Lecture Notes

Updated on April 1, 2021  •  Lecture Notes in Computer Science(17)  •  Books(0)

[22] Duchateau N., Oscar Camara, Rafael Sebastian, Andrew King. Analysis of Non-imaging Data. Springer International Publishing, AI and Big Data in Cardiology: A Practical Guide. pp. 183-200, 2023. doi:https://doi.org/10.1007/978-3-031-05071-8_10. [PDF]

[21] Serra D., Romero P., Garcia-Fernandez I., Lozano M. , Ssoto, D., Penela, D., Berruezo A., Camara O., Sebastian R. Personalized Fast Electrophysiology Simulations to Evaluate Arrhythmogenicity of Ventricular Slow Conduction Channels. Springer Cham International Publishing (LNCS 13593), pp. 1-9, 2023. doi:10.1007/978-3-031-23443-9_6. [PDF]

[20] Serra D., Romero P., Lozano M., Garcia-Fernandez I., Liberos A., Rodrigo M., Berruezo A., Bueno-Orovio A., Sebastian R. Simplified Electrophysiology Modeling Framework to Assess Ventricular Arrhythmia Risk in Infarcted Patients. Springer Cham International Publishing (LNCS 12738), pp. 1-9, 2021. doi:10.1007/978-3-030-78710-3_51. [PDF]

[19] Rodrigo M., Pagano B., Takur S., Liberos A., Sebastian R., Narayan S.M. Intra-Cardiac Signatures of Atrial Arrhythmias Identified By Machine Learning and Traditional Features Springer Cham International Publishing (LNCS 12738), pp. 1-9, 2021. doi: . [PDF]

[18] Romero P., Serra D., Lozano M., Sebastian R., Garcia-Fernandez I. Assessment of geometric models for the approximation of aorta cross-sections. Springer Cham International Publishing (LNCS 12738), pp. 1-9, 2021. doi:10.1007/978-3-030-78710-3_9. [PDF]

[17] Gomez-Garcia J.F., Trenor B., Sebastian R. Prediction of CRT activation sequence by personalization of biventricular models from electroanatomical maps. Springer Cham International Publishing (LNCS 12009), pp. 342-351, 2020. [PDF]

[16] Doste R., Soto-Iglesias D., Sebastian R., Sanchez-Quintana D., Sermesant M., Bernardino G., Berruezo A., O. Camara. A rule-based method to Model Myocardial Fiber Orientation for Simulating Ventricular Outflow Tract Arrhythmias. Springer Cham International Publishing (LNCS 10263), pp. 344-353, 2017. [PDF]

[15] D. Soto-Iglesias, D. Penela, X. Planes, V. Zimmer, D. Andreu, J. Acosta, G. Piella, R. Sebastian, D. Sanchez-Quintana, A. Berruezo, O. Camara Quasi-Conformal Technique For Integrating And Validating Myocardial Tissue Characterization In MRI With Ex-Vivo Human Histological Data. Springer International Publishing (LNCS 10124), pp. 172-181, 2017. [PDF]

[14] R. Cardenes, R. Sebastian, D. Soto-Iglesias, D. Andreu, J. Fernández-Armenta, B. Bijnens, A. Berruezo, O. Camara Estimation of Electrical Pathways Finding Minimal Cost Paths from Electro-Anatomical Mapping of the Left Ventricle. Springer-verlag Berlin Heidelberg (LNCS 8330), pp. 220-227, 2014. [PDF]

[13] A. Pashaei, C. Hoogendoorn, D. Romero, R. Sebastian, O. Camara and A.F. Frangi. Effect of scar development on fast electrophysiologial models of the human heart: In-silico study on atlas-based virtual populations. Springer-verlag Berlin Heidelberg (LNCS 6666), pp. 427-436, 2011. [PDF]

[12] C. Hoogendoorn, A. Pashaei, R. Sebastian, F. Sukno, O. Camara and A.F. Frangi.Sensitivity analysis of mesh warping and subsampling strategies for generating large scale electrophysiological simulation data. Springer-verlag Berlin Heidelberg (LNCS 6666), pp. 418-426, 2011. [PDF]

[11] D. Romero, F. B. Sachse, R. Sebastian and A.F. Frangi. Towards high resolution computational models of the cardiac conduction system: a pipeline for characterization of Purkinje-ventricular-junctions., Springer-verlag Berlin Heidelberg (LNCS 6666), pp. 28-35, 2011. [PDF]

[10] MD Craene, F Sukno, C Tobon-Gomez, C Butakoff, RM. Figueras i Ventura, C Hoogendoorn, G Piella, N Duchateau, E Muñoz-Moreno, R Sebastian. Atlas Construction and Image Analysis Using Statistical Cardiac Models. STACOM/CESC Springer-verlag Berlin Heidelberg (LNCS 6364), pp.1-13, 2010. [PDF]

[9] O Camara, A Pashaei, R Sebastian, AF. Frangi. Personalization of Fast Conduction Purkinje System in Eikonal-Based Electrophysiological Models with Optical Mapping Data. STACOM/CESC Springer-verlag Berlin Heidelberg (LNCS 6364), pp.281-290, 2010. [PDF]

[8] C Hoogendoorn, A Pashaei, R Sebastian, F Sukno, O Camara, AF. Frangi. Influence of Geometric Variations on LV Activation Times: A Study on an Atlas-Based Virtual Population. STACOM/CESC Springer-verlag Berlin Heidelberg (LNCS 6364), pp.242-251, 2010. [PDF]

[7] R Sebastian, E Heidenreich, L Dux-Santoy, JF. Rodriguez, JM Ferrero, J Saiz. Modeling Drug Effects on Personalized 3D Models of the Heart: A Simulation Study. STACOM/CESC Springer-Verlag (LNCS 6364),, pp.222-231, 2010. [PDF]

[6] R. Sebastian, V. Zimmerman, F. Sukno, B.H. Bijnens, A.F. Frangi. Cardiac Modelling for Pathophysiology Research and Clinical Applications. The Need for an Automated Pipeline. World Congress on Medical Physics and Biomedical Engineering. IFMBE Proceedings, 25(4):2207-2210, Springer-verlag Berlin Heidelberg. ISBN: 978-3-642-03881-5. Germany, 2009. [PDF]

[5] D. Romero, R. Sebastian, B. H. Bijnens, V. Zimmerman,P. M. Boyle, E. J.Vigmond, A.F. Frangi, The Purkinje System and Cardiac Geometry: Assessing their Influence on the Paced Heart. Lecture Notes in Computer Science. Springer-verlag Berlin Heidelberg (LNCS 5528), Nice, France, 2009.

[4] I. Larrabide, P. Omedas, Y. Martelli, X. Planes, M. Nieber, J.A. Moya, C. Butakof, R. Sebastian, O. Camara, M. DeCraene, B.H. Bijnens, A.F. Frangi. GIMIAS: An open source framework for efficient development of research tools and clinical prototypes. Lecture Notes in Computer Science. Springer-verlag Berlin Heidelberg (LNCS 5528). Nice, France, 2009.

[3] O. Camara, S.Oeltze, M. DeCraene, R. Sebastian, E. Silva, D. Tamborero, L. Mont, M. Sitges, B.H. Bijnens, A. F. Frangi. Cardiac motion estimation from intracardiac electrical mapping data: identifying a septal flash in heart failure. Lecture Notes in Computer Science. Springer-verlag Bberlin Heidelberg (LNCS 5528), pp.21-29. Nice, France, 2009.

[2] D.Romero, R.Sebastian, G. Plank, E.J. Vigmond , A.F. Frangi. Modeling the influence of the VV delay for CRT on the electrical activation patterns in absence of conduction through the AV node. SPIE Medical Imaging. Progress in biomedical optics and imaging. ISBN: 9780819470409 California, USA, February 2008.

[1] R.Sebastian, S.Ordas, E.J. Vigmond, G. Plank, B. Rodriguez, A.F. Frangi. Assessing Influence of Conductivity in Heart Modelling with the aim of Studying Cardiovascular Diseases. SPIE Medical Imaging. Progress in biomedical optics and imaging. ISBN: 9780819470409, California, USA, February 2008.

Go up