Author:
Pujadas Esmeralda Ruiz,Raisi-Estabragh Zahra,Szabo Liliana,Morcillo Cristian Izquierdo,Campello Víctor M.,Martin-Isla Carlos,Vago Hajnalka,Merkely Bela,Harvey Nicholas C.,Petersen Steffen E.,Lekadir Karim
Abstract
AbstractAtrial fibrillation (AF) is the most common cardiac arrhythmia. It is associated with a higher risk of important adverse health outcomes such as stroke and death. AF is linked to distinct electro-anatomic alterations. The main tool for AF diagnosis is the Electrocardiogram (ECG). However, an ECG recorded at a single time point may not detect individuals with paroxysmal AF. In this study, we developed machine learning models for discrimination of prevalent AF using a combination of image-derived radiomics phenotypes and ECG features. Thus, we characterize the phenotypes of prevalent AF in terms of ECG and imaging alterations. Moreover, we explore sex-differential remodelling by building sex-specific models. Our integrative model including radiomics and ECG together resulted in a better performance than ECG alone, particularly in women. ECG had a lower performance in women than men (AUC: 0.77 vs 0.88, p < 0.05) but adding radiomics features, the accuracy of the model was able to improve significantly. The sensitivity also increased considerably in women by adding the radiomics (0.68 vs 0.79, p < 0.05) having a higher detection of AF events. Our findings provide novel insights into AF-related electro-anatomic remodelling and its variations by sex. The integrative radiomics-ECG model also presents a potential novel approach for earlier detection of AF.
Funder
European Union's Horizon 2020 research and innovation programme
Publisher
Springer Science and Business Media LLC
Cited by
6 articles.
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