Irrigation with liquids of increasing ionic strength decreased lesion volume in vitro (361 vs 812 mm3, P<0.001), indicating no virtual electrode effect contributes to lesion enlargement.
Does increased electrical conductivity around the tip contribute to increased lesion size during irrigated tip radiofrequency ablation in porcine and canine myocardium models?
The enlargement of lesion size during irrigated-tip radiofrequency ablation is due to the ability to use higher power levels, rather than a 'virtual electrode effect' from increased electrical conductivity.
Tasa de eventos absoluta: 361% vs 812%
valor p: p=<0.001
INTRODUCTION: Irrigated tip radiofrequency ablation of cardiac arrhythmias was developed to increase the size of the radiofrequency-induced lesion, since cooling of the electrode tip allows use of higher power settings. The purpose of this study was to determine if the increased lesion size during irrigated tip ablation is caused by the cooling effect solely or if increased electrical conductivity around the tip also contributes by increasing the "current-delivering size" of the tip: the so-called "virtual electrode effect." METHODS AND RESULTS: In vitro strips of left ventricular porcine myocardium and in vivo canine left ventricles were ablated. In vitro closed loop tip and showerhead irrigated tip catheters were compared. In vitro and in vivo showerhead tip catheters irrigated with solutions having different ionic content were compared. We found no difference in lesion size for closed loop and showerhead-type catheters (998 +/- 345 vs. 811 +/- 313 mm(3) during power-controlled ablation and 227 +/- 76 vs 318 +/- 127 mm(3) during temperature-controlled ablation). For irrigation with liquids having increasing ionic strength we found a decrease in lesion volume in vitro (361 +/- 249 vs. 812 +/- 229 mm(3) (P < 0.001) for power-controlled and 156 +/- 78 vs. 318 +/- 127 mm(3) (P < 0.05) for temperature-controlled ablation and nonsignificant differences in vivo. CONCLUSIONS: The mechanism for enlarging lesion size during radiofrequency irrigated-tip ablation is that higher power levels can be used. There is no virtual electrode effect caused by the highly conductive surroundings of the tip during irrigation. In vitro this effect is shown to be opposite: it decreases lesion size.
Petersen et al. (Tue,) conducted a other in Cardiac arrhythmias. Irrigation with liquids having increasing ionic strength vs. Standard/lower ionic strength irrigation was evaluated on Lesion volume in vitro (power-controlled ablation) (p=<0.001). Irrigation with liquids of increasing ionic strength decreased lesion volume in vitro (361 vs 812 mm3, P<0.001), indicating no virtual electrode effect contributes to lesion enlargement.
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