Medizinische Universität Graz - Research portal

Logo MUG Resarch Portal

Mendonca Costa Caroline |

** = Publications listed in SCI/SSCI/Pubmed

2024

Full paper/article (Journal)

** Strocchi, M; Rodero, C; Roney, CH; Mendonca, Costa, C; Plank, G; Lamata, P; Niederer, SA A Semi-automatic Pipeline for Generation of Large Cohorts of Four-Chamber Heart Meshes.
Methods Mol Biol. 2024; 2735: 117-127. Doi: 10.1007/978-1-0716-3527-8_7
PubMed FullText FullText_MUG

 

2022

Full paper/article (Journal)

** 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 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

** Campos, FO; Neic, A; Mendonca, Costa, C; Whitaker, J; O'Neill, M; Razavi, R; Rinaldi, CA; DanielScherr; Niederer, SA; Plank, G; Bishop, MJ An automated near-real time computational method for induction and treatment of scar-related ventricular tachycardias.
Med Image Anal. 2022; 80:102483 Doi: 10.1016/j.media.2022.102483 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

** Fassina, D; Costa, CM; Longobardi, S; Karabelas, E; Plank, G; Harding, SE; Niederer, SA Modelling the interaction between stem cells derived cardiomyocytes patches and host myocardium to aid non-arrhythmic engineered heart tissue design.
PLoS Comput Biol. 2022; 18(4):e1010030 Doi: 10.1371/journal.pcbi.1010030 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

** Mendonca, Costa, C; Gemmell, P; Elliott, MK; Whitaker, J; Campos, FO; Strocchi, M; Neic, A; Gillette, K; Vigmond, E; Plank, G; Razavi, R; O'Neill, M; Rinaldi, CA; Bishop, MJ Determining anatomical and electrophysiological detail requirements for computational ventricular models of porcine myocardial infarction.
Comput Biol Med. 2022; 141:105061 Doi: 10.1016/j.compbiomed.2021.105061 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

2020

Full paper/article (Journal)

** Balaban, G; Costa, CM; Porter, B; Halliday, B; Rinaldi, CA; Prasad, S; Plank, G; Ismail, TF; Bishop, MJ 3D Electrophysiological Modeling of Interstitial Fibrosis Networks and Their Role in Ventricular Arrhythmias in Non-Ischemic Cardiomyopathy.
IEEE Trans Biomed Eng. 2020; 67(11):3125-3133 Doi: 10.1109/TBME.2020.2976924 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

** Mendonca, Costa, C; Neic, A; Gillette, K; Porter, B; Gould, J; Sidhu, B; Chen, Z; Elliott, M; Mehta, V; Plank, G; Rinaldi, CA; Bishop, MJ; Niederer, SA Left ventricular endocardial pacing is less arrhythmogenic than conventional epicardial pacing when pacing in proximity to scar.
Heart Rhythm. 2020; 17(8):1262-1270 Doi: 10.1016/j.hrthm.2020.03.021 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

2019

Full paper/article (Journal)

** Mendonca Costa, C; Neic, A; Kerfoot, E; Porter, B; Sieniewicz, B; Gould, J; Sidhu, B; Chen, Z; Plank, G; Rinaldi, CA; Bishop, MJ; Niederer, SA Pacing in proximity to scar during cardiac resynchronization therapy increases local dispersion of repolarization and susceptibility to ventricular arrhythmogenesis.
Heart Rhythm. 2019; 16(10):1475-1483 Doi: 10.1016/j.hrthm.2019.03.027 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

2018

Full paper/article (Journal)

** Balaban, G; Halliday, BP; Mendonca Costa, C; Bai, W; Porter, B; Rinaldi, CA; Plank, G; Rueckert, D; Prasad, SK; Bishop, MJ Fibrosis Microstructure Modulates Reentry in Non-ischemic Dilated Cardiomyopathy: Insights From Imaged Guided 2D Computational Modeling.
Front Physiol. 2018; 9(10):1832-1832 Doi: 10.3389/fphys.2018.01832 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

Review

** Costa, CM; Plank, G; Rinaldi, CA; Niederer, SA; Bishop, MJ Modeling the Electrophysiological Properties of the Infarct Border Zone
FRONT PHYSIOL. 2018; 9: 356 Doi: 10.3389/fphys.2018.00356 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

2016

Full paper/article (Journal)

** Costa, CM; Silva, PA; dos Santos, RW Mind the Gap: A Semicontinuum Model for Discrete Electrical Propagation in Cardiac Tissue.
IEEE Trans Biomed Eng. 2016; 63(4):765-774 Doi: 10.1109/TBME.2015.2470256
Web of Science PubMed FullText FullText_MUG

 

2014

Full paper/article (Journal)

** 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 [OPEN ACCESS]
Web of Science PubMed PUBMED Central FullText FullText_MUG

 

2013

Full paper/article (Journal)

** 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]
PubMed PUBMED Central

 

2011

Full paper/article (Journal)

** 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 [OPEN ACCESS]
PubMed PUBMED Central FullText FullText_MUG

 

2010

Full paper/article (Journal)

** Costa, CM; Weber Dos Santos, R Limitations of the homogenized cardiac Monodomain model for the case of low gap junctional coupling.
Conf Proc IEEE Eng Med Biol Soc. 2010; 2010:228-231 Doi: 10.1109/IEMBS.2010.5627817
PubMed FullText FullText_MUG

 

© Med Uni GrazImprint