International audienceComposed of collagen, elastin and muscular fibrous networks, vocal folds are soft laryngeal multi-layered tissues owning remarkable vibro-mechanical performances. However, the impact of their histological features on their overall mechanical properties still remains elusive. Thereby, this study presents a micro-mechanical hyperelastic model able to describe the 3D fibrous architecture and the surrounding matrices of the vocal-fold sublayers, and to predict their mechanical behavior. For each layer, the model parameters were identified using available histo-mechanical data, including their quasi-static response for key physiological loading paths, i.e., longitudinal tension, transverse compression and longitudinal shear...
This investigation attempts to shed light on phonation from a solid mechanics (i.e. biomechanics) pe...
International audienceSince the last decades, the development of fundamental knowledge on mechanics ...
[[abstract]]This study examines the local and global changes of fundamental frequency (F0) during ph...
International audienceComposed of collagen, elastin and muscular fibrous networks, vocal folds are s...
International audienceThe vocal folds are soft multi-layered laryngeal tissues, owning remarkable vi...
Composed of collagen, elastin and muscular fibrous networks, human vocal folds are soft larygeal mul...
[[abstract]]One of the primary mechanisms to vary one's vocal frequency is through vocal fold length...
International audienceDuring phonation, human vocal fold tissues are subjected to combined tension, ...
Human voice is produced by flow-induced self-sustained oscillation of the vocal fold lamina propria....
Composées de réseaux de fibres de collagène, d'élastine et de fibres musculaires, les plis vocaux hu...
International audienceObjectives: Current understanding of the histological features of the vocal fo...
[[abstract]]The mechanical properties of the vocal fold lamina propria, including the vocal fold cov...
[[abstract]]The human voice is produced by flow-induced self-sustained oscillation of the vocal fold...
This investigation attempts to shed light on phonation from a solid mechanics (i.e. biomechanics) pe...
International audienceSince the last decades, the development of fundamental knowledge on mechanics ...
[[abstract]]This study examines the local and global changes of fundamental frequency (F0) during ph...
International audienceComposed of collagen, elastin and muscular fibrous networks, vocal folds are s...
International audienceThe vocal folds are soft multi-layered laryngeal tissues, owning remarkable vi...
Composed of collagen, elastin and muscular fibrous networks, human vocal folds are soft larygeal mul...
[[abstract]]One of the primary mechanisms to vary one's vocal frequency is through vocal fold length...
International audienceDuring phonation, human vocal fold tissues are subjected to combined tension, ...
Human voice is produced by flow-induced self-sustained oscillation of the vocal fold lamina propria....
Composées de réseaux de fibres de collagène, d'élastine et de fibres musculaires, les plis vocaux hu...
International audienceObjectives: Current understanding of the histological features of the vocal fo...
[[abstract]]The mechanical properties of the vocal fold lamina propria, including the vocal fold cov...
[[abstract]]The human voice is produced by flow-induced self-sustained oscillation of the vocal fold...
This investigation attempts to shed light on phonation from a solid mechanics (i.e. biomechanics) pe...
International audienceSince the last decades, the development of fundamental knowledge on mechanics ...
[[abstract]]This study examines the local and global changes of fundamental frequency (F0) during ph...