Ing.

Pavel Skácel

Ph.D.

FSI, NCK MESTEC - SMT – vědecký pracovník

+420 54114 2868
skacel@fme.vutbr.cz

Odeslat VUT zprávu

Ing. Pavel Skácel, Ph.D.

Publikace

  • 2024

    SKÁCEL, P.; BURŠA, J. Need for transverse strain data for fitting constitutive models of arterial tissue to uniaxial tests. Journal of the mechanical behavior of biomedical materials, 2024, roč. 150, č. 150, s. 106194-1 (106194-14 s.)ISSN: 1751-6161.
    Detail | WWW

  • 2023

    TURČANOVÁ, M.; FISCHER, J.; HERMANOVÁ, M.; BEDNAŘÍK, Z.; SKÁCEL, P.; BURŠA, J. Biaxial stretch can overcome discrepancy between global and local orientations of wavy collagen fibres. JOURNAL OF BIOMECHANICS, 2023, roč. 161, č. 12, s. 1-8. ISSN: 0021-9290.
    Detail | WWW | Plný text v Digitální knihovně

    BURŠA, J.; HRUBANOVÁ, A.; SKÁCEL, P.; FISCHER, J.; TURČANOVÁ, M.; LISICKÝ, O. ANISOTROPY OF SOFT BIOLOGICAL TISSUES AND ITS CONSIDERATION IN CONSTITUTIVE MODELS OF ARTERIES. ENGINEERING MECHANICS 2023 29th INTERNATIONAL CONFERENCE. Engineering Mechanics .... Milovy: Institute of Thermomechanics AS CR, v.v.i., 2023. s. 17-26. ISBN: 978-80-87012-84-0. ISSN: 1805-8248.
    Detail | WWW

  • 2022

    SKÁCEL, P.; BURŠA, J. Poisson's ratio and compressibility of arterial wall-Improved experimental data reject auxetic behaviour. Journal of the mechanical behavior of biomedical materials, 2022, roč. 131, č. 131, s. 105229-1 (105229-11 s.)ISSN: 1751-6161.
    Detail | WWW

  • 2021

    JAGOŠ, J.; KOHÚT, J.; KOTEK, M.; SKÁCEL, P.; BURŠA, J. Influence of Turbulence in Aorta-like Tube: Computational and Experimental Study. Journal of Applied Fluid Mechanics, 2021, roč. 14, č. 5, s. 1411-1420. ISSN: 1735-3645.
    Detail | WWW | Plný text v Digitální knihovně

  • 2019

    SKÁCEL, P.; BURŠA, J. Compressibility of arterial wall – direct measurement and predictions of compressible constitutive models. Journal of the mechanical behavior of biomedical materials, 2019, roč. 90, č. 1, s. 538-546. ISSN: 1751-6161.
    Detail | WWW

  • 2018

    Schroeder F; POLZER, S.; SLAŽANSKÝ, M.; MAN, V.; SKÁCEL, P. Predictive capabilities of various constitutive models for arterial tissue. Journal of the mechanical behavior of biomedical materials, 2018, roč. 78, č. 1, s. 369-380. ISSN: 1751-6161.
    Detail

  • 2016

    SKÁCEL, P.; BURŠA, J. Poisson's ratio of arterial wall – inconsistency of constitutive models with experimental data. Journal of the mechanical behavior of biomedical materials, 2016, roč. 54, č. 1, s. 316-327. ISSN: 1751-6161.
    Detail | WWW

  • 2015

    MAN, V.; SKÁCEL, P.; POLZER, S.; ŠEVČÍK, V.; BURŠA, J. PRACTICAL ASPECT OF BIAXIAL TESTING OF VASCULAR TISSUE. Prague: 2015.
    Detail

    POLZER, S.; GASSER, T.; NOVÁK, K.; MAN, V.; TICHÝ, M.; SKÁCEL, P.; BURŠA, J. Structure-based constitutive model can accurately predicts planar biaxial properties of arotic wall tissue. Acta Biomaterialia, 2015, roč. 14, č. 1, s. 133-145. ISSN: 1742-7061.
    Detail

  • 2014

    SKÁCEL, P.; BURŠA, J. Comparison of constitutive models of arterial layers with distributed collagen fibre orientations. Acta of Bioengineering and Biomechanics, 2014, roč. 2014, č. 03, s. 47-58. ISSN: 1509-409X.
    Detail | WWW

  • 2013

    POLZER, S.; GASSER, T.; BURŠA, J.; STAFFA, R.; VLACHOVSKÝ, J.; MAN, V.; SKÁCEL, P. Importance of material model in wall stress prediction in abdominal aortic aneurysms. MEDICAL ENGINEERING & PHYSICS, 2013, roč. 35, č. 4, s. 1282-1289. ISSN: 1350- 4533.
    Detail

    SKÁCEL, P.; BURŠA, J. Numerical implementation of constitutive model for arterial layers with distributed collagen fibre orientations. COMPUTER METHODS IN BIOMECHANICS AND BIOMEDICAL ENGINEERING, 2013, roč. 2014, č. 01, s. 1-13. ISSN: 1025-5842.
    Detail | WWW

  • 2012

    FEDOROVA, S.; LASOTA, T.; BURŠA, J.; SKÁCEL, P. Experimental verification of a constitutive model of fibre composite with hyperelastic matrix. In EAN Proceedings 50th annual conference on experimental stress analysis. Tábor: CTU Prague, 2012. s. 65-72. ISBN: 978-80-01-05060- 6.
    Detail

    POLZER, S.; GASSER, T.; MARKERT, B.; BURŠA, J.; SKÁCEL, P. Impact of poroelasticity of intraluminal thrombus on wall stress of abdominal aortic aneurysms. BIOMED ENG ONLINE, 2012, roč. 11, č. 62, s. 1-13. ISSN: 1475- 925X.
    Detail

  • 2011

    SKÁCEL, P.; BURŠA, J. Material parameter identification of arterial wall layers from homogenized stress- strain data. COMPUTER METHODS IN BIOMECHANICS AND BIOMEDICAL ENGINEERING, 2011, roč. 14, č. 01, s. 33-41. ISSN: 1025- 5842.
    Detail

  • 2010

    BURŠA, J.; MUCHA, P.; SKÁCEL, P. Finite element model of abdominal aortic aneurysm. In IFMBE Proceedings. Munich, Germany: Springer, 2010. s. 185-188. ISBN: 978-3-642-03897- 6.
    Detail

  • 2005

    SKÁCEL, P.; BURŠA, J. Computational Modelling of Bimaterial Interface Failure in View of Rubber- Steel Interface. Engineering Mechanics, 2005, roč. 12, č. 2, s. 73-85. ISSN: 1802- 1484.
    Detail

    SKÁCEL, P., Burša, J. Computational Modelling of Spherical Cavity Behavior in Rubber- like Solids. Materials Science Forum, 2005, roč. 482, č. 1, s. 323 ( s.)ISSN: 0255- 5476.
    Detail

  • 2004

    SKÁCEL, P. Computational Modelling of Spherical Cavity Behaviour in Rubber- like Solids. In Materials Structure and Micromechanics of Fracture. Brno: VUTIUM Brno, 2004. s. 59 ( s.)ISBN: 80-214-2673- X.
    Detail

  • 2003

    SKÁCEL, P. Computational Simulation and Accuracy Analysis of Unconventional Experimental Method for Equibiaxial Stress- Strain Dependence Investigation of Elastomers. In Experimental Stress Analysis 2003. Milovy, CZ: Czech Society for Mechanics, 2003. s. 91 ( s.)ISBN: 80-214-2314- 5.
    Detail

  • 2002

    SKÁCEL, P., BURŠA, J. Computational Stress Simulation of Rubber Twist- test via FEM. In Inženýská mechanika 2002 Engineering Mechanics 2002. Svratka: VUT Brno, 2002. s. 261 ( s.)ISBN: 80-214-2109- 6.
    Detail

    SKÁCEL, P., BURŠA, J. Analýza vlivu tření na deformaci pryžového vzorku při zkoušce jednoosým tlakem. In Proceedings of the 40th International Conference Experimental Stress Analysis 2002. Praha, CZ: UTAM?, 2002. s. 233 ( s.)ISBN: 80-01-02547- 0.
    Detail

*) Citace publikací se generují jednou za 24 hodin.