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Updated: Jul 4, 2025

Echocardiographic Evaluation of Atrial Communications before Transcatheter Closure
Published on: February 8, 2022
Evaluation of organized atrial arrhythmias after cryptogenic stroke
Naga Venkata K Pothineni1, Uyanga Batnyam1, Hannah Schwennesen1
1Division of Cardiovascular Medicine, Electrophysiology Section, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, Pennsylvania.
Insights
Organized atrial arrhythmias, not always atrial fibrillation (AF), are found in nearly a quarter of cryptogenic stroke patients. Left atrial enlargement increases the risk of developing these arrhythmias.
Area of Science:
- Cardiology
- Neurology
- Medical Monitoring
Background:
- Long-term rhythm monitoring is standard for detecting atrial fibrillation (AF) after cryptogenic stroke (CS).
- The prevalence and characteristics of organized atrial arrhythmias in CS patients require further definition.
Purpose of the Study:
- To determine the incidence and identify risk factors for organized atrial arrhythmias in patients with cryptogenic stroke.
Main Methods:
- Evaluated 195 cryptogenic stroke patients with insertable cardiac monitors (ICMs) from October 2014 to April 2020.
- Reviewed ICM transmissions for atrial fibrillation (AF), tachycardia, and bradycardia.
- Assessed time to detection of organized AF and combined organized atrial arrhythmia or AF.
Main Results:
- Organized atrial arrhythmias (≥30 seconds) were detected in 23% of patients over a mean follow-up of 18.9 months.
- Of those with arrhythmias, 62% did not have AF.
- Left atrial enlargement was associated with a significantly higher adjusted risk for developing atrial arrhythmias.
Conclusions:
- Organized atrial arrhythmias are common in cryptogenic stroke patients, often occurring independently of AF.
- Further research is needed to understand the impact of these arrhythmias on recurrent stroke risk.
Background:
Long-term rhythm monitoring to detect atrial fibrillation (AF) following a cryptogenic stroke (CS) is well established. However, the burden of organized atrial arrhythmias in this population is not well defined.
Objective:
The purpose of this study was to assess the incidence and risk factors for organized atrial arrhythmias in patients with CS.
Methods:
We evaluated all patients with CS who received an insertable cardiac monitor (ICM) between October 2014 and April 2020. All ICM transmissions categorized as AF, tachycardia, or bradycardia were reviewed. We evaluated the time to detection of organized AF and the combination of either organized atrial arrhythmia or AF.
Results:
A total of 195 CS patients with ICMs were included (51% men; mean age 66 ± 12 years; mean CHA2DS2-VASC score 4.6). Over mean follow-up of 18.9 ± 11.2 months, organized atrial arrhythmias lasting ≥30 seconds were detected in 45 patients (23%), of whom 62% did not have AF. Seventeen patients had both organized atrial arrhythmia and AF, and another 21 patients had AF only. Compared to those with normal left atrial size, patients with left atrial enlargement had a higher adjusted risk for development of atrial arrhythmias (mild left atrial enlargement: hazard ratio 1.99; 95% confidence interval 1.06-3.75; moderate/severe left atrial enlargement: hazard ratio 3.06; 95% confidence interval 1.58-5.92).
Conclusion:
Organized atrial arrhythmias lasting ≥30 seconds are detected in nearly one-fourth of CS patients. Two-thirds of these patients did not have AF. Further studies are required to evaluate the impact of organized atrial arrhythmias on recurrent stroke risk.
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