Gapless Electrocardiogram-Monitoring in stroke at high risk of atrial fibrillation
Achim Leo Burger1,2, Cornelia Roesler3, Johanna Ebner2
1Department of Medicine II, Division of Cardiology, Medical University of Vienna, Vienna, Austria.
Insights
Gapless electrocardiogram (ECG) monitoring significantly improves atrial fibrillation detection after ischemic stroke. This continuous approach is recommended as the clinical standard for better patient outcomes.
Area of Science:
- Cardiology
- Neurology
- Medical Technology
Background:
- Previous studies on prolonged ECG monitoring after ischemic stroke had gaps in data collection.
- These gaps may have led to missed diagnoses of atrial fibrillation (AF).
Purpose of the Study:
- To evaluate the effectiveness of gapless ECG monitoring for detecting AF after ischemic stroke.
- To compare AF detection rates between gapless monitoring and standard Holter ECG.
Main Methods:
- Prospective study involving 110 patients with acute ischemic stroke or transient ischemic attack.
- Gapless ECG monitoring via telemetry and insertable cardiac monitors (ICMs) were used.
- Patients also underwent standard 24-72h Holter ECG for comparison.
Main Results:
- Newly diagnosed AF was detected in 15.5% of patients via ICM monitoring versus 0.9% via Holter ECG (p < 0.001).
- Within the first 30 days, 10.0% of patients were diagnosed with AF, accounting for 64% of all new diagnoses.
- All newly diagnosed AF patients received oral anticoagulation therapy.
Conclusions:
- Gapless ECG monitoring is highly effective in increasing AF detection rates post-ischemic stroke.
- Continuous, uninterrupted cardiac rhythm monitoring should be considered the gold standard in clinical practice.
Background And Purpose:
Previous studies investigating prolonged electrocardiogram (ECG)-monitoring after ischemic stroke had significant gaps between the index event and the beginning of long-term monitoring. Atrial fibrillation (AF) detection might be higher if prolonged cardiac rhythm documentation is performed with a gapless approach without any interruption of monitoring time.
Methods:
This investigator-initiated, prospective study included patients with acute ischemic stroke or transient ischemic attack at three study centers. Participants received gapless ECG-monitoring via telemetry during stroke-unit admission until implantation of an insertable cardiac monitor (ICM) within the first days after the index event. Patients acted as their own controls and also received standard 24-72-h Holter ECG.
Results:
A total of 110 patients were included, of whom 86 (78.2%) had an embolic stroke of unknown source, 14 (12.7%) had small-vessel disease, and 10 (9.1%) had large-artery disease. AF was newly diagnosed in 17 (15.5%) patients via ICM monitoring, compared to one (0.9%) patient via Holter ECG during 6 months of follow-up (p < 0.001). The detection rate of AF within the first 30 days was 10.0%, which accounted for 64% of all new AF diagnoses. The median duration of the detected episodes was 1.7 (interquartile range = 0.2-4.7) h. All patients with new onset AF were treated with oral anticoagulation.
Conclusions:
Gapless ECG-monitoring is an effective strategy to significantly increase the detection rate of AF after ischemic stroke. This finding supports the use of long-term ECG-monitoring with a gapless approach without any interruption in monitoring time as the gold standard for clinical practice.
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