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Detail projektu
Období řešení: 01.03.2020 — 28.02.2023
Zdroje financování
Vysoké učení technické v Brně - Vnitřní projekty VUT
- plně financující (2020-01-01 - 2021-12-31)
O projektu
a)Zlepšení výpočtových modelů patologických tepen. b) Analýza a matematický popis distribuce kolagenních vláken v arteriálních tkáních. c) Zlepšení výpočtového modelu levé srdeční komory. d) Zlepšení výpočtových modelů lebky s implantátem. e) Zlepšení výpočtových modelů dolní čelisti s implantátem. f) Zlepšení výpočtového modelu hlasivek.
Označení
FSI-S-20-6175
Originální jazyk
čeština
Řešitelé
Burša Jiří, prof. Ing., Ph.D. - hlavní řešitelFischer Jiří, Ing. - spoluřešitelFlorian Zdeněk, doc. Ing., CSc. - spoluřešitelHájek Petr, Ing., Ph.D. - spoluřešitelHrubanová Anna, Ing. - spoluřešitelChamrad Jakub, Ing., Ph.D. - spoluřešitelJagoš Jiří, Ing., Ph.D. - spoluřešitelJakka Veera Venkata Satya, M.Sc. - spoluřešitelKonvalinka Jan, Ing. - spoluřešitelLisický Ondřej, Ing., Ph.D. - spoluřešitelMarcián Petr, Ing., Ph.D. - spoluřešitelŠvancara Pavel, Ing., Ph.D. - spoluřešitelThomková Barbora, Ing. - spoluřešitelTurčanová Michaela, Ing., Ph.D. - spoluřešitelVaverka Jiří, Ing., Ph.D. - spoluřešitel
Útvary
Ústav mechaniky těles, mechatroniky a biomechaniky- interní (01.01.2020 - 31.12.2022)Fakulta strojního inženýrství- příjemce (01.01.2020 - 31.12.2022)
Výsledky
VAVERKA, J.; MOUDR, J.; LOKAJ, P.; BURŠA, J.; PÁSEK, M. Impact of Decreased Transmural Conduction Velocity on the Function of the Human Left Ventricle: A Simulation Study. BioMed Research International, 2020, vol. 2020, no. 1, p. 1-11. ISSN: 2314-6133.Detail
ŠUSTKOVÁ, A.; THOMKOVÁ, B.; ZIKMUND, T.; KAISER, J.; JOUKAL, M.; MARCIÁN, P. The influence of image processing of μ-CT images on mechanical behavior of mandibular trabecular bone structure using micro finite element method. In Materials Structure & Micromechanics of Fracture. Procedia Structural Integrity. Elsevier, 2023. p. 276-281. ISSN: 2452-3216.Detail
LISICKÝ, O.; MALÁ, A.; BEDNAŘÍK, Z.; NOVOTNÝ, T.; BURŠA, J. Consideration of stiffness of wall layers is decisive for patient-specific analysis of carotid artery with atheroma. PLOS ONE, 2020, vol. 15, no. 9, p. 1-18. ISSN: 1932-6203.Detail
POLZER, S.; MAN, V.; VLACHOVSKÝ, R.; KUBÍČEK, L.; KRACÍK, J.; STAFFA, R.; NOVOTNÝ, T.; BURŠA, J.; RAGHAVAN, M. Failure properties of abdominal aortic aneurysm tissue are orientation dependent. Journal of the mechanical behavior of biomedical materials, 2021, vol. 114, no. 1, p. 1-7. ISSN: 1751-6161.Detail
JAKKA, V.; BURŠA, J. FINITE ELEMENT MODELS OF MECHANICAL BEHAVIOUR OF ENDOTHELIAL CELLS. In Engineering Mechanics 2020. 2020. p. 222-225. ISBN: 978-80-214-5896-3.Detail
HRUBANOVÁ, A.; LISICKÝ, O.; BARTOŇOVÁ, P.; STAFFA, R.; HERMANOVÁ, M.; VLACHOVSKÝ, R.; BURŠA, J. IMPACT OF FORMALDEHYDE ON MECHANICAL PROPERTIES OF ATHEROSCLEROTIC CAROTID ARTERIES. In ENGINEERING MECHANICS 2020. 2020. p. 210-213. ISBN: 978-80-214-5896-3.Detail
ŠVANCARA, P.; LISICKÝ, O.; JAGOŠ, J.; BURŠA, J. COMPUTATIONAL MODELING OF BLOOD FLOW IN THE BIFURCATION OF HUMAN CAROTID ARTERY. In ENGINEERING MECHANICS 2020. Engineering Mechanics .... 26. 2020. p. 480-483. ISBN: 978-80-214-5896-3. ISSN: 1805-8248.Detail
FISCHER, J.; BURŠA, J. COMPARISON OF QUALITATIVE CRITERIA IN DECISION ON NUMBER OF COLLAGEN FIBRE FAMILIES IN SOFT TISSUES. In ENGINEERING MECHANICS 2020. 2020. p. 134-137. ISBN: 978-80-214-5896-3.Detail
HÁJEK, P.; ŠVANCARA, P.; HORÁČEK, J.; ŠVEC, J. Three-dimensional Numerical Analysis of Czech Vowel Production. In Engineering mechanics 2020. Engineering Mechanics .... 26. Brno: Brno University of Technology, Institute of Solid Mechanics, Mechatronics and Biomechanics, 2020. p. 182-185. ISBN: 978-80-214-5896-3. ISSN: 1805-8248.Detail
KONVALINKA, J. Effect of Femoral Neck Axis Angles on Stress and Strain in Prolonged Femur: FE Study. In Engineering Mechanics 2020. 26. Brno: Brno University of Technology, Institute of Solid Mechanics, Mechatronics and Biomechanics, 2020. p. 286-289. ISBN: 978-80-214-5896-3.Detail
THOMKOVÁ, B.; MARCIÁN, P.; BORÁK, L. Biomechanical Assessment of Peri-Implant Bone Tissue: Effect of Material Model Homogeneity on Strain Distribution in Mandible. In Engineering Mechanics 2020. 2020. p. 484-487. ISBN: 978-80-214-5896-3.Detail
OKAWARA, H.; ARAI, Y.; MATSUNO, H.; MARCIÁN, P.; BORÁK, L.; AOKI, K.; WAKABAYASHI, N. Effect of load-induced local mechanical strain on peri-implant bone cell activity related to bone resorption and formation in mice: An analysis of histology and strain distributions. Journal of the mechanical behavior of biomedical materials, 2021, vol. 116, no. 1, p. 104370-104370. ISSN: 1751-6161.Detail
JAKKA, V.; BURŠA, J. Finite Element Simulations of Mechanical Behaviour of Endothelial Cells. BioMed Research International, 2021, vol. 2021, no. 1, p. 1-17. ISSN: 2314-6141.Detail
MARCIÁN, P.; BORÁK, L.; ZIKMUND, T.; HORÁČKOVÁ, L.; KAISER, J.; JOUKAL, M.; WOLFF, J. On the limits of finite element models created from (micro)CT datasets and used in studies of bone-implant-related biomechanical problems. Journal of the mechanical behavior of biomedical materials, 2021, vol. 117, no. 1, p. 104393-104393. ISSN: 1751-6161.Detail
CHAMRAD, J.; MARCIÁN, P.; ČÍŽEK, J. Beneficial osseointegration effect of hydroxyapatite coating on cranial implant - FEM investigation. PLOS ONE, 2021, vol. 16, no. 7, p. e0254837 (e0254837 p.)ISSN: 1932-6203.Detail
ŠVANCARA, P.; HÁJEK, P.; HORÁČEK, J.; ŠVEC, J. Numerical simulation of sound propagation around human head during phonation. In Proceedings of the 27th International Congress on Sound and Vibration. International Journal of Acoustic and Vibration. Silesian University Press, Gliwice, Poland, 2021. p. 172047-172047. ISBN: 978-83-7880-799-5. ISSN: 2329-3675.Detail
HÁJEK, P.; ŠVANCARA, P.; HORÁČEK, J.; ŠVEC, J. Finite-element modeling of vocal fold self-oscillations in interaction with vocal tract: Comparison of incompressible and compressible flow model. Applied andComputational Mechanics, 2021, vol. 15, no. 2, p. 133-152. ISSN: 1802-680X.Detail
JAKKA, V.; BURŠA, J. Impact of physiological loads of arterial wall on nucleus deformation in endothelial cells: A computational study. COMPUTERS IN BIOLOGY AND MEDICINE, 2022, vol. 143, no. 143, p. 105266-1 (105266-11 p.)ISSN: 0010-4825.Detail
VIČAR, T.; CHMELÍK, J.; NAVRÁTIL, J.; KOLÁŘ, R.; CHMELÍKOVÁ, L.; ČMIEL, V.; JAGOŠ, J.; PROVAZNÍK, I.; MASAŘÍK, M.; GUMULEC, J. Cancer cell viscoelasticity measurement by quantitative phase and flow stress induction. BIOPHYSICAL JOURNAL, 2022, vol. 121, no. 9, p. 1632-1642. ISSN: 0006-3495.Detail
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, vol. 131, no. 131, p. 105229-1 (105229-11 p.)ISSN: 1751-6161.Detail
APOSTOLOPOULOS, V.; TOMÁŠ, T.; BOHÁČ, P.; MARCIÁN, P.; MAHDAL, M.; VALOUŠEK, T.; JANÍČEK, P.; NACHTNEBL, L. Biomechanical analysis of all-polyethylene total knee arthroplasty on periprosthetic tibia using the finite element method. COMPUTER METHODS AND PROGRAMS IN BIOMEDICINE, 2022, vol. 220, no. 1, p. 1-9. ISSN: 0169-2607.Detail
LISICKÝ, O.; AVRIL, S.; EYDAN, B.; PIERRAT, B.; BURŠA, J. Evaluation of image registration for measuring deformation fields in soft tissue mechanics. Strain, 2022, vol. 58, no. 3, p. 1-12. ISSN: 1475-1305.Detail
JAGOŠ, J.; KOHÚT, J.; KOHÚT, J.; FORMÁNEK, M.; BURŠA, J. ROLLER PUMP CONTROLLED BY NEURAL NETWORK: EXPERIMENTAL STUDY UNDER PHYSIOLOGICAL CONDITIONS. CMBE22 7th International Conference on Computational & Mathematical Biomedical Engineering. 7th International Conference on Computational and Mathematical Biomedical Engineering – CMBE2021. Cardiff, United Kingdom: Computational and scientific consultancy services Ltd, 2022. p. 389-392. ISBN: 978-0-9562914-6-2. ISSN: 2227-9385.Detail
FISCHER, J.; TURČANOVÁ, M.; MAN, V.; HERMANOVÁ, M.; BEDNAŘÍK, Z.; BURŠA, J. Importance of experimental evaluation of structural parameters for constitutive modelling of aorta. Journal of the mechanical behavior of biomedical materials, 2023, vol. 138, no. 2, p. 105615-1 (105615-8 p.)ISSN: 1751-6161.Detail
POLZER, S.; GASSER, T.; VLACHOVSKÝ, R.; KUBÍČEK, L.; LAMBERT, L.; MAN, V.; NOVÁK, K.; SLAŽANSKÝ, M.; BURŠA, J.; STAFFA, R. Biomechanical indices are more sensitive than diameter in predicting rupture of asymptomatic abdominal aortic aneurysms. JOURNAL OF VASCULAR SURGERY, 2020, vol. 71, no. 2, p. 617 (+ p.)ISSN: 0741-5214.Detail