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Evaluation of the use of unipolar voltage amplitudes for detection of myocardial scar assessed by cardiac magnetic resonance imaging in heart failure patients

BACKGROUND: Validation of voltage-based scar delineation has been limited to small populations using mainly endocardial measurements. The aim of this study is to compare unipolar voltage amplitudes (UnipV) with scar on delayed enhancement cardiac magnetic resonance imaging (DE-CMR). METHODS: Heart f...

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Autores principales: Nguyên, Uyên Châu, Maffessanti, Francesco, Mafi-Rad, Masih, Conte, Giulio, Zeemering, Stef, Regoli, François, Caputo, Maria Luce, van Stipdonk, Antonius M. W., Bekkers, Sebastiaan C. A. M., Suerder, Daniel, Moccetti, Tiziano, Krause, Rolf, Prinzen, Frits W., Vernooy, Kevin, Auricchio, Angelo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5498065/
https://www.ncbi.nlm.nih.gov/pubmed/28678875
http://dx.doi.org/10.1371/journal.pone.0180637
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author Nguyên, Uyên Châu
Maffessanti, Francesco
Mafi-Rad, Masih
Conte, Giulio
Zeemering, Stef
Regoli, François
Caputo, Maria Luce
van Stipdonk, Antonius M. W.
Bekkers, Sebastiaan C. A. M.
Suerder, Daniel
Moccetti, Tiziano
Krause, Rolf
Prinzen, Frits W.
Vernooy, Kevin
Auricchio, Angelo
author_facet Nguyên, Uyên Châu
Maffessanti, Francesco
Mafi-Rad, Masih
Conte, Giulio
Zeemering, Stef
Regoli, François
Caputo, Maria Luce
van Stipdonk, Antonius M. W.
Bekkers, Sebastiaan C. A. M.
Suerder, Daniel
Moccetti, Tiziano
Krause, Rolf
Prinzen, Frits W.
Vernooy, Kevin
Auricchio, Angelo
author_sort Nguyên, Uyên Châu
collection PubMed
description BACKGROUND: Validation of voltage-based scar delineation has been limited to small populations using mainly endocardial measurements. The aim of this study is to compare unipolar voltage amplitudes (UnipV) with scar on delayed enhancement cardiac magnetic resonance imaging (DE-CMR). METHODS: Heart failure patients who underwent DE-CMR and electro-anatomic mapping were included. Thirty-three endocardial mapped patients and 27 epicardial mapped patients were investigated. UnipV were computed peak-to-peak. Electrograms were matched with scar extent of the corresponding DE-CMR segment using a 16-segment/slice model. Non-scar was defined as 0% scar, while scar was defined as 1–100% scar extent. RESULTS: UnipVs were moderately lower in scar than in non-scar (endocardial 7.1 [4.6–10.6] vs. 10.3 [7.4–14.2] mV; epicardial 6.7 [3.6–10.5] vs. 7.8 [4.2–12.3] mV; both p<0.001). The correlation between UnipV and scar extent was moderate for endocardial (R = -0.33, p<0.001), and poor for epicardial measurements (R = -0.07, p<0.001). Endocardial UnipV predicted segments with >25%, >50% and >75% scar extent with AUCs of 0.72, 0.73 and 0.76, respectively, while epicardial UnipV were poor scar predictors, independent of scar burden (AUC = 0.47–0.56). UnipV in non-scar varied widely between patients (p<0.001) and were lower in scar compared to non-scar in only 9/22 (41%) endocardial mapped patients and 4/19 (21%) epicardial mapped patients with scar. CONCLUSION: UnipV are slightly lower in scar compared to non-scar. However, significant UnipV differences between and within patients and large overlap between non-scar and scar limits the reliability of accurate scar assessment, especially in epicardial measurements and in segments with less than 75% scar extent.
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spelling pubmed-54980652017-07-25 Evaluation of the use of unipolar voltage amplitudes for detection of myocardial scar assessed by cardiac magnetic resonance imaging in heart failure patients Nguyên, Uyên Châu Maffessanti, Francesco Mafi-Rad, Masih Conte, Giulio Zeemering, Stef Regoli, François Caputo, Maria Luce van Stipdonk, Antonius M. W. Bekkers, Sebastiaan C. A. M. Suerder, Daniel Moccetti, Tiziano Krause, Rolf Prinzen, Frits W. Vernooy, Kevin Auricchio, Angelo PLoS One Research Article BACKGROUND: Validation of voltage-based scar delineation has been limited to small populations using mainly endocardial measurements. The aim of this study is to compare unipolar voltage amplitudes (UnipV) with scar on delayed enhancement cardiac magnetic resonance imaging (DE-CMR). METHODS: Heart failure patients who underwent DE-CMR and electro-anatomic mapping were included. Thirty-three endocardial mapped patients and 27 epicardial mapped patients were investigated. UnipV were computed peak-to-peak. Electrograms were matched with scar extent of the corresponding DE-CMR segment using a 16-segment/slice model. Non-scar was defined as 0% scar, while scar was defined as 1–100% scar extent. RESULTS: UnipVs were moderately lower in scar than in non-scar (endocardial 7.1 [4.6–10.6] vs. 10.3 [7.4–14.2] mV; epicardial 6.7 [3.6–10.5] vs. 7.8 [4.2–12.3] mV; both p<0.001). The correlation between UnipV and scar extent was moderate for endocardial (R = -0.33, p<0.001), and poor for epicardial measurements (R = -0.07, p<0.001). Endocardial UnipV predicted segments with >25%, >50% and >75% scar extent with AUCs of 0.72, 0.73 and 0.76, respectively, while epicardial UnipV were poor scar predictors, independent of scar burden (AUC = 0.47–0.56). UnipV in non-scar varied widely between patients (p<0.001) and were lower in scar compared to non-scar in only 9/22 (41%) endocardial mapped patients and 4/19 (21%) epicardial mapped patients with scar. CONCLUSION: UnipV are slightly lower in scar compared to non-scar. However, significant UnipV differences between and within patients and large overlap between non-scar and scar limits the reliability of accurate scar assessment, especially in epicardial measurements and in segments with less than 75% scar extent. Public Library of Science 2017-07-05 /pmc/articles/PMC5498065/ /pubmed/28678875 http://dx.doi.org/10.1371/journal.pone.0180637 Text en © 2017 Nguyên et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Nguyên, Uyên Châu
Maffessanti, Francesco
Mafi-Rad, Masih
Conte, Giulio
Zeemering, Stef
Regoli, François
Caputo, Maria Luce
van Stipdonk, Antonius M. W.
Bekkers, Sebastiaan C. A. M.
Suerder, Daniel
Moccetti, Tiziano
Krause, Rolf
Prinzen, Frits W.
Vernooy, Kevin
Auricchio, Angelo
Evaluation of the use of unipolar voltage amplitudes for detection of myocardial scar assessed by cardiac magnetic resonance imaging in heart failure patients
title Evaluation of the use of unipolar voltage amplitudes for detection of myocardial scar assessed by cardiac magnetic resonance imaging in heart failure patients
title_full Evaluation of the use of unipolar voltage amplitudes for detection of myocardial scar assessed by cardiac magnetic resonance imaging in heart failure patients
title_fullStr Evaluation of the use of unipolar voltage amplitudes for detection of myocardial scar assessed by cardiac magnetic resonance imaging in heart failure patients
title_full_unstemmed Evaluation of the use of unipolar voltage amplitudes for detection of myocardial scar assessed by cardiac magnetic resonance imaging in heart failure patients
title_short Evaluation of the use of unipolar voltage amplitudes for detection of myocardial scar assessed by cardiac magnetic resonance imaging in heart failure patients
title_sort evaluation of the use of unipolar voltage amplitudes for detection of myocardial scar assessed by cardiac magnetic resonance imaging in heart failure patients
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5498065/
https://www.ncbi.nlm.nih.gov/pubmed/28678875
http://dx.doi.org/10.1371/journal.pone.0180637
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