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Hepatic Iron Quantification on 3 Tesla (3 T) Magnetic Resonance (MR): Technical Challenges and Solutions

MR has become a reliable and noninvasive method of hepatic iron quantification. Currently, most of the hepatic iron quantification is performed on 1.5 T MR, and the biopsy measurements have been paired with R (2) and R (2)* values for 1.5 T MR. As the use of 3 T MR scanners is steadily increasing in...

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Autores principales: Anwar, Muhammad, Wood, John, Manwani, Deepa, Taragin, Benjamin, Oyeku, Suzette O., Peng, Qi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3674724/
https://www.ncbi.nlm.nih.gov/pubmed/23766905
http://dx.doi.org/10.1155/2013/628150
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author Anwar, Muhammad
Wood, John
Manwani, Deepa
Taragin, Benjamin
Oyeku, Suzette O.
Peng, Qi
author_facet Anwar, Muhammad
Wood, John
Manwani, Deepa
Taragin, Benjamin
Oyeku, Suzette O.
Peng, Qi
author_sort Anwar, Muhammad
collection PubMed
description MR has become a reliable and noninvasive method of hepatic iron quantification. Currently, most of the hepatic iron quantification is performed on 1.5 T MR, and the biopsy measurements have been paired with R (2) and R (2)* values for 1.5 T MR. As the use of 3 T MR scanners is steadily increasing in clinical practice, it has become important to evaluate the practicality of calculating iron burden at 3 T MR. Hepatic iron quantification on 3 T MR requires a better understanding of the process and more stringent technical considerations. The purpose of this work is to focus on the technical challenges in establishing a relationship between T (2)* values at 1.5 T MR and 3 T MR for hepatic iron concentration (HIC) and to develop an appropriately optimized MR protocol for the evaluation of T (2)* values in the liver at 3 T magnetic field strength. We studied 22 sickle cell patients using multiecho fast gradient-echo sequence (MFGRE) 3 T MR and compared the results with serum ferritin and liver biopsy results. Our study showed that the quantification of hepatic iron on 3 T MRI in sickle cell disease patients correlates well with clinical blood test results and biopsy results. 3 T MR liver iron quantification based on MFGRE can be used for hepatic iron quantification in transfused patients.
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spelling pubmed-36747242013-06-13 Hepatic Iron Quantification on 3 Tesla (3 T) Magnetic Resonance (MR): Technical Challenges and Solutions Anwar, Muhammad Wood, John Manwani, Deepa Taragin, Benjamin Oyeku, Suzette O. Peng, Qi Radiol Res Pract Clinical Study MR has become a reliable and noninvasive method of hepatic iron quantification. Currently, most of the hepatic iron quantification is performed on 1.5 T MR, and the biopsy measurements have been paired with R (2) and R (2)* values for 1.5 T MR. As the use of 3 T MR scanners is steadily increasing in clinical practice, it has become important to evaluate the practicality of calculating iron burden at 3 T MR. Hepatic iron quantification on 3 T MR requires a better understanding of the process and more stringent technical considerations. The purpose of this work is to focus on the technical challenges in establishing a relationship between T (2)* values at 1.5 T MR and 3 T MR for hepatic iron concentration (HIC) and to develop an appropriately optimized MR protocol for the evaluation of T (2)* values in the liver at 3 T magnetic field strength. We studied 22 sickle cell patients using multiecho fast gradient-echo sequence (MFGRE) 3 T MR and compared the results with serum ferritin and liver biopsy results. Our study showed that the quantification of hepatic iron on 3 T MRI in sickle cell disease patients correlates well with clinical blood test results and biopsy results. 3 T MR liver iron quantification based on MFGRE can be used for hepatic iron quantification in transfused patients. Hindawi Publishing Corporation 2013 2013-05-22 /pmc/articles/PMC3674724/ /pubmed/23766905 http://dx.doi.org/10.1155/2013/628150 Text en Copyright © 2013 Muhammad Anwar et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Clinical Study
Anwar, Muhammad
Wood, John
Manwani, Deepa
Taragin, Benjamin
Oyeku, Suzette O.
Peng, Qi
Hepatic Iron Quantification on 3 Tesla (3 T) Magnetic Resonance (MR): Technical Challenges and Solutions
title Hepatic Iron Quantification on 3 Tesla (3 T) Magnetic Resonance (MR): Technical Challenges and Solutions
title_full Hepatic Iron Quantification on 3 Tesla (3 T) Magnetic Resonance (MR): Technical Challenges and Solutions
title_fullStr Hepatic Iron Quantification on 3 Tesla (3 T) Magnetic Resonance (MR): Technical Challenges and Solutions
title_full_unstemmed Hepatic Iron Quantification on 3 Tesla (3 T) Magnetic Resonance (MR): Technical Challenges and Solutions
title_short Hepatic Iron Quantification on 3 Tesla (3 T) Magnetic Resonance (MR): Technical Challenges and Solutions
title_sort hepatic iron quantification on 3 tesla (3 t) magnetic resonance (mr): technical challenges and solutions
topic Clinical Study
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3674724/
https://www.ncbi.nlm.nih.gov/pubmed/23766905
http://dx.doi.org/10.1155/2013/628150
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