Traditional AF classification (e.g., paroxysmal, persistent, permanent) relies largely on patient-reported symptoms and intermittent electrocardiographic monitoring, which cannot continuously or objectively reflect disease progression, nor effectively inform optimal intervention timing. Although "AF burden" (i.e., duration of AF episodes) has emerged as a potential marker, its association with clinical outcomes remains inconsistent due to limitations in monitoring methods and its one-dimensional nature. Based on our previous work, investigators developed a five-dimensional AF progression model using photoplethysmography (PPG) signals collected from wearable devices. This model quantifies AF progression across five domains: episode frequency, duration, temporal aggregation, circadian rhythm, and tachycardia burden, enabling continuous and multidimensional assessment. Prior validation has demonstrated high agreement with 24-hour Holter monitoring and effective identification of high-risk patients. The BEAT-AF trial is designed to evaluate the clinical utility of this model in a real-world setting. Specifically, investigators will investigate whether early intervention (e.g., optimization of medical therapy or consideration of catheter ablation) in patients with elevated five-dimensional AF burden (≥4.59%) can reduce symptoms, rhythm/rate-related abnormalities, and AF-related adverse events (such as stroke and heart failure). This study is expected to provide new evidence for dynamic monitoring of AF progression, optimal timing of intervention, and personalized management strategies, ultimately improving patient outcomes.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
TRIPLE
Enrollment
3,194
Continuous PPG-based AF monitoring; Threshold-triggered intervention; Stepwise rhythm control strategy; Antiarrhythmic drug optimization; Catheter ablation evaluation; Anticoagulation management; Comorbidity management; Digital follow-up and education;
Sixth Medical Center of Chinese PLA General Hospital
Beijing, China
At the 12-month follow-up, the time until the occurrence of the first AF-related composite adverse event endpoint.
The occurrence of the AF-related composite adverse event endpoint, which consists of any of the following events: progression of atrial fibrillation, heart failure, stroke, systemic embolism, and cardiovascular-related hospitalization.
Time frame: 12 months
Patient-reported outcomes
Atrial fibrillation symptoms (EHRA symptom score)
Time frame: 24 months
Endpoint of effectiveness of atrial fibrillation stress control
The overall load of 5D-AF at the assessment time point \< 4.59%
Time frame: 24 months
clinical endpoint
Atrial fibrillation progression, heart failure, stroke, systemic embolism, transient ischemic attack, venous thromboembolism, cardiovascular-related hospitalization, all-cause hospitalization, cardiovascular-related mortality, all-cause mortality, bleeding events, and the rate of catheter ablation treatment for atrial
Time frame: 24 months
Patient-reported outcomes
quality of life score(EQ-5D-5L)
Time frame: 24 months
Patient-reported outcomes
cognitive function changes (MoCA score)
Time frame: 24 months
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