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771 related items for PubMed ID: 25618741
1. High rate of durable pulmonary vein isolation after second-generation cryoballoon ablation: analysis of repeat procedures. Bordignon S, Fürnkranz A, Perrotta L, Dugo D, Konstantinou A, Nowak B, Schulte-Hahn B, Schmidt B, Chun KR. Europace; 2015 May; 17(5):725-31. PubMed ID: 25618741 [Abstract] [Full Text] [Related]
2. On the Quest for the Best Freeze: Predictors of Late Pulmonary Vein Reconnections After Second-Generation Cryoballoon Ablation. Ciconte G, Mugnai G, Sieira J, Velagić V, Saitoh Y, Irfan G, Hunuk B, Ströker E, Conte G, Di Giovanni G, Baltogiannis G, Wauters K, Brugada P, de Asmundis C, Chierchia GB. Circ Arrhythm Electrophysiol; 2015 Dec; 8(6):1359-65. PubMed ID: 26527624 [Abstract] [Full Text] [Related]
3. Once Isolated, Always Isolated? Incidence and Characteristics of Pulmonary Vein Reconduction After Second-Generation Cryoballoon-Based Pulmonary Vein Isolation. Heeger CH, Wissner E, Mathew S, Deiss S, Lemes C, Rillig A, Wohlmuth P, Reissmann B, Tilz RR, Ouyang F, Kuck KH, Metzner A. Circ Arrhythm Electrophysiol; 2015 Oct; 8(5):1088-94. PubMed ID: 26338833 [Abstract] [Full Text] [Related]
4. Ultra-high-density mapping of conduction gaps and atrial tachycardias: Distinctive patterns following pulmonary vein isolation with cryoballoon or contact-force-guided radiofrequency current. Gunawardene MA, Eickholt C, Akbulak RÖ, Jularic M, Klatt N, Hartmann J, Schlüter M, Meyer C, Willems S, Schaeffer B. J Cardiovasc Electrophysiol; 2020 May; 31(5):1051-1061. PubMed ID: 32107811 [Abstract] [Full Text] [Related]
5. Durability of Pulmonary Vein Isolation with Cryoballoon Ablation: Results from the Sustained PV Isolation with Arctic Front Advance (SUPIR) Study. Reddy VY, Sediva L, Petru J, Skoda J, Chovanec M, Chitovova Z, Di Stefano P, Rubin E, Dukkipati S, Neuzil P. J Cardiovasc Electrophysiol; 2015 May; 26(5):493-500. PubMed ID: 25644659 [Abstract] [Full Text] [Related]
6. The second generation cryoballoon has improved durable isolation of left but not right pulmonary veins: new insights from a multicentre study. Martins RP, Galand V, Cesari O, Milhem A, Behar N, Auffret V, Daubert JC, Mabo P, Pavin D. Europace; 2018 Jul 01; 20(7):1115-1121. PubMed ID: 29016748 [Abstract] [Full Text] [Related]
10. Characterization of Electrical Reconnection Following Pulmonary Vein Isolation Using First- and Second-Generation Cryoballoon. Koektuerk B, Yorgun H, Koektuerk O, Turan CH, Keskin K, Schoett M, Turan RG, Gorr E, Hoppe C, Horlitz M. Pacing Clin Electrophysiol; 2016 May 25; 39(5):434-42. PubMed ID: 26910475 [Abstract] [Full Text] [Related]
11. Predictors of durable electrical isolation in the setting of second-generation cryoballoon ablation: A comparison between left superior, left inferior, right superior, and right inferior pulmonary veins. Scala O, Borio G, Paparella G, Varnavas V, Ströker E, Guimaraes Osorio T, Terasawa M, Sieira J, Maj R, Rizzo A, Al-Hosari MM, Galli A, Brugada P, de Asmundis C, Chierchia GB. J Cardiovasc Electrophysiol; 2020 Jan 25; 31(1):128-136. PubMed ID: 31749209 [Abstract] [Full Text] [Related]
12. Predictors of durable pulmonary vein isolation after second-generation cryoballoon ablation with a single short freeze strategy - Different criteria for the best freeze of the 4 individual PVs. Miyazaki S, Kajiyama T, Watanabe T, Nakamura H, Hachiya H, Tada H, Iesaka Y. Int J Cardiol; 2020 Feb 15; 301():96-102. PubMed ID: 31759685 [Abstract] [Full Text] [Related]