Establishing Safe Working Parameters for Radiofrequency Ablation In Vitro Using Acoustic Sensing, Probability Mapping, and Catheter Contact Angle.

Acoustic sensing cardiac arrhythmias cardiovascular diseases catheter ablation heart diseases steam pop

Journal

The Journal of innovations in cardiac rhythm management
ISSN: 2156-3977
Titre abrégé: J Innov Card Rhythm Manag
Pays: United States
ID NLM: 101589872

Informations de publication

Date de publication:
Jul 2022
Historique:
received: 10 11 2021
accepted: 11 01 2022
entrez: 11 8 2022
pubmed: 12 8 2022
medline: 12 8 2022
Statut: epublish

Résumé

Surgical quality and safety in radiofrequency catheter ablation (RFA) are critical in arrhythmia procedures. Steam pops, in particular, are potentially catastrophic events that must be avoided; otherwise, they may cause significant damage to the myocardium. This study aimed to evaluate the effect of applied RFA inclination angle and tissue contact parameters on the ablated volume and "steam pop" formation. An ex vivo model consisting of a viable ovine myocardium, an ablation catheter, and a circulating warmed 0.9% NaCl saline solution was used. RFA was conducted while controlling for contact force, electrical power, ablation time, flow rate, irrigation, and catheter tip angle. Irrigation was delivered to the catheter tip manually when indicated. Acoustic transducers were included in the setup to detect preliminary acoustic signals. A total dataset of 567 measurements was taken. Benign precursory signals (hissing and lower-intensity "pops") were detected by acoustic sensors preceding the occurrence of "steam pops." Furthermore, a Pearson coefficient of

Identifiants

pubmed: 35949646
doi: 10.19102/icrm.2022.130703
pii: icrm.2022.130703
pmc: PMC9359427
doi:

Types de publication

Journal Article

Langues

eng

Pagination

5087-5099

Informations de copyright

Copyright: © 2022 Innovations in Cardiac Rhythm Management.

Déclaration de conflit d'intérêts

The authors report no conflicts of interest for the published content. Funding was provided through University Research Board (URB) grants and a Medical Practice Plan (MPP) grant by the American University of Beirut and the American University of Beirut Medical Center. This research work was presented at the 2019 European Society of Cardiology annual scientific meeting and the 2017 Heart Rhythm Society annual scientific meeting. *These authors contributed equally.

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Auteurs

Wadih El Khoury (W)

Department of Mechanical Engineering, Faculty of Engineering, American University of Beirut, Beirut, Lebanon.
Faculty of Medicine, American University of Beirut, Beirut, Lebanon.

Joseph Al Aaraj (J)

Department of Mechanical Engineering, Faculty of Engineering, American University of Beirut, Beirut, Lebanon.

Anthony Gebran (A)

Faculty of Medicine, American University of Beirut, Beirut, Lebanon.

Marwan Hajjar (M)

Faculty of Medicine, American University of Beirut, Beirut, Lebanon.

Rawad Abbas (R)

Faculty of Medicine, American University of Beirut, Beirut, Lebanon.

Hussein Daoud (H)

Department of Mechanical Engineering, Faculty of Engineering, American University of Beirut, Beirut, Lebanon.

Maurice Khoury (M)

Faculty of Medicine, American University of Beirut, Beirut, Lebanon.
Department of Internal Medicine/Cardiology Division, Faculty of Medicine, American University of Beirut, Beirut, Lebanon.

Bernard Abi-Saleh (B)

Faculty of Medicine, American University of Beirut, Beirut, Lebanon.
Department of Internal Medicine/Cardiology Division, Faculty of Medicine, American University of Beirut, Beirut, Lebanon.

Ghanem F Oweis (GF)

Department of Mechanical Engineering, Faculty of Engineering, American University of Beirut, Beirut, Lebanon.

Marwan M Refaat (MM)

Faculty of Medicine, American University of Beirut, Beirut, Lebanon.
Department of Internal Medicine/Cardiology Division, Faculty of Medicine, American University of Beirut, Beirut, Lebanon.

Classifications MeSH