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Updated: Oct 22, 2025

Catheter Ablation in Combination With Left Atrial Appendage Closure for Atrial Fibrillation
Published on: February 26, 2013
A New Vision at the Interface of Atrial Fibrillation and Stroke
Rafael M Ronsoni1,2, Marco Aurélio Lumertz Saffi3, Marcus Vinicius Magno Gonçalves2
1Electrophysiology Department, Instituto de Ritmologia Cardíaca, Joinville, Brazil.
Insights
The traditional view of atrial fibrillation leading to stroke is incomplete. Atrial cardiopathy, independent of atrial fibrillation, is a significant cause of cardioembolism and stroke.
Area of Science:
- Cardiology
- Neurology
- Thrombosis
Background:
- Traditional models link atrial fibrillation (AF) to blood stasis, thrombus formation, and central nervous system (CNS) embolization.
- Emerging evidence challenges this linear sequence, suggesting alternative pathways for cardioembolism.
Purpose of the Study:
- To re-evaluate the established chronology of events leading to cardioembolic stroke.
- To explore the role of atrial cardiopathy as a thrombogenic factor independent of AF.
Main Methods:
- Review of current scientific literature and cohort data.
- Analysis of biological plausibility and clinical evidence supporting alternative cardioembolic mechanisms.
Main Results:
- Atrial myopathy and remodeling can independently induce a prothrombotic state, leading to cardioembolism.
- Atrial cardiopathy, not solely AF, can explain a significant portion of cryptogenic strokes.
- Temporal dissociation and biological gradients suggest AF is not the exclusive driver of cardioembolism.
Conclusions:
- The exclusive association of AF with thromboembolism is insufficient to explain all cardioembolic events.
- Atrial cardiopathy represents a broader concept encompassing cardioembolism, irrespective of AF presence.
- Future research should focus on detecting diverse atrial heart disease manifestations to identify stroke risk and improve management.
Abstract:
Introduction: Current evidence questions the linear sequence traditionally described in atrial fibrillation, blood stasis, intracavitary thrombus, and embolization to the central nervous system. Currently, new perspectives have been described based on questions from the linearly traditional chronology of events; it is within this scope that the article has its objective. Evidences: The association of the two entities is biologically plausible and supported by different cohorts with a higher risk of developing atrial fibrillation, especially in the cardioembolic form. Concepts (temporal dissociation, biological gradient, etc.) determine the existence of other factors associated with cardioembolism, not exclusively by atrial fibrillation. The entire cascade of events associated with myopathy and atrial remodeling can generate damage to the myocyte and amplify the prothrombotic status. It is important to clarify that atrial myopathy can present itself as atrial fibrillation initially or not, but should always be considered thrombogenic in all the contexts of their clinical presentation. Considering atrial heart disease as a cause of embolic stroke, it could explain that one-third of strokes are considered cryptogenic. Conclusions: The traditional model exclusively associating the presence of atrial fibrillation in the genesis of thromboembolism is incomplete. The concept of atrial cardiopathy where cardioembolism occurs in a non-atrial fibrillation dependent manner fits better with current data. The future challenge is to effectively detect the various manifestations of atrial heart disease, generating direct implications for the identification of patients at risk of stroke and also for better management after a cardioembolic event.
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