** = Publikationen gelistet in SCI/SSCI/Pubmed
** Whitaker, J; Baum, TE; Qian, P; Prassl, AJ; Plank, G; Blankstein, R; Cochet, H; Sauer, WH; Bishop, MJ; Tedrow, U
Frequency Domain Analysis of Endocardial Electrograms for Detection of Nontransmural Myocardial Fibrosis in Nonischemic Cardiomyopathy.
JACC Clin Electrophysiol. 2023;
Doi: 10.1016/j.jacep.2022.11.019
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** Bhagirath, P; Campos, FO; Costa, CM; Wilde, AAM; Prassl, AJ; Neic, A; Plank, G; Rinaldi, CA; Götte, MJW; Bishop, MJ
Predicting arrhythmia recurrence following catheter ablation for ventricular tachycardia using late gadolinium enhancement magnetic resonance imaging: Implications of varying scar ranges.
Heart Rhythm. 2022; 19(10):1604-1610
Doi: 10.1016/j.hrthm.2022.05.021
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** Gillette, K; Gsell, MAF; Strocchi, M; Grandits, T; Neic, A; Manninger, M; Scherr, D; Roney, CH; Prassl, AJ; Augustin, CM; Vigmond, EJ; Plank, G
A personalized real-time virtual model of whole heart electrophysiology.
Front Physiol. 2022; 13: 907190
Doi: 10.3389/fphys.2022.907190
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** Sobota, V; Prassl, AJ; Ozenne, V; Augustin, CM; Nordmeyer, S; Bayer, JD
The interplay of sex-specific electrophysiology and repolarization heterogeneity governs ventricular arrhythmia sustainability in women
EUR HEART J. 2022; 43: 2518-2518.
[Oral Communication]
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** Gillette, K; Gsell, MAF; Bouyssier, J; Prassl, AJ; Neic, A; Vigmond, EJ; Plank, G
Automated Framework for the Inclusion of a His-Purkinje System in Cardiac Digital Twins of Ventricular Electrophysiology.
Ann Biomed Eng. 2021; 49(12):3143-3153
Doi: 10.1007/s10439-021-02825-9
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** Gillette, K; Gsell, MAF; Prassl, AJ; Karabelas, E; Reiter, U; Reiter, G; Grandits, T; Payer, C; Štern, D; Urschler, M; Bayer, JD; Augustin, CM; Neic, A; Pock, T; Vigmond, EJ; Plank, G
A Framework for the generation of digital twins of cardiac electrophysiology from clinical 12-leads ECGs.
Med Image Anal. 2021; 71:102080
Doi: 10.1016/j.media.2021.102080
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** Plank, G; Loewe, A; Neic, A; Augustin, C; Huang, YL; Gsell, MAF; Karabelas, E; Nothstein, M; Prassl, AJ; Sánchez, J; Seemann, G; Vigmond, EJ
The openCARP simulation environment for cardiac electrophysiology.
Comput Methods Programs Biomed. 2021; 208:106223
Doi: 10.1016/j.cmpb.2021.106223
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** Marx, L; Gsell, MAF; Rund, A; Caforio, F; Prassl, AJ; Toth-Gayor, G; Kuehne, T; Augustin, CM; Plank, G
Personalization of electro-mechanical models of the pressure-overloaded left ventricle: fitting of Windkessel-type afterload models.
Philos Trans A Math Phys Eng Sci. 2020; 378(2173): 20190342-20190342.
Doi: 10.1098/rsta.2019.0342
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** Neic, A; Gsell, MAF; Karabelas, E; Prassl, AJ; Plank, G
Automating image-based mesh generation and manipulation tasks in cardiac modeling workflows using Meshtool.
SoftwareX. 2020; 11: 100454-100454.
Doi: 10.1016/j.softx.2020.100454
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** Strocchi, M; Augustin, CM; Gsell, MAF; Karabelas, E; Neic, A; Gillette, K; Razeghi, O; Prassl, AJ; Vigmond, EJ; Behar, JM; Gould, J; Sidhu, B; Rinaldi, CA; Bishop, MJ; Plank, G; Niederer, SA
A publicly available virtual cohort of four-chamber heart meshes for cardiac electro-mechanics simulations.
PLoS One. 2020; 15(6):e0235145
Doi: 10.1371/journal.pone.0235145
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** Strocchi, M; Gsell, MAF; Augustin, CM; Razeghi, O; Roney, CH; Prassl, AJ; Vigmond, EJ; Behar, JM; Gould, JS; Rinaldi, CA; Bishop, MJ; Plank, G; Niederer, SA
Simulating ventricular systolic motion in a four-chamber heart model with spatially varying robin boundary conditions to model the effect of the pericardium.
J Biomech. 2020; 101:109645-109645
Doi: 10.1016/j.jbiomech.2020.109645
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** Toth, GG; Sasi, V; Franco, D; Prassl, AJ; Di Serafino, L; Ng, JCK; Szanto, G; Schneller, L; Ang, HY; Plank, G; Wijns, W; Barbato, E
Double-kissing culotte technique for coronary bifurcation stenting.
EuroIntervention. 2020; 16(9):e724-e733-e724-e733
Doi: 10.4244/EIJ-D-20-00130
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** Bayer, J; Prassl, AJ; Pashaei, A; Gomez, JF; Frontera, A; Neic, A; Plank, G; Vigmond, EJ
Universal ventricular coordinates: A generic framework for describing position within the heart and transferring data.
Med Image Anal. 2018; 45:83-93
Doi: 10.1016/j.media.2018.01.005
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** Gsell, MAF; Augustin, CM; Prassl, AJ; Karabelas, E; Fernandes, JF; Kelm, M; Goubergrits, L; Kuehne, T; Plank, G
Assessment of wall stresses and mechanical heart power in the left ventricle: Finite element modeling versus Laplace analysis.
Int J Numer Method Biomed Eng. 2018; 34(12):e3147-e3147
Doi: 10.1002/cnm.3147
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** Karabelas, E; Gsell, MAF; Augustin, CM; Marx, L; Neic, A; Prassl, AJ; Goubergrits, L; Kuehne, T; Plank, G
Towards a Computational Framework for Modeling the Impact of Aortic Coarctations Upon Left Ventricular Load.
Front Physiol. 2018; 9(12):538-538
Doi: 10.3389/fphys.2018.00538
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** Manninger, M; Zweiker, D; van Hunnik, A; Alogna, A; Prassl, AJ; Schipke, J; Zeemering, S; Zirngast, B; Schönleitner, P; Schwarzl, M; Herbst, V; Thon-Gutschi, E; Huber, S; Rohrer, U; Ebner, J; Brussee, H; Pieske, BM; Heinzel, FR; Verheule, S; Antoons, G; Lueger, A; Mühlfeld, C; Plank, G; Schotten, U; Post, H; Scherr, D
Arterial hypertension drives arrhythmia progression via specific structural remodeling in a porcine model of atrial fibrillation.
Heart Rhythm. 2018; 15(9):1328-1336
Doi: 10.1016/j.hrthm.2018.05.016
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** Neic, A; Campos, FO; Prassl, AJ; Niederer, SA; Bishop, MJ; Vigmond, EJ; Plank, G
Efficient computation of electrograms and ECGs in human whole heart simulations using a reaction-eikonal model.
J Comput Phys. 2017; 346(11):191-211
Doi: 10.1016/j.jcp.2017.06.020
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** Augustin, CM; Crozier, A; Neic, A; Prassl, AJ; Karabelas, E; Ferreira da Silva, T; Fernandes, JF; Campos, F; Kuehne, T; Plank, G
Patient-specific modeling of left ventricular electromechanics as a driver for haemodynamic analysis.
Europace. 2016; 18(suppl 4):iv121-iv129-iv121-iv129
Doi: 10.1093/europace/euw369
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** Augustin, CM; Neic, A; Liebmann, M; Prassl, AJ; Niederer, SA; Haase, G; Plank, G
Anatomically accurate high resolution modeling of human whole heart electromechanics: A strongly scalable algebraic multigrid solver method for nonlinear deformation.
J Comput Phys. 2016; 305(suppl 4):622-646
Doi: 10.1016/j.jcp.2015.10.045
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** Crozier, A; Augustin, CM; Neic, A; Prassl, AJ; Holler, M; Fastl, TE; Hennemuth, A; Bredies, K; Kuehne, T; Bishop, MJ; Niederer, SA; Plank, G
Image-Based Personalization of Cardiac Anatomy for Coupled Electromechanical Modeling.
Ann Biomed Eng. 2016; 44(1):58-70
Doi: 10.1007/s10439-015-1474-5
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** Campos, FO; Shiferaw, Y; Prassl, AJ; Boyle, PM; Vigmond, EJ; Plank, G
Stochastic spontaneous calcium release events trigger premature ventricular complexes by overcoming electrotonic load.
Cardiovasc Res. 2015; 107(1):175-183
Doi: 10.1093/cvr/cvv149
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** Costa, CM; Campos, FO; Prassl, AJ; dos Santos, RW; Sánchez-Quintana, D; Ahammer, H; Hofer, E; Plank, G
An efficient finite element approach for modeling fibrotic clefts in the heart.
IEEE Trans Biomed Eng. 2014; 61(3):900-910
Doi: 10.1109/TBME.2013.2292320
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** Campos, FO; Wiener, T; Prassl, AJ; dos Santos, RW; Sanchez-Quintana, D; Ahammer, H; Plank, G; Hofer, E
Electroanatomical characterization of atrial microfibrosis in a histologically detailed computer model.
IEEE Trans Biomed Eng. 2013; 60(8):2339-2349
Doi: 10.1109/TBME.2013.2256359
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** Costa, CM; Hoetzl, E; Rocha, BM; Prassl, AJ; Plank, G
Automatic Parameterization Strategy for Cardiac Electrophysiology Simulations.
Comput Cardiol (2010). 2013; 40(2):373-376
[OPEN ACCESS]
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** Eriksson, TS; Prassl, AJ; Plank, G; Holzapfel, GA
Modeling the dispersion in electromechanically coupled myocardium.
Int J Numer Method Biomed Eng. 2013; 29(11):1267-1284
Doi: 10.1002/cnm.2575
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** Eriksson, TSE; Prassl, AJ; Plank, G; Holzapfel, GA;
Influence of myocardial fiber/sheet orientations on left ventricular mechanical contraction.
MATH MECH SOLIDS. 2013; 18(6): 592-606.
Doi: 10.1177/1081286513485779
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** Plank, G; Costa, CM; Prassl, AJ
Parametrization strategies for matching activation sequences in models of ventricular electrophysiology.
Conf Proc IEEE Eng Med Biol Soc. 2013; 2013(2):1534-1537
Doi: 10.1109/EMBC.2013.6609805
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** Plank, G; Prassl, AJ; Augustin, C
Computational Challenges in Building Multi-Scale and Multi-Physics Models of Cardiac Electro-Mechanics.
Biomed Tech (Berl). 2013; 58 Suppl 1(1):
Doi: 10.1515/bmt-2013-4318
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** Campos, FO; Prassl, AJ; Seemann, G; Weber dos Santos, R; Plank, G; Hofer, E
Influence of ischemic core muscle fibers on surface depolarization potentials in superfused cardiac tissue preparations: a simulation study.
Med Biol Eng Comput. 2012; 50(5):461-472
Doi: 10.1007/s11517-012-0880-1
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** Costa, CM; Campos, FO; Prassl, AJ; dos Santos, RW; Sánchez-Quintana, D; Hofer, E; Plank, G
A finite element approach for modeling micro-structural discontinuities in the heart.
Conf Proc IEEE Eng Med Biol Soc. 2011; 2011(5):437-440
Doi: 10.1109/IEMBS.2011.6090059
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** Rocha, B; Kickinger, F; Prassl, A; Haase, G; Vigmond, E; Weber Dos Santos, R; Zaglmayr, S; Plank, G
A macro finite-element formulation for cardiac electrophysiology simulations using hybrid unstructured grids.
IEEE Trans Biomed Eng. 2011; 58(4): 1055-1065.
Doi: 10.1109/TBME.2010.2064167
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** Campos, FO; Wiener, T; Prassl, AJ; Ahammer, H; Plank, G; Weber Dos Santos, R; Sánchez-Quintana, D; Hofer, E
A 2D-computer model of atrial tissue based on histographs describes the electro-anatomical impact of microstructure on endocardiac potentials and electric near-fields.
Conf Proc IEEE Eng Med Biol Soc. 2010; 2010(5):2541-2544
Doi: 10.1109/IEMBS.2010.5626870
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** Vadakkumpadan, F; Arevalo, H; Prassl, AJ; Chen, J; Kickinger, F; Kohl, P; Plank, G; Trayanova, N
Image-based models of cardiac structure in health and disease.
Wiley Interdiscip Rev Syst Biol Med. 2010; 2(4): 489-506.
Doi: 10.1002/wsbm.76
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** Plank, G; Burton, RA; Hales, P; Bishop, M; Mansoori, T; Bernabeu, MO; Garny, A; Prassl, AJ; Bollensdorff, C; Mason, F; Mahmood, F; Rodriguez, B; Grau, V; Schneider, JE; Gavaghan, D; Kohl, P
Generation of histo-anatomically representative models of the individual heart: tools and application.
Philos Transact A Math Phys Eng Sci. 2009; 367(1896): 2257-2292.
Doi: 10.1098/rsta.2009.0056
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** Prassl, A; Kickinger, F; Ahammer, H; Grau, V; Schneider, J; Hofer, E; Vigmond, E; Trayanova, N; Plank, G
Automatically generated, anatomically accurate meshes for cardiac electrophysiology problems.
IEEE Trans Biomed Eng. 2009; 56(5): 1318-1330.
Doi: 10.1109/TBME.2009.2014243
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** Vadakkumpadan, F; Rantner, LJ; Tice, B; Boyle, P; Prassl, AJ; Vigmond, E; Plank, G; Trayanova, N
Image-based models of cardiac structure with applications in arrhythmia and defibrillation studies.
J Electrocardiol. 2009; 42(2): 157.e1-157.10.
Doi: 10.1016/j.jelectrocard.2008.12.003
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** Plank, G; Prassl, AJ; Hofer, E; Trayanova, NA
Evaluating intramural virtual electrodes in the myocardial wedge preparation: simulations of experimental conditions.
Biophys J. 2008; 94(5): 1904-1915.
Doi: 10.1529/biophysj.107.121343
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** Wiener, T; Thurner, T; Prassl, AJ; Plank, G; Hofer, E
Accuracy of local conduction velocity determination from non-fractionated cardiac activation signals.
Conf Proc IEEE Eng Med Biol Soc. 2007; 2007(19-20): 27-30.
Doi: 10.1109/IEMBS.2007.4352214
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** Vigmond, EJ; Weber Dos Santos, R; Prassl, AJ; Deo, M; Plank, G
Solvers for the cardiac bidomain equations.
Prog Biophys Mol Biol. 2007; 96(1-3): 3-18.
Doi: 10.1016/j.pbiomolbio.2007.07.012
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** Hofer, E; Wiener, T; Prassl, AJ; Thurner, T; Plank, G
Oblique propagation of activation allows the detection of uncoupling microstructures from cardiac near field behavior
PROC ANN INT CONF IEEE EMBS. 2007; 2007(19-20): 415-418.
Doi: 10.1109/IEMBS.2007.4352312
[Oral Communication]
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** Wiener, T; Thurner, T; Prassl, AJ; Plank, G; Hofer, E
Accuracy of local conduction velocity determination from non-fractionated cardiac activation signals
PROC ANN INT CONF IEEE EMBS. 2007; 27-30.
Doi: 10.1109/IEMBS.2007.4352214
[Oral Communication]
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