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The Institute of Theoretical and Applied Mechanics
47
records found 1 - 10
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1.
Original version of the author's contribution in proceedings, page , section BIO.:
PDF
Numerical investigation of acoustic characteristics of 3D human vocal tract model with nasal cavities
Vampola, T.
;
Radolf, V.
Acoustic resonance characteristics of 3D human vocal tract model without and with nasal and paranasal cavities were computed. Nasal cavities (NC) form the side branches o [...]
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2.
Original version of the author's contribution in proceedings, page , section BIO.:
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Experimental investigation of acoustic characteristics of 3D human vocal tract model with nasal cavities
Radolf, V.
;
Vampola, T.
The following experiments were carried out to be later used in the verification of a complex mathematical model of human voice production. Acoustic resonance characterist [...]
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3.
Original version of the author's contribution in proceedings, page 1018, section BIO.:
PDF
INFLUENCE OF THE NASAL CAVITIES TO HUMAN VOICE QUALITY
Vampola, T.
;
Horáček, J.
Nasal cavities (NC) form the side branches of the human vocal tract and exhibit antiresonance and resonance properties which influence the produced voice quality. This st [...]
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4.
Original version of the author's contribution in proceedings, page 926, section BIO.:
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COMPUTATIONALLY EFFICIENT MODEL OF THE HUMAN VOCAL FOLD
Štorkán, J.
;
Horáček, J.
One mass model of the vocal folds with three degrees of freedom in 2D space was created and used to simulate the movement of the vocal folds. Vocal folds are modeled as a [...]
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5.
Original version of the author's contribution in proceedings, page 382, section BIO.:
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EXPERIMENTAL MODELLING OF PHONATION USING ARTIFICIAL MODELS OF HUMAN VOCAL FOLDS AND VOCAL TRACTS
Horáček, J.
;
Košina, J.
The study provides information on experimental research on a complete 1:1 scaled model of human phonation. The model includes human lungs, the trachea, the laryngeal part [...]
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6.
Original version of the author's contribution in proceedings, page 366, section BIO.:
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EFFECTS OF TURBULENCE IN FE MODEL OF HUMAN VOCAL FOLDS SELF-OSCILLATION
Hájek, P.
;
Švec G., J.
The purpose of the study is to determine whether a turbulence model in fluid flow calculation affects the vocal folds (VF) vibration and the acoustics of human vocal trac [...]
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7.
Original version of the author's contribution as presented on CD, , page 139. :
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Influence of the velopharyngeal opening on human voice quality
Vampola, T.
;
Horáček, J.
149
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8.
Original version of the author's contribution as presented on CD, , page 23. :
PDF
FE modelling of the influence of the lamina propria properties on the vocal folds vibration and produced sound for specific Czech vowels
Hájek, P.
;
Švancara, P.
;
Horáček, J.
;
Švec J., G.
33
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9.
Original version of the author's contribution as presented on CD, id 129, section BIO.:
PDF
USING THE PROPER ORTHOGONAL DECOMPOSITION ANALYSIS FOR DETECTING PATHOLOGIC VOCAL FOLD VIBRATION
Štorkán, J.
;
Horáček, J.
A three-dimensional (3D) finite element (FE) fully parametric model of the human larynx based on computer tomography (CT) measurements was developed and specially adapted [...]
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10.
Original version of the author's contribution as presented on CD, id 041, section BIO.:
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NUMERICAL SIMULATION OF THE EFFECT OF STIFNESS OF LAMINA PROPRIA ON THE SELF-SUASTAINED OSCILLATION OF THE VOCAL FOLDS
Hájek, P.
;
Švec, J.G.
A two-dimensional (2D) finite element (FE) model of the fluid-structure-acoustic interaction during self-sustained oscillation of the human vocal folds (VF) is presented [...]
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