| Literature DB >> 28275856 |
Kosuke Nakasuka1,2, Koji Miyamoto3, Takashi Noda1, Tsukasa Kamakura1, Mitsuru Wada1, Ikutaro Nakajima4, Kohei Ishibashi1, Yuko Inoue1, Hideo Okamura1, Satoshi Nagase1, Takeshi Aiba1, Shiro Kamakura1, Wataru Shimizu1,5, Teruo Noguchi1, Toshihisa Anzai1, Satoshi Yasuda1, Nobuyuki Ohte2, Kengo Kusano1.
Abstract
Atrial tachycardia (AT) is a clinically challenging arrhythmia that can occur based on atrial substrates. Nowadays, a rapid construction of three-dimensional electroanatomical maps, which has an analysis function for complex arrhythmias, named 'Window Sliding' (WS) is available. However, little data has revealed the efficacy of this mapping strategy. The aim of this study was to investigate the efficacy of the WS analysis for AT treatments. All patients underwent electrophysiological studies during ATs and the characteristics of the ATs were analyzed using rapid high-density mapping followed by the WS analysis. RFA was then performed. Fifty-five ATs were identified in 34 patients (63 ± 17 year-old) and in 51 activation maps (cycle length, 322 ± 120 milliseconds) were successfully constructed with 644 ± 433 points per map during 5.3 ± 2.5 min. The types of detected ATs were macro-reentries around the mitral (8) and, tricuspid (12) valves, roof-dependent reentry (5), others (13), and focal patterns (13). Of those that underwent RFA, 46 (98%) were treated successfully. Two ATs were abandoned since their critical sites were close to the His bundle and sinoatrial node. During a mean follow-up period of 179 ± 176 days, 7 patients had documented recurrences of AT. This high-density mapping using the WS analysis was useful for creating the entire picture of the ATs in a short time, resulting in favorable RFA outcomes.Entities:
Keywords: Activation map; Atrial tachycardia; Rapid and high-density electroanatomical mapping; Slow conduction zone; Window Sliding
Mesh:
Year: 2017 PMID: 28275856 DOI: 10.1007/s00380-017-0959-6
Source DB: PubMed Journal: Heart Vessels ISSN: 0910-8327 Impact factor: 2.037