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October 29, 2018Heart Rhythm216 citationsOpen Access

Intracardiac pulsed field ablation: Proof of feasibility in a chronic porcine model

MSMark T. StewartDHDavid E. HainesAVAtul Verma

Structured PICO

Does pulsed field ablation improve lesion formation and reduce nontargeted tissue injury compared to radiofrequency ablation in a porcine model?

P
Population
6 pigs (chronic porcine model)
I
Intervention
Pulsed field ablation (PFA) delivered from a circular pulmonary vein ablation catheter to atrial endocardial sites
C
Comparator
Duty-cycled radiofrequency ablation (RFA) delivered to atrial endocardial sites
O
Outcome
Acute electrical effects (electrogram amplitude reduction, bipolar pace capture loss), 2-week lesion formation, and injury to nontargeted tissuessurrogate

Intracardiac pulsed field ablation is feasible and creates consistent transmural fibrotic lesions with acute electrical effects and less nontargeted tissue injury compared to radiofrequency ablation in a porcine model.

Abstract

BACKGROUND: Radiofrequency (RF) has become an accepted energy source for myocardial ablation but may result in discontinuous lesions and nontargeted tissue injury. We examined the feasibility and safety of lesion formation using high-amplitude, bipolar pulsed electric fields delivered from a multielectrode array catheter. OBJECTIVE: The purpose of this study was to compare duty-cycled radiofrequency ablation (RFA) to pulsed field ablation (PFA) in terms of acute electrical effects, 2-week lesion formation, and injury to nontargeted tissues. METHODS: Intracardiac ablations were performed in 6 pigs using a circular pulmonary vein ablation catheter. The energy source for ablation delivery was randomized to deliver either PFA or RFA to 3 atrial endocardial sites. Bipolar pace capture and electrogram amplitude measurements were recorded at each site. Histopathology and necropsies were performed after 2 weeks. RESULTS: The circular pulmonary vein ablation catheter was used to deliver pulsed electric fields to produce cardiac lesions without skeletal muscle stimulation. Evaluating all ablations in each site, electrogram amplitudes were reduced to <0.5 mV in 67.5% of PFA vs 27.0% of RFA deliveries (P <.001). Bipolar cardiac capture was lost after 100% vs 92.0% of PFA vs RFA (P = .005). At 2 weeks, PFA resulted in consistent transmural and homogeneous replacement fibrosis devoid of lingering myocyte "sequesters." RFA lesions showed a stronger inflammatory response extending to the epicardial fat, arterial injury, and thrombosis. Neither PFA nor RFA lesions showed endocardial thrombus. CONCLUSION: Intracardiac PFA can be feasibly delivered from a circular catheter to create fibrotic lesions that have acute electrical effects, without injury to nontargeted tissue.

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Cite This Study

Stewart et al. (2018) studied this question.

synapsesocial.com/papers/6a063580ac5820011f10a0e8https://doi.org/10.1016/j.hrthm.2018.10.030
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