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Determination of single cryoablation outcome within 30 to 60 seconds of freezing based on ice impedance

BACKGROUND: A direct indicator of effective pulmonary vein isolation (PVI) based on early ice formation is presently lacking. OBJECTIVE: The initial impedance rise within 30 to 60 seconds (sec) of single cryoablation relating to ice on the distal surface of the cryoballoon could; predict effective P...

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Autores principales: Avitall, Boaz, Lizama, Ken S., Kalinski, Arthur, Coulombe, Nicolas, Laske, Timothy G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6852533/
https://www.ncbi.nlm.nih.gov/pubmed/31379020
http://dx.doi.org/10.1111/jce.14097
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author Avitall, Boaz
Lizama, Ken S.
Kalinski, Arthur
Coulombe, Nicolas
Laske, Timothy G.
author_facet Avitall, Boaz
Lizama, Ken S.
Kalinski, Arthur
Coulombe, Nicolas
Laske, Timothy G.
author_sort Avitall, Boaz
collection PubMed
description BACKGROUND: A direct indicator of effective pulmonary vein isolation (PVI) based on early ice formation is presently lacking. OBJECTIVE: The initial impedance rise within 30 to 60 seconds (sec) of single cryoablation relating to ice on the distal surface of the cryoballoon could; predict effective PVI with early termination, the need for prolonging the cryoablation, or failure to achieve effective ablation. METHODS: Impedance measurements were taken between two ring electrodes, at the anterior balloon surface and at the shaft behind the balloon. Ice covering the anterior ring leads to impedance rise. Single cryoablation (eight animals, 37 veins) was applied for 90 to 180 sec. Cryoapplication was terminated if the impedance reached ≥500 Ω. Impedance levels at ≤60 sec of cryoablation were divided into three groups based on the characteristics of the impedance rise. PVI was confirmed acutely and at 45 ± 9 days recovery by electrophysiology mapping and histopathology. RESULTS: At 60 sec of freezing, an impedance rise of 34.1 ± 15.2 Ω (13‐50 Ω) and slope of the impedance rise (measured during 15‐30 sec of cryoapplication) less than 1 Ω/sec resulted in failed PVI. An impedance rise of 104.4 ± 31.5 Ω (76‐159 Ω) and slope of 2 Ω/sec resulted in 100% PVIs. An impedance rise of 130.9 ± 137.8 Ω (40‐590 Ω) and slope of 10 Ω/sec resulted in 100% PVIs with early termination at 90 sec. CONCLUSION: The efficacy of single cryoablation can be defined within 30 to 60 sec based on ice impedance. Three unique impedance profiles described in this investigation are associated with the uniformity and thickness of the ice buildup on the anterior surface of the balloon. One cryoablation with an adequate impedance rise is needed for successful outcomes.
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spelling pubmed-68525332019-11-20 Determination of single cryoablation outcome within 30 to 60 seconds of freezing based on ice impedance Avitall, Boaz Lizama, Ken S. Kalinski, Arthur Coulombe, Nicolas Laske, Timothy G. J Cardiovasc Electrophysiol Original Articles BACKGROUND: A direct indicator of effective pulmonary vein isolation (PVI) based on early ice formation is presently lacking. OBJECTIVE: The initial impedance rise within 30 to 60 seconds (sec) of single cryoablation relating to ice on the distal surface of the cryoballoon could; predict effective PVI with early termination, the need for prolonging the cryoablation, or failure to achieve effective ablation. METHODS: Impedance measurements were taken between two ring electrodes, at the anterior balloon surface and at the shaft behind the balloon. Ice covering the anterior ring leads to impedance rise. Single cryoablation (eight animals, 37 veins) was applied for 90 to 180 sec. Cryoapplication was terminated if the impedance reached ≥500 Ω. Impedance levels at ≤60 sec of cryoablation were divided into three groups based on the characteristics of the impedance rise. PVI was confirmed acutely and at 45 ± 9 days recovery by electrophysiology mapping and histopathology. RESULTS: At 60 sec of freezing, an impedance rise of 34.1 ± 15.2 Ω (13‐50 Ω) and slope of the impedance rise (measured during 15‐30 sec of cryoapplication) less than 1 Ω/sec resulted in failed PVI. An impedance rise of 104.4 ± 31.5 Ω (76‐159 Ω) and slope of 2 Ω/sec resulted in 100% PVIs. An impedance rise of 130.9 ± 137.8 Ω (40‐590 Ω) and slope of 10 Ω/sec resulted in 100% PVIs with early termination at 90 sec. CONCLUSION: The efficacy of single cryoablation can be defined within 30 to 60 sec based on ice impedance. Three unique impedance profiles described in this investigation are associated with the uniformity and thickness of the ice buildup on the anterior surface of the balloon. One cryoablation with an adequate impedance rise is needed for successful outcomes. John Wiley and Sons Inc. 2019-08-19 2019-10 /pmc/articles/PMC6852533/ /pubmed/31379020 http://dx.doi.org/10.1111/jce.14097 Text en © 2019 The Authors. Journal of Cardiovascular Electrophysiology Published by Wiley Periodicals, Inc. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Avitall, Boaz
Lizama, Ken S.
Kalinski, Arthur
Coulombe, Nicolas
Laske, Timothy G.
Determination of single cryoablation outcome within 30 to 60 seconds of freezing based on ice impedance
title Determination of single cryoablation outcome within 30 to 60 seconds of freezing based on ice impedance
title_full Determination of single cryoablation outcome within 30 to 60 seconds of freezing based on ice impedance
title_fullStr Determination of single cryoablation outcome within 30 to 60 seconds of freezing based on ice impedance
title_full_unstemmed Determination of single cryoablation outcome within 30 to 60 seconds of freezing based on ice impedance
title_short Determination of single cryoablation outcome within 30 to 60 seconds of freezing based on ice impedance
title_sort determination of single cryoablation outcome within 30 to 60 seconds of freezing based on ice impedance
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6852533/
https://www.ncbi.nlm.nih.gov/pubmed/31379020
http://dx.doi.org/10.1111/jce.14097
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