Related Experiment Video
Updated: Oct 26, 2025

Synthetic, Multi-Layer, Self-Oscillating Vocal Fold Model Fabrication
Published on: December 2, 2011
Vocal fold dynamics in a synthetic self-oscillating model: Contact pressure and dissipated-energy dose
Mohsen Motie-Shirazi1, Matías Zañartu2, Sean D Peterson3
1Department of Mechanical and Aeronautical Engineering, Clarkson University, Potsdam, New York 13699, USA.
Abstract:
The energy dissipated during vocal fold (VF) contact is a predictor of phonotrauma. Difficulty measuring contact pressure has forced prior energy dissipation estimates to rely upon generalized approximations of the contact dynamics. To address this shortcoming, contact pressure was measured in a self-oscillating synthetic VF model with high spatiotemporal resolution using a hemilaryngeal configuration. The approach yields a temporal resolution of less than 0.26 ms and a spatial resolution of 0.254 mm in the inferior-superior direction. The average contact pressure was found to be 32% of the peak contact pressure, 60% higher than the ratio estimated in prior studies. It was found that 52% of the total power was dissipated due to collision. The power dissipated during contact was an order of magnitude higher than the power dissipated due to internal friction during the non-contact phase of oscillation. Both the contact pressure magnitude and dissipated power were found to be maximums at the mid anterior-posterior position, supporting the idea that collision is responsible for the formation of benign lesions, which normally appear at the middle third of the VF.
More Related Videos
Related Concept Videos
Damped Oscillations
Although friction and other non-conservative...
Types of Damping
Forced Oscillations
Sound as Pressure Waves
The pressure fluctuation depends on the difference in displacements between the successive points in the...
Standing Waves in a Cavity
Sound Waves: Interference

