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Jaromír Horácek
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2020 – today
- 2021
- [j16]Anne-Maria Laukkanen, Jaromír Horácek, Vojtech Radolf:
Buzzer versus water resistance phonation used in voice therapy. Results obtained with physical modeling. Biomed. Signal Process. Control. 66: 102417 (2021) - [j15]Jaromír Horácek, Vojtech Radolf, Vítezslav Bula, Anne-Maria Laukkanen:
Experimental modelling and human data of glottal area declination rate for vowel and semi-occluded vocal tract phonation. Biomed. Signal Process. Control. 66: 102432 (2021) - [j14]Petr Svácek, Jaromír Horácek:
FE numerical simulation of incompressible airflow in the glottal channel periodically closed by self-sustained vocal folds vibration. J. Comput. Appl. Math. 393: 113529 (2021)
2010 – 2019
- 2019
- [c20]Miloslav Feistauer, Monika Balázsová, Jaromír Horácek:
ALE Space-Time Discontinuous Galerkin Method for the Interaction of Compressible Flow with Linear and Nonlinear Dynamic Elasticity and Applications to Vocal Fold Vibrations. ENUMATH 2019: 409-418 - [c19]Jan Valásek, Petr Svácek, Jaromír Horácek:
Numerical Approximation of Fluid-Structure Interaction Problem in a Closing Channel Near the Stability Boundary. ENUMATH 2019: 1079-1087 - 2018
- [j13]Petr Svácek, Jaromír Horácek:
Finite element approximation of flow induced vibrations of human vocal folds model: Effects of inflow boundary conditions and the length of subglottal and supraglottal channel on phonation onset. Appl. Math. Comput. 319: 178-194 (2018) - 2017
- [j12]Jaromír Horácek, Vojtech Radolf, Anne-Maria Laukkanen:
Low frequency mechanical resonance of the vocal tract in vocal exercises that apply tubes. Biomed. Signal Process. Control. 37: 39-49 (2017) - 2015
- [j11]Petr Svácek, Jaromír Horácek:
Numerical simulation of aeroelastic response of an airfoil in flow with laminar-turbulence transition. Appl. Math. Comput. 267: 28-41 (2015) - [j10]Adam Kosík, Miloslav Feistauer, Martin Hadrava, Jaromír Horácek:
Numerical simulation of the interaction between a nonlinear elastic structure and compressible flow by the discontinuous Galerkin method. Appl. Math. Comput. 267: 382-396 (2015) - [j9]Petr Svácek, Jaromír Horácek:
On mathematical modeling of fluid-structure interactions with nonlinear effects: Finite element approximations of gust response. J. Comput. Appl. Math. 273: 394-403 (2015) - [c18]Miloslav Feistauer, Martin Hadrava, Adam Kosík, Jaromír Horácek:
Discontinuous Galerkin Method for the Solution of Elasto-Dynamic and Fluid-Structure Interaction Problems. ENUMATH 2015: 155-163 - [c17]Jan Valásek, Petr Svácek, Jaromír Horácek:
Numerical Approximation of Interaction of Fluid Flow and Elastic Structure Vibrations. ENUMATH 2015: 577-585 - 2014
- [j8]Petra Porízková, Karel Kozel, Jaromír Horácek:
Numerical solution of compressible and incompressible unsteady flows in channel inspired by vocal tract. J. Comput. Appl. Math. 270: 323-329 (2014) - 2013
- [j7]Jan Cesenek, Miloslav Feistauer, Jaromír Horácek, Václav Kucera, Jaroslava Prokopová:
Simulation of compressible viscous flow in time-dependent domains. Appl. Math. Comput. 219(13): 7139-7150 (2013) - [j6]Jaroslava Hasnedlová-Prokopová, Miloslav Feistauer, Jaromír Horácek, Adam Kosík, Václav Kucera:
Numerical simulation of fluid-structure interaction of compressible flow and elastic structure. Computing 95(S1): 343-361 (2013) - [j5]Petra Porízková, Karel Kozel, Jaromír Horácek:
Flows in convergent channel: comparison of numerical results of different mathematical models. Computing 95(S1): 573-585 (2013) - [j4]Miloslav Feistauer, Jaroslava Hasnedlová-Prokopová, Jaromír Horácek, Adam Kosík, Václav Kucera:
DGFEM for dynamical systems describing interaction of compressible fluid and structures. J. Comput. Appl. Math. 254: 17-30 (2013) - [c16]Martin Hadrava, Miloslav Feistauer, Jaromír Horácek, Adam Kosík:
Space-Time Discontinuous Galerkin Method for the Problem of Linear Elasticity. ENUMATH 2013: 115-123 - [c15]Petra Porízková, Karel Kozel, Jaromír Horácek:
Compressible Flows of Viscous Fluid in 3D Channel. ENUMATH 2013: 661-666 - [c14]Adam Kosík, Miloslav Feistauer, Martin Hadrava, Jaromír Horácek:
The Interaction of Compressible Flow and an Elastic Structure Using Discontinuous Galerkin Method. ENUMATH 2013: 735-743 - 2012
- [j3]Anne-Maria Laukkanen, Jaromír Horácek, Petr Krupa, Jan G. Svec:
The effect of phonation into a straw on the vocal tract adjustments and formant frequencies. A preliminary MRI study on a single subject completed with acoustic results. Biomed. Signal Process. Control. 7(1): 50-57 (2012) - [j2]Petra Porízková, Karel Kozel, Jaromír Horácek:
Numerical Simulation of Unsteady Compressible Flow in Convergent Channel: Pressure Spectral Analysis. J. Appl. Math. 2012: 545120:1-545120:9 (2012) - 2010
- [j1]Petra Puncochárová-Porízková, Jirí Fürst, Jaromír Horácek, Karel Kozel:
Numerical solutions of unsteady flows with low inlet Mach numbers. Math. Comput. Simul. 80(8): 1795-1805 (2010)
2000 – 2009
- 2009
- [c13]Jaromír Horácek, S. Gráf:
Mathematical modelling of airflow in the glottal region and its comparison with experimental data. MAVEBA 2009: 203-206 - 2007
- [c12]Anne-Maria Laukkanen, Jaromír Horácek, Pavel Svancara, Elina Lehtinen:
Effects of FE modelled consequences of tonsillectomy on perceptual evaluation of voice. INTERSPEECH 2007: 1182-1185 - [c11]Tomás Vampola, Jaromír Horácek, Ivo Klepácek:
Three-dimensional finite element modelling of vocal folds vibration in the human larynx. MAVEBA 2007: 43-46 - [c10]Petra Puncochárová-Porízková, Jaromír Horácek, Karel Kozel, Jirí Fürst:
Numerical simulation of airflow through the oscillating glottis. MAVEBA 2007: 55-58 - [c9]Jaromír Horácek, Anne-Maria Laukkanen, Petr Sidlof:
Estimation of output-cost - ratio using an aeroelastic model of voice production. MAVEBA 2007: 105-108 - [c8]Petr Sidlof, Olivier Doaré, Olivier Cadot, Antoine Chaigne, Jaromír Horácek:
PIV measurements of velocity fields in glottis on a physical vocal fold model. MAVEBA 2007: 177-180 - 2005
- [c7]Tomás Vampola, Jaromír Horácek, Ján Veselý, Jan Vokral:
Modelling of influence of velopharyngeal insufficiency on phonation of vowel /a/. MAVEBA 2005: 43-46 - [c6]Paavo Alku, Jaromír Horácek, Matti Airas, Anne-Maria Laukkanen:
Assessment of glottal inverse filtering by using aeroelastic modelling of phonation and FE modelling of vocal tract. MAVEBA 2005: 73-76 - [c5]Pavel Svancara, Jaromír Horácek:
Numerical modelling of effect of tonsillectomy on production of Czech vowels /a/ and /i/. MAVEBA 2005: 151-154 - 2003
- [c4]Jaromír Horácek, Petr Sidlof, Jan G. Svec:
Numerical modelling of leakage-flow-induced vibrations of human vocal folds with Hertz impact forces. MAVEBA 2003: 143-146 - [c3]Karel Dedouch, Jaromír Horácek, Tomás Vampola, Jan Vokral:
Velopharyngeal insufficiency studied using finite-element models of male vocal tract with experimental verification. MAVEBA 2003: 229-232 - 2001
- [c2]Jaromír Horácek, Jan G. Svec, Ján Veselý, Erkki Vilkman, Ivo Klepácek, Ales Vetesník:
Measurement of the vocal-fold vibration behaviour in excised human larynges. MAVEBA 2001: 2-7 - [c1]Karel Dedouch, Jaromír Horácek, Tomás Vampola, Premysl Krsek, Jan G. Svec:
Mathematical modelling of male vocal tract. MAVEBA 2001: 69-74
Coauthor Index
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