DOI: 10.1161/jaha.126.050723 ISSN: 2047-9980
Artificial Intelligence–Derived Electrocardiographic Age Enhances Stroke Risk Stratification in Patients With Atrial Fibrillation With a CHA
2
DS
2
Chen‐Shu Wu, Po‐Huang Chen, Wen‐Yu Lin, Wei‐Ting Liu, Po Kai Chan, Hsuan Yi Wu, Chin‐Sheng Lin, Chin Lin, Chiao‐Chin Lee
Background
To evaluate whether artificial intelligence–derived electrocardiographic‐age enhances the predictive utility of the CHA
2
DS
2
‐VA (congestive heart failure/left ventricular dysfunction, hypertension, age ≥75 years [doubled], diabetes, stroke/transient ischemic attack [doubled], vascular disease, age 65–74 years) score in patients with atrial fibrillation representing a borderline indication for anticoagulation with a score of 1.
Methods
From a multicenter atrial fibrillation and atrial flutter registry, we identified 832 anticoagulation‐naïve patients with a CHA
2
DS
2
‐VA score of 1 and at least one 12‐lead ECG within 90 days of diagnosis. ECG‐age was estimated using a previously validated deep learning (convolutional neural network) model. Chronological age was replaced with ECG‐age (1 point for 65–74 years, 2 points for ≥75 years), leaving all other score components unchanged, to form the EA‐CHA
2
DS
2
‐VA score. Patients were grouped as EA‐CHA
2
DS
2
‐VA ≥2 (n=315) or <2 (n=517).
Results
Compared with patients with an EA‐CHA
2
DS
2
‐VA score <2, those with an EA‐CHA
2
DS
2
‐VA score ≥2 had a significantly higher risk of ischemic stroke or transient ischemic attack (hazard ratio [HR], 1.82 [95% CI, 1.06–3.13];
P
=0.028). All‐cause mortality was also significantly elevated in the EA‐CHA
2
DS
2
‐VA ≥2 group (HR, 2.22 [95% CI, 1.43–3.45];
P
<0.001). Major bleeding did not differ significantly between groups (
P
=0.386).
Conclusions
Substituting chronological age with artificial intelligence–derived ECG‐age in the CHA
2
DS
2
‐VA score was associated with improved risk stratification in patients with atrial fibrillation with intermediate stroke risk. This refined risk stratification facilitates timely initiation of anticoagulation therapy, potentially reducing stroke and mortality. Future prospective studies are essential to integrate this artificial intelligence–enhanced strategy into clinical practice.
Registration
This study was registered on the Open Science Framework (URL:
https://doi.org/10.17605/OSF.IO/39BND
; unique identifier: 10.17605/OSF.IO/39BND).
More from our Archive
-
DOI: 10.68381/jca02008 2026
Proximal Smoothness and the Lower-C
2
Property F. H. Clarke, R. J. Stern, P. R. Wolenski
-
DOI: 10.68381/jca13044 2026
Characterizations of Prox-Regular Sets in Uniformly Convex Banach Spaces Frédéric Bernard, Lionel Thibault, Nadia Zlateva
-
DOI: 10.68381/jca15047 2026
Brøndsted-Rockafellar Property and Maximality of Monotone Operators Representable by Convex Functions in Non-Reflexive Banach Spaces Maicon Marques Alves, Benar Fux Svaiter
-
DOI: 10.68381/jca16027 2026
Proximal Smoothness and the Exterior Sphere Condition Chadi Nour, Ron J. Stern, Jean Takche
-
DOI: 10.68381/jca16053 2026
A New Old Class of Maximal Monotone Operators Maicon Marques Alves, Benar Fux Svaiter
-
DOI: 10.68381/jca13045 2026
Maximal Monotonicity via Convex Analysis Jonathan Borwein
-
DOI: 10.68381/jca08009 2026
Variational Inequalities and Regularity Properties of Closed Sets in Hilbert Spaces Giovanni Colombo, Vladimir V. Goncharov
-
DOI: 10.68381/jca17060 2026
Existence and Uniqueness of Solutions for Non-Autonomous Complementarity Dynamical Systems Bernard Brogliato, Lionel Thibault
-
DOI: 10.68381/jca01001 2026
Variational Sum of Monotone Operators H. Attouch, J.-B. Baillon, M. Théra
-
DOI: 10.68381/jca22017 2026
Weak Convexity of Sets and Functions in a Banach Space Grigorii E. Ivanov