In this paper, the development of a large-displacement large-strain 3-D finite element model of the vocal fold is reported. A fold is discretized into 720 8-node brick elements with a total of 1001 nodes and 3003 displacement degrees of freedom. The structure has realistic dimensions and geometry. The model includes geometric and material nonlinearities. The geometric nonlinearity appears in the strain-displacement relation due to the second order displacement derivatives and the material nonlinearity refers to the constitutive law. The Mooney-Rivlin rubber material formulation for an anisotropic tissue medium is used to characterize the tissue rheology. The elasticity tensor and the stress tensor for the Total Lagrangian formulation are ob...
International audienceThe biomechanical parameters of the multiple tissue layer structure of the voc...
International audienceComposed of collagen, elastin and muscular fibrous networks, vocal folds are s...
During phonation, the vocal folds collision during the glottal closure is considered to be a risk fa...
The reconstruction of the video-kymographic records from the numerical simulation of the vocal fold ...
A 3D finite element (FE) fully parametric model of the human larynx was developed and used for nume...
A 3D finite element model of the human larynx including the vocal folds was developed. The model ena...
This master‘s thesis deals with computational modelling of human vocal folds in phonation position u...
The thesis addresses the numerical solution of the oscillation of the vocal fold at finite strain, w...
This Master´s thesis deals with use of finite element method for modeling motion and stress of vocal...
International audienceThe biomechanical parameters of the multiple tissue layer structure of the voc...
International audienceThe biomechanical parameters of the multiple tissue layer structure of the voc...
International audienceThe biomechanical parameters of the multiple tissue layer structure of the voc...
International audienceThe biomechanical parameters of the multiple tissue layer structure of the voc...
National audienceThe quality of numeric models of phonation is strongly dependent on the accuracy of...
The article describes the design of a 3D finite element (FE) model of real human vocal folds in a de...
International audienceThe biomechanical parameters of the multiple tissue layer structure of the voc...
International audienceComposed of collagen, elastin and muscular fibrous networks, vocal folds are s...
During phonation, the vocal folds collision during the glottal closure is considered to be a risk fa...
The reconstruction of the video-kymographic records from the numerical simulation of the vocal fold ...
A 3D finite element (FE) fully parametric model of the human larynx was developed and used for nume...
A 3D finite element model of the human larynx including the vocal folds was developed. The model ena...
This master‘s thesis deals with computational modelling of human vocal folds in phonation position u...
The thesis addresses the numerical solution of the oscillation of the vocal fold at finite strain, w...
This Master´s thesis deals with use of finite element method for modeling motion and stress of vocal...
International audienceThe biomechanical parameters of the multiple tissue layer structure of the voc...
International audienceThe biomechanical parameters of the multiple tissue layer structure of the voc...
International audienceThe biomechanical parameters of the multiple tissue layer structure of the voc...
International audienceThe biomechanical parameters of the multiple tissue layer structure of the voc...
National audienceThe quality of numeric models of phonation is strongly dependent on the accuracy of...
The article describes the design of a 3D finite element (FE) model of real human vocal folds in a de...
International audienceThe biomechanical parameters of the multiple tissue layer structure of the voc...
International audienceComposed of collagen, elastin and muscular fibrous networks, vocal folds are s...
During phonation, the vocal folds collision during the glottal closure is considered to be a risk fa...