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María S. Guillem
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- affiliation: Technical University of Valencia, Spain
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2020 – today
- 2024
- [j18]Tiantian Wang, Joël M. H. Karel, Eric Invers-Rubio, Ismael Hernández-Romero, Ralf Peeters, Pietro Bonizzi, María S. Guillem:
Standardized 2D atrial mapping and its clinical applications. Comput. Biol. Medicine 168: 107755 (2024) - [j17]Rubén Molero, Marta Martínez Pérez, Clara Herrero-Martín, Jana Reventós-Presmanes, Ivo Roca-Luque, Lluís Mont, Andreu M. Climent, María S. Guillem:
Improving electrocardiographic imaging solutions: A comprehensive study on regularization parameter selection in L-curve optimization in the Atria. Comput. Biol. Medicine 182: 109141 (2024) - [j16]Miriam Gutiérrez-Fernández-Calvillo, Miguel Ángel Cámara-Vázquez, Ismael Hernández-Romero, María S. Guillem, Andreu M. Climent, Carlos Fambuena-Santos, Óscar Barquero-Pérez:
Non-invasive estimation of atrial fibrillation driver position using long-short term memory neural networks and body surface potentials. Comput. Methods Programs Biomed. 246: 108052 (2024) - 2023
- [j15]Rubén Molero, Ismael Hernández-Romero, Andreu M. Climent, María S. Guillem:
Filtering strategies of electrocardiographic imaging signals for stratification of atrial fibrillation patients. Biomed. Signal Process. Control. 81: 104438 (2023) - [j14]Ismael Hernández-Romero, Rubén Molero, Carlos Fambuena-Santos, Clara Herrero-Martín, Andreu M. Climent, María S. Guillem:
Electrocardiographic imaging in the atria. Medical Biol. Eng. Comput. 61(4): 879-896 (2023) - [c61]Miriam Gutiérrez-Fernández-Calvillo, Miguel Ángel Cámara-Vázquez, Ismael Hernández-Romero, Carlos Fambuena-Santos, María S. Guillem, Andreu M. Climent, Óscar Barquero-Pérez:
EGM Reconstruction from BSPs in Atrial Fibrillation Using Deep Learning. CinC 2023: 1-4 - [c60]María Macarulla-Rodríguez, Jorge Sánchez, María S. Guillem:
Non-Invasive Estimation of Atrial Fibrosis Location and Density. CinC 2023: 1-4 - [c59]Jorge Sánchez, Karla Arévalo Ruales, María Macarulla-Rodríguez, Cristian Barrios Espinosa, Axel Loewe, María S. Guillem:
Inflammation-Induced Remodeling and Atrial Arrhythmias in Systemic Lupus Erythematosus: In Silico Insights. CinC 2023: 1-4 - [c58]María Correas, María S. Guillem, Jorge Sánchez:
Automated Generation of Purkinje Networks in the Human Heart Considering the Anatomical Variability. FIMH 2023: 127-136 - 2022
- [j13]Gema Prats-Boluda, María S. Guillem, Miguel Rodrigo, Yiyao Ye-Lin, Javier Garcia-Casado:
Identification of atrial fibrillation drivers by means of concentric ring electrodes. Comput. Biol. Medicine 148: 105957 (2022) - [j12]Jennifer Riccio, Alejandro Alcaine, Sara Rocher, Laura Martinez-Mateu, Javier Saiz, Eric Invers-Rubio, María S. Guillem, Juan Pablo Martínez, Pablo Laguna:
Atrial fibrosis identification with unipolar electrogram eigenvalue distribution analysis in multi-electrode arrays. Medical Biol. Eng. Comput. 60(11): 3091-3112 (2022) - [c57]Lourdes Patricia Martínez Díaz, Jorge Sánchez, Claudia Nagel, Marta Martínez Pérez, Ismael Hernández-Romero, María S. Guillem, Olaf Dössel, Axel Loewe:
Personalized Modeling of Atrial Activation and P-waves: a Comparison Between Invasive and Non-invasive Cardiac Mapping. CinC 2022: 1-4 - [c56]Carlos Fambuena-Santos, Ismael Hernández-Romero, Clara Herrero-Martín, Jana Reventós-Presmanes, E. Invers-Rubio, L. Mont, Andreu M. Climent, María S. Guillem:
Probabilistic Dominant Frequency Estimation in AF From ECGI. CinC 2022: 1-4 - [c55]Miriam Gutiérrez-Fernández-Calvillo, Miguel Ángel Cámara-Vázquez, Ismael Hernández-Romero, María S. Guillem, Andreu M. Climent, Óscar Barquero-Pérez:
Non-Invasive Atrial Fibrillation Driver Localization Using Recurrent Neural Networks and Body Surface Potentials. CinC 2022: 1-4 - [c54]Ismael Hernández-Romero, Carlos Fambuena-Santos, Clara Herrero-Martín, Andreu M. Climent, María S. Guillem:
Local Conduction Velocity Estimation During Wavefront Collisions and Reentrant Scenarios. CinC 2022: 1-4 - [c53]Clara Herrero-Martín, Carlos Fambuena-Santos, María S. Guillem, Andreu M. Climent, Ismael Hernández-Romero:
Tailoring Process for the Regional Personalization of Atrial Fibrillation with a Novel Cardiac Model. CinC 2022: 1-4 - [c52]Rubén Molero, Ana González-Ascaso, Ismael Hernández-Romero, Andreu M. Climent, María S. Guillem:
Effect of Torso Mesh Density on Electrocardiographic Imaging Resolution from Atrial Fibrillation Simulations. CinC 2022: 1-4 - [c51]Rubén Molero, Olivier Meste, Joël M. H. Karel, Ralf Peeters, Pietro Bonizzi, María S. Guillem:
Analysis of Atrial Fibrillation Dynamics in Body Surface Potential Maps and Electrocardiographic Imaging. CinC 2022: 1-4 - [c50]Rubén Molero, Jana Reventós-Presmanes, Ivo Roca, Lluís Mont, Andreu M. Climent, María S. Guillem:
Impact of Noise on Electrocardiographic Imaging Resolution with Zero Order Tikhonov Regularization and L-Curve Optimization. CinC 2022: 1-4 - [c49]Camila R. Restivo, Gabriel V. Costa, Italo Sandoval, María S. Guillem, João Salinet:
Validation of a Customized Method for Estimating Electrical Potentials in the Torso From Atrial Signals: a Computational-Clinical Study. CinC 2022: 1-4 - [c48]Jana Reventós-Presmanes, Eric Invers-Rubio, Elisenda Ferró, Ismael Hernández-Romero, Clara Herrero-Martín, Javier Milagro, David Lundback, Eduard Guasch, Jose M. Tolosana, Ivo Roca-Luque, María S. Guillem, Lluís Mont, Jean B. Guichard, Andreu M. Climent:
Validation of a Novel Imageless Non-Invasive Electrocardiographic Imaging for the Characterization of Atrial Tachycardias. CinC 2022: 1-4 - 2021
- [j11]Miguel Ángel Cámara, Ismael Hernández-Romero, Miguel Rodrigo, Felipe Alonso Atienza, Carlos Figuera, Eduardo Morgado, Felipe Atienza, María S. Guillem, Andreu M. Climent, Óscar Barquero-Pérez:
Electrocardiographic imaging including intracardiac information to achieve accurate global mapping during atrial fibrillation. Biomed. Signal Process. Control. 64: 102354 (2021) - [j10]Rubén Molero, José Manuel Soler Torro, Nieves Martínez-Alzamora, Andreu M. Climent, María S. Guillem:
Higher reproducibility of phase derived metrics from electrocardiographic imaging during atrial fibrillation in patients remaining in sinus rhythm after pulmonary vein isolation. Comput. Biol. Medicine 139: 104934 (2021) - [c47]Miguel Ángel Cámara-Vázquez, Ismael Hernández-Romero, Eduardo Morgado-Reyes, María S. Guillem, Andreu M. Climent, Óscar Barquero-Pérez:
Detection of Atrial Fibrillation Driver Locations Using CNN and Body Surface Potentials. CinC 2021: 1-4 - [c46]Alexander Lacki, Ismael Hernández-Romero, María S. Guillem, Andreu M. Climent:
ECGI Periodicity Unraveled: A Deep Learning Approach for the Visualization of Periodic Spatiotemporal Patterns in Atrial Fibrillation Patients. CinC 2021: 1-4 - [c45]Rubén Molero, Carlos Fambuena, Andreu M. Climent, María S. Guillem:
Electrocardiographic Imaging in Atrial Fibrillation: Selection of the Optimal Tikhonov-Regularization Parameter. CinC 2021: 1-4 - [c44]Italo Sandoval, Victor Gonçalves Marques, John A. Sims, Miguel Rodrigo, María S. Guillem, João Salinet:
Non-invasive Mechanism Classification and Localization in Supraventricular Cardiac Arrhythmias. CinC 2021: 1-4 - 2020
- [j9]Alejandro Costoya-Sánchez, Andreu M. Climent, Ismael Hernández-Romero, Alejandro Liberos, Francisco Fernández-Avilés, Sanjiv M. Narayan, Felipe Atienza, María S. Guillem, Miguel Rodrigo:
Automatic quality electrogram assessment improves phase-based reentrant activity identification in atrial fibrillation. Comput. Biol. Medicine 117: 103593 (2020) - [j8]Victor Gonçalves Marques, Miguel Rodrigo, María de la Salud Guillem, João Salinet:
Characterization of atrial arrhythmias in body surface potential mapping: A computational study. Comput. Biol. Medicine 127: 103904 (2020) - [c43]Miguel Ángel Cámara-Vázquez, Adrián Oter-Astillero, Ismael Hernández-Romero, Miguel Rodrigo, Eduardo Morgado-Reyes, María S. Guillem, Andreu M. Climent, Óscar Barquero-Pérez:
Atrial Fibrillation Driver Localization From Body Surface Potentials Using Deep Learning. CinC 2020: 1-4 - [c42]Ana González-Ascaso, Rubén Molero, Andreu M. Climent, María S. Guillem:
ECGi Metrics in Atrial Fibrillation Dependency on Epicardium Segmentation. CinC 2020: 1-4 - [c41]Victor Gonçalves Marques, Miguel Rodrigo, María S. Guillem, João Salinet:
A Wavelet-Based Method for Non-Invasive Dominant Frequency Detection in Atrial Fibrillation. CinC 2020: 1-4 - [c40]Victor Gonçalves Marques, Miguel Rodrigo, María S. Guillem, João Salinet:
Classification and Location of Atrial Arrhythmic Mechanisms With Body Surface Potential Mapping. CinC 2020: 1-4 - [c39]Rubén Molero, Andreu M. Climent, María S. Guillem:
Post-Processing of Electrocardiographic Imaging Signals to Identify Atrial Fibrillation Drivers. CinC 2020: 1-4
2010 – 2019
- 2019
- [j7]Alejandro Liberos, Miguel Rodrigo, Ismael Hernández-Romero, Aurelio Quesada, Francisco Fernandez-Aviles, Felipe Atienza, Andreu M. Climent, María S. Guillem:
Phase singularity point tracking for the identification of typical and atypical flutter patients: A clinical-computational study. Comput. Biol. Medicine 104: 319-328 (2019) - [c38]Alejandro Costoya-Sánchez, Andreu M. Climent, Ismael Hernández-Romero, Alejandro Liberos, Francisco Fernández-Avilés, Sanjiv M. Narayan, Felipe Atienza, María S. Guillem, Miguel Rodrigo:
Temporal Stability of Dominant Frequency as Predictor of Atrial Fibrillation Recurrence. CinC 2019: 1-4 - [c37]Alejandro Costoya-Sánchez, Andreu M. Climent, Ismael Hernández-Romero, Alejandro Liberos, Francisco Fernández-Avilés, Sanjiv M. Narayan, Felipe Atienza, María S. Guillem, Miguel Rodrigo:
Automatic Quality Electrogram Assessment Improves Reentrant Activity Identification in Atrial Fibrillation. CinC 2019: 1-4 - [c36]Victor Gonçalves Marques, Miguel Rodrigo, María S. Guillem, João Salinet:
Non-Invasive Characterization of Atrial Arrhythmic Driving Mechanisms in Computer Models. CinC 2019: 1-4 - [c35]Victor Gonçalves Marques, Miguel Rodrigo, María S. Guillem, João Salinet:
Effect of Reducing the Number of Leads from Body Surface Potential Mapping in Computer Models of Atrial Arrhythmias. CinC 2019: 1-4 - [c34]Rubén Molero, Andreu M. Climent, Ismael Hernández-Romero, Alejandro Liberos, Francisco Fernández-Avilés, Felipe Atienza, María S. Guillem, Miguel Rodrigo:
Effects of Geometry in Atrial Fibrillation Markers Obtained With Electrocardiographic Imaging. CinC 2019: 1-4 - [c33]Ana Maria Sanchez de la Nava, Macarena Castillo Fabregat, Miguel Rodrigo, Ismael Hernández-Romero, Alejandro Liberos, Francisco Fernández-Avilés, María S. Guillem, Felipe Atienza, Andreu M. Climent:
Non-Invasive Electrophysiological Mapping Entropy Predicts Atrial Fibrillation Ablation Efficacy Better Than Clinical Characteristics. CinC 2019: 1-4 - 2018
- [j6]Miguel Rodrigo, Andreu M. Climent, Alejandro Liberos, Ismael Hernández-Romero, Angel Arenal, Javier Bermejo, Francisco Fernandez-Aviles, Felipe Atienza, María de la Salud Guillem:
Solving Inaccuracies in Anatomical Models for Electrocardiographic Inverse Problem Resolution by Maximizing Reconstruction Quality. IEEE Trans. Medical Imaging 37(3): 733-740 (2018) - [c32]Ana Maria Sanchez de la Nava, Alejandro Liberos, Ismael Hernández-Romero, María de la Salud Guillem Sánchez, Felipe Atienza, Francisco Fernandez-Aviles, Andreu M. Climent:
In Silico Safety Pharmacology on Intersubject Variability Population of Models: A Regression Model Approach. CinC 2018: 1-4 - 2017
- [c31]Zexi Chen, Miguel Rodrigo, Alejandro Liberos, Ismael Hernández-Romero, Jesus Requena, Andreu M. Climent, María de la Salud Guillem Sánchez:
Evaluation of Inverse Problem with Slow-Conducting Channel in Scar Area in a Post-Infarction Model. CinC 2017 - [c30]Ana Simon Chica, Alejandro Liberos, Ismael Hernández-Romero, Alfonso Bueno-Orovio, Miguel Rodrigo, María de la Salud Guillem Sánchez, Felipe Atienza, Francisco Fernández-Avilés, Blanca Rodríguez, Andreu M. Climent:
Electrophysiological Parameters in the Electrical Propagation During Atrial Fibrillation: a Population of Models Study. CinC 2017 - [c29]Irene Del-Canto, Lidia Gomez-Cid, Ismael Hernández-Romero, María S. Guillem, María Eugenia Fernández-Santos, Luis Such, Francisco Fernández-Avilés, Felipe Atienza, Francisco J. Chorro, Andreu M. Climent:
Ranolazine Attenuates Stretch-induced Modifications of Electrophysiological Characteristics in HL-1 Cells. CinC 2017 - [c28]Jwala Dhamala, Jaume Coll-Font, Jess D. Tate, María de la Salud Guillem Sánchez, Dana H. Brooks, Linwei Wang, Rob S. MacLeod, Sandesh Ghimire:
Overcoming Barriers to Quantification and Comparison of Electrocardiographic Imaging Methods: a Community-Based Approach. CinC 2017 - [c27]Alejandro Liberos, Alfonso Bueno-Orovio, Miguel Rodrigo, Ismael Hernández-Romero, María de la Salud Guillem Sánchez, Francisco Fernandez-Aviles, Felipe Atienza, Blanca Rodríguez, Andreu M. Climent:
Personalization of Atrial Fibrillation Antiarrhythmic Drug Treatments: a Population of Models Approach. CinC 2017 - [c26]Miguel Rodrigo, Andreu M. Climent, Alejandro Liberos, Ismael Hernández-Romero, Angel Arenal, Javier Bermejo, Francisco Fernandez-Aviles, Felipe Atienza, María de la Salud Guillem Sánchez:
Solving Inaccuracies in the Heart Position and Orientation for Inverse Solution by Using Electrical Information. CinC 2017 - [c25]João Loures Salinet Jr., Fernando S. Schlindwein, Peter J. Stafford, Tiago P. Almeida, Xin Li, Frederique Jos Vanheusden, María de la Salud Guillem Sánchez, G. André Ng:
Persistent Atrial Fibrillation Hierarchical Activation: from Highest DF Sites to Wave Fractionation at the Boundaries. CinC 2017 - [c24]Víctor Suárez-Gutiérrez, Miguel Ángel Cámara, Óscar Barquero-Pérez, Ismael Hernández-Romero, María de la Salud Guillem Sánchez, Andreu M. Climent, Felipe Alonso Atienza, Carlos Figuera:
Including a Priori Knowledge in the Solution of the Inverse Problem During Atrial Fibrillation. CinC 2017 - 2016
- [c23]Anthony Bouril, Darya Aleinikava, María de la Salud Guillem Sánchez, Grace M. Mirsky:
Automated Classification of Normal and Abnormal Heart Sounds using Support Vector Machines. CinC 2016 - [c22]Andreu M. Climent, Ismael Hernández-Romero, María de la Salud Guillem Sánchez, Nuria Montserrat, María Eugenia Fernández-Santos, Felipe Atienza, Francisco Fernández-Avilés:
High Resolution Microscopic Optical Mapping of Anatomical and Functional Reentries in Human Cardiac Cell Cultures. CinC 2016 - [c21]Jaume Coll-Font, Dana H. Brooks, Peter M. van Dam, Jwala Dhamala, Olaf Dössel, María de la Salud Guillem Sánchez, Rob S. MacLeod, Danila Potyagaylo, Walther H. W. Schulze, Jess D. Tate, Linwei Wang:
The Consortium on Electrocardiographic Imaging. CinC 2016 - [c20]Carlos Figuera, Víctor Suárez-Gutiérrez, Óscar Barquero-Pérez, Rebeca Goya-Esteban, Miguel Rodrigo, Ismael Hernández-Romero, Felipe Atienza, María de la Salud Guillem Sánchez, Andreu M. Climent, Felipe Alonso Atienza:
Performance of Inverse Problem Regularization Methods for Driver Location during Atrial Fibrillation. CinC 2016 - [c19]Lidia Gomez-Cid, Lucia Fuentes, Ismael Hernández-Romero, María de la Salud Guillem Sánchez, Felipe Atienza, Francisco Fernández-Avilés, Andreu M. Climent:
Role of Substrate Flexibility on Cardiac Cell Culture Electrophysiological Properties. CinC 2016 - [c18]Ismael Hernández-Romero, Paula Giménez, Allan Rivera, Carlos Figuera, María de la Salud Guillem Sánchez, Francisco Fernández-Avilés, Andreu M. Climent, Felipe Atienza:
Mechanism behind Hyperkalemic Brugada Phenocopy: A Computational Study. CinC 2016 - [c17]Grace M. Mirsky, María de la Salud Guillem Sánchez:
Analysis of the Clinical Utility of Algorithms in the 2009 PhysioNet/Computing in Cardiology Challenge for the Prediction of Acute Hypotensive Episodes. CinC 2016 - [c16]Miguel Rodrigo, Andreu M. Climent, Alejandro Liberos, Francisco Fernández-Avilés, Omer Berenfeld, Felipe Atienza, María S. Guillem:
Highest Dominant Frequency and Rotor Sites are Robust Markers for Atrial Driver Location in Non-invasive Mapping of Atrial Fibrillation. CinC 2016 - [c15]María de la Salud Guillem Sánchez, Andreu M. Climent, Miguel Rodrigo, Ismael Hernández-Romero, Alejandro Liberos, Francisco Fernández-Avilés, Omer Berenfeld, Felipe Atienza:
Noninvasive Identification of Atrial Fibrillation Drivers: Simulation and Patient Data Evaluation. CinC 2016 - 2015
- [c14]João Loures Salinet Jr., María S. Guillem, Tiago P. Almeida, Xin Li, Daniel Gustavo Goroso, Gavin S. Chu, G. André Ng, Fernando S. Schlindwein:
Drifting Rotors Prevalence Is Associated with Dominant Frequency Reduction after Persistent Atrial Fibrillation Ablation. CinC 2015: 269-272 - [c13]Miguel Rodrigo, Andreu M. Climent, Alejandro Liberos, Francisco Fernandez-Aviles, Omer Berenfeld, Felipe Atienza, María de la Salud Guillem:
Atrial sources identification by causality analysis during atrial fibrillation. EMBC 2015: 3783-3786 - 2014
- [j5]Víctor M. García-Molla, Alejandro Liberos, Antonio M. Vidal, María de la Salud Guillem, José Millet, Alberto González, Francisco-Jose Martínez-Zaldívar, Andreu M. Climent:
Adaptive step ODE algorithms for the 3D simulation of electric heart activity with graphics processing units. Comput. Biol. Medicine 44: 15-26 (2014) - [c12]Miguel Rodrigo, Andreu M. Climent, Alejandro Liberos, Jorge Pedrón-Torrecilla, José Millet, Francisco Fernández-Avilés, Felipe Atienza, Omer Berenfeld, María S. Guillem:
Non-invasive Detection of Reentrant Drivers during Atrial Fibrillation: a Clinical-Computational Study. CinC 2014: 9-12 - [c11]Jorge Pedrón-Torrecilla, Andreu M. Climent, Alejandro Liberos, Miguel Rodrigo, Esther Pérez-David, José Millet, Francisco Fernández-Avilés, Omer Berenfeld, Felipe Atienza, María S. Guillem:
Accuracy of Inverse Solution Computation of Dominant Frequencies and Phases during Atrial Fibrillation. CinC 2014: 537-540 - 2013
- [c10]Miguel Rodrigo, Alejandro Liberos, Andreu M. Climent, María S. Guillem:
Identification of Ablation Sites in Atrial Flutter by Causal Method. CinC 2013: 707-710 - [c9]Alejandro Liberos, Jorge Pedrón-Torrecilla, Miguel Rodrigo, José Millet, Andreu M. Climent, María S. Guillem:
Body Surface Potential Propagation Maps During Macroreentrant Atrial Arrhythmias. A Simulation Study. CinC 2013: 915-918 - [c8]Ana Ferrer-Albero, Rafael Sebastián, José Félix Rodríguez, Catalina Tobón, María S. Guillem, Eduardo J. Godoy, Javier Saiz:
Computational Simulation and Analysis of 3D Body Surface Potential Patterns Generated by Common Atrial Arrhythmias. CinC 2013: 919-922 - [c7]Jorge Pedrón-Torrecilla, Alejandro Liberos, José Millet, Andreu M. Climent, María S. Guillem:
Accuracy of Non-invasive Frequency Estimation during Atrial Fibrillation. CinC 2013: 1183-1186 - [c6]Miguel Rodrigo, Andreu M. Climent, Alejandro Liberos, Jorge Pedrón-Torrecilla, José Millet, Francisco Fernández-Avilés, Felipe Atienza, Omer Berenfeld, María S. Guillem:
Non-invasive Location of Re-entrant Propagation Patterns during Atrial Fibrillation. CinC 2013: 1235-1238 - 2011
- [j4]Andreu M. Climent, Felipe Atienza, José Millet, María de la Salud Guillem:
Generation of realistic atrial to atrial interval series during atrial fibrillation. Medical Biol. Eng. Comput. 49(11): 1261-1268 (2011) - [c5]Jorge Pedrón-Torrecilla, Andreu M. Climent, José Millet, Paola Berne, Josep Brugada, Ramon Brugada, María de la Salud Guillem:
Characteristics of inverse-computed epicardial electrograms of Brugada syndrome patients. EMBC 2011: 235-238 - [c4]Pietro Bonizzi, Olivier Meste, Vicente Zarzoso, Ronald L. Westra, Joël M. H. Karel, María de la Salud Guillem, Francisco Castells:
Topographic imaging of the atrial electrical activity during atrial fibrillation for the analysis of uniform distributions of the surface electrical potentials. EMBC 2011: 2586-2589 - [c3]Francisco Castells, Olivier Meste, Aurelio Quesada, María de la Salud Guillem, Andreu M. Climent, José Millet:
Characterization of typical and atypical atrial flutter loops from the vectorcardiogram. EMBC 2011: 4976-4979 - 2010
- [j3]Pietro Bonizzi, María de la Salud Guillem, Andreu M. Climent, José Millet, Vicente Zarzoso, Francisco Castells, Olivier Meste:
Noninvasive Assessment of the Complexity and Stationarity of the Atrial Wavefront Patterns During Atrial Fibrillation. IEEE Trans. Biomed. Eng. 57(9): 2147-2157 (2010)
2000 – 2009
- 2009
- [j2]Andreu M. Climent, María de la Salud Guillem, Daniela Husser, Francisco Castells, José Millet, Andreas Bollmann:
Poincaré Surface Profiles of RR Intervals: A Novel Noninvasive Method for the Evaluation of Preferential AV Nodal Conduction During Atrial Fibrillation. IEEE Trans. Biomed. Eng. 56(2): 433-442 (2009) - [j1]María de la Salud Guillem, Andreas Bollmann, Andreu M. Climent, Daniela Husser, José Millet-Roig, Francisco Castells:
How Many Leads Are Necessary for a Reliable Reconstruction of Surface Potentials During Atrial Fibrillation? IEEE Trans. Inf. Technol. Biomed. 13(3): 330-340 (2009) - 2006
- [c2]Jorge Igual, Raul Llinares, María de la Salud Guillem, José Millet:
Optimal Localization of Leads in Atrial Fibrillation Episodes. ICASSP (2) 2006: 1192-1195 - [c1]Raul Llinares, Jorge Igual, José Millet, María de la Salud Guillem:
Independent Component Analysis of Body Surface Potential Mapping Recordings with Atrial Fibrillation. IJCNN 2006: 2287-2294
Coauthor Index
aka: Felipe Alonso Atienza
aka: Francisco Fernández-Avilés
aka: José Millet
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