Electroanatomic voltage mapping for tissue characterization beyond arrhythmia definition: A systematic review.

Three‐dimensional (3D) reconstruction by means of electroanatomic mapping (EAM) systems, allows for the understanding of the mechanism of focal or re‐entrant arrhythmic circuits, which can be identified by means of dynamic (activation and propagation) and static (voltage) color‐coded maps. However,...

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Detalles Bibliográficos
Publicado en:Pacing & Clinical Electrophysiology Vol. 44; no. 8; pp. 1432 - 1449
Autores principales: Zoppo, Franco, Gagno, Giulia, Perazza, Luca, Cocciolo, Andrea, Mugnai, Giacomo, Vaccari, Diego, Calzolari, Vittorio
Formato: diagnostic images review tables/charts Journal Article
Publicado: Wiley-Blackwell Aug2021
Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:Three‐dimensional (3D) reconstruction by means of electroanatomic mapping (EAM) systems, allows for the understanding of the mechanism of focal or re‐entrant arrhythmic circuits, which can be identified by means of dynamic (activation and propagation) and static (voltage) color‐coded maps. However, besides this conventional use, EAM may offer helpful anatomical and functional information for tissue characterisation in several clinical settings. Today, data regarding electromechanical myocardial viability, scar detection in ischaemic and nonischaemic cardiomyopathy and arrhythmogenic right ventricle dysplasia (ARVC/D) definition are mostly consolidated, while emerging results are becoming available in contexts such as Brugada syndrome and cardiac resynchronisation therapy (CRT) implant procedures. As part of an invasive procedure, EAM has not yet been widely adopted as a stand‐alone tool in the diagnostic path. We aim to review the data in the current literature regarding the use of 3D EAM systems beyond the definition of arrhythmia.