Residual Surgical Left Atrial Appendage Leaks: Thromboembolic Risk and Anatomy‐Tailored Percutaneous Closure Strategies

BACKGROUND: Atrial fibrillation is a leading cause of cardioembolic stroke, and the left atrial appendage (LAA) is the principal source of thrombus formation in non-valvular disease. Surgical LAA exclusion is commonly performed during cardiac surgery, but incomplete closure resulting in a residual communication is not uncommon and may carry ongoing thromboembolic risk. Unlike peri-device leaks after transcatheter closure, residual surgical leaks are anatomically and mechanistically distinct, typically arising through a central, fibrotic ostium with a variable residual pouch, and no validated management pathway currently exists. METHODS: We conducted a structured literature search of PubMed/MEDLINE, Embase, the Cochrane Library, and Google Scholar for reported cases and surgical subgroups in which residual leaks after surgical LAA ligation or amputation were managed percutaneously. Because the evidence was predominantly observational and case-based, findings were synthesized narratively rather than as a formal meta-analysis. RESULTS: Across 37 reported percutaneous procedures identified from case reports, small series, and registry surgical subgroups, closure strategies comprised vascular plugs and septal occluders, dedicated LAA occlusion devices, non-barbed disc-based occluders in anatomically high-risk cases, and endocardial radiofrequency ablation for uncrossable fibrotic leaks. Acute success was high, although outcome reporting was heterogeneous and long-term data were limited. CONCLUSIONS: Residual surgical LAA leaks are an underrecognized, anatomically distinct entity. We propose an anatomy-tailored management framework integrating leak traversability, adjacent vascular anatomy, ostial morphology, and residual pouch depth; given the limited evidence, this should be regarded as hypothesis-generating, and prospective multicenter data are needed.

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Publication Details

Journal
Pacing and Clinical Electrophysiology
Published
2026-09-06
DOI
https://doi.org/10.1111/pace.70424
Primary Topic
Atrial Fibrillation Management and Outcomes
Type
article
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article

Residual Surgical Left Atrial Appendage Leaks: Thromboembolic Risk and Anatomy‐Tailored Percutaneous Closure Strategies

Hikmet Yorgun, Uğur Canpolat, Cem Çöteli, Ahmet Kıvrak et al.
Pacing and Clinical Electrophysiology
Atrial Fibrillation Management and Outcomes
article

Residual Surgical Left Atrial Appendage Leaks: Thromboembolic Risk and Anatomy‐Tailored Percutaneous Closure Strategies

Hikmet Yorgun, Uğur Canpolat, Cem Çöteli, Ahmet Kıvrak, Mert Doğan, Ahmet Haydar Keresteci, Ergün Barış Kaya, Mehmet Levent Sahiner, Ahmet Hakan Ates, Kudret Aytemir
article en

Abstract

BACKGROUND: Atrial fibrillation is a leading cause of cardioembolic stroke, and the left atrial appendage (LAA) is the principal source of thrombus formation in non-valvular disease. Surgical LAA exclusion is commonly performed during cardiac surgery, but incomplete closure resulting in a residual communication is not uncommon and may carry ongoing thromboembolic risk. Unlike peri-device leaks after transcatheter closure, residual surgical leaks are anatomically and mechanistically distinct, typically arising through a central, fibrotic ostium with a variable residual pouch, and no validated management pathway currently exists. METHODS: We conducted a structured literature search of PubMed/MEDLINE, Embase, the Cochrane Library, and Google Scholar for reported cases and surgical subgroups in which residual leaks after surgical LAA ligation or amputation were managed percutaneously. Because the evidence was predominantly observational and case-based, findings were synthesized narratively rather than as a formal meta-analysis. RESULTS: Across 37 reported percutaneous procedures identified from case reports, small series, and registry surgical subgroups, closure strategies comprised vascular plugs and septal occluders, dedicated LAA occlusion devices, non-barbed disc-based occluders in anatomically high-risk cases, and endocardial radiofrequency ablation for uncrossable fibrotic leaks. Acute success was high, although outcome reporting was heterogeneous and long-term data were limited. CONCLUSIONS: Residual surgical LAA leaks are an underrecognized, anatomically distinct entity. We propose an anatomy-tailored management framework integrating leak traversability, adjacent vascular anatomy, ostial morphology, and residual pouch depth; given the limited evidence, this should be regarded as hypothesis-generating, and prospective multicenter data are needed.

Pacing and Clinical Electrophysiology
Ministry of Health (TR), Maastricht University Medical Centre (NL), Batman University (TR), Maastricht University (NL), Hacettepe University (TR)
Reduced inequalities
Openalex Percentile: Top 10%
Atrial Fibrillation Management and Outcomes
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