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Updated: Aug 5, 2026

High-Resolution Endocardial and Epicardial Optical Mapping in a Sheep Model of Stretch-Induced Atrial Fibrillation
Published on: July 29, 2011
[Atrila fibrillation: a review]
C B Brunckhorst1, J Holzmeister, Ch Scharf
1Abteilung Kardiologie, Departement Innere Medizin, Universitätsspital Zürich.
Insights
Atrial fibrillation (AF), a common heart rhythm disorder, is managed with cardioversion or rate control, often requiring anticoagulation. Lone AF in younger individuals may be an exception.
Area of Science:
- Cardiology
- Electrophysiology
Context:
- Atrial fibrillation (AF) is the most prevalent sustained cardiac arrhythmia, with incidence increasing significantly with age.
- Predisposing factors often lead to atrial enlargement or thickening, creating a substrate for reentry circuits.
- Lone AF occurs in hearts without structural abnormalities.
Purpose:
- To outline the management strategies for atrial fibrillation, including cardioversion and rate control.
- To detail the indications and duration of anticoagulation therapy based on AF type and duration.
- To discuss advanced treatments like catheter ablation for refractory cases.
Summary:
- Management involves choosing between medical/electrical cardioversion for persistent AF and rate control for permanent AF.
- Anticoagulation is crucial for most AF types, with specific protocols for cardioversion timing and post-procedure duration.
- Catheter ablation, targeting triggers or substrate modification, is an increasingly utilized option in specialized centers.
Impact:
- Provides a comprehensive overview of current AF management guidelines.
- Highlights the importance of individualized treatment decisions based on patient factors and AF characteristics.
- Emphasizes the evolving role of catheter ablation in treating complex atrial fibrillation cases.
Abstract:
Atrial fibrillation (AF) is the most common sustained arrhythmia and increases exponentially with age. The physiologic basis are certain triggers initiating multiple micro-reentry circuits, which require a certain amount of "myocardial mass" to be sustained. There are numerous predisposing factors for AF, mostly leading to dilatation or hypertrophy of the atrial myocardium. Lone AF, however, occurs in structurally normal hearts. In the management of AF it is mandatory to decide between medical or electrical cardioversion in persistent AF and rate control in permanent AF. Medical cardioversion or prophylaxis of recurrence can be performed with Class IA, IC or Class III antiarrhythmic drugs. The choice of drugs depends on the underlying cardiac pathology of the individual patient. Patients with long duration of poor rate control during AF are at risk for tachycardia-induced cardiomyopathy. Cardioversion is safe to be performed within 48 hours after the onset of AF without prior and--if there is no risk of recurrence--without consecutive anticoagulation. When AF persists longer than 48 hours, anticoagulation for three weeks is mandatory prior to attempted cardioversion, or alternatively, transesophageal echocardiography can be performed to exclude the presence of an intraatrial thrombus. Anticoagulation has to be maintained for a minimum of four weeks after the restoration of sinus rhythm. Anticoagulation is required for paroxysmal, persistent and permanent AF. Lone atrial fibrillation in patients under the age of 60 years is an exception to these rules and does not require anticoagulation. In case of refractory AF with poor rate control, catheter ablation of the AV node with pacemaker implantation is the treatment of last choice. Early attempts to provide a cure for AF included the surgical "Maze" procedure, followed by linear catheter ablation with the goal of reducing the atrial mass. Catheter ablation of the triggers of AF, which mainly originate at the pulmonary veins and the "substrate modification" have been introduced in the last couple of years and is performed increasingly in specialized EP centers.
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