Anatomical Determinants of the Left Atrial Electrograms: Wall Thickness and Myocardial Fat Infiltration

INTRODUCTION: Electrogram peak-to-peak voltage depends on atrial wall structure and mapping configuration. We evaluated the relationship between computed tomography-derived atrial wall thickness, intramyocardial fat, myocardial muscle thickness, and electrogram voltage obtained with omnipolar, bipolar, and unipolar mapping. METHODS: Consecutive patients undergoing left atrial mapping during atrial fibrillation or atypical atrial flutter ablation were retrospectively included. Pre-procedural contrast-enhanced CT was processed with ADAS 3D to quantify left atrial wall thickness and intramyocardial fat infiltration, from which myocardial muscle thickness was derived. High-density electroanatomical maps were spatially co-registered with CT. Associations between anatomical parameters and peak-to-peak voltage were assessed, stratifying by rhythm stability. RESULTS: Twenty patients were included. In stable rhythms, left atrial wall thickness correlated positively with voltage for all configurations, strongest for unipolar (β = 0.38) and omnipolar (β = 0.23) vs. bipolar mapping (β = 0.13) (BP-UP p < 0.0001; BP-OT p < 0.01). Intramyocardial fat showed the strongest inverse association with omnipolar (β = -0.39), compared with bipolar (β = -0.14) and unipolar (β = -0.01; p ≤ 0.02). After excluding fat, muscle thickness correlated positively with OT (β = 0.30) and UP (β = 0.30), exceeding BP (β = 0.14; p < 0.0001). In unstable rhythms, associations were attenuated but OT remained most responsive to fat (β = -0.20) and muscle thickness (β = 0.11) (both p < 0.01). CONCLUSIONS: Myocardial muscle thickness is the main determinant of local atrial voltage, while intramyocardial fat contributes to voltage attenuation. OT provides the most consistent assessment of atrial wall composition, particularly under rhythm instability.

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Journal
Journal of Cardiovascular Electrophysiology
Published
2026-09-13
DOI
https://doi.org/10.1111/jce.70491
Primary Topic
Cardiovascular Disease and Adiposity
Type
article
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0.00

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article

Anatomical Determinants of the Left Atrial Electrograms: Wall Thickness and Myocardial Fat Infiltration

Eduard Guasch, Nicola Pierucci, Till Althoff, Lorenzo Mazzocchi et al.
Journal of Cardiovascular Electrophysiology
Cardiovascular Disease and Adiposity
article

Anatomical Determinants of the Left Atrial Electrograms: Wall Thickness and Myocardial Fat Infiltration

Eduard Guasch, Nicola Pierucci, Till Althoff, Lorenzo Mazzocchi, Laia Llorca, Raimondo Pittorru, Ivo Roca‐Luque, José Marı́a Tolosana, Lluı́s Mont, Jean-Baptiste Guichard, Andreu Porta‐Sánchez, Adelina Doltra, R. Ventura, Blanca Domènech-Ximenos, Cecilia Granata, Susana Prat, Ana Garcia‐Alvarez, Rosario Jesus Perea‐Palazon, Mariona Regany‐Closa, Roger Borras, Jana Reventos‐Presmanes, Marta Sitges
article en

Abstract

INTRODUCTION: Electrogram peak-to-peak voltage depends on atrial wall structure and mapping configuration. We evaluated the relationship between computed tomography-derived atrial wall thickness, intramyocardial fat, myocardial muscle thickness, and electrogram voltage obtained with omnipolar, bipolar, and unipolar mapping. METHODS: Consecutive patients undergoing left atrial mapping during atrial fibrillation or atypical atrial flutter ablation were retrospectively included. Pre-procedural contrast-enhanced CT was processed with ADAS 3D to quantify left atrial wall thickness and intramyocardial fat infiltration, from which myocardial muscle thickness was derived. High-density electroanatomical maps were spatially co-registered with CT. Associations between anatomical parameters and peak-to-peak voltage were assessed, stratifying by rhythm stability. RESULTS: Twenty patients were included. In stable rhythms, left atrial wall thickness correlated positively with voltage for all configurations, strongest for unipolar (β = 0.38) and omnipolar (β = 0.23) vs. bipolar mapping (β = 0.13) (BP-UP p < 0.0001; BP-OT p < 0.01). Intramyocardial fat showed the strongest inverse association with omnipolar (β = -0.39), compared with bipolar (β = -0.14) and unipolar (β = -0.01; p ≤ 0.02). After excluding fat, muscle thickness correlated positively with OT (β = 0.30) and UP (β = 0.30), exceeding BP (β = 0.14; p < 0.0001). In unstable rhythms, associations were attenuated but OT remained most responsive to fat (β = -0.20) and muscle thickness (β = 0.11) (both p < 0.01). CONCLUSIONS: Myocardial muscle thickness is the main determinant of local atrial voltage, while intramyocardial fat contributes to voltage attenuation. OT provides the most consistent assessment of atrial wall composition, particularly under rhythm instability.

Journal of Cardiovascular Electrophysiology
University of Padua (IT), Agricultural Development Advisory Service (United Kingdom) (GB), Centro de Investigación en Red en Enfermedades Cardiovasculares (ES), Abbott (Canada) (CA), Lung Institute (US), Centro de Investigación Biomédica en Red (ES), Hospital Clínic de Barcelona (ES), Consorci Institut D'Investigacions Biomediques August Pi I Sunyer (ES), Charité - Universitätsmedizin Berlin (DE), Sapienza University of Rome (IT), Core Laboratories (United States) (US)
Società Italiana di Cardiologia
Openalex Percentile: Top 11%
Cardiovascular Disease and Adiposity
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