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Updated: Dec 20, 2025

The WATCHMAN Left Atrial Appendage Closure Device for Atrial Fibrillation
Published on: February 28, 2012
Tailored Anticoagulation for Thromboembolic Risk Reduction in Paroxysmal Atrial Fibrillation
Jason D Matos1, Jonathan W Waks1, Peter J Zimetbaum1
1Harvard-Thorndike Electrophysiology Institute, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, USA.
Insights
Atrial fibrillation burden, detected by devices, may influence stroke risk. Tailored anticoagulation strategies using remote monitoring could personalize treatment, balancing risk and bleeding.
Area of Science:
- Cardiology
- Electrophysiology
- Thrombosis Research
Background:
- Atrial fibrillation (AF) is a prevalent arrhythmia linked to significant thromboembolic risk, primarily stroke.
- Current anticoagulation guidelines do not account for AF burden (frequency/duration) in risk assessment.
- Existing knowledge on AF-related thromboembolism mechanisms is incomplete.
Purpose of the Study:
- To review associations between subclinical, device-detected atrial arrhythmias and thromboembolic events.
- To discuss the concept of "tailored anticoagulation" for AF patients.
- To explore novel strategies for thromboembolic risk reduction in AF.
Main Methods:
- Utilizing data from cardiac implantable electronic devices (CIEDs) for continuous AF monitoring.
- Analyzing rhythm data for AF burden quantification.
- Investigating remote AF monitoring for dynamic anticoagulation management.
Main Results:
- Recent data suggest AF burden, detected by CIEDs, may correlate with thromboembolic risk.
- Subclinical atrial arrhythmias detected by CIEDs are associated with thromboembolic events.
- Remote monitoring enables assessment of AF burden and potential for dynamic anticoagulation.
Conclusions:
- AF burden is an emerging factor in thromboembolic risk stratification.
- CIEDs and remote monitoring facilitate personalized anticoagulation strategies.
- Tailored anticoagulation aims to optimize stroke prevention while minimizing bleeding risk.
Abstract:
Atrial fibrillation (AF) is the most common sustained cardiac arrhythmia, affecting up to six million people in the United States and more than 35 million individuals worldwide. Thromboembolism, including stroke, represents the most common AF-related morbidity and mortality and data indicate that anticoagulation can mitigate this risk by 65%. Our understanding of thromboembolism in AF, however, remains incomplete, and the mechanisms by which AF increases thromboembolic risk are areas of ongoing investigation and debate. Current guidelines do not differentiate between the frequency and duration of AF episodes (AF burden) when selecting which patients with AF should be treated with anticoagulation for thromboembolic risk reduction. Recent data, primarily using cardiac implantable electronic devices (CIEDs) such as pacemakers, implantable cardioverter-defibrillators, and implantable loop recorders, however, have challenged this longstanding notion that AF burden does not influence thromboembolic risk. Continuous and automated cardiac rhythm monitoring via CIEDs with accurate and rapid acquisition and transmission of rhythm data also affords the opportunity to study the relationship between AF burden and thromboembolism and novel ways to reduce thromboembolic risk while minimizing the risk associated with chronic anticoagulation use. This manuscript will review the associations between subclinical, CIED-detected atrial arrhythmias and thromboembolic events. It will also discuss the emergence of "tailored anticoagulation," an anticoagulation strategy wherein CIEDs and remote AF monitoring are employed to allow dynamic administration of oral anticoagulation only around episodes of AF, and the holding of anticoagulation during prolonged periods of sinus rhythm when the thromboembolic risk associated with AF is presumably very low.
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