Enrique Berjano
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Theoretical modeling for radiofrequency ablation: state-of-the-art and challenges for the future
EJ Berjano
Biomedical engineering online 5 (1), 24, 2006
Review of the mathematical functions used to model the temperature dependence of electrical and thermal conductivities of biological tissue in radiofrequency ablation
M Trujillo, E Berjano
International Journal of Hyperthermia 29 (6), 590-597, 2013
Assessment of relationships between blood pressure, pulse wave velocity and digital volume pulse
JM Padilla, EJ Berjano, J Saiz, L Facila, P Diaz, S Merce
2006 Computers in Cardiology, 893-896, 2006
Modeling the heating of biological tissue based on the hyperbolic heat transfer equation
MM Tung, M Trujillo, JAL Molina, MJ Rivera, EJ Berjano
Mathematical and Computer Modelling 50 (5-6), 665-672, 2009
Comparative analysis of different methods of modeling the thermal effect of circulating blood flow during RF cardiac ablation
A González-Suárez, E Berjano
IEEE Transactions on Biomedical Engineering 63 (2), 250-259, 2015
Thermal-electrical modeling for epicardial atrial radiofrequency ablation
EJ Berjano, F Hornero
IEEE transactions on biomedical engineering 51 (8), 1348-1357, 2004
Research and development of a new RF-assisted device for bloodless rapid transection of the liver: Computational modeling and in vivo experiments
F Burdio, EJ Berjano, A Navarro, JM Burdío, L Grande, A Gonzalez, I Cruz, ...
BioMedical Engineering OnLine 8, 1-10, 2009
A cooled intraesophageal balloon to prevent thermal injury during endocardial surgical radiofrequency ablation of the left atrium: a finite element study
EJ Berjano, F Hornero
Physics in Medicine & Biology 50 (20), N269, 2005
What affects esophageal injury during radiofrequency ablation of the left atrium? An engineering study based on finite-element analysis
EJ Berjano, F Hornero
Physiological Measurement 26 (5), 837, 2005
Effect of electrode thermal conductivity in cardiac radiofrequency catheter ablation: a computational modeling study
D Schutt, EJ Berjano, D Haemmerich
International journal of hyperthermia 25 (2), 99-107, 2009
Mathematical modeling of epicardial RF ablation of atrial tissue with overlying epicardial fat
AG Suárez, F Hornero, EJ Berjano
The open biomedical engineering journal 4, 47, 2010
Electrical and thermal effects of esophageal temperature probes on radiofrequency catheter ablation of atrial fibrillation: results from a computational modeling study
JJ Pérez, A D'AVILA, A Aryana, E Berjano
Journal of cardiovascular electrophysiology 26 (5), 556-564, 2015
Radio-frequency heating of the cornea: theoretical model and in vitro experiments
EJ Berjano, J Saiz, JM Ferrero
IEEE Transactions on biomedical Engineering 49 (3), 196-205, 2002
Computer modelling of an impedance-controlled pulsing protocol for RF tumour ablation with a cooled electrode
M Trujillo, J Bon, M Jose Rivera, F Burdío, E Berjano
International Journal of Hyperthermia 32 (8), 931-939, 2016
Modeling for radio-frequency conductive keratoplasty: implications for the maximum temperature reached in the cornea
EJ Berjano, JL Alió, J Saiz
Physiological measurement 26 (3), 157, 2005
Esophageal temperature during radiofrequency‐catheter ablation of left atrium: A three‐dimensional computer modeling study
F Hornero, EJ Berjano
Journal of cardiovascular electrophysiology 17 (4), 405-410, 2006
Relationship between roll-off occurrence and spatial distribution of dehydrated tissue during RF ablation with cooled electrodes
M Trujillo, J Alba, E Berjano
International Journal of Hyperthermia 28 (1), 62-68, 2012
Ring electrode for radio-frequency heating of the cornea: Modelling andin vitro experiments
EJ Berjano, J Saiz, JL Alió, JM Ferrero
Medical and Biological Engineering and Computing 41, 630-639, 2003
Should fluid dynamics be included in computer models of RF cardiac ablation by irrigated-tip electrodes?
A González-Suárez, JJ Pérez, E Berjano
Biomedical engineering online 17 (1), 1-14, 2018
Computational modeling of open-irrigated electrodes for radiofrequency cardiac ablation including blood motion-saline flow interaction
A González-Suárez, E Berjano, JM Guerra, L Gerardo-Giorda
PloS one 11 (3), e0150356, 2016
El sistema no puede realizar la operación en estos momentos. Inténtalo de nuevo más tarde.
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