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Quantitative myocardial blood flow imaging with integrated time-of-flight PET-MR

BACKGROUND: The use of integrated PET-MR offers new opportunities for comprehensive assessment of cardiac morphology and function. However, little is known on the quantitative accuracy of cardiac PET imaging with integrated time-of-flight PET-MR. The aim of the present work was to validate the GE Si...

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Autores principales: Kero, Tanja, Nordström, Jonny, Harms, Hendrik J., Sörensen, Jens, Ahlström, Håkan, Lubberink, Mark
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5216001/
https://www.ncbi.nlm.nih.gov/pubmed/28058674
http://dx.doi.org/10.1186/s40658-016-0171-2
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author Kero, Tanja
Nordström, Jonny
Harms, Hendrik J.
Sörensen, Jens
Ahlström, Håkan
Lubberink, Mark
author_facet Kero, Tanja
Nordström, Jonny
Harms, Hendrik J.
Sörensen, Jens
Ahlström, Håkan
Lubberink, Mark
author_sort Kero, Tanja
collection PubMed
description BACKGROUND: The use of integrated PET-MR offers new opportunities for comprehensive assessment of cardiac morphology and function. However, little is known on the quantitative accuracy of cardiac PET imaging with integrated time-of-flight PET-MR. The aim of the present work was to validate the GE Signa PET-MR scanner for quantitative cardiac PET perfusion imaging. Eleven patients (nine male; mean age 59 years; range 46–74 years) with known or suspected coronary artery disease underwent (15)O-water PET scans at rest and during adenosine-induced hyperaemia on a GE Discovery ST PET-CT and a GE Signa PET-MR scanner. PET-MR images were reconstructed using settings recommended by the manufacturer, including time-of-flight (TOF). Data were analysed semi-automatically using Cardiac VUer software, resulting in both parametric myocardial blood flow (MBF) images and segment-based MBF values. Correlation and agreement between PET-CT-based and PET-MR-based MBF values for all three coronary artery territories were assessed using regression analysis and intra-class correlation coefficients (ICC). In addition to the cardiac PET-MR reconstruction protocol as recommended by the manufacturer, comparisons were made using a PET-CT resolution-matched reconstruction protocol both without and with TOF to assess the effect of time-of-flight and reconstruction parameters on quantitative MBF values. RESULTS: Stress MBF data from one patient was excluded due to movement during the PET-CT scanning. Mean MBF values at rest and stress were (0.92 ± 0.12) and (2.74 ± 1.37) mL/g/min for PET-CT and (0.90 ± 0.23) and (2.65 ± 1.15) mL/g/min for PET-MR (p = 0.33 and p = 0.74). ICC between PET-CT-based and PET-MR-based regional MBF was 0.98. Image quality was improved with PET-MR as compared to PET-CT. ICC between PET-MR-based regional MBF with and without TOF and using different filter and reconstruction settings was 1.00. CONCLUSIONS: PET-MR-based MBF values correlated well with PET-CT-based MBF values and the parametric PET-MR images were excellent. TOF and reconstruction settings had little impact on MBF values.
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spelling pubmed-52160012017-01-18 Quantitative myocardial blood flow imaging with integrated time-of-flight PET-MR Kero, Tanja Nordström, Jonny Harms, Hendrik J. Sörensen, Jens Ahlström, Håkan Lubberink, Mark EJNMMI Phys Original Research BACKGROUND: The use of integrated PET-MR offers new opportunities for comprehensive assessment of cardiac morphology and function. However, little is known on the quantitative accuracy of cardiac PET imaging with integrated time-of-flight PET-MR. The aim of the present work was to validate the GE Signa PET-MR scanner for quantitative cardiac PET perfusion imaging. Eleven patients (nine male; mean age 59 years; range 46–74 years) with known or suspected coronary artery disease underwent (15)O-water PET scans at rest and during adenosine-induced hyperaemia on a GE Discovery ST PET-CT and a GE Signa PET-MR scanner. PET-MR images were reconstructed using settings recommended by the manufacturer, including time-of-flight (TOF). Data were analysed semi-automatically using Cardiac VUer software, resulting in both parametric myocardial blood flow (MBF) images and segment-based MBF values. Correlation and agreement between PET-CT-based and PET-MR-based MBF values for all three coronary artery territories were assessed using regression analysis and intra-class correlation coefficients (ICC). In addition to the cardiac PET-MR reconstruction protocol as recommended by the manufacturer, comparisons were made using a PET-CT resolution-matched reconstruction protocol both without and with TOF to assess the effect of time-of-flight and reconstruction parameters on quantitative MBF values. RESULTS: Stress MBF data from one patient was excluded due to movement during the PET-CT scanning. Mean MBF values at rest and stress were (0.92 ± 0.12) and (2.74 ± 1.37) mL/g/min for PET-CT and (0.90 ± 0.23) and (2.65 ± 1.15) mL/g/min for PET-MR (p = 0.33 and p = 0.74). ICC between PET-CT-based and PET-MR-based regional MBF was 0.98. Image quality was improved with PET-MR as compared to PET-CT. ICC between PET-MR-based regional MBF with and without TOF and using different filter and reconstruction settings was 1.00. CONCLUSIONS: PET-MR-based MBF values correlated well with PET-CT-based MBF values and the parametric PET-MR images were excellent. TOF and reconstruction settings had little impact on MBF values. Springer International Publishing 2017-01-06 /pmc/articles/PMC5216001/ /pubmed/28058674 http://dx.doi.org/10.1186/s40658-016-0171-2 Text en © The Author(s). 2017 Open AccessThis 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 Original Research
Kero, Tanja
Nordström, Jonny
Harms, Hendrik J.
Sörensen, Jens
Ahlström, Håkan
Lubberink, Mark
Quantitative myocardial blood flow imaging with integrated time-of-flight PET-MR
title Quantitative myocardial blood flow imaging with integrated time-of-flight PET-MR
title_full Quantitative myocardial blood flow imaging with integrated time-of-flight PET-MR
title_fullStr Quantitative myocardial blood flow imaging with integrated time-of-flight PET-MR
title_full_unstemmed Quantitative myocardial blood flow imaging with integrated time-of-flight PET-MR
title_short Quantitative myocardial blood flow imaging with integrated time-of-flight PET-MR
title_sort quantitative myocardial blood flow imaging with integrated time-of-flight pet-mr
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5216001/
https://www.ncbi.nlm.nih.gov/pubmed/28058674
http://dx.doi.org/10.1186/s40658-016-0171-2
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