Impact of irrigation flow rate and intrapericardial fluid on cooled-tip epicardial radiofrequency ablation

Heart Rhythm. 2016 Aug;13(8):1602-11. doi: 10.1016/j.hrthm.2016.05.008. Epub 2016 May 7.

Abstract

Background: The optimal irrigation flow rate (IFR) during epicardial radiofrequency (RF) ablation has not been established.

Objective: This study specifically examined the impact of IFR and intrapericardial fluid (IPF) accumulation during epicardial RF ablation.

Methods: Altogether, 452 ex vivo RF applications (10 g for 60 seconds) delivered to the epicardial surface of bovine myocardium using 3 open-irrigated ablation catheters (ThermoCool SmartTouch, ThermoCool SmartTouch-SF, and FlexAbility) and 50 in vivo RF applications delivered (ThermoCool SmartTouch-SF) in 4 healthy adult swine in the presence or absence of IPF were examined. Ex vivo, RF was delivered at low (≤3 mL/min), reduced (5-7 mL/min), and high (≥10 mL/min) IFRs using intermediate (25-35 W) and high (35-45 W) power. In vivo, applications were delivered (at 9.3 ± 2.2 g for 60 seconds at 39 W) using reduced (5 mL/min) and high (15 mL/min) IFRs.

Results: Ex vivo, surface lesion diameter inversely correlated with IFR, whereas maximum lesion diameter and depth did not differ. While steam pops occurred more frequently at low IFR using high power (ThermoCool SmartTouch and ThermoCool SmartTouch-SF), tissue disruption was rare and did not vary with IFR. In vivo, charring/steam pop was not detected. Although there were no discernible differences in lesion size with IFR, surface lesion diameter, maximum diameter, depth, and volume were all smaller in the presence of IPF at both IFRs.

Conclusion: Cooled-tip epicardial RF ablation created using reduced IFRs (5-7 mL/min) yields lesion sizes similar to those created using high IFRs (≥10 mL/min) without an increase in steam pop/tissue disruption, whereas the presence of IPF significantly reduces the lesion size.

Keywords: Catheter ablation; Electrophysiology; Epicardial; Pericardium; Radiofrequency.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Atrial Fibrillation / physiopathology
  • Atrial Fibrillation / surgery*
  • Catheter Ablation / instrumentation*
  • Disease Models, Animal
  • Equipment Design
  • Heart Rate
  • Heart Ventricles / physiopathology
  • Heart Ventricles / surgery*
  • Pericardium / surgery*
  • Swine
  • Therapeutic Irrigation / instrumentation*