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Multi-centre, multi-vendor reproducibility of 7T QSM and R 2 * in the human brain: Results from the UK7T study.

Authors :
Rua C
Clarke WT
Driver ID
Mougin O
Morgan AT
Clare S
Francis S
Muir KW
Wise RG
Carpenter TA
Williams GB
Rowe JB
Bowtell R
Rodgers CT
Source :
NeuroImage [Neuroimage] 2020 Dec; Vol. 223, pp. 117358. Date of Electronic Publication: 2020 Sep 09.
Publication Year :
2020

Abstract

Introduction: We present the reliability of ultra-high field T <subscript>2</subscript> * MRI at 7T, as part of the UK7T Network's "Travelling Heads" study. T <subscript>2</subscript> *-weighted MRI images can be processed to produce quantitative susceptibility maps (QSM) and R <subscript>2</subscript> * maps. These reflect iron and myelin concentrations, which are altered in many pathophysiological processes. The relaxation parameters of human brain tissue are such that R <subscript>2</subscript> * mapping and QSM show particularly strong gains in contrast-to-noise ratio at ultra-high field (7T) vs clinical field strengths (1.5-3T). We aimed to determine the inter-subject and inter-site reproducibility of QSM and R <subscript>2</subscript> * mapping at 7T, in readiness for future multi-site clinical studies.<br />Methods: Ten healthy volunteers were scanned with harmonised single- and multi-echo T <subscript>2</subscript> *-weighted gradient echo pulse sequences. Participants were scanned five times at each "home" site and once at each of four other sites. The five sites had 1× Philips, 2× Siemens Magnetom, and 2× Siemens Terra scanners. QSM and R <subscript>2</subscript> * maps were computed with the Multi-Scale Dipole Inversion (MSDI) algorithm (https://github.com/fil-physics/Publication-Code). Results were assessed in relevant subcortical and cortical regions of interest (ROIs) defined manually or by the MNI152 standard space.<br />Results and Discussion: Mean susceptibility (χ) and R <subscript>2</subscript> * values agreed broadly with literature values in all ROIs. The inter-site within-subject standard deviation was 0.001-0.005 ppm (χ) and 0.0005-0.001 ms <superscript>-1</superscript> (R <subscript>2</subscript> *). For χ this is 2.1-4.8 fold better than 3T reports, and 1.1-3.4 fold better for R <subscript>2</subscript> *. The median ICC from within- and cross-site R <subscript>2</subscript> * data was 0.98 and 0.91, respectively. Multi-echo QSM had greater variability vs single-echo QSM especially in areas with large B <subscript>0</subscript> inhomogeneity such as the inferior frontal cortex. Across sites, R <subscript>2</subscript> * values were more consistent than QSM in subcortical structures due to differences in B <subscript>0</subscript> -shimming. On a between-subject level, our measured χ and R <subscript>2</subscript> * cross-site variance is comparable to within-site variance in the literature, suggesting that it is reasonable to pool data across sites using our harmonised protocol.<br />Conclusion: The harmonized UK7T protocol and pipeline delivers on average a 3-fold improvement in the coefficient of reproducibility for QSM and R <subscript>2</subscript> * at 7T compared to previous reports of multi-site reproducibility at 3T. These protocols are ready for use in multi-site clinical studies at 7T.<br /> (Copyright © 2020. Published by Elsevier Inc.)

Details

Language :
English
ISSN :
1095-9572
Volume :
223
Database :
MEDLINE
Journal :
NeuroImage
Publication Type :
Academic Journal
Accession number :
32916289
Full Text :
https://doi.org/10.1016/j.neuroimage.2020.117358