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Aims: Using thermal-based energy sources [radiofrequency (RF) energy/cryo energy] for catheter ablation is considered effective and safe when performing pulmonary vein isolation (PVI) in patients with paroxysmal atrial fibrillation (AF). However, treatment success remains limited and complications can occur due to the propagation of thermal energy into non-target tissues. We aim to compare pulsed field ablation (PFA) with RF ablation in terms of efficacy and safety for patients with drug-resistant paroxysmal AF.
Methods And Results: The BEAT PAROX-AF trial is a European multicentre, superiority, open-label randomized clinical trial in two parallel groups. A total of 292 participants were recruited in 9 high-volume European clinical centres in 5 countries. Patients with paroxysmal AF were randomized to PFA (FARAPULSE Endocardial Ablation System©, Boston Scientific) or RF using the CLOSE protocol with contact force sensing catheter (SmartTouch© catheter and CARTO© Biosense Webster). The primary endpoint will be the 1-year recurrence of atrial arrhythmia, and the major secondary safety endpoint will be the occurrence of acute (<7 days) procedure-related serious adverse events, or pulmonary vein stenosis, or atrio-oesophageal fistula up to 12 months. Additionally, five sub-studies investigate the effect of PFA on oesophageal safety, cerebral lesions, cardiac autonomic nervous system, durability of PVI as assessed during redo ablation procedures, and atrial and ventricular function. The study began on 27 December 2021 and concluded recruitment on 17 January 2024. Results will be available in mid-2025.
Conclusion: The BEAT PAROX-AF trial aims to provide critical insights into the optimal treatment approach for patients with paroxysmal AF.
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http://dx.doi.org/10.1093/europace/euae103 | DOI Listing |
Heart Rhythm
September 2025
Department of Cardiology, Inselspital, Bern University Hospital, University of Bern, Bern, Switzerland. Electronic address:
Background: The learning curve for pulmonary vein isolation (PVI) using "single-shot" pulsed-field ablation (PFA) is thought to be short. 3D electro-anatomical mapping (3D-EAM) might provide adjunctive information to shorten the learning curve and improve lesion durability.
Objective: To analyze procedural performance markers over time for PVI using PFA and 3D-EAM.
Am J Surg
August 2025
Emory University School of Medicine, USA; Grady Health System, USA. Electronic address:
Introduction: We sought to develop, implement and evaluate an urban prehospital whole blood (PH-WB) program.
Methods: Using retrospective heat map data, Quick Response Vehicles (QRVs) carrying PH-WB were strategically placed throughout the city and dispatched using dynamic deployment. Patient inclusion criteria were age ≥15 years, traumatic mechanism, and SBP ≤90 mmHg.
Heart Lung Circ
September 2025
Cardiology Department, Westmead Hospital, Sydney, NSW, Australia; Westmead Applied Research Centre, Faculty of Medicine and Health, The University of Sydney, Sydney, NSW, Australia. Electronic address:
Background: Catheter ablations are increasingly performed with zero or minimal fluoroscopy, enabled by ultrasound imaging and electro-anatomical mapping. Pulsed field ablation (PFA) using Farawave has been dependent on fluoroscopic assessment of catheter conformation and contact. We aimed to demonstrate the feasibility of a PFA workflow for pulmonary vein isolation (PVI) and extrapulmonary ablation.
View Article and Find Full Text PDFProg Nucl Magn Reson Spectrosc
February 2025
Brown Boveri Platz 4, 5400 Baden, Switzerland.
Zero and ultralow-field nuclear magnetic resonance (ZULF NMR) is an NMR modality where experiments are performed in fields at which spin-spin interactions within molecules and materials are stronger than Zeeman interactions. This typically occurs at external fields of microtesla strength or below, considerably smaller than Earth's field. In ZULF NMR, the measurement of spin-spin couplings and spin relaxation rates provides a nondestructive means for identifying chemicals and chemical fragments, and for conducting sample or process analyses.
View Article and Find Full Text PDFBioresour Technol
September 2025
Department of Chemical and Petroleum Engineering, Khalifa University of Science and Technology, PO Box 127788, Abu Dhabi, United Arab Emirates; Center for Membranes and Advanced Water Technology (CMAT), Khalifa University of Science and Technology, PO Box 127788, Abu Dhabi, United Arab Emirates. Ele
Electrotechnology has recently emerged as an eco-friendly method for enhancing microalgal processes. Electric fields can be applied to microalgae at different stages to improve their biomass productivity, high-value products (HVPs) content, harvesting efficiency, and cell disruption for biomolecule recovery. Incorporating them into microalgal processes can significantly contribute to achieving a circular bioeconomy.
View Article and Find Full Text PDF