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Raúl Alcaraz 0001
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- affiliation: University of Castilla-La Mancha (UCLM), Research Group in Electronic, Biomedical, and Telecommunication Engineering, Cuenca, Spain
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2020 – today
- 2024
- [j48]Álvaro Huerta, Arturo Martínez-Rodrigo, Vicente Bertomeu-González, Óscar Ayo-Martin, José Joaquín Rieta, Raúl Alcaraz:
Single-lead electrocardiogram quality assessment in the context of paroxysmal atrial fibrillation through phase space plots. Biomed. Signal Process. Control. 91: 105920 (2024) - [j47]Pilar Escribano, Juan Ródenas, Manuel García, Fernando Hornero, Juan M. Gracia-Baena, Raúl Alcaraz, José Joaquín Rieta:
Novel Entropy-Based Metrics for Long-Term Atrial Fibrillation Recurrence Prediction Following Surgical Ablation: Insights from Preoperative Electrocardiographic Analysis. Entropy 26(1): 28 (2024) - [j46]Aikaterini Vraka, Roberto Zangróniz, Aurelio Quesada, Fernando Hornero, Raúl Alcaraz, José Joaquín Rieta:
A Novel Signal Restoration Method of Noisy Photoplethysmograms for Uninterrupted Health Monitoring. Sensors 24(1): 141 (2024) - 2023
- [j45]Álvaro Huerta, Arturo Martínez-Rodrigo, Davide Carneiro, Vicente Bertomeu-González, José Joaquín Rieta, Raúl Alcaraz:
Comparison of Supervised Learning Algorithms for Quality Assessment of Wearable Electrocardiograms With Paroxysmal Atrial Fibrillation. IEEE Access 11: 106126-106140 (2023) - [c64]Álvaro Huerta, Arturo Martínez-Rodrigo, José Joaquín Rieta, Raúl Alcaraz:
Relevance of Pre-Training in the Development of a Light Convolutional Neural Network for ECG Quality Assessment. CinC 2023: 1-4 - [c63]S. Mula, Roberto Zangróniz, José Joaquín Rieta, Raúl Alcaraz:
Study on the Generalization Ability of Accelerometer Threshold-Based Methods for Noise Detection in PPG Signals. CinC 2023: 1-4 - [c62]Daniele Padovano, Arturo Martínez-Rodrigo, José Manuel Pastor, José Joaquín Rieta, Raúl Alcaraz:
Comparison of Machine Learning and Deep Learning Methods Based on Recurrence Analysis for Obstructive Sleep Apnea Detection. CinC 2023: 1-4 - [c61]Aikaterini Vraka, Vicente Bertomeu-González, Aurelio Quesada, Roberto Zangróniz, Raúl Alcaraz, José Joaquín Rieta:
Optimized Blood Pressure Classification by Features of Pulse Rate Variability and Asymmetry. CinC 2023: 1-4 - [c60]Aikaterini Vraka, Lorenzo Fácila, Fernando Hornero, Arturo Martínez-Rodrigo, Raúl Alcaraz, José Joaquín Rieta:
Detection of Hypertension Through Features from Heart Rate Variability and Machine Learning Analysis. CinC 2023: 1-4 - [c59]Aikaterini Vraka, Juan M. Gracia-Baena, Flavia Ravelli, Philip Langley, Raúl Alcaraz, José Joaquín Rieta:
Reconstruction of Corrupted Photoplethysmography Signals to Facilitate Continuous Monitoring. CinC 2023: 1-4 - 2022
- [j44]Daniele Padovano, Arturo Martínez-Rodrigo, José Manuel Pastor, José Joaquín Rieta, Raúl Alcaraz:
On the Generalization of Sleep Apnea Detection Methods Based on Heart Rate Variability and Machine Learning. IEEE Access 10: 92710-92725 (2022) - [j43]Emanuela Finotti, Aurelio Quesada, Edward J. Ciaccio, Hasan Garan, Fernando Hornero, Raúl Alcaraz, José Joaquín Rieta:
Practical Considerations for the Application of Nonlinear Indices Characterizing the Atrial Substrate in Atrial Fibrillation. Entropy 24(9): 1261 (2022) - [j42]Beatriz García-Martínez, Antonio Fernández-Caballero, Arturo Martínez-Rodrigo, Raúl Alcaraz, Paulo Novais:
Evaluation of Brain Functional Connectivity from Electroencephalographic Signals Under Different Emotional States. Int. J. Neural Syst. 32(10): 2250026:1-2250026:16 (2022) - [j41]Aikaterini Vraka, Vicente Bertomeu-González, Fernando Hornero, Aurelio Quesada, Raúl Alcaraz, José Joaquín Rieta:
Splitting the P-Wave: Improved Evaluation of Left Atrial Substrate Modification after Pulmonary Vein Isolation of Paroxysmal Atrial Fibrillation. Sensors 22(1): 290 (2022) - [j40]Diego I. Osorio, Aikaterini Vraka, Aurelio Quesada, Fernando Hornero, Raúl Alcaraz, José Joaquín Rieta:
An Efficient Hybrid Methodology for Local Activation Waves Detection under Complex Fractionated Atrial Electrograms of Atrial Fibrillation. Sensors 22(14): 5345 (2022) - [j39]Beatriz García-Martínez, Antonio Fernández-Caballero, Raúl Alcaraz, Arturo Martínez-Rodrigo:
Application of Dispersion Entropy for the Detection of Emotions With Electroencephalographic Signals. IEEE Trans. Cogn. Dev. Syst. 14(3): 1179-1187 (2022) - [c58]Jesús Cano, Vicente Bertomeu-González, Lorenzo Fácia, José Moreno-Arribas, Raúl Alcaraz, José Joaquín Rieta:
ECG and PPG-Based Hypertension Screening Under Non-Hypertensive Blood Pressure Recordings. CinC 2022: 1-4 - [c57]Jesús Cano, Lorenzo Fácia, Fernando Hornero, Philip Langley, Raúl Alcaraz, José Joaquín Rieta:
Cuffless Hypertension Risk Assessment and the Significance of Calibration. CinC 2022: 1-4 - [c56]Pilar Escribano, Juan Ródenas, Manuel García, Miguel A. Arias, José Joaquín Rieta, Raúl Alcaraz:
Spectral Distribution Complexity of the Surface Fibrillatory Waves Predicts Post-Catheter Ablation Relapse in Persistent Atrial Fibrillation. CinC 2022: 1-4 - [c55]Daniele Padovano, Arturo Martínez-Rodrigo, José Manuel Pastor, José Joaquín Rieta, Raúl Alcaraz:
Hidden Hazards Beneath Cross-Validation Methods in Machine Learning-Based Sleep Apnea Detection. CinC 2022: 1-4 - [c54]Aikaterini Vraka, Vicente Bertomeu-González, Leif Sörnmo, Roberto Zangróniz, Raúl Alcaraz, José Joaquín Rieta:
The P-Wave Time-Domain Significant Features to Evaluate Substrate Modification After Catheter Ablation of Paroxysmal Atrial Fibrillation. CinC 2022: 1-4 - [c53]Aikaterini Vraka, José Moreno-Arribas, Juan M. Gracia-Baena, Flavia Ravelli, Raúl Alcaraz, José Joaquín Rieta:
Left Pulmonary Veins Isolation: The Cornerstone in Noninvasive Evaluation of Substrate Modification After Catheter Ablation of Paroxysmal Atrial Fibrillation. CinC 2022: 1-4 - 2021
- [j38]Beatriz García-Martínez, Antonio Fernández-Caballero, Raúl Alcaraz, Arturo Martínez-Rodrigo:
Cross-sample entropy for the study of coordinated brain activity in calm and distress conditions with electroencephalographic recordings. Neural Comput. Appl. 33(15): 9343-9352 (2021) - [j37]Beatriz García-Martínez, Antonio Fernández-Caballero, Raúl Alcaraz, Arturo Martínez-Rodrigo:
Assessment of dispersion patterns for negative stress detection from electroencephalographic signals. Pattern Recognit. 119: 108094 (2021) - [j36]Arturo Martínez-Rodrigo, Beatriz García-Martínez, Álvaro Huerta, Raúl Alcaraz:
Detection of Negative Stress through Spectral Features of Electroencephalographic Recordings and a Convolutional Neural Network. Sensors 21(9): 3050 (2021) - [j35]Beatriz García-Martínez, Arturo Martínez-Rodrigo, Raúl Alcaraz, Antonio Fernández-Caballero:
A Review on Nonlinear Methods Using Electroencephalographic Recordings for Emotion Recognition. IEEE Trans. Affect. Comput. 12(3): 801-820 (2021) - [j34]Raúl Alcaraz, Arturo Martínez-Rodrigo, Roberto Zangróniz, José Joaquín Rieta:
Early Prediction of Students at Risk of Failing a Face-to-Face Course in Power Electronic Systems. IEEE Trans. Learn. Technol. 14(5): 590-603 (2021) - [c52]Jesús Cano, Vicente Bertomeu-González, Lorenzo Fácila, Roberto Zangróniz, Raúl Alcaraz, José Joaquín Rieta:
Hypertension Risk Assessment from Photoplethysmographic Recordings Using Deep Learning Classifiers. CinC 2021: 1-4 - [c51]Jesús Cano, Fernando Hornero, Aurelio Quesada, Arturo Martínez-Rodrigo, Raúl Alcaraz, José Joaquín Rieta:
Improved Discrimination Between Healthy and Hypertensive Individuals Combining Photoplethysmography and Electrocardiography. CinC 2021: 1-4 - [c50]Álvaro Huerta, Arturo Martínez-Rodrigo, José Joaquín Rieta, Raúl Alcaraz:
ECG Quality Assessment via Deep Learning and Data Augmentation. CinC 2021: 1-4 - [c49]Aikaterini Vraka, Vicente Bertomeu-González, Fernando Hornero, Flavia Ravelli, Raúl Alcaraz, José Joaquín Rieta:
Linear and Nonlinear Correlations Between Surface and Invasive Atrial Activation Features in Catheter Ablation of Paroxysmal Atrial Fibrillation. CinC 2021: 1-4 - [c48]Beatriz García-Martínez, Antonio Fernández-Caballero, Raúl Alcaraz, Arturo Martínez-Rodrigo:
Detection of Emotions from Electroencephalographic Recordings by Means of a Nonlinear Functional Connectivity Measure. IWANN (1) 2021: 242-252 - 2020
- [j33]Shu-Bo Chen, Alireza Beigi, Amin Yousefpour, Farhad Rajaee, Hadi Jahanshahi, Stelios D. Bekiros, Raúl Alcaraz Martínez, Yuming Chu:
Recurrent Neural Network-Based Robust Nonsingular Sliding Mode Control With Input Saturation for a Non-Holonomic Spherical Robot. IEEE Access 8: 188441-188453 (2020) - [j32]Edison Mayanja, Livingstone S. Luboobi, Juma Kasozi, Rebecca N. Nsubuga, Raúl Alcaraz:
Mathematical Modelling of HIV-HCV Coinfection Dynamics in Absence of Therapy. Comput. Math. Methods Medicine 2020: 2106570:1-2106570:27 (2020) - [j31]Aikaterini Vraka, Fernando Hornero, Vicente Bertomeu-González, Joaquín Osca, Raúl Alcaraz, José Joaquín Rieta:
Short-Time Estimation of Fractionation in Atrial Fibrillation with Coarse-Grained Correlation Dimension for Mapping the Atrial Substrate. Entropy 22(2): 232 (2020) - [j30]Shaojie Wang, Amin Yousefpour, Abdullahi Yusuf, Hadi Jahanshahi, Raúl Alcaraz, Shaobo He, Jesús M. Muñoz-Pacheco:
Synchronization of a Non-Equilibrium Four-Dimensional Chaotic System Using a Disturbance-Observer-Based Adaptive Terminal Sliding Mode Control Method. Entropy 22(3): 271 (2020) - [j29]Álvaro Huerta Herraiz, Arturo Martínez-Rodrigo, Vicente Bertomeu-González, Aurelio Quesada, José Joaquín Rieta, Raúl Alcaraz:
A Deep Learning Approach for Featureless Robust Quality Assessment of Intermittent Atrial Fibrillation Recordings from Portable and Wearable Devices. Entropy 22(7): 733 (2020) - [j28]Eva M. Cirugeda-Roldán, Sofía Calero, Víctor Manuel Hidalgo, José Enero, José Joaquín Rieta, Raúl Alcaraz:
Multi-scale Entropy Evaluates the Proarrhythmic Condition of Persistent Atrial Fibrillation Patients Predicting Early Failure of Electrical Cardioversion. Entropy 22(7): 748 (2020) - [j27]Shu-Bo Chen, Samaneh Soradi-Zeid, Hadi Jahanshahi, Raúl Alcaraz, José Francisco Gómez-Aguilar, Stelios D. Bekiros, Yu-Ming Chu:
Optimal Control of Time-Delay Fractional Equations via a Joint Application of Radial Basis Functions and Collocation Method. Entropy 22(11): 1213 (2020) - [j26]Beatriz García-Martínez, Arturo Martínez-Rodrigo, Antonio Fernández-Caballero, José Moncho-Bogani, Raúl Alcaraz:
Nonlinear predictability analysis of brain dynamics for automatic recognition of negative stress. Neural Comput. Appl. 32(17): 13221-13231 (2020) - [j25]Heng Chen, Shaobo He, Ana Dalia Pano-Azucena, Amin Yousefpour, Hadi Jahanshahi, Miguel Ángel López, Raúl Alcaraz:
A Multistable Chaotic Jerk System with Coexisting and Hidden Attractors: Dynamical and Complexity Analysis, FPGA-Based Realization, and Chaos Stabilization Using a Robust Controller. Symmetry 12(4): 569 (2020) - [j24]Raúl Alcaraz, Arturo Martínez-Rodrigo, Roberto Zangróniz, José Joaquín Rieta:
Blending Inverted Lectures and Laboratory Experiments to Improve Learning in an Introductory Course in Digital Systems. IEEE Trans. Educ. 63(3): 144-154 (2020) - [c47]Eva M. Cirugeda-Roldán, Sofía Calero, Víctor Manuel Hidalgo, José Enero, José Joaquín Rieta, Raúl Alcaraz:
Refined Multiscale Entropy Predicts Early Failure in Electrical Cardioversion of Atrial Fibrillation. CinC 2020: 1-4 - [c46]Eva M. Cirugeda-Roldán, Sofía Calero, Aurelio Quesada, Víctor Manuel Hidalgo, José Joaquín Rieta, Raúl Alcaraz:
Limb Versus Precordial ECG Leads as Improved Predictors of Electrical Cardioversion Outcome in Persistent Atrial Fibrillation. CinC 2020: 1-4 - [c45]Eva M. Cirugeda-Roldán, Sofía Calero, Eva Plancha, José Enero, José Joaquín Rieta, Raúl Alcaraz:
Multidimensional Characterization of the Atrial Activity to Predict Electrical Cardioversion Outcome of Persistent Atrial Fibrillation. CinC 2020: 1-4 - [c44]Pilar Escribano, Juan Ródenas, Miguel A. Arias, Philip Langley, José Joaquín Rieta, Raúl Alcaraz:
Catheter Ablation Outcome Prediction With Advanced Time-Frequency Features of the Fibrillatory Waves From Patients in Persistent Atrial Fibrillation. CinC 2020: 1-4 - [c43]Emanuela Finotti, Edward J. Ciaccio, Hasan Garan, Vicente Bertomeu-González, Raúl Alcaraz, José Joaquín Rieta:
Discrimination Between CFAEs of Paroxysmal and Persistent Atrial Fibrillation With Simple Classification Models of Reduced Features. CinC 2020: 1-4 - [c42]Emanuela Finotti, Edward J. Ciaccio, Hasan Garan, Fernando Hornero, Raúl Alcaraz, José Joaquín Rieta:
Study on the Stability of CFAEs to Characterize the Atrial Substrate in Atrial Fibrillation. CinC 2020: 1-4 - [c41]Álvaro Huerta, Arturo Martínez-Rodrigo, Miguel A. Arias, Philip Langley, José Joaquín Rieta, Raúl Alcaraz:
Application of Deep Learning for Quality Assessment of Atrial Fibrillation ECG Recordings. CinC 2020: 1-4 - [c40]Álvaro Huerta, Arturo Martínez-Rodrigo, José Joaquín Rieta, Raúl Alcaraz:
A Deep Learning Solution for Automatized Interpretation of 12-Lead ECGs. CinC 2020: 1-4 - [c39]Álvaro Huerta, Arturo Martínez-Rodrigo, Alberto Puchol, Marta I Pachón, José Joaquín Rieta, Raúl Alcaraz:
Comparative Study of Convolutional Neural Networks for ECG Quality Assessment. CinC 2020: 1-4 - [c38]Daniele Padovano, Arturo Martínez-Rodrigo, José Manuel Pastor, José Joaquín Rieta, Raúl Alcaraz:
Obstructive Sleep Apnea Detection Methods Based on Heart Rate Variability Analysis: Opportunities for a Future Cinc Challenge. CinC 2020: 1-4 - [c37]Juan Ródenas, Pilar Escribano, Miguel Martinez-Iniesta, Manuel García, Fernando Hornero, José Joaquín Rieta, Raúl Alcaraz:
Time Variability of Fibrillatory Waves Energy Predicts Long-Term Outcome of Atrial Fibrillation Concomitant Surgical Ablation. CinC 2020: 1-4 - [c36]Antonio Ruiz, Miguel A. Arias, Alberto Puchol, Marta I Pachón, José Joaquín Rieta, Raúl Alcaraz:
Predicting Atrial Fibrillation Recurrence After Catheter Ablation Through Time Variability of P-wave Features. CinC 2020: 1-4 - [c35]Aikaterini Vraka, Fernando Hornero, Aurelio Quesada, Luca Faes, Raúl Alcaraz, José Joaquín Rieta:
Reliability of Local Activation Waves Features to Characterize Paroxysmal Atrial Fibrillation Substrate During Sinus Rhythm. CinC 2020: 1-4
2010 – 2019
- 2019
- [j23]Hadi Jahanshahi, Maryam Shahriari-Kahkeshi, Raúl Alcaraz, Xiong Wang, Vijay P. Singh, Viet-Thanh Pham:
Entropy Analysis and Neural Network-Based Adaptive Control of a Non-Equilibrium Four-Dimensional Chaotic System with Hidden Attractors. Entropy 21(2): 156 (2019) - [j22]Arturo Martínez-Rodrigo, Beatriz García-Martínez, Luciano Zunino, Raúl Alcaraz, Antonio Fernández-Caballero:
Multi-Lag Analysis of Symbolic Entropies on EEG Recordings for Distress Recognition. Frontiers Neuroinformatics 13: 40 (2019) - [j21]Arturo Martínez-Rodrigo, Beatriz García-Martínez, Raúl Alcaraz, Pascual González, Antonio Fernández-Caballero:
Multiscale Entropy Analysis for Recognition of Visually Elicited Negative Stress From EEG Recordings. Int. J. Neural Syst. 29(2): 1850038:1-1850038:17 (2019) - 2018
- [j20]Raúl Alcaraz:
Symbolic Entropy Analysis and Its Applications. Entropy 20(8): 568 (2018) - [j19]Beatriz Chicote, Unai Irusta, Elisabete Aramendi, Raúl Alcaraz, José Joaquín Rieta, Iraia Isasi, Daniel Alonso, María del Mar Baqueriza, Karlos Ibarguren:
Fuzzy and Sample Entropies as Predictors of Patient Survival Using Short Ventricular Fibrillation Recordings during out of Hospital Cardiac Arrest. Entropy 20(8): 591 (2018) - [c34]Miguel Martínez, Juan Ródenas, José Joaquín Rieta, Raúl Alcaraz:
Application of Joint Notch Filtering and Wavelet Transform for Enhanced Powerline Interference Removal in Atrial Fibrillation Electrograms. CinC 2018: 1-4 - [c33]Juan Ródenas, Manuel García, José Joaquín Rieta, Raúl Alcaraz:
An Efficient Algorithm Based on Wavelet Transform to Reduce Powerline Noise From Electrocardiograms. CinC 2018: 1-4 - [c32]Arturo Martínez-Rodrigo, Beatriz García-Martínez, Antonio Fernández-Caballero, Raúl Alcaraz:
Testing a New Methodology for Accelerating the Computation of Quadratic Sample Entropy in Emotion Recognition Systems. ISAmI 2018: 256-264 - [c31]Beatriz García-Martínez, Arturo Martínez-Rodrigo, Antonio Fernández-Caballero, Raúl Alcaraz:
Multilag Extension of Quadratic Sample Entropy for Distress Recognition with EEG Recordings. ISAmI 2018: 274-281 - 2017
- [j18]Juan Ródenas, Manuel García, Raúl Alcaraz, José Joaquín Rieta:
Combined Nonlinear Analysis of Atrial and Ventricular Series for Automated Screening of Atrial Fibrillation. Complex. 2017: 2163610:1-2163610:13 (2017) - [j17]Beatriz García-Martínez, Arturo Martínez-Rodrigo, Roberto Zangróniz, José Manuel Pastor, Raúl Alcaraz:
Symbolic Analysis of Brain Dynamics Detects Negative Stress. Entropy 19(5): 196 (2017) - [c30]Raúl Alcaraz, Fernando Hornero, José Joaquín Rieta:
Spectral Analysis of the ECG to Guide Optimal Endpoint in Catheter Ablation of Atrial Fibrillation. CinC 2017 - [c29]Manuel García, Juan Ródenas, Raúl Alcaraz, José Joaquín Rieta:
Atrial Fibrillation Screening through Combined Timing Features of Short Single-Lead Electrocardiograms. CinC 2017 - [c28]Francisco González, Raúl Alcaraz, José Joaquín Rieta:
Electrocardiographic P-wave Delineation Based on Adaptive Slope Gaussian Detection. CinC 2017 - [c27]Francisco González, Raúl Alcaraz, José Joaquín Rieta:
The Physionet QT Database: Study on the Reliability of P-wave Manual Annotations under Noisy Recordings. CinC 2017 - [c26]Miguel Martínez, Juan Ródenas, Raúl Alcaraz, José Joaquín Rieta:
Study on the Alternatives to Reduce High-Frequency Noise from Invasive Recordings of Atrial Fibrillation. CinC 2017 - [c25]Miguel Martínez, Juan Ródenas, Raúl Alcaraz, José Joaquín Rieta:
Application of the Stationary Wavelet Transform to Reduce Power-line Interference in Atrial Electrograms. CinC 2017 - [c24]Diego I. Osorio, Raúl Alcaraz, José Joaquín Rieta:
Comparative Study of Methods for Atrial Fibrillation Cycle Length Estimation in Fractionated Electrograms. CinC 2017 - [c23]Diego I. Osorio, Raúl Alcaraz, José Joaquín Rieta:
A Fractionation-based Local Activation Wave Detector for Atrial Electrograms of Atrial Fibrillation. CinC 2017 - [c22]Beatriz García-Martínez, Arturo Martínez-Rodrigo, Antonio Fernández-Caballero, Pascual González, Raúl Alcaraz:
Conditional Entropy Estimates for Distress Detection with EEG Signals. IWINAC (1) 2017: 193-202 - [c21]Beatriz García-Martínez, Arturo Martínez-Rodrigo, Antonio Fernández-Caballero, José Moncho-Bogani, José Manuel Pastor, Raúl Alcaraz:
Nonlinear Symbolic Assessment of Electroencephalographic Recordings for Negative Stress Recognition. IWINAC (1) 2017: 203-212 - [c20]Raúl Alcaraz, Beatriz García-Martínez, Roberto Zangróniz, Arturo Martínez-Rodrigo:
Recent Advances and Challenges in Nonlinear Characterization of Brain Dynamics for Automatic Recognition of Emotional States. IWINAC (1) 2017: 213-222 - [c19]Beatriz García-Martínez, Arturo Martínez-Rodrigo, Raúl Alcaraz, Antonio Fernández-Caballero, Pascual González:
Nonlinear Methodologies Applied to Automatic Recognition of Emotions: An EEG Review. UCAmI 2017: 754-765 - [c18]Arturo Martínez-Rodrigo, Beatriz García-Martínez, Raúl Alcaraz, Antonio Fernández-Caballero, Pascual González:
Study of Electroencephalographic Signal Regularity for Automatic Emotion Recognition. UCAmI 2017: 766-777 - 2016
- [j16]Manuel García, Juan Ródenas, Raúl Alcaraz, José Joaquín Rieta:
Application of the relative wavelet energy to heart rate independent detection of atrial fibrillation. Comput. Methods Programs Biomed. 131: 157-168 (2016) - [j15]Beatriz García-Martínez, Arturo Martínez-Rodrigo, Roberto Zangróniz Higuera, José Manuel Pastor, Raúl Alcaraz:
Application of Entropy-Based Metrics to Identify Emotional Distress from Electroencephalographic Recordings. Entropy 18(6): 221 (2016) - [j14]Beatriz Chicote, Unai Irusta, Raúl Alcaraz, José Joaquín Rieta, Elisabete Aramendi, Iraia Isasi, Daniel Alonso Moreno, Karlos Ibarguren:
Application of Entropy-Based Features to Predict Defibrillation Outcome in Cardiac Arrest. Entropy 18(9): 313 (2016) - [c17]Arturo Martínez-Rodrigo, Beatriz García-Martínez, Raúl Alcaraz, José Manuel Pastor, Antonio Fernández-Caballero:
EEG Mapping for Arousal Level Quantification Using Dynamic Quadratic Entropy. ISAmI 2016: 207-214 - 2015
- [j13]Raúl Alcaraz, Arturo Martínez-Rodrigo, José Joaquín Rieta:
Role of the P-wave high frequency energy and duration as noninvasive cardiovascular predictors of paroxysmal atrial fibrillation. Comput. Methods Programs Biomed. 119(2): 110-119 (2015) - [j12]Juan Ródenas, Manuel García, Raúl Alcaraz, José Joaquín Rieta:
Wavelet Entropy Automatically Detects Episodes of Atrial Fibrillation from Single-Lead Electrocardiograms. Entropy 17(9): 6179-6199 (2015) - [c16]Jorge Felix, Raúl Alcaraz, José Joaquín Rieta:
Adaptive Wavelets Applied to Automatic Local Activation Wave Detection in Fractionated Atrial Electrograms of Atrial Fibrillation. CinC 2015: 45-48 - [c15]Jorge Felix, Vincent Jacquemet, Raúl Alcaraz, José Joaquín Rieta:
Study on the Trustability of Phase Mapping Methods to Represent Atrial Potentials in Atrial Fibrillation. CinC 2015: 49-52 - [c14]Raúl Alcaraz, Fernando Hornero, Lorenzo Fácila, José Joaquín Rieta:
Surface ECG Spectral Analysis to Predict Atrial Fibrillation Catheter Ablation Long-term Outcome. CinC 2015: 489-492 - [c13]Raúl Alcaraz, Arturo Martínez-Rodrigo, José Joaquín Rieta:
The Lagged Central Tendency Measure Applied to Assess P-wave Duration Variability Improves Paroxysmal Atrial Fibrillation Onset Prediction. CinC 2015: 493-496 - 2014
- [j11]Matilde Julián, Raúl Alcaraz, José Joaquín Rieta:
Comparative assessment of nonlinear metrics to quantify organization-related events in surface electrocardiograms of atrial fibrillation. Comput. Biol. Medicine 48: 66-76 (2014) - 2013
- [j10]Raúl Alcaraz, José Joaquín Rieta:
Nonlinear synchronization assessment between atrial and ventricular activations series from the surface ECG in atrial fibrillation. Biomed. Signal Process. Control. 8(6): 1000-1007 (2013) - [j9]Arturo Martínez-Rodrigo, Raúl Alcaraz, José Joaquín Rieta:
Ventricular activity morphological characterization: Ectopic beats removal in long term atrial fibrillation recordings. Comput. Methods Programs Biomed. 109(3): 283-292 (2013) - [c12]Antonio Hernández, Raúl Alcaraz, Fernando Hornero, José Joaquín Rieta:
Application of the Preoperative ECG to Predict Cox Maze Surgery Mid-term Outcome. CinC 2013: 723-726 - [c11]Antonio Hernández, Raúl Alcaraz, Fernando Hornero, José Joaquín Rieta:
Combination of Clinical and Electrocardiographic Indices to Predict Cox-Maze Surgery Outcome at Discharge. CinC 2013: 727-730 - [c10]Matilde Julián, Raúl Alcaraz, José Joaquín Rieta:
Study on the Optimal Use of Generalized Hurst Exponents for Noninvasive Estimation of Atrial Fibrillation Organization. CinC 2013: 1039-1042 - [c9]Matilde Julián, Raúl Alcaraz, José Joaquín Rieta:
Generalized Hurst Exponents as a Tool to Estimate Atrial Fibrillation Organization from the Surface ECG. CinC 2013: 1199-1202 - 2012
- [j8]Raúl Alcaraz, José Joaquín Rieta:
Application of Wavelet Entropy to Predict Atrial Fibrillation Progression from the Surface ECG. Comput. Math. Methods Medicine 2012: 245213:1-245213:9 (2012) - 2011
- [j7]Raúl Alcaraz, Frida Sandberg, Leif Sörnmo, José Joaquín Rieta:
Classification of Paroxysmal and Persistent Atrial Fibrillation in Ambulatory ECG Recordings. IEEE Trans. Biomed. Eng. 58(5): 1441-1449 (2011) - [c8]Raúl Alcaraz, Fernando Hornero, José Joaquín Rieta:
Noninvasive organization analysis along consecutive episodes of paroxysmal atrial fibrillation. EMBC 2011: 1467-1470 - [c7]Arturo Martínez-Rodrigo, Raúl Alcaraz, José Joaquín Rieta:
Detection and removal of ventricular ectopic beats in atrial fibrillation recordings via principal component analysis. EMBC 2011: 4693-4696 - [c6]Raúl Alcaraz, Fernando Hornero, José Joaquín Rieta:
Validation of surface atrial fibrillation organization indicators through invasive recordings. EMBC 2011: 5519-5522 - 2010
- [j6]Raúl Alcaraz, José Joaquín Rieta:
A review on sample entropy applications for the non-invasive analysis of atrial fibrillation electrocardiograms. Biomed. Signal Process. Control. 5(1): 1-14 (2010) - [j5]Raúl Alcaraz, Daniel E. Abásolo, Roberto Hornero, José Joaquín Rieta:
Optimal parameters study for sample entropy-based atrial fibrillation organization analysis. Comput. Methods Programs Biomed. 99(1): 124-132 (2010) - [c5]Carlos Vayá, José Joaquín Rieta, Raúl Alcaraz:
Combination of Convolutive Blind Signal Separation and Wavelet Decomposition to Extract the Atrial Activity in Atrial Fibrillation. BIOSIGNALS 2010: 373-376 - [c4]Raúl Alcaraz, José Joaquín Rieta:
Wavelet Sample Entropy Optimization through Optimal Mother Function Selection for Atrial Fibrillation Analysis. BIOSIGNALS 2010: 389-392 - [c3]Raúl Alcaraz, José Joaquín Rieta:
Assessment of Noise Impact in Sample Entropy for the Non-invasive Organization Estimation of Atrial Fibrillation. BIOSIGNALS 2010: 393-396 - [c2]Diego García-Saiz, César Sánchez, Raúl Alcaraz:
Frequency Domain Analysis as Risk Predictor of Sudden Cardiac Death from Long-time ECG Recordings. BIOSIGNALS 2010: 424-427
2000 – 2009
- 2009
- [j4]Raúl Alcaraz, José Joaquín Rieta:
Surface ECG organization analysis to predict paroxysmal atrial fibrillation termination. Comput. Biol. Medicine 39(8): 697-706 (2009) - [j3]Raúl Alcaraz, José Joaquín Rieta:
Non-invasive organization variation assessment in the onset and termination of paroxysmal atrial fibrillation. Comput. Methods Programs Biomed. 93(2): 148-154 (2009) - [j2]Raúl Alcaraz, José Joaquín Rieta, Fernando Hornero:
Non-invasive atrial fibrillation organization follow-up under successive attempts of electrical cardioversion. Medical Biol. Eng. Comput. 47(12): 1247-1255 (2009) - 2008
- [j1]Raúl Alcaraz, José Joaquín Rieta:
A non-invasive method to predict electrical cardioversion outcome of persistent atrial fibrillation. Medical Biol. Eng. Comput. 46(7): 625-635 (2008) - 2004
- [c1]César Sánchez, José Joaquín Rieta, Francisco Castells, Raúl Alcaraz, José Millet:
Wavelet Domain Blind Signal Separation to Analyze Supraventricular Arrhythmias from Holter Registers. ICA 2004: 1111-1117
Coauthor Index
aka: Roberto Zangróniz
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