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Optimization of Look-Locker Turbo-Field Echo-Planar Imaging and Evaluation of Its Accuracy in Head and Neck 3D T(1) Mapping

PURPOSE: We present a sequence for T(1) relaxation-time mapping that enables a rapid and accurate measuring. The sequence is based on the Look-Locker method by employing turbo-field echo-planar imaging (TFEPI) acquisitions and time to free relaxation after constant application of the radiofrequency...

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Autores principales: MAEHARA, Masanori, MONMA, Masahiko, NITANAI, Takeshi, MATSUMOTO, Tetsuya, FUKUMA, Yukiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japanese Society for Magnetic Resonance in Medicine 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5608125/
https://www.ncbi.nlm.nih.gov/pubmed/26726016
http://dx.doi.org/10.2463/mrms.mp.2015-0057
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author MAEHARA, Masanori
MONMA, Masahiko
NITANAI, Takeshi
MATSUMOTO, Tetsuya
FUKUMA, Yukiko
author_facet MAEHARA, Masanori
MONMA, Masahiko
NITANAI, Takeshi
MATSUMOTO, Tetsuya
FUKUMA, Yukiko
author_sort MAEHARA, Masanori
collection PubMed
description PURPOSE: We present a sequence for T(1) relaxation-time mapping that enables a rapid and accurate measuring. The sequence is based on the Look-Locker method by employing turbo-field echo-planar imaging (TFEPI) acquisitions and time to free relaxation after constant application of the radiofrequency (RF) pulses. We optimized the sequence, and then evaluated the accuracy of the method in imaging of head and neck. MATERIALS AND METHODS: The method was implemented on a standard clinical scanner, and the accuracy of the T(1) value was evaluated against that with the two-dimensional (2D) inversion recovery method. RESULTS: The percentage errors of the T(1) value, as validated by phantom imaging measurements, were 3.1% for slow-relaxing compartments (T(1) = 2736 msec) and 1.1% for fast-relaxing compartments (T(1) = 264.2 msec). CONCLUSION: We demonstrated a fast 3D sequence to obtain multiple slices, based on the Look-Locker method for T(1) measurement, which provided a rapid and accurate way of measuring the spin-lattice relaxation time. An acquisition time of approximately 5 min was achieved for T(1) mapping; in principle, this can provide head and neck coverage with 15 slices.
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spelling pubmed-56081252017-10-23 Optimization of Look-Locker Turbo-Field Echo-Planar Imaging and Evaluation of Its Accuracy in Head and Neck 3D T(1) Mapping MAEHARA, Masanori MONMA, Masahiko NITANAI, Takeshi MATSUMOTO, Tetsuya FUKUMA, Yukiko Magn Reson Med Sci Major Paper PURPOSE: We present a sequence for T(1) relaxation-time mapping that enables a rapid and accurate measuring. The sequence is based on the Look-Locker method by employing turbo-field echo-planar imaging (TFEPI) acquisitions and time to free relaxation after constant application of the radiofrequency (RF) pulses. We optimized the sequence, and then evaluated the accuracy of the method in imaging of head and neck. MATERIALS AND METHODS: The method was implemented on a standard clinical scanner, and the accuracy of the T(1) value was evaluated against that with the two-dimensional (2D) inversion recovery method. RESULTS: The percentage errors of the T(1) value, as validated by phantom imaging measurements, were 3.1% for slow-relaxing compartments (T(1) = 2736 msec) and 1.1% for fast-relaxing compartments (T(1) = 264.2 msec). CONCLUSION: We demonstrated a fast 3D sequence to obtain multiple slices, based on the Look-Locker method for T(1) measurement, which provided a rapid and accurate way of measuring the spin-lattice relaxation time. An acquisition time of approximately 5 min was achieved for T(1) mapping; in principle, this can provide head and neck coverage with 15 slices. Japanese Society for Magnetic Resonance in Medicine 2015-12-28 /pmc/articles/PMC5608125/ /pubmed/26726016 http://dx.doi.org/10.2463/mrms.mp.2015-0057 Text en © 2015 Japanese Society for Magnetic Resonance in Medicine http://creativecommons.org/licenses/by/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives International License.
spellingShingle Major Paper
MAEHARA, Masanori
MONMA, Masahiko
NITANAI, Takeshi
MATSUMOTO, Tetsuya
FUKUMA, Yukiko
Optimization of Look-Locker Turbo-Field Echo-Planar Imaging and Evaluation of Its Accuracy in Head and Neck 3D T(1) Mapping
title Optimization of Look-Locker Turbo-Field Echo-Planar Imaging and Evaluation of Its Accuracy in Head and Neck 3D T(1) Mapping
title_full Optimization of Look-Locker Turbo-Field Echo-Planar Imaging and Evaluation of Its Accuracy in Head and Neck 3D T(1) Mapping
title_fullStr Optimization of Look-Locker Turbo-Field Echo-Planar Imaging and Evaluation of Its Accuracy in Head and Neck 3D T(1) Mapping
title_full_unstemmed Optimization of Look-Locker Turbo-Field Echo-Planar Imaging and Evaluation of Its Accuracy in Head and Neck 3D T(1) Mapping
title_short Optimization of Look-Locker Turbo-Field Echo-Planar Imaging and Evaluation of Its Accuracy in Head and Neck 3D T(1) Mapping
title_sort optimization of look-locker turbo-field echo-planar imaging and evaluation of its accuracy in head and neck 3d t(1) mapping
topic Major Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5608125/
https://www.ncbi.nlm.nih.gov/pubmed/26726016
http://dx.doi.org/10.2463/mrms.mp.2015-0057
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