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September 25, 2007Pacing and Clinical Electrophysiology194 citations

Impact of Integration of Multislice Computed Tomography Imaging into Three‐Dimensional Electroanatomic Mapping on Clinical Outcomes, Safety, and Efficacy Using Radiofrequency Ablation for Atrial Fibrillation

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MMMartin MartinekHNHans‐Joachim NesserJAJosef Aichinger

Key Result

Integrating multislice computed tomography into electroanatomic mapping improved procedural success for atrial fibrillation ablation compared to conventional mapping (85.1% vs 67.9%; P=0.018).

Study Design

Type

Cohort (n=100)

Structured PICO

Does the integration of multislice computed tomography into three-dimensional electroanatomic mapping improve procedural success and safety in patients with multi-drug-resistant atrial fibrillation undergoing radiofrequency catheter ablation?

P
Population
100 patients (15% female, mean age 55 years) with multi-drug-resistant atrial fibrillation undergoing radiofrequency catheter ablation.
E
Exposure
Integration of multislice computed tomography (MSCT) into three-dimensional electroanatomic mapping (Carto MERGE) to guide radiofrequency catheter ablation (wide area circumferential approach with confirmed pulmonary vein isolation).
C
Comparator
Conventional three-dimensional electroanatomic mapping (Carto XP) alone during radiofrequency catheter ablation.
O
Outcome
Procedural success (clinical outcome).hard clinical

Integrating multislice CT into 3D electroanatomic mapping significantly improves procedural success and may reduce the risk of pulmonary vein stenosis during radiofrequency ablation for atrial fibrillation.

Main Result

Absolute Event Rate: 85.1% vs 67.9%

p-value: p=0.018

Abstract

BACKGROUND: Circumferential radiofrequency catheter ablation (RFCA) around the orifices of the pulmonary veins (PV) is a curative catheter-based therapy of paroxysmal, persistent, and permanent atrial fibrillation (AF). Integration of multislice computed tomography into three-dimensional electroanatomic mapping to guide catheter ablation has been shown to be accurate and feasible. This study investigated whether the use of such sophisticated imaging technology translates into better clinical outcomes, procedural efficacy, and safety in comparison with a control group treated with conventional three-dimensional electroanatomic mapping. METHODS: A total of 100 consecutive patients (85 male, mean age 55 +/- 9 years) with multi-drug-resistant AF underwent RFCA. In this study we used a wide area circumferential approach with confirmed PV isolation (requiring additional ablations at the ostial level) and further lines as needed. RESULTS: Comparison of outcome data between the conventional electroanatomic mapping (Carto XP, Biosense Webster, Diamond Bar, CA, USA) and the image integration technology (Carto MERGE, Biosense Webster) resulted in a significant improvement in procedural success for the image integration group (85.1% vs 67.9%; P = 0.018). No single case of significant PV stenosis occurred in the Carto MERGE group versus three significant stenoses in the conventional group (P = 0.098). Both procedure and fluoroscopy times remained unchanged. CONCLUSION: Multislice computed tomography image integration into electroanatomic mapping significantly improves the success of wide area circumferential ablation with confirmed isolation of the PV and additional lines. In addition, the safety of radiofrequency ablation with regard to the occurrence of PV stenosis is increased in comparison with a control group using conventional electroanatomic mapping alone. Procedural efficacy remains unchanged.

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Cite This Study

Martinek et al. (2007) conducted a cohort in Multi-drug-resistant atrial fibrillation (n=100). Multislice computed tomography image integration into electroanatomic mapping vs. Conventional three-dimensional electroanatomic mapping was evaluated on Procedural success (p=0.018). Integrating multislice computed tomography into electroanatomic mapping improved procedural success for atrial fibrillation ablation compared to conventional mapping (85.1% vs 67.9%; P=0.018).

synapsesocial.com/papers/6a204cfe6504ae8788d1e627https://doi.org/10.1111/j.1540-8159.2007.00843.x
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