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Robust T1-Weighted Structural Brain Imaging and Morphometry at 7T Using MP2RAGE

PURPOSE: To suppress the noise, by sacrificing some of the signal homogeneity for numerical stability, in uniform T1 weighted (T1w) images obtained with the magnetization prepared 2 rapid gradient echoes sequence (MP2RAGE) and to compare the clinical utility of these robust T1w images against the un...

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Autores principales: O'Brien, Kieran R., Kober, Tobias, Hagmann, Patric, Maeder, Philippe, Marques, José, Lazeyras, Francois, Krueger, Gunnar, Roche, Alexis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4059664/
https://www.ncbi.nlm.nih.gov/pubmed/24932514
http://dx.doi.org/10.1371/journal.pone.0099676
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author O'Brien, Kieran R.
Kober, Tobias
Hagmann, Patric
Maeder, Philippe
Marques, José
Lazeyras, Francois
Krueger, Gunnar
Roche, Alexis
author_facet O'Brien, Kieran R.
Kober, Tobias
Hagmann, Patric
Maeder, Philippe
Marques, José
Lazeyras, Francois
Krueger, Gunnar
Roche, Alexis
author_sort O'Brien, Kieran R.
collection PubMed
description PURPOSE: To suppress the noise, by sacrificing some of the signal homogeneity for numerical stability, in uniform T1 weighted (T1w) images obtained with the magnetization prepared 2 rapid gradient echoes sequence (MP2RAGE) and to compare the clinical utility of these robust T1w images against the uniform T1w images. MATERIALS AND METHODS: 8 healthy subjects (29.0±4.1 years; 6 Male), who provided written consent, underwent two scan sessions within a 24 hour period on a 7T head-only scanner. The uniform and robust T1w image volumes were calculated inline on the scanner. Two experienced radiologists qualitatively rated the images for: general image quality; 7T specific artefacts; and, local structure definition. Voxel-based and volume-based morphometry packages were used to compare the segmentation quality between the uniform and robust images. Statistical differences were evaluated by using a positive sided Wilcoxon rank test. RESULTS: The robust image suppresses background noise inside and outside the skull. The inhomogeneity introduced was ranked as mild. The robust image was significantly ranked higher than the uniform image for both observers (observer 1/2, p-value = 0.0006/0.0004). In particular, an improved delineation of the pituitary gland, cerebellar lobes was observed in the robust versus uniform T1w image. The reproducibility of the segmentation results between repeat scans improved (p-value = 0.0004) from an average volumetric difference across structures of ≈6.6% to ≈2.4% for the uniform image and robust T1w image respectively. CONCLUSIONS: The robust T1w image enables MP2RAGE to produce, clinically familiar T1w images, in addition to T1 maps, which can be readily used in uniform morphometry packages.
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spelling pubmed-40596642014-06-19 Robust T1-Weighted Structural Brain Imaging and Morphometry at 7T Using MP2RAGE O'Brien, Kieran R. Kober, Tobias Hagmann, Patric Maeder, Philippe Marques, José Lazeyras, Francois Krueger, Gunnar Roche, Alexis PLoS One Research Article PURPOSE: To suppress the noise, by sacrificing some of the signal homogeneity for numerical stability, in uniform T1 weighted (T1w) images obtained with the magnetization prepared 2 rapid gradient echoes sequence (MP2RAGE) and to compare the clinical utility of these robust T1w images against the uniform T1w images. MATERIALS AND METHODS: 8 healthy subjects (29.0±4.1 years; 6 Male), who provided written consent, underwent two scan sessions within a 24 hour period on a 7T head-only scanner. The uniform and robust T1w image volumes were calculated inline on the scanner. Two experienced radiologists qualitatively rated the images for: general image quality; 7T specific artefacts; and, local structure definition. Voxel-based and volume-based morphometry packages were used to compare the segmentation quality between the uniform and robust images. Statistical differences were evaluated by using a positive sided Wilcoxon rank test. RESULTS: The robust image suppresses background noise inside and outside the skull. The inhomogeneity introduced was ranked as mild. The robust image was significantly ranked higher than the uniform image for both observers (observer 1/2, p-value = 0.0006/0.0004). In particular, an improved delineation of the pituitary gland, cerebellar lobes was observed in the robust versus uniform T1w image. The reproducibility of the segmentation results between repeat scans improved (p-value = 0.0004) from an average volumetric difference across structures of ≈6.6% to ≈2.4% for the uniform image and robust T1w image respectively. CONCLUSIONS: The robust T1w image enables MP2RAGE to produce, clinically familiar T1w images, in addition to T1 maps, which can be readily used in uniform morphometry packages. Public Library of Science 2014-06-16 /pmc/articles/PMC4059664/ /pubmed/24932514 http://dx.doi.org/10.1371/journal.pone.0099676 Text en © 2014 O'Brien et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
O'Brien, Kieran R.
Kober, Tobias
Hagmann, Patric
Maeder, Philippe
Marques, José
Lazeyras, Francois
Krueger, Gunnar
Roche, Alexis
Robust T1-Weighted Structural Brain Imaging and Morphometry at 7T Using MP2RAGE
title Robust T1-Weighted Structural Brain Imaging and Morphometry at 7T Using MP2RAGE
title_full Robust T1-Weighted Structural Brain Imaging and Morphometry at 7T Using MP2RAGE
title_fullStr Robust T1-Weighted Structural Brain Imaging and Morphometry at 7T Using MP2RAGE
title_full_unstemmed Robust T1-Weighted Structural Brain Imaging and Morphometry at 7T Using MP2RAGE
title_short Robust T1-Weighted Structural Brain Imaging and Morphometry at 7T Using MP2RAGE
title_sort robust t1-weighted structural brain imaging and morphometry at 7t using mp2rage
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4059664/
https://www.ncbi.nlm.nih.gov/pubmed/24932514
http://dx.doi.org/10.1371/journal.pone.0099676
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