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Larger coronary sinus diameter predicts the need for epicardial delivery during mitral isthmus ablation
Kelvin C K Wong1, Michael Jones, Praveen P Sadarmin
1Oxford Heart Centre, John Radcliffe Hospital NHS Trust, Oxford OX3 9DU, UK.
Insights
Larger coronary sinus (CS) diameters increase the need for epicardial CS ablation during mitral isthmus ablation for atrial fibrillation. CS diameter, not circumflex artery diameter, impacts ablation time.
Area of Science:
- Cardiology
- Electrophysiology
- Medical Imaging
Background:
- Mitral isthmus ablation is crucial for treating atrial fibrillation but presents technical challenges.
- The coronary sinus (CS) and circumflex artery can act as heat sinks, potentially reducing ablation efficacy.
- Understanding the impact of vascular dimensions on ablation success is critical.
Purpose of the Study:
- To investigate the influence of coronary sinus (CS) and circumflex artery diameters on mitral isthmus ablation outcomes.
- To determine if vascular dimensions predict the need for epicardial CS ablation.
- To assess the correlation between vascular diameters and ablation procedure times.
Main Methods:
- Retrospective analysis of 35 patients undergoing mitral isthmus ablation for atrial fibrillation.
- Utilized irrigated-tip catheters with specific power and temperature settings for endocardial and CS ablation.
- Performed coronary angiography and CS venography, analyzed with quantitative coronary angiography.
Main Results:
- Mitral isthmus block was achieved in 89% of patients; 74% required CS ablation.
- Patients needing CS ablation had significantly larger CS diameters (6.5 ± 1.2 mm vs. 5.4 ± 0.5 mm).
- CS diameter >5.9 mm predicted the need for CS ablation (100% specificity, 78% sensitivity) and correlated with total and CS ablation times.
Conclusions:
- Larger coronary sinus (CS) diameter is associated with an increased requirement for CS ablation during mitral isthmus procedures.
- CS diameter, unlike circumflex artery diameter, significantly correlates with total and CS ablation duration.
- Findings support the hypothesis that the CS acts as a heat sink, impacting ablation effectiveness.
Aims:
Mitral isthmus ablation is technically challenging, often requiring both endocardial and epicardial coronary sinus (CS) ablation. Blood flow in the CS and circumflex artery may act as a 'heat sink' and reduce the efficacy of radiofrequency ablation. This study investigates how the CS and circumflex artery diameters affect mitral isthmus ablation.
Methods And Results:
Thirty-five patients underwent ablation for atrial fibrillation. Irrigated-tip catheters were used during mitral isthmus ablation with the following settings: endocardial surface (maximum power: 40-50 W at the annular end of line; maximum temperature: 48°C); CS (maximum power: 25-30 W; maximum temperature: 48°C). The absence of block after 10 min of endocardial ablation led to CS ablation for up to 5 min. If there was still no block, further ablation was at the discretion of the physician. Coronary angiography and CS venography were performed and analysed with quantitative coronary angiography. Mitral isthmus block was achieved in 31 patients (89%). Twenty-three patients (74%) required CS ablation to achieve block. These patients were found to have significantly larger CS diameters (6.5 ± 1.2 vs. 5.4 ± 0.5 mm, P< 0.02). Coronary sinus diameter >59 mm predicted the need for CS ablation (specificity: 100%; sensitivity: 78%). Coronary sinus diameter correlated significantly with total mitral isthmus ablation time (r = 0.52, P < 0.003) and CS ablation time (r = 0.59, P < 0.0005), whereas circumflex diameter did not.
Conclusion:
Larger-diameter CS is associated with a need for CS ablation during mitral isthmus ablation. Coronary sinus but not circumflex diameter was significantly correlated with total and CS ablation time, supporting the hypothesis that the CS but not the circumflex artery acts as a heat sink.
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