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T(1) mapping performance and measurement repeatability: results from the multi-national T(1) mapping standardization phantom program (T1MES)
BACKGROUND: The T(1) Mapping and Extracellular volume (ECV) Standardization (T1MES) program explored T(1) mapping quality assurance using a purpose-developed phantom with Food and Drug Administration (FDA) and Conformité Européenne (CE) regulatory clearance. We report T(1) measurement repeatability...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7204222/ https://www.ncbi.nlm.nih.gov/pubmed/32375896 http://dx.doi.org/10.1186/s12968-020-00613-3 |
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author | Captur, Gabriella Bhandari, Abhiyan Brühl, Rüdiger Ittermann, Bernd Keenan, Kathryn E. Yang, Ye Eames, Richard J. Benedetti, Giulia Torlasco, Camilla Ricketts, Lewis Boubertakh, Redha Fatih, Nasri Greenwood, John P. Paulis, Leonie E. M. Lawton, Chris B. Bucciarelli-Ducci, Chiara Lamb, Hildo J. Steeds, Richard Leung, Steve W. Berry, Colin Valentin, Sinitsyn Flett, Andrew de Lange, Charlotte DeCobelli, Francesco Viallon, Magalie Croisille, Pierre Higgins, David M. Greiser, Andreas Pang, Wenjie Hamilton-Craig, Christian Strugnell, Wendy E. Dresselaers, Tom Barison, Andrea Dawson, Dana Taylor, Andrew J. Mongeon, François-Pierre Plein, Sven Messroghli, Daniel Al-Mallah, Mouaz Grieve, Stuart M. Lombardi, Massimo Jang, Jihye Salerno, Michael Chaturvedi, Nish Kellman, Peter Bluemke, David A. Nezafat, Reza Gatehouse, Peter Moon, James C. |
author_facet | Captur, Gabriella Bhandari, Abhiyan Brühl, Rüdiger Ittermann, Bernd Keenan, Kathryn E. Yang, Ye Eames, Richard J. Benedetti, Giulia Torlasco, Camilla Ricketts, Lewis Boubertakh, Redha Fatih, Nasri Greenwood, John P. Paulis, Leonie E. M. Lawton, Chris B. Bucciarelli-Ducci, Chiara Lamb, Hildo J. Steeds, Richard Leung, Steve W. Berry, Colin Valentin, Sinitsyn Flett, Andrew de Lange, Charlotte DeCobelli, Francesco Viallon, Magalie Croisille, Pierre Higgins, David M. Greiser, Andreas Pang, Wenjie Hamilton-Craig, Christian Strugnell, Wendy E. Dresselaers, Tom Barison, Andrea Dawson, Dana Taylor, Andrew J. Mongeon, François-Pierre Plein, Sven Messroghli, Daniel Al-Mallah, Mouaz Grieve, Stuart M. Lombardi, Massimo Jang, Jihye Salerno, Michael Chaturvedi, Nish Kellman, Peter Bluemke, David A. Nezafat, Reza Gatehouse, Peter Moon, James C. |
author_sort | Captur, Gabriella |
collection | PubMed |
description | BACKGROUND: The T(1) Mapping and Extracellular volume (ECV) Standardization (T1MES) program explored T(1) mapping quality assurance using a purpose-developed phantom with Food and Drug Administration (FDA) and Conformité Européenne (CE) regulatory clearance. We report T(1) measurement repeatability across centers describing sequence, magnet, and vendor performance. METHODS: Phantoms batch-manufactured in August 2015 underwent 2 years of structural imaging, B(0) and B(1), and “reference” slow T(1) testing. Temperature dependency was evaluated by the United States National Institute of Standards and Technology and by the German Physikalisch-Technische Bundesanstalt. Center-specific T(1) mapping repeatability (maximum one scan per week to minimum one per quarter year) was assessed over mean 358 (maximum 1161) days on 34 1.5 T and 22 3 T magnets using multiple T(1) mapping sequences. Image and temperature data were analyzed semi-automatically. Repeatability of serial T(1) was evaluated in terms of coefficient of variation (CoV), and linear mixed models were constructed to study the interplay of some of the known sources of T(1) variation. RESULTS: Over 2 years, phantom gel integrity remained intact (no rips/tears), B(0) and B(1) homogenous, and “reference” T(1) stable compared to baseline (% change at 1.5 T, 1.95 ± 1.39%; 3 T, 2.22 ± 1.44%). Per degrees Celsius, 1.5 T, T(1) (MOLLI 5s(3s)3s) increased by 11.4 ms in long native blood tubes and decreased by 1.2 ms in short post-contrast myocardium tubes. Agreement of estimated T(1) times with “reference” T(1) was similar across Siemens and Philips CMR systems at both field strengths (adjusted R(2) ranges for both field strengths, 0.99–1.00). Over 1 year, many 1.5 T and 3 T sequences/magnets were repeatable with mean CoVs < 1 and 2% respectively. Repeatability was narrower for 1.5 T over 3 T. Within T1MES repeatability for native T(1) was narrow for several sequences, for example, at 1.5 T, Siemens MOLLI 5s(3s)3s prototype number 448B (mean CoV = 0.27%) and Philips modified Look-Locker inversion recovery (MOLLI) 3s(3s)5s (CoV 0.54%), and at 3 T, Philips MOLLI 3b(3s)5b (CoV 0.33%) and Siemens shortened MOLLI (ShMOLLI) prototype 780C (CoV 0.69%). After adjusting for temperature and field strength, it was found that the T(1) mapping sequence and scanner software version (both P < 0.001 at 1.5 T and 3 T), and to a lesser extent the scanner model (P = 0.011, 1.5 T only), had the greatest influence on T(1) across multiple centers. CONCLUSION: The T1MES CE/FDA approved phantom is a robust quality assurance device. In a multi-center setting, T(1) mapping had performance differences between field strengths, sequences, scanner software versions, and manufacturers. However, several specific combinations of field strength, sequence, and scanner are highly repeatable, and thus, have potential to provide standardized assessment of T(1) times for clinical use, although temperature correction is required for native T(1) tubes at least. |
format | Online Article Text |
id | pubmed-7204222 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-72042222020-05-12 T(1) mapping performance and measurement repeatability: results from the multi-national T(1) mapping standardization phantom program (T1MES) Captur, Gabriella Bhandari, Abhiyan Brühl, Rüdiger Ittermann, Bernd Keenan, Kathryn E. Yang, Ye Eames, Richard J. Benedetti, Giulia Torlasco, Camilla Ricketts, Lewis Boubertakh, Redha Fatih, Nasri Greenwood, John P. Paulis, Leonie E. M. Lawton, Chris B. Bucciarelli-Ducci, Chiara Lamb, Hildo J. Steeds, Richard Leung, Steve W. Berry, Colin Valentin, Sinitsyn Flett, Andrew de Lange, Charlotte DeCobelli, Francesco Viallon, Magalie Croisille, Pierre Higgins, David M. Greiser, Andreas Pang, Wenjie Hamilton-Craig, Christian Strugnell, Wendy E. Dresselaers, Tom Barison, Andrea Dawson, Dana Taylor, Andrew J. Mongeon, François-Pierre Plein, Sven Messroghli, Daniel Al-Mallah, Mouaz Grieve, Stuart M. Lombardi, Massimo Jang, Jihye Salerno, Michael Chaturvedi, Nish Kellman, Peter Bluemke, David A. Nezafat, Reza Gatehouse, Peter Moon, James C. J Cardiovasc Magn Reson Research BACKGROUND: The T(1) Mapping and Extracellular volume (ECV) Standardization (T1MES) program explored T(1) mapping quality assurance using a purpose-developed phantom with Food and Drug Administration (FDA) and Conformité Européenne (CE) regulatory clearance. We report T(1) measurement repeatability across centers describing sequence, magnet, and vendor performance. METHODS: Phantoms batch-manufactured in August 2015 underwent 2 years of structural imaging, B(0) and B(1), and “reference” slow T(1) testing. Temperature dependency was evaluated by the United States National Institute of Standards and Technology and by the German Physikalisch-Technische Bundesanstalt. Center-specific T(1) mapping repeatability (maximum one scan per week to minimum one per quarter year) was assessed over mean 358 (maximum 1161) days on 34 1.5 T and 22 3 T magnets using multiple T(1) mapping sequences. Image and temperature data were analyzed semi-automatically. Repeatability of serial T(1) was evaluated in terms of coefficient of variation (CoV), and linear mixed models were constructed to study the interplay of some of the known sources of T(1) variation. RESULTS: Over 2 years, phantom gel integrity remained intact (no rips/tears), B(0) and B(1) homogenous, and “reference” T(1) stable compared to baseline (% change at 1.5 T, 1.95 ± 1.39%; 3 T, 2.22 ± 1.44%). Per degrees Celsius, 1.5 T, T(1) (MOLLI 5s(3s)3s) increased by 11.4 ms in long native blood tubes and decreased by 1.2 ms in short post-contrast myocardium tubes. Agreement of estimated T(1) times with “reference” T(1) was similar across Siemens and Philips CMR systems at both field strengths (adjusted R(2) ranges for both field strengths, 0.99–1.00). Over 1 year, many 1.5 T and 3 T sequences/magnets were repeatable with mean CoVs < 1 and 2% respectively. Repeatability was narrower for 1.5 T over 3 T. Within T1MES repeatability for native T(1) was narrow for several sequences, for example, at 1.5 T, Siemens MOLLI 5s(3s)3s prototype number 448B (mean CoV = 0.27%) and Philips modified Look-Locker inversion recovery (MOLLI) 3s(3s)5s (CoV 0.54%), and at 3 T, Philips MOLLI 3b(3s)5b (CoV 0.33%) and Siemens shortened MOLLI (ShMOLLI) prototype 780C (CoV 0.69%). After adjusting for temperature and field strength, it was found that the T(1) mapping sequence and scanner software version (both P < 0.001 at 1.5 T and 3 T), and to a lesser extent the scanner model (P = 0.011, 1.5 T only), had the greatest influence on T(1) across multiple centers. CONCLUSION: The T1MES CE/FDA approved phantom is a robust quality assurance device. In a multi-center setting, T(1) mapping had performance differences between field strengths, sequences, scanner software versions, and manufacturers. However, several specific combinations of field strength, sequence, and scanner are highly repeatable, and thus, have potential to provide standardized assessment of T(1) times for clinical use, although temperature correction is required for native T(1) tubes at least. BioMed Central 2020-05-07 /pmc/articles/PMC7204222/ /pubmed/32375896 http://dx.doi.org/10.1186/s12968-020-00613-3 Text en © The Author(s) 2020 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data. |
spellingShingle | Research Captur, Gabriella Bhandari, Abhiyan Brühl, Rüdiger Ittermann, Bernd Keenan, Kathryn E. Yang, Ye Eames, Richard J. Benedetti, Giulia Torlasco, Camilla Ricketts, Lewis Boubertakh, Redha Fatih, Nasri Greenwood, John P. Paulis, Leonie E. M. Lawton, Chris B. Bucciarelli-Ducci, Chiara Lamb, Hildo J. Steeds, Richard Leung, Steve W. Berry, Colin Valentin, Sinitsyn Flett, Andrew de Lange, Charlotte DeCobelli, Francesco Viallon, Magalie Croisille, Pierre Higgins, David M. Greiser, Andreas Pang, Wenjie Hamilton-Craig, Christian Strugnell, Wendy E. Dresselaers, Tom Barison, Andrea Dawson, Dana Taylor, Andrew J. Mongeon, François-Pierre Plein, Sven Messroghli, Daniel Al-Mallah, Mouaz Grieve, Stuart M. Lombardi, Massimo Jang, Jihye Salerno, Michael Chaturvedi, Nish Kellman, Peter Bluemke, David A. Nezafat, Reza Gatehouse, Peter Moon, James C. T(1) mapping performance and measurement repeatability: results from the multi-national T(1) mapping standardization phantom program (T1MES) |
title | T(1) mapping performance and measurement repeatability: results from the multi-national T(1) mapping standardization phantom program (T1MES) |
title_full | T(1) mapping performance and measurement repeatability: results from the multi-national T(1) mapping standardization phantom program (T1MES) |
title_fullStr | T(1) mapping performance and measurement repeatability: results from the multi-national T(1) mapping standardization phantom program (T1MES) |
title_full_unstemmed | T(1) mapping performance and measurement repeatability: results from the multi-national T(1) mapping standardization phantom program (T1MES) |
title_short | T(1) mapping performance and measurement repeatability: results from the multi-national T(1) mapping standardization phantom program (T1MES) |
title_sort | t(1) mapping performance and measurement repeatability: results from the multi-national t(1) mapping standardization phantom program (t1mes) |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7204222/ https://www.ncbi.nlm.nih.gov/pubmed/32375896 http://dx.doi.org/10.1186/s12968-020-00613-3 |
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