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Original Articles

Numerical analysis of thermal impact of intramyocardial capillary blood flow during radiofrequency cardiac ablation

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Pages 243-249 | Received 17 Dec 2016, Accepted 25 May 2017, Published online: 18 Jun 2017

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Read on this site (7)

Kaihao Gu, Shengjie Yan & Xiaomei Wu. (2022) Influence of pulsating intracardiac blood flow on radiofrequency catheter ablation outcomes in an anatomy-based atrium model. International Journal of Hyperthermia 39:1, pages 1064-1077.
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Leonardo Bianchi, Fabiana Cavarzan, Lucia Ciampitti, Matteo Cremonesi, Francesca Grilli & Paola Saccomandi. (2022) Thermophysical and mechanical properties of biological tissues as a function of temperature: a systematic literature review. International Journal of Hyperthermia 39:1, pages 297-340.
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Christian Rossmann, Anjan Motamarry, Dorin Panescu & Dieter Haemmerich. (2021) Computer simulations of an irrigated radiofrequency cardiac ablation catheter and experimental validation by infrared imaging. International Journal of Hyperthermia 38:1, pages 1149-1163.
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Sergi Coderch-Navarro, Enrique Berjano, Oscar Camara & Ana González-Suárez. (2021) High-power short-duration vs. standard radiofrequency cardiac ablation: comparative study based on an in-silico model. International Journal of Hyperthermia 38:1, pages 582-592.
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Cristina Parés, Enrique Berjano & Ana González-Suárez. (2021) Effect of intracardiac blood flow pulsatility during radiofrequency cardiac ablation: computer modeling study. International Journal of Hyperthermia 38:1, pages 316-325.
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Ana González-Suárez, Andre d'Avila, Juan J. Pérez, Vivek Y. Reddy, Oscar Camara & Enrique Berjano. (2019) Thermal impact of balloon occlusion of the coronary sinus during mitral isthmus radiofrequency ablation: an in-silico study. International Journal of Hyperthermia 36:1, pages 1167-1176.
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Juan J. Pérez, Ana González-Suárez, Andre d’Avila & Enrique Berjano. (2018) RF-energised intracoronary guidewire to enhance bipolar ablation of the interventricular septum: in-silico feasibility study. International Journal of Hyperthermia 34:8, pages 1202-1212.
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Articles from other publishers (20)

Francisco Estevez-Laborí, Barry O'Brien & Ana González-Suárez. (2024) Difference between endocardial and epicardial application of pulsed fields for targeting Epicardial Ganglia: An in-silico modelling study. Computers in Biology and Medicine 174, pages 108490.
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S. M. C. Hossain, J. B. Zakaria, M. Ferdows, M. Z. I. Bangalee, M. S. Alam & G. Zhao. (2024) Computer simulation-based nanothermal field and tissue damage analysis for cardiac tumor ablation. Medical & Biological Engineering & Computing 62:5, pages 1549-1567.
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Fabiano Bini, Andrada Pica, Franco Marinozzi, Alessandro Giusti, Andrea Leoncini & Pierpaolo Trimboli. (2023) Model-Optimizing Radiofrequency Parameters of 3D Finite Element Analysis for Ablation of Benign Thyroid Nodules. Bioengineering 10:10, pages 1210.
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Patcharaporn Wongchadakul, Ashim K. Datta & Phadungsak Rattanadecho. (2023) Tissue poromechanical deformation effects on steam pop likelihood in 3-D radiofrequency cardiac ablation. Journal of Biological Engineering 17:1.
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Patcharaporn Wongchadakul, Ashim K. Datta & Phadungsak Rattanadecho. (2023) Natural convection effects on heat transfer in a porous tissue in 3-D radiofrequency cardiac ablation. International Journal of Heat and Mass Transfer 204, pages 123832.
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Mario Gómez-Barea, Tomás García-Sánchez & Antoni Ivorra. (2022) A computational comparison of radiofrequency and pulsed field ablation in terms of lesion morphology in the cardiac chamber. Scientific Reports 12:1.
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Juan J. Pérez, Enrique Berjano & Ana González-Suárez. (2022) In-Silico Modeling to Compare Radiofrequency-Induced Thermal Lesions Created on Myocardium and Thigh Muscle. Bioengineering 9:7, pages 329.
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Sundeep Singh, Paola Saccomandi & Roderick Melnik. (2022) Three-Phase-Lag Bio-Heat Transfer Model of Cardiac Ablation. Fluids 7:5, pages 180.
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Juan J. Pérez, Enrique Nadal, Enrique Berjano & Ana González-Suárez. (2022) Computer modeling of radiofrequency cardiac ablation including heartbeat-induced electrode displacement. Computers in Biology and Medicine 144, pages 105346.
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Juan J. Pérez, Ana González‐Suárez, Timothy Maher, Hiroshi Nakagawa, Andre d'Avila & Enrique Berjano. (2021) Relationship between luminal esophageal temperature and volume of esophageal injury during RF ablation: In silico study comparing low power‐moderate duration vs. high power‐short duration. Journal of Cardiovascular Electrophysiology 33:2, pages 220-230.
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Ana González-Suárez, Juan J. Pérez, Ramiro M. Irastorza, Andre D'Avila & Enrique Berjano. (2022) Computer modeling of radiofrequency cardiac ablation: 30 years of bioengineering research. Computer Methods and Programs in Biomedicine 214, pages 106546.
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Meng Zhang, Yanyan Cheng, Hongxing Liu & Qun Nan. (2021) Study on the effect of different blood flow velocities of pulmonary vein on endocardial microwave ablation of atrial fibrillation. Technology and Health Care 30:1, pages 29-41.
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Sundeep Singh & Roderick Melnik. (2021) Fluid–Structure Interaction and Non-Fourier Effects in Coupled Electro-Thermo-Mechanical Models for Cardiac Ablation. Fluids 6:8, pages 294.
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Marcela Mercado, Lisa Leung, Mark Gallagher, Shailee Shah & Erik Kulstad. (2020) Modeling esophageal protection from radiofrequency ablation via a cooling device: an analysis of the effects of ablation power and heart wall dimensions. BioMedical Engineering OnLine 19:1.
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Sundeep Singh & Roderick Melnik. (2020) Computational Modeling of Cardiac Ablation Incorporating Electrothermomechanical Interactions. Journal of Engineering and Science in Medical Diagnostics and Therapy 3:4.
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Juan J. Pérez, Ana González-Suárez, Enrique Nadal & Enrique Berjano. (2020) Thermal impact of replacing constant voltage by low-frequency sine wave voltage in RF ablation computer modeling. Computer Methods and Programs in Biomedicine 195, pages 105673.
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Georgios Christopoulos, Konstantinos C. Siontis, Ugur Kucuk & Samuel J. Asirvatham. (2020) Cavotricuspid isthmus ablation for atrial flutter: Anatomic challenges and troubleshooting. HeartRhythm Case Reports 6:3, pages 115-120.
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Ana González-Suárez, Juan J. Pérez & Enrique Berjano. (2018) Should fluid dynamics be included in computer models of RF cardiac ablation by irrigated-tip electrodes?. BioMedical Engineering OnLine 17:1.
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Ana González‐Suárez, David Herranz, Enrique Berjano, Jose L. Rubio‐Guivernau & Eduardo Margallo‐Balbás. (2017) Relation between denaturation time measured by optical coherence reflectometry and thermal lesion depth during radiofrequency cardiac ablation: Feasibility numerical study. Lasers in Surgery and Medicine 50:3, pages 222-229.
Crossref
Patcharaporn Wongchadakul, Datta Ashim K.Phadungsak Rattanadecho. (2022) Natural Convection Effects on Heat Transfer in a Porous Tissue in 3-D Radiofrequency Cardiac Ablation. SSRN Electronic Journal.
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