Synthetic Vocal Fold

Synthetic vocal folds are bioengineered constructs designed to reproduce the structure and sound-producing function of native vocal folds, supporting research and potential voice restoration. During phonation, airflow from the lungs interacts with their flexible, layered material, driving self-sustained vibration that converts aerodynamic energy into acoustic energy. Researchers use synthetic vocal folds to study tissue mechanics, airflow, vibration, and voice disorders under controlled laboratory conditions, while engineered replacements may help address tissue damage or loss. Their development connects biomaterials, biomechanics, and tissue engineering, offering platforms for evaluating treatments and improving the design of future laryngeal implants.

Synthetic Vocal Fold - Related Videos

Research

JoVE Journal - Bioengineering

Synthetic, Multi-Layer, Self-Oscillating Vocal Fold Model Fabrication

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Cited by 49 •

2011

The methodology for fabricating synthetic vocal fold models is described. The models are life-sized and mimic the multi-layer structure of the human vocal folds. Results show the models to self-oscillate at pressures comparable to lung pressure and demonstrate flow-induced vibratory responses that are similar to those of human vocal folds.

Construction and Characterization of a Novel Vocal Fold Bioreactor

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Cited by 8 •

2014

A novel vocal fold bioreactor capable of delivering physiologically relevant, vibratory stimulation to cultured cells is constructed and characterized. This dynamic culture device, when combined with a fibrous poly(ε-caprolactone) scaffold, creates a vocal fold-mimetic environment that modulates the behaviors of mesenchymal stem cells.

Hemi-laryngeal Setup for Studying Vocal Fold Vibration in Three Dimensions

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Cited by 12 •

2017

This paper introduces a protocol for the preparation of hemi-larynx specimens facilitating a multi-dimensional view of vocal fold vibration, in order to investigate various biophysical aspects of voice production in humans and non-human mammals.

Investigating the Three-dimensional Flow Separation Induced by a Model Vocal Fold Polyp

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Cited by 2 •

2014

Vocal fold polyps can disrupt vocal fold dynamics and thus can have devastating consequences on a patient's ability to communicate. Three-dimensional flow separation induced by a wall-mounted model polyp and its impact on the wall pressure loading are examined using particle image velocimetry, skin friction line visualization, and wall pressure measurements.

Preparation of the Rat Vocal Fold for Neuromuscular Analyses

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Cited by 3 •

2020

This protocol describes methods used to prepare rat vocal folds for histochemical neuromuscular study.

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