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Published on: June 12, 2021
Complications and Anticoagulation Strategies for Percutaneous Epicardial Ablation Procedures
Tomofumi Nakamura1,2, Giovanni E Davogustto1, Benjamin Schaeffer2
1The Cardiovascular Division, Department of Medicine, Vanderbilt University Medical Center, Nashville, TN (T.N., G.E.D., A.K., R.M.J., G.F.M., W.G.S.).
Insights
Bleeding during pericardial access for ablation is common, but anticoagulation strategy did not affect bleeding risk. Preventing unintentional cardiac puncture is key to improving safety in these procedures.
Area of Science:
- Cardiology
- Interventional Cardiology
- Electrophysiology
Background:
- Percutaneous pericardial access for catheter ablation carries an inherent bleeding risk.
- Hemorrhagic and thromboembolic events are critical considerations in epicardial procedures.
Purpose of the Study:
- To investigate the relationship between anticoagulation strategies and hemorrhagic/thromboembolic events during epicardial procedures.
- To identify factors influencing bleeding risk in patients undergoing percutaneous pericardial access for catheter ablation.
Main Methods:
- A retrospective review of 355 patients undergoing ventricular arrhythmia mapping and ablation.
- Analysis of anticoagulation strategies (heparin administration and reversal) before pericardial access.
- Comparison of bleeding rates across three anticoagulation groups.
Main Results:
- Significant pericardial bleeding occurred in 13% of patients, with no significant difference among anticoagulation groups (P=0.720).
- Unintentional cardiac puncture (OR, 16.4; P<0.001) and low left ventricular ejection fraction (OR, 2.28; P=0.044) were independently associated with bleeding.
- Thromboembolic events were infrequent (5 patients) but potentially severe.
Conclusions:
- Bleeding risk in pericardial access is primarily linked to unintentional cardiac puncture, not anticoagulation strategy.
- Focusing on preventing unintentional cardiac puncture is crucial for enhancing procedural safety.
- Thrombotic complications, though rare, necessitate vigilance.
Background:
Percutaneous pericardial access for catheter ablation is associated with a bleeding risk. We sought to elucidate the relation of hemorrhagic and thromboembolic events associated with epicardial procedures to anticoagulation strategy.
Methods:
Anticoagulation strategy before and during pericardial access for 355 patients (57±14 years old) who had ventricular arrhythmia mapping and ablation were reviewed. Oral anticoagulants were stopped perioperatively and heparin administered before the procedure. Pericardial bleeding >80 mL was considered significant. The patients were divided into 3 groups per the anticoagulation strategy. Group 1: no heparin was administered before pericardial access, group 2: heparin was administered and reversed before pericardial access, and group 3: heparin was administered and not reversed.
Results:
Significant pericardial bleeding occurred in 46 cases (13%) and did not differ among the groups ( P=0.720). Unintentional cardiac puncture and left ventricular ejection fraction ≤35% were independently associated with pericardial bleeding (odds ratio, 16.4; 95% CI, 7.35-36.40; P<0.001 and odds ratio, 2.28; 95% CI, 1.02-5.10; P=0.044). Of 38 procedures with unintentional cardiac puncture, there was no difference in pericardial bleeding for different anticoagulation strategies. Thromboembolic events occurred in 5 patients; 1 coronary embolism, 1 stroke, 2 deep vein thrombosis with 1 fatal pulmonary embolism, and 1 thrombus on a temporary ventricular assist device.
Conclusions:
Bleeding is the major risk related to pericardial access and seems to be more related to unintentional cardiac puncture than to the anticoagulation strategy. Thrombotic complications are infrequent but potentially severe. The major focus for improving safety should be on the prevention of unintentional cardiac puncture.
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