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Reproducible quantification of cardiac sympathetic innervation using graphical modeling of carbon-11-meta-hydroxyephedrine kinetics with dynamic PET-CT imaging
BACKGROUND: Graphical methods of radiotracer kinetic modeling in PET are ideal for parametric imaging and data quality assurance but can suffer from noise bias. This study compared the Logan and Multilinear Analysis-1 (MA1) graphical models to the standard one-tissue-compartment (1TC) model, includi...
Autores principales: | , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Springer Berlin Heidelberg
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6054601/ https://www.ncbi.nlm.nih.gov/pubmed/30030665 http://dx.doi.org/10.1186/s13550-018-0421-5 |
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author | Wang, Tong Wu, Kai Yi Miner, Robert C. Renaud, Jennifer M. Beanlands, Rob S. B. deKemp, Robert A. |
author_facet | Wang, Tong Wu, Kai Yi Miner, Robert C. Renaud, Jennifer M. Beanlands, Rob S. B. deKemp, Robert A. |
author_sort | Wang, Tong |
collection | PubMed |
description | BACKGROUND: Graphical methods of radiotracer kinetic modeling in PET are ideal for parametric imaging and data quality assurance but can suffer from noise bias. This study compared the Logan and Multilinear Analysis-1 (MA1) graphical models to the standard one-tissue-compartment (1TC) model, including correction for partial-volume effects, in dynamic PET-CT studies of myocardial sympathetic innervation in the left ventricle (LV) using [(11)C]HED. METHODS: Test and retest [(11)C]HED PET imaging (47 ± 22 days apart) was performed in 18 subjects with heart failure symptoms. Myocardial tissue volume of distribution (V(T)) was estimated using Logan and MA1 graphical methods and compared to the 1TC standard model values using intraclass correlation (ICC) and Bland-Altman analysis of the non-parametric reproducibility coefficient (NPC). RESULTS: A modeling start-time of t* = 5 min gave the best fit for both Logan and MA1 (R(2) = 0.95) methods. Logan slightly underestimated V(T) relative to 1TC (p = 0.002), whereas MA1 did not (p = 0.96). Both the MA1 and Logan models exhibited good-to-excellent agreement with the 1TC (MA1-1TC ICC = 0.96; Logan-1TC ICC = 0.93) with no significant differences in NPC between the two comparisons (p = 0.92). All methods exhibited good-to-excellent test-retest repeatability with no significant differences in NPC (p = 0.57). CONCLUSIONS: Logan and MA1 models exhibited similar agreement and variability compared to the 1TC for modeling of [(11)C]HED kinetics. Using t* = 5 min and partial-volume correction produced accurate estimates of V(T) as an index of myocardial sympathetic innervation. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13550-018-0421-5) contains supplementary material, which is available to authorized users. |
format | Online Article Text |
id | pubmed-6054601 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Springer Berlin Heidelberg |
record_format | MEDLINE/PubMed |
spelling | pubmed-60546012018-08-07 Reproducible quantification of cardiac sympathetic innervation using graphical modeling of carbon-11-meta-hydroxyephedrine kinetics with dynamic PET-CT imaging Wang, Tong Wu, Kai Yi Miner, Robert C. Renaud, Jennifer M. Beanlands, Rob S. B. deKemp, Robert A. EJNMMI Res Original Research BACKGROUND: Graphical methods of radiotracer kinetic modeling in PET are ideal for parametric imaging and data quality assurance but can suffer from noise bias. This study compared the Logan and Multilinear Analysis-1 (MA1) graphical models to the standard one-tissue-compartment (1TC) model, including correction for partial-volume effects, in dynamic PET-CT studies of myocardial sympathetic innervation in the left ventricle (LV) using [(11)C]HED. METHODS: Test and retest [(11)C]HED PET imaging (47 ± 22 days apart) was performed in 18 subjects with heart failure symptoms. Myocardial tissue volume of distribution (V(T)) was estimated using Logan and MA1 graphical methods and compared to the 1TC standard model values using intraclass correlation (ICC) and Bland-Altman analysis of the non-parametric reproducibility coefficient (NPC). RESULTS: A modeling start-time of t* = 5 min gave the best fit for both Logan and MA1 (R(2) = 0.95) methods. Logan slightly underestimated V(T) relative to 1TC (p = 0.002), whereas MA1 did not (p = 0.96). Both the MA1 and Logan models exhibited good-to-excellent agreement with the 1TC (MA1-1TC ICC = 0.96; Logan-1TC ICC = 0.93) with no significant differences in NPC between the two comparisons (p = 0.92). All methods exhibited good-to-excellent test-retest repeatability with no significant differences in NPC (p = 0.57). CONCLUSIONS: Logan and MA1 models exhibited similar agreement and variability compared to the 1TC for modeling of [(11)C]HED kinetics. Using t* = 5 min and partial-volume correction produced accurate estimates of V(T) as an index of myocardial sympathetic innervation. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13550-018-0421-5) contains supplementary material, which is available to authorized users. Springer Berlin Heidelberg 2018-07-20 /pmc/articles/PMC6054601/ /pubmed/30030665 http://dx.doi.org/10.1186/s13550-018-0421-5 Text en © The Author(s). 2018 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 Wang, Tong Wu, Kai Yi Miner, Robert C. Renaud, Jennifer M. Beanlands, Rob S. B. deKemp, Robert A. Reproducible quantification of cardiac sympathetic innervation using graphical modeling of carbon-11-meta-hydroxyephedrine kinetics with dynamic PET-CT imaging |
title | Reproducible quantification of cardiac sympathetic innervation using graphical modeling of carbon-11-meta-hydroxyephedrine kinetics with dynamic PET-CT imaging |
title_full | Reproducible quantification of cardiac sympathetic innervation using graphical modeling of carbon-11-meta-hydroxyephedrine kinetics with dynamic PET-CT imaging |
title_fullStr | Reproducible quantification of cardiac sympathetic innervation using graphical modeling of carbon-11-meta-hydroxyephedrine kinetics with dynamic PET-CT imaging |
title_full_unstemmed | Reproducible quantification of cardiac sympathetic innervation using graphical modeling of carbon-11-meta-hydroxyephedrine kinetics with dynamic PET-CT imaging |
title_short | Reproducible quantification of cardiac sympathetic innervation using graphical modeling of carbon-11-meta-hydroxyephedrine kinetics with dynamic PET-CT imaging |
title_sort | reproducible quantification of cardiac sympathetic innervation using graphical modeling of carbon-11-meta-hydroxyephedrine kinetics with dynamic pet-ct imaging |
topic | Original Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6054601/ https://www.ncbi.nlm.nih.gov/pubmed/30030665 http://dx.doi.org/10.1186/s13550-018-0421-5 |
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