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Diagnostic value of transmural perfusion ratio derived from dynamic CT-based myocardial perfusion imaging for the detection of haemodynamically relevant coronary artery stenosis

OBJECTIVES: To investigate the additional value of transmural perfusion ratio (TPR) in dynamic CT myocardial perfusion imaging for detection of haemodynamically significant coronary artery disease compared with fractional flow reserve (FFR). METHODS: Subjects with suspected or known coronary artery...

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Autores principales: Coenen, Adriaan, Lubbers, Marisa M., Kurata, Akira, Kono, Atsushi, Dedic, Admir, Chelu, Raluca G., Dijkshoorn, Marcel L., Rossi, Alexia, van Geuns, Robert-Jan M., Nieman, Koen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5408049/
https://www.ncbi.nlm.nih.gov/pubmed/27704198
http://dx.doi.org/10.1007/s00330-016-4567-0
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author Coenen, Adriaan
Lubbers, Marisa M.
Kurata, Akira
Kono, Atsushi
Dedic, Admir
Chelu, Raluca G.
Dijkshoorn, Marcel L.
Rossi, Alexia
van Geuns, Robert-Jan M.
Nieman, Koen
author_facet Coenen, Adriaan
Lubbers, Marisa M.
Kurata, Akira
Kono, Atsushi
Dedic, Admir
Chelu, Raluca G.
Dijkshoorn, Marcel L.
Rossi, Alexia
van Geuns, Robert-Jan M.
Nieman, Koen
author_sort Coenen, Adriaan
collection PubMed
description OBJECTIVES: To investigate the additional value of transmural perfusion ratio (TPR) in dynamic CT myocardial perfusion imaging for detection of haemodynamically significant coronary artery disease compared with fractional flow reserve (FFR). METHODS: Subjects with suspected or known coronary artery disease were prospectively included and underwent a CT-MPI examination. From the CT-MPI time-point data absolute myocardial blood flow (MBF) values were temporally resolved using a hybrid deconvolution model. An absolute MBF value was measured in the suspected perfusion defect. TPR was defined as the ratio between the subendocardial and subepicardial MBF. TPR and MBF results were compared with invasive FFR using a threshold of 0.80. RESULTS: Forty-three patients and 94 territories were analysed. The area under the receiver operator curve was larger for MBF (0.78) compared with TPR (0.65, P = 0.026). No significant differences were found in diagnostic classification between MBF and TPR with a territory-based accuracy of 77 % (67-86 %) for MBF compared with 70 % (60-81 %) for TPR. Combined MBF and TPR classification did not improve the diagnostic classification. CONCLUSIONS: Dynamic CT-MPI-based transmural perfusion ratio predicts haemodynamically significant coronary artery disease. However, diagnostic performance of dynamic CT-MPI-derived TPR is inferior to quantified MBF and has limited incremental value. KEY POINTS: • The transmural perfusion ratio from dynamic CT-MPI predicts functional obstructive coronary artery disease • Performance of the transmural perfusion ratio is inferior to quantified myocardial blood flow • The incremental value of the transmural perfusion ratio is limited
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spelling pubmed-54080492017-05-15 Diagnostic value of transmural perfusion ratio derived from dynamic CT-based myocardial perfusion imaging for the detection of haemodynamically relevant coronary artery stenosis Coenen, Adriaan Lubbers, Marisa M. Kurata, Akira Kono, Atsushi Dedic, Admir Chelu, Raluca G. Dijkshoorn, Marcel L. Rossi, Alexia van Geuns, Robert-Jan M. Nieman, Koen Eur Radiol Cardiac OBJECTIVES: To investigate the additional value of transmural perfusion ratio (TPR) in dynamic CT myocardial perfusion imaging for detection of haemodynamically significant coronary artery disease compared with fractional flow reserve (FFR). METHODS: Subjects with suspected or known coronary artery disease were prospectively included and underwent a CT-MPI examination. From the CT-MPI time-point data absolute myocardial blood flow (MBF) values were temporally resolved using a hybrid deconvolution model. An absolute MBF value was measured in the suspected perfusion defect. TPR was defined as the ratio between the subendocardial and subepicardial MBF. TPR and MBF results were compared with invasive FFR using a threshold of 0.80. RESULTS: Forty-three patients and 94 territories were analysed. The area under the receiver operator curve was larger for MBF (0.78) compared with TPR (0.65, P = 0.026). No significant differences were found in diagnostic classification between MBF and TPR with a territory-based accuracy of 77 % (67-86 %) for MBF compared with 70 % (60-81 %) for TPR. Combined MBF and TPR classification did not improve the diagnostic classification. CONCLUSIONS: Dynamic CT-MPI-based transmural perfusion ratio predicts haemodynamically significant coronary artery disease. However, diagnostic performance of dynamic CT-MPI-derived TPR is inferior to quantified MBF and has limited incremental value. KEY POINTS: • The transmural perfusion ratio from dynamic CT-MPI predicts functional obstructive coronary artery disease • Performance of the transmural perfusion ratio is inferior to quantified myocardial blood flow • The incremental value of the transmural perfusion ratio is limited Springer Berlin Heidelberg 2016-10-04 2017 /pmc/articles/PMC5408049/ /pubmed/27704198 http://dx.doi.org/10.1007/s00330-016-4567-0 Text en © The Author(s) 2016 Open Access This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Cardiac
Coenen, Adriaan
Lubbers, Marisa M.
Kurata, Akira
Kono, Atsushi
Dedic, Admir
Chelu, Raluca G.
Dijkshoorn, Marcel L.
Rossi, Alexia
van Geuns, Robert-Jan M.
Nieman, Koen
Diagnostic value of transmural perfusion ratio derived from dynamic CT-based myocardial perfusion imaging for the detection of haemodynamically relevant coronary artery stenosis
title Diagnostic value of transmural perfusion ratio derived from dynamic CT-based myocardial perfusion imaging for the detection of haemodynamically relevant coronary artery stenosis
title_full Diagnostic value of transmural perfusion ratio derived from dynamic CT-based myocardial perfusion imaging for the detection of haemodynamically relevant coronary artery stenosis
title_fullStr Diagnostic value of transmural perfusion ratio derived from dynamic CT-based myocardial perfusion imaging for the detection of haemodynamically relevant coronary artery stenosis
title_full_unstemmed Diagnostic value of transmural perfusion ratio derived from dynamic CT-based myocardial perfusion imaging for the detection of haemodynamically relevant coronary artery stenosis
title_short Diagnostic value of transmural perfusion ratio derived from dynamic CT-based myocardial perfusion imaging for the detection of haemodynamically relevant coronary artery stenosis
title_sort diagnostic value of transmural perfusion ratio derived from dynamic ct-based myocardial perfusion imaging for the detection of haemodynamically relevant coronary artery stenosis
topic Cardiac
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5408049/
https://www.ncbi.nlm.nih.gov/pubmed/27704198
http://dx.doi.org/10.1007/s00330-016-4567-0
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