hamzeh Ghasemzadeh
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