[[abstract]]n voice research, in vitro tensile stretch experiments of vocal fold tissues are commonly employed to determine the tissue biomechanical properties. In the standard stretch-release protocol, tissue deformation is computed from displacements applied to sutures inserted through the thyroid and arytenoid cartilages, with the cartilages assumed to be rigid. Here, a non-contact optical method was employed to determine the actual tissue deformation of vocal fold lamina propria specimens from three excised human larynges in uniaxial tensile tests. Specimen deformation was found to consist not only of deformation of the tissue itself, but also deformation of the cartilages, as well as suture alignment and tightening. Stress–stretch curv...
[[abstract]]The mechanical properties of the vocal fold lamina propria, including the vocal fold cov...
[[abstract]]The mechanical properties of the vocal fold lamina propria, including the vocal fold cov...
[[abstract]]Objectives: Very little is known about the elasticity of the human ventricular fold (fal...
[[abstract]]n voice research, in vitro tensile stretch experiments of vocal fold tissues are commonl...
[[abstract]]n voice research, in vitro tensile stretch experiments of vocal fold tissues are commonl...
In voice research, in vitro tensile stretch experiments of vocal fold tissues are commonly employed ...
This investigation attempts to shed light on phonation from a solid mechanics (i.e. biomechanics) pe...
[[abstract]]The vocal folds are known to be mechanically anisotropic due to the microstructural arra...
[[abstract]]The vocal folds are known to be mechanically anisotropic due to the microstructural arra...
[[abstract]]The vocal folds are known to be mechanically anisotropic due to the microstructural arra...
Human voice is produced by flow-induced self-sustained oscillation of the vocal fold lamina propria....
Phonation is a complex process requiring the controlled exhalation of air through the larynx. Withi...
[[abstract]]Objectives: Very little is known about the elasticity of the human ventricular fold (fal...
[[abstract]]Objectives: Very little is known about the elasticity of the human ventricular fold (fal...
[[abstract]]The mechanical properties of the vocal fold lamina propria, including the vocal fold cov...
[[abstract]]The mechanical properties of the vocal fold lamina propria, including the vocal fold cov...
[[abstract]]The mechanical properties of the vocal fold lamina propria, including the vocal fold cov...
[[abstract]]Objectives: Very little is known about the elasticity of the human ventricular fold (fal...
[[abstract]]n voice research, in vitro tensile stretch experiments of vocal fold tissues are commonl...
[[abstract]]n voice research, in vitro tensile stretch experiments of vocal fold tissues are commonl...
In voice research, in vitro tensile stretch experiments of vocal fold tissues are commonly employed ...
This investigation attempts to shed light on phonation from a solid mechanics (i.e. biomechanics) pe...
[[abstract]]The vocal folds are known to be mechanically anisotropic due to the microstructural arra...
[[abstract]]The vocal folds are known to be mechanically anisotropic due to the microstructural arra...
[[abstract]]The vocal folds are known to be mechanically anisotropic due to the microstructural arra...
Human voice is produced by flow-induced self-sustained oscillation of the vocal fold lamina propria....
Phonation is a complex process requiring the controlled exhalation of air through the larynx. Withi...
[[abstract]]Objectives: Very little is known about the elasticity of the human ventricular fold (fal...
[[abstract]]Objectives: Very little is known about the elasticity of the human ventricular fold (fal...
[[abstract]]The mechanical properties of the vocal fold lamina propria, including the vocal fold cov...
[[abstract]]The mechanical properties of the vocal fold lamina propria, including the vocal fold cov...
[[abstract]]The mechanical properties of the vocal fold lamina propria, including the vocal fold cov...
[[abstract]]Objectives: Very little is known about the elasticity of the human ventricular fold (fal...