Login / Signup
Bernardo M. Rocha
ORCID
Publication Activity (10 Years)
Years Active: 2009-2024
Publications (10 Years): 9
Top Topics
Back Propagation Neural Network
Lattice Boltzmann
Graphics Hardware
Hybrid Model
Top Venues
J. Comput. Appl. Math.
IWBBIO
J. Comput. Sci.
ICCSA (Workshops 1)
</>
Publications
</>
P. C. R. Oviedo
,
M. T. Magalhães
,
Bernardo M. Rocha
,
Rafael A. B. de Queiroz
A bounded scheme based on Bézier curves for convection-dominated transport problems.
J. Comput. Appl. Math.
437 (2024)
João R. Alves
,
Lucas A. Berg
,
Evandro Dias Gaio
,
Bernardo M. Rocha
,
Rafael A. B. de Queiroz
,
Rodrigo Weber dos Santos
A Hybrid Model for Cardiac Perfusion: Coupling a Discrete Coronary Arterial Tree Model with a Continuous Porous-Media Flow Model of the Myocardium.
Entropy
25 (8) (2023)
Joventino Oliveira Campos
,
Rafael Moreira Guedes
,
Yan Barbosa Werneck
,
Luis Paulo S. Barra
,
Rodrigo Weber dos Santos
,
Bernardo M. Rocha
Polynomial chaos expansion surrogate modeling of passive cardiac mechanics using the Holzapfel-Ogden constitutive model.
J. Comput. Sci.
71 (2023)
Alexandre Bittencourt Pigozzo
,
Rodrigo Weber dos Santos
,
Bernardo M. Rocha
Sensitivity Analysis of a Cardiac Electrophysiology Model for the Occurrence of Electrical Alternans.
ICCSA (Workshops 1)
(2023)
Emmanuel Y. Medina
,
Elson Magalhães Toledo
,
Iury Igreja
,
Bernardo M. Rocha
A stabilized hybrid discontinuous Galerkin method for the Cahn-Hilliard equation.
J. Comput. Appl. Math.
406 (2022)
Nicolas A. Barnafi
,
Bryan Gomez-Vargas
,
Wesley de Jesus Lourenço
,
Ruy Freitas Reis
,
Bernardo M. Rocha
,
Marcelo Lobosco
,
Ricardo Ruiz-Baier
,
Rodrigo Weber dos Santos
Finite Element Methods for Large-Strain Poroelasticity/Chemotaxis Models Simulating the Formation of Myocardial Oedema.
J. Sci. Comput.
92 (3) (2022)
Jesuliana N. Ulysses
,
Lucas A. Berg
,
Elizabeth M. Cherry
,
Ben R. Liu
,
Rodrigo Weber dos Santos
,
Bruno Gouvêa de Barros
,
Bernardo M. Rocha
,
Rafael A. B. de Queiroz
An Optimization-Based Algorithm for the Construction of Cardiac Purkinje Network Models.
IEEE Trans. Biomed. Eng.
65 (12) (2018)
Joventino Oliveira Campos
,
Rafael Sachetto Oliveira
,
Rodrigo Weber dos Santos
,
Bernardo M. Rocha
Lattice Boltzmann method for parallel simulations of cardiac electrophysiology using GPUs.
J. Comput. Appl. Math.
295 (2016)
Rafael Sachetto Oliveira
,
Bernardo M. Rocha
,
Denise Burgarelli
,
Wagner Meira Jr.
,
Rodrigo Weber dos Santos
Simulations of Cardiac Electrophysiology Combining GPU and Adaptive Mesh Refinement Algorithms.
IWBBIO
(2016)
Rafael Sachetto Oliveira
,
Bernardo M. Rocha
,
Denise Burgarelli
,
Wagner Meira Jr.
,
Rodrigo Weber dos Santos
An Adaptive Mesh Algorithm for the Numerical Solution of Electrical Models of the Heart.
ICCSA (1)
(2012)
Rafael Sachetto Oliveira
,
Bernardo M. Rocha
,
Denise Burgarelli
,
Wagner Meira Jr.
,
Rodrigo Weber dos Santos
A parallel accelerated adaptive mesh algorithm for the solution of electrical models of the heart.
Int. J. High Perform. Syst. Archit.
4 (2) (2012)
Bernardo M. Rocha
,
Fernando Otaviano Campos
,
Ronan Mendonça Amorim
,
Gernot Plank
,
Rodrigo Weber dos Santos
,
Manfred Liebmann
,
Gundolf Haase
Accelerating cardiac excitation spread simulations using graphics processing units.
Concurr. Comput. Pract. Exp.
23 (7) (2011)
Bernardo M. Rocha
,
Ferdinand Kickinger
,
Anton J. Prassl
,
Gundolf Haase
,
Edward J. Vigmond
,
Rodrigo Weber dos Santos
,
Sabine Zaglmayr
,
Gernot Plank
A Macro Finite-Element Formulation for Cardiac Electrophysiology Simulations Using Hybrid Unstructured Grids.
IEEE Trans. Biomed. Eng.
58 (4) (2011)
Bernardo M. Rocha
,
Fernando Otaviano Campos
,
Gernot Plank
,
Rodrigo Weber dos Santos
,
Manfred Liebmann
,
Gundolf Haase
Simulations of the Electrical Activity in the Heart with Graphic Processing Units.
PPAM (1)
(2009)