| Literature DB >> 25491836 |
Paulo G Coelho1, Michael Sobieraj2, Nick Tovar3, Kenneth Andrews4, Benjamin Paul4, Nandini Govil4, Seema Jeswani4, Milan R Amin4, Malvin N Janal5, Ryan C Branski4.
Abstract
The human vocal fold is a complex structure made up of distinct layers that vary in cellular and extracellular matrix composition. Elucidating the mechanical properties of vocal fold tissues is critical for the study of both acoustics and biomechanics of voice production, and essential in the context of vocal fold injury and repair. Both quasistatic and dynamic behavior in the 10-300 Hz range was explored in this preliminary investigation. The resultant properties of the lamina propria were compared to that of the nearby thyroarytenoid muscle. Er, quantified via quasistatic testing of the lamina propria, was 609±138 MPa and 758±142 MPa in the muscle (p=0.001). E' of the lamina propria as determined by dynamic testing was 790±526 MPa compared to 1061±928 MPa in the muscle. Differences in E' did not achieve statistical significance via linear mixed effect modeling between the tissue types (p=0.95). In addition, frequency dependence was not significant (p=0.18).Entities:
Keywords: Dynamic; Mechanical testing; Quasi-static; Rabbit; Vocal fold
Mesh:
Year: 2014 PMID: 25491836 DOI: 10.1016/j.msec.2014.08.051
Source DB: PubMed Journal: Mater Sci Eng C Mater Biol Appl ISSN: 0928-4931 Impact factor: 7.328