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Limitations of Baseline Impedance, Impedance Drop and Current for Radiofrequency Catheter Ablation Monitoring: Insights from In silico Modeling.

Irastorza, Ramiro M, Timothy Maher, Michael Barkagan, Rokas Liubasuskas, Juan J Pérez, Enrique Berjano, and Andre D’Avila. 2022. “Limitations of Baseline Impedance, Impedance Drop and Current for Radiofrequency Catheter Ablation Monitoring: Insights from In Silico Modeling.”. Journal of Cardiovascular Development and Disease 9 (10).

Low-energy (360 J) radiofrequency catheter ablation using moderate power - short duration: proof of concept based on in silico modeling.

Pérez, Juan J, Robert D’Angelo, Ana González-Suárez, Hiroshi Nakagawa, Enrique Berjano, and Andre D’Avila. 2023. “Low-Energy (360 J) Radiofrequency Catheter Ablation Using Moderate Power - short Duration: Proof of Concept Based on in Silico Modeling.”. Journal of Interventional Cardiac Electrophysiology : An International Journal of Arrhythmias and Pacing 66 (5): 1085-93.

Anterior vs. posterior position of dispersive patch during radiofrequency catheter ablation: insights from in silico modelling.

Irastorza, Ramiro M, Timothy Maher, Michael Barkagan, Rokas Liubasuskas, Enrique Berjano, and Andre D’Avila. 2023. “Anterior Vs. Posterior Position of Dispersive Patch During Radiofrequency Catheter Ablation: Insights from in Silico Modelling.”. Europace : European Pacing, Arrhythmias, and Cardiac Electrophysiology : Journal of the Working Groups on Cardiac Pacing, Arrhythmias, and Cardiac Cellular Electrophysiology of the European Society of Cardiology 25 (3): 1135-43.