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Updated: Aug 19, 2026

Catheter Ablation in Combination With Left Atrial Appendage Closure for Atrial Fibrillation
Published on: February 26, 2013
[The activation of haemostasis during radiofrequency catheter ablation]
Insights
Electrophysiologic study and radiofrequency ablation activate coagulation and fibrinolysis markers, including thrombin-antithrombin III and D-dimers. These findings support the need for antithrombotic prevention in patients undergoing these procedures.
Area of Science:
- Cardiovascular Medicine
- Haematology
Context:
- Electrophysiologic study (EPS) and radiofrequency catheter ablation (RFA) are common procedures for treating supraventricular tachycardias.
- Assessing haemostasis activation markers during EPS and RFA is crucial for understanding procedural risks and optimizing patient management.
Purpose:
- To prospectively investigate changes in coagulation, fibrinolytic, and platelet activation markers during EPS and RFA in patients with supraventricular tachycardias.
- To evaluate the clinical significance of these haemostasis markers in relation to the procedure and determine the need for antithrombotic prevention.
Summary:
- The study monitored thrombin-antithrombin III (TAT), D-dimers (DD), platelet count, and circulating platelet aggregates (CPAi) in 63 patients before, during, and after EPS/RFA.
- Significant increases in TAT and DD levels were observed during and immediately after the procedures.
- Platelet count decreased, while platelet activation showed marked levels prior to the procedure without significant changes during it.
Impact:
- The results confirm significant haemostasis activation during EPS and RFA.
- Findings support the eligibility and potential benefit of antithrombotic prevention strategies in patients undergoing these cardiac procedures.
- This research contributes to improved patient safety and risk stratification in interventional cardiology.
Abstract:
The aim of the study was to investigate chosen haemostasis activation markers during electrophysiologic study (EPS) with consequent radiofrequency catheter ablation (RFA). Sixty-three patients were studied prospectively. Indications for EPS and RFA were supraventricular tachycardias with the arrhythmogenic substrate located in the right atrium. Blood samples were drawn 24 hours before the procedure (T -1), at the beginning of the procedure (T0), at the end of EPS (T1), 30 minutes after completion of RFA (T2), and 24 hours after the procedure (T3). To study coagulation, fibrinolytic and platelet activation were measured concentrations of thrombin-antithrombin III (TAT), D-dimers (DD), platelet count and parameters, and circulating platelet aggregates (CPAi). During the EPS and RFA, TAT levels increased from the baseline 5.03 +/- 2.53 microg/l (T -1) to 12.90 +/- 12.83 microg/l at T0 (p < 0.001) to 36.07 +/- 15.59 microg/l at T1 (p < 0.001) and decreased to 28.85 +/- 13.14 microg/l at T2 (p < 0.001). Levels of DD increased from 0.30 +/- 0.20 mg/l at T0 to 0.44 +/- 0.25 mg/l at T1 (p < 0.001) and to 0.87 +/- 0.74 mg/l at T2 (p < 0.001). The number of platelets was significantly decreased (-13.7%) before and during the procedure (T -1 vs. T3; p < 0.001). Marked platelet activation (CPAi 0.62 +/- 0.32) was observed before the procedure opposite to the physiological values (CPAi 1.0 +/- 0.1), without changes during the procedure (CPAi at T2 0.69 +/- 0.23). Our results confirmed activation of several haemostasis parameters during EPS and RFA, and support eligibility of the antithrombotic prevention in patients indicated for EPS and RFA.
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