Viscoelastic Properties of Rabbit Vocal Folds after Augmentation

Author:

Hertegård Stellan12,Dahlqvist Åke12,Laurent Claude134,Borzacchiello Assunta14,Ambrosio Luigi

Affiliation:

1. Stockholm and Umeå, Sweden, and Naples, Italy

2. Department of Logopedics and Phoniatrics, Huddinge University Hospital, Stockholm.

3. Department of Otorhinolaryngology, University Hospital of Umeå.

4. Institute of Composite Materials Technology, National Research Council and Department of Production and Materials Engineering, University of Naples “Federico II”.

Abstract

BACKGROUND: Vocal fold function is closely related to tissue viscoelasticity. Augmentation substances may alter the viscoelastic properties of vocal fold tissues and hence their vibratory capacity. OBJECTIVES: We sought to investigate the viscoelastic properties of rabbit vocal folds in vitro after injections of various augmentation substances. STUDY DESIGN AND SETTING: Polytetrafluoroethylene (Teflon), cross-linked collagen (Zyplast), and cross-linked hyaluronan, hylan b gel (Hylaform) were injected into the lamina propria and the thyroarytenoid muscle of rabbit vocal folds. Dynamic viscosity of the injected vocal fold as a function of frequency was measured with a Bohlin parallelplate rheometer during small-amplitude oscillation. RESULTS: All injected vocal folds showed a decreasing dynamic viscosity with increasing frequency. Vocal fold samples injected with hylan b gel showed the lowest dynamic viscosity, quite close to noninjected control samples. Vocal folds injected with polytetrafluoroethylene showed the highest dynamic viscosity followed by the collagen samples. CONCLUSIONS: The data indicated that hylan b gel in short-term renders the most natural viscoelastic properties to the vocal fold among the substances tested. This is of importance to restore/preserve the vibratory capacity of the vocal folds when glottal insufficiency is treated with injections.

Publisher

SAGE Publications

Subject

Otorhinolaryngology,Surgery

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