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J Cardiovasc Electrophysiol ; 27(1): 102-9, 2016 Jan.
Article in English | MEDLINE | ID: mdl-26359632

ABSTRACT

INTRODUCTION: Next-generation catheters have been developed to reduce irrigation volume and preserve power delivery. A novel design uses a flexible tip (FlexAbility™ catheter) that directs flow to the contact surface. Because of recent safety issues with new catheters, we undertook a study in a canine heart with 3 irrigated catheters to compare efficacy and safety. METHODS: Endocardial ablation was performed by 2 independent operators in 12 anesthetized canines with the FlexAbility (St. Jude Medical), ThermoCool™ (Biosense Webster), and ThermoCool™ SF (Biosense Webster) catheters. Endocardial RF lesions were delivered with each catheter in all 4 chambers of each animal for 52 ± 16 seconds. Each chamber was randomized to receive ablation from one catheter with recording of safety events. Cardiac pathology was performed with triphenyl tetrazolium chloride stain. RESULTS: Average lesion dimensions were not significantly different between the 3 catheters. FlexAbility™ demonstrated a lower risk of steam pops relative to ThermoCool SF (P-value = 0.013) despite equal mean power and radiofrequency time. High-temperature generator shutdowns were observed with FlexAbility™ but not with either ThermoCool catheter. High-temperature shutdowns were associated with larger average impedance drops (28.5 ohms vs. 19 ohms) without compromising lesion size. CONCLUSIONS: The FlexAbility™ tip is safe and effective with no significant difference in lesion sizes compared to both standard ThermoCool and ThermoCool SF. FlexAbility™ has a significantly lower risk of steam pops compared to ThermoCool SF in a beating heart as defined predominantly by an abrupt rise of impedance.


Subject(s)
Cardiac Catheterization/instrumentation , Cardiac Catheters , Catheter Ablation/instrumentation , Endocardium/surgery , Therapeutic Irrigation/instrumentation , Animals , Cardiac Catheterization/adverse effects , Catheter Ablation/adverse effects , Dogs , Electric Impedance , Endocardium/pathology , Equipment Design , Hot Temperature , Materials Testing , Models, Animal , Therapeutic Irrigation/adverse effects
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