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Catheter Ablation in Combination With Left Atrial Appendage Closure for Atrial Fibrillation
Published on: February 26, 2013
Noncardioembolic Stroke in Patients with Atrial Fibrillation
Vasiliki Katsi1, Georgios Georgiopoulos1, Anastasia Skafida2
11 First Department of Cardiology, "Hippokration" Hospital, University of Athens, Medical School, Athens, Greece.
Insights
Atrial fibrillation (AF) patients often have non-cardioembolic strokes. Oral anticoagulants
Area of Science:
- Neurology
- Cardiology
- Vascular Medicine
Background:
- Atrial fibrillation (AF) is often found with ischemic stroke, but stroke cause can be unclear.
- Distinguishing stroke causes like large-vessel atheromatosis or small vessel disease is challenging.
- Current risk stratification (CHA2DS2-Vasc score) guides oral anticoagulant (OAC) use in AF.
Purpose of the Study:
- To review evidence on non-cardioembolic (non-CE) stroke in AF patients.
- To explore treatment strategies for different non-CE stroke subtypes.
- To highlight the need for better stroke subtyping in AF management.
Main Methods:
- Literature review of studies on non-CE stroke in AF.
- Analysis of stroke subtypes within the non-CE AF population.
- Examination of OAC effectiveness for non-CE stroke.
Main Results:
- Approximately one-third of AF patients experience non-CE strokes.
- Within non-CE strokes, high-grade carotid stenosis occurs in 11-24% and lacunar strokes in 9-16%.
- The efficacy of OACs in preventing non-CE stroke remains debated.
Conclusions:
- Stroke etiology in AF patients requires careful evaluation beyond AF itself.
- Stroke subtyping may enhance risk stratification and guide antithrombotic therapy.
- Further large-scale studies are needed to clarify pathophysiologic mechanisms and compare antithrombotic strategies for non-CE ischemic syndromes in AF.
Abstract:
Atrial fibrillation (AF) could be a coincidental finding in certain patients with ischemic stroke and increased burden of underlying cardiovascular disease. Concomitant large-vessel atheromatosis and cerebral small vessel disease may be the actual cause of stroke, and distinguishing between different pathophysiologic mechanisms could impose substantial diagnostic difficulties. Despite routine use of oral anticoagulants (OACs) in patients with AF based on their risk for embolism (ie, CHA2DS2-Vasc score), antithrombotic agents may exert differential effects depending on stroke etiology and stroke subtyping should be evaluated as an additional component of risk stratification that could facilitate optimal management. In the present study, we summarize the evidence on noncardioembolic (non-CE) stroke and treatment approaches based on different stroke subtypes in patients with AF. In particular, approximately one-third of patients with AF seem to suffer a non-CE stroke. Within this category, 11% to 24% of patients present high-grade carotid stenosis and 9% to 16% of ischemic strokes are classified as lacunar. In terms of secondary prevention, the effectiveness of OACs in preventing non-CE stroke has been disputed. Additional large-scale prospective studies are warranted to assess the pathophysiologic stroke mechanisms in patients with AF and compare the differential efficacy of antithrombotic treatment strategies in non-CE ischemic syndromes.
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