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Updated: Dec 20, 2025

Minimally Invasive Murine Laryngoscopy for Close-Up Imaging of Laryngeal Motion During Breathing and Swallowing
Published on: December 1, 2023
Bayesian estimation of vocal function measures using laryngeal high-speed videoendoscopy and glottal airflow
Gabriel A Alzamendi1, Rodrigo Manríquez1, Paul J Hadwin2
1Department of Electronic Engineering, Universidad Técnica Federico Santa María, Valparaíso 2390123, Chile.
Abstract:
This study introduces the in vivo application of a Bayesian framework to estimate subglottal pressure, laryngeal muscle activation, and vocal fold contact pressure from calibrated transnasal high-speed videoendoscopy and oral airflow data. A subject-specific, lumped-element vocal fold model is estimated using an extended Kalman filter and two observation models involving glottal area and glottal airflow. Model-based inferences using data from a vocally healthy male individual are compared with empirical estimates of subglottal pressure and reference values for muscle activation and contact pressure in the literature, thus providing baseline error metrics for future clinical investigations.
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