Characterizing localized reentry with high-resolution mapping: Evidence for multiple slow conducting isthmuses within the circuit

再入 医学 高分辨率 心脏病学 遥感 地质学
作者
Antonio Frontera,Rajiv Mahajan,Corentin Dallet,Konstantinos Vlachos,Τakeshi Kitamura,Masateru Takigawa,Ghassen Cheniti,Claire Martin,Josselin Duchâteau,Anna Lam,Félix Bourier,Arnaud Denis,Thomas Pambrun,Mélèze Hocini,Frédéric Sacher,Nicolas Derval,Michel Haı̈ssaguerre,Rémi Dubois,Pierre Jaı̈s
出处
期刊:Heart Rhythm [Elsevier BV]
卷期号:16 (5): 679-685 被引量:51
标识
DOI:10.1016/j.hrthm.2018.11.027
摘要

Background Reentrant circuits are considered to be critically dependent on a single protected slow conducting isthmus. Objective The purpose of this study was to investigate conduction properties and electrogram (EGM) characteristics of the entire circuit in localized atrial reentrant circuits using high-resolution mapping. Methods Fifteen localized reentrant atrial tachycardias were studied with high-resolution mapping (Rhythmia). EGMs along the entire circuit were analyzed offline for fractionation, duration, and amplitude. Maps were exported to MATLAB (MathWorks) to measure bipolar voltage and conduction velocities (CVs) within the circuit. Slow conduction was defined as Results Fifteen localized re-entrant circuits (12 left atrial, 3 right atrial) with mean cycle length 273 ± 40 ms were analyzed using high-resolution maps (22,389 ± 13,375 EGMs). A mean of 4.5 ± 1.6 slow conduction corridors were identified per circuit. Although the entire circuit was of low voltage, the bipolar voltage in slow conducting corridors was significantly lower than the rest of the circuit (0.22 ± 0.20 mV vs 0.50 ± 0.48 mV; P Conclusion In contrast to current understanding, localized atrial reentrant circuits have multiple sequential “corridors” of very slow conduction (2–7) that contribute to maintenance of arrhythmia. The localized reentry occurs in low-voltage areas, with voltage further reduced in these multiple slow conducting corridors.
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