Background Artificial intelligence-enabled electrocardiography (AI-ECG) has emerged as a promising digital biomarker for detecting latent myocardial dysfunction and predicting cardiovascular risk. However, whether serial AI-derived risk estimates reflect myocardial recovery following therapeutic intervention remains unknown. Objective The DYNAMIC-AF HF Study aims to evaluate longitudinal changes in AI-ECG-derived heart failure (HF) risk after catheter ablation in patients with atrial fibrillation (AF) and heart failure with mildly reduced ejection fraction (HFmrEF), and to determine their association with conventional markers of reverse remodeling. Methods The DYNAMIC-AF HF Study is a prospective multicenter observational cohort study enrolling 1,000 patients with symptomatic AF and HFmrEF undergoing first-time catheter ablation. Eligible participants must have a left ventricular ejection fraction of 41-49% and at least one predefined HF-related feature suggestive of latent myocardial dysfunction. Serial 12-lead electrocardiograms, echocardiography, biomarker assessments, and clinical follow-up will be performed at baseline and at 3, 6, and 12 months. AI-based ECG analysis will generate continuous HF-risk scores, enabling construction of longitudinal AI-derived HF risk trajectories. The primary endpoint is the change in AI-derived HF risk from baseline to 12 months. Secondary endpoints include changes in left ventricular ejection fraction, global longitudinal strain, N-terminal pro-B-type natriuretic peptide levels, AF recurrence, HF hospitalization, and mortality. Conclusions This study will evaluate whether serial AI-ECG assessment can serve as a dynamic digital biomarker of myocardial recovery following AF ablation and support future AI-enabled monitoring and clinical decision-support strategies in cardiovascular care.
Study Type
OBSERVATIONAL
Enrollment
1,000
Ewha Womans University Mokdong Hospital
Seoul, South Korea
Change in AI-derived Heart Failure Risk Score
Difference in the AI-enabled electrocardiography (AI-ECG)-derived heart failure risk score (continuous probability ranging from 0 to 1) between baseline and 12 months after first-time catheter ablation. Higher values indicate a greater predicted probability of underlying heart failure.
Time frame: Baseline to 12 months after catheter ablation
Change in Left Ventricular Ejection Fraction
Absolute change in left ventricular ejection fraction measured by transthoracic echocardiography.
Time frame: Baseline to 12 months after catheter ablation
Change in Global Longitudinal Strain
Change in left ventricular global longitudinal strain assessed by speckle-tracking echocardiography.
Time frame: Baseline to 12 months after catheter ablation
Change in Left Atrial Volume Index
Change in left atrial volume index measured by transthoracic echocardiography.
Time frame: Baseline to 12 months after catheter ablation
Change in E/e' Ratio
Change in echocardiographic estimate of left ventricular filling pressure.
Time frame: Baseline to 12 months after catheter ablation
Change in NT-proBNP
Change in serum N-terminal pro-B-type natriuretic peptide concentration.
Time frame: Baseline to 12 months after catheter ablation
Atrial Fibrillation Recurrence
Documented atrial fibrillation, atrial flutter, or atrial tachycardia lasting at least 30 seconds after the 3-month blanking period.
Time frame: Up to 12 months after catheter ablation
Heart Failure Hospitalization
Hospitalization primarily related to worsening heart failure requiring medical treatment.
Time frame: Up to 12 months after catheter ablation
Cardiovascular Hospitalization
Hospitalization due to cardiovascular causes including arrhythmia, heart failure, ischemic events, or procedure-related complications.
Time frame: Up to 12 months after catheter ablation
All-cause Mortality
Death from any cause during study follow-up.
Time frame: Up to 12 months after catheter ablation
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