The impact of intraluminal thrombus failure on the mechanical stress in the wall of abdominal aortic aneurysms S Polzer, TC Gasser, J Swedenborg, J Bursa European Journal of Vascular and Endovascular Surgery 41 (4), 467-473, 2011 | 93 | 2011 |
Importance of material model in wall stress prediction in abdominal aortic aneurysms S Polzer, TC Gasser, J Bursa, R Staffa, R Vlachovsky, V Man, P Skacel Medical engineering & physics 35 (9), 1282-1289, 2013 | 82 | 2013 |
Structure-based constitutive model can accurately predict planar biaxial properties of aortic wall tissue S Polzer, TC Gasser, K Novak, V Man, M Tichy, P Skacel, J Bursa Acta biomaterialia 14, 133-145, 2015 | 81 | 2015 |
A numerical implementation to predict residual strains from the homogeneous stress hypothesis with application to abdominal aortic aneurysms S Polzer, J Bursa, TC Gasser, R Staffa, R Vlachovsky Annals of biomedical engineering 41, 1516-1527, 2013 | 61 | 2013 |
Biaxial tension tests with soft tissues of arterial wall M Zemánek, J Burša, M Děták Engineering Mechanics 16 (1), 3-11, 2009 | 60 | 2009 |
Impact of poroelasticity of intraluminal thrombus on wall stress of abdominal aortic aneurysms S Polzer, TC Gasser, B Markert, J Bursa, P Skacel Biomedical engineering online 11, 1-13, 2012 | 59 | 2012 |
Poisson׳ s ratio of arterial wall–Inconsistency of constitutive models with experimental data P Skacel, J Bursa Journal of the mechanical behavior of biomedical materials 54, 316-327, 2016 | 40 | 2016 |
Automatic identification and validation of planar collagen organization in the aorta wall with application to abdominal aortic aneurysm S Polzer, TC Gasser, C Forsell, H Druckmüllerova, M Tichy, R Staffa, ... Microscopy and Microanalysis 19 (6), 1395-1404, 2013 | 29 | 2013 |
Tensegrity finite element models of mechanical tests of individual cells J Bursa, R Lebis, J Holata Technology and Health Care 20 (2), 135-150, 2012 | 27 | 2012 |
A finite element bendo-tensegrity model of eukaryotic cell YD Bansod, T Matsumoto, K Nagayama, J Bursa Journal of biomechanical engineering 140 (10), 101001, 2018 | 25 | 2018 |
Development of endothelium‐denuded human umbilical veins as living scaffolds for tissue‐engineered small‐calibre vascular grafts M Hoenicka, S Schrammel, J Bursa, G Huber, H Bronger, C Schmid, ... Journal of Tissue Engineering and Regenerative Medicine 7 (4), 324-336, 2013 | 25 | 2013 |
Comparison of constitutive models of arterial layers with distributed collagen fibre orientations P Skacel, J Bursa Acta of bioengineering and biomechanics 16 (3), 2014 | 23 | 2014 |
Impact of isotropic constitutive descriptions on the predicted peak wall stress in abdominal aortic aneurysms V Man, S Polzer, TC Gasser, T Novotny, J Bursa Medical Engineering & Physics 53, 49-57, 2018 | 19 | 2018 |
Science versus design; comparable, contrastive or conducive? GJ Verkerke, EB van der Houwen, AA Broekhuis, J Bursa, G Catapano, ... journal of the mechanical behavior of biomedical materials 21, 195-201, 2013 | 17 | 2013 |
A fiber-bundle pull-out test for surface-modified glass fibers in gf/polyester composite V Cech, P Janecek, T Lasota, J Bursa Composite Interfaces 18 (4), 309-322, 2011 | 16 | 2011 |
Poroelastic model of intraluminal thrombus in FEA of aortic aneurysm S Polzer, J Bursa 6th World Congress of Biomechanics (WCB 2010). August 1-6, 2010 Singapore …, 2010 | 16 | 2010 |
Overview of tensegrity-I: Basic structures YD Bansod, D Nandanwar, J Burša Engine. Mechan 21, 355-67, 2014 | 15 | 2014 |
Analysis of accuracy of biaxial tests based on their computational simulations M Slazansky, S Polzer, V Man, J Bursa Strain 52 (5), 424-435, 2016 | 14 | 2016 |
Numerical implementation of constitutive model for arterial layers with distributed collagen fibre orientations P Skacel, J Bursa Computer methods in biomechanics and biomedical engineering 18 (8), 816-828, 2015 | 14 | 2015 |
Automatic evaluation of collagen fiber directions from polarized light microscopy images K Novak, S Polzer, M Tichy, J Bursa Microscopy and Microanalysis 21 (4), 863-875, 2015 | 13 | 2015 |