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Novel Method to Detect Pitfalls of Intracoronary Pressure Measurements by Pressure Waveform Analysis

Potential pitfalls of fractional flow reserve (FFR) measurements are well-known drawbacks of invasive physiology measurement, e.g., significant drift of the distal pressure trace may lead to the misclassification of stenoses. Thus, a simultaneous waveform analysis of the pressure traces may be of he...

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Autores principales: Jenei, Csaba, Tar, Balázs, Ágoston, András, Sánta, Péter, Sánta, János, Csippa, Benjámin, Wéber, Richárd, Gyürki, Dániel, Halász, Gábor, Szabó, Gábor Tamás, Czuriga, Dániel, Kőszegi, Zsolt
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9784866/
https://www.ncbi.nlm.nih.gov/pubmed/36556256
http://dx.doi.org/10.3390/jpm12122035
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author Jenei, Csaba
Tar, Balázs
Ágoston, András
Sánta, Péter
Sánta, János
Csippa, Benjámin
Wéber, Richárd
Gyürki, Dániel
Halász, Gábor
Szabó, Gábor Tamás
Czuriga, Dániel
Kőszegi, Zsolt
author_facet Jenei, Csaba
Tar, Balázs
Ágoston, András
Sánta, Péter
Sánta, János
Csippa, Benjámin
Wéber, Richárd
Gyürki, Dániel
Halász, Gábor
Szabó, Gábor Tamás
Czuriga, Dániel
Kőszegi, Zsolt
author_sort Jenei, Csaba
collection PubMed
description Potential pitfalls of fractional flow reserve (FFR) measurements are well-known drawbacks of invasive physiology measurement, e.g., significant drift of the distal pressure trace may lead to the misclassification of stenoses. Thus, a simultaneous waveform analysis of the pressure traces may be of help in the quality control of these measurements by online detection of such artefacts as the drift or the wedging of the catheter. In the current study, we analysed the intracoronary pressure waveform with a dedicated program. In 130 patients, 232 FFR measurements were performed and derivative pressure curves were calculated. Local amplitude around the dicrotic notch was calculated from the distal intracoronary pressure traces (δdP(n)/dt). A unidimensional arterial network model of blood flow was employed to simulate the intracoronary pressure traces at different flow rates. There was a strong correlation between δdP(n)/dt values measured during hyperaemia and FFR (r = 0.88). Diagnostic performance of distal δdP(n)/dt ≤ 3.52 for the prediction of FFR ≤ 0.80 was 91%. The correlation between the pressure gradient and the corresponding δdP(n)/dt values obtained from all measurements independently of the physiological phase was also significant (r = 0.80). During simulation, the effect of flow rate on δdP(n)/dt further supported the close correlation between the pressure ratios and δdP(n)/dt. Discordance between the FFR and the δdP(n)/dt can be used as an indicator of possible technical problems of FFR measurements. Hence, an online calculation of the δdP(n)/dt may be helpful in avoiding some pitfalls of FFR evaluation.
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spelling pubmed-97848662022-12-24 Novel Method to Detect Pitfalls of Intracoronary Pressure Measurements by Pressure Waveform Analysis Jenei, Csaba Tar, Balázs Ágoston, András Sánta, Péter Sánta, János Csippa, Benjámin Wéber, Richárd Gyürki, Dániel Halász, Gábor Szabó, Gábor Tamás Czuriga, Dániel Kőszegi, Zsolt J Pers Med Article Potential pitfalls of fractional flow reserve (FFR) measurements are well-known drawbacks of invasive physiology measurement, e.g., significant drift of the distal pressure trace may lead to the misclassification of stenoses. Thus, a simultaneous waveform analysis of the pressure traces may be of help in the quality control of these measurements by online detection of such artefacts as the drift or the wedging of the catheter. In the current study, we analysed the intracoronary pressure waveform with a dedicated program. In 130 patients, 232 FFR measurements were performed and derivative pressure curves were calculated. Local amplitude around the dicrotic notch was calculated from the distal intracoronary pressure traces (δdP(n)/dt). A unidimensional arterial network model of blood flow was employed to simulate the intracoronary pressure traces at different flow rates. There was a strong correlation between δdP(n)/dt values measured during hyperaemia and FFR (r = 0.88). Diagnostic performance of distal δdP(n)/dt ≤ 3.52 for the prediction of FFR ≤ 0.80 was 91%. The correlation between the pressure gradient and the corresponding δdP(n)/dt values obtained from all measurements independently of the physiological phase was also significant (r = 0.80). During simulation, the effect of flow rate on δdP(n)/dt further supported the close correlation between the pressure ratios and δdP(n)/dt. Discordance between the FFR and the δdP(n)/dt can be used as an indicator of possible technical problems of FFR measurements. Hence, an online calculation of the δdP(n)/dt may be helpful in avoiding some pitfalls of FFR evaluation. MDPI 2022-12-08 /pmc/articles/PMC9784866/ /pubmed/36556256 http://dx.doi.org/10.3390/jpm12122035 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jenei, Csaba
Tar, Balázs
Ágoston, András
Sánta, Péter
Sánta, János
Csippa, Benjámin
Wéber, Richárd
Gyürki, Dániel
Halász, Gábor
Szabó, Gábor Tamás
Czuriga, Dániel
Kőszegi, Zsolt
Novel Method to Detect Pitfalls of Intracoronary Pressure Measurements by Pressure Waveform Analysis
title Novel Method to Detect Pitfalls of Intracoronary Pressure Measurements by Pressure Waveform Analysis
title_full Novel Method to Detect Pitfalls of Intracoronary Pressure Measurements by Pressure Waveform Analysis
title_fullStr Novel Method to Detect Pitfalls of Intracoronary Pressure Measurements by Pressure Waveform Analysis
title_full_unstemmed Novel Method to Detect Pitfalls of Intracoronary Pressure Measurements by Pressure Waveform Analysis
title_short Novel Method to Detect Pitfalls of Intracoronary Pressure Measurements by Pressure Waveform Analysis
title_sort novel method to detect pitfalls of intracoronary pressure measurements by pressure waveform analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9784866/
https://www.ncbi.nlm.nih.gov/pubmed/36556256
http://dx.doi.org/10.3390/jpm12122035
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