PurposeTo determine the accuracy and the effect of possible subject-based confounders of magnitude-based magnetic resonance imaging (MRI) for estimating hepatic proton density fat fraction (PDFF) for different numbers of echoes in adults with known or suspected nonalcoholic fatty liver disease, using MR spectroscopy (MRS) as a reference.Materials and methodsIn this retrospective analysis of 506 adults, hepatic PDFF was estimated by unenhanced 3.0T MRI, using right-lobe MRS as reference. Regions of interest placed on source images and on six-echo parametric PDFF maps were colocalized to MRS voxel location. Accuracy using different numbers of echoes was assessed by regression and Bland-Altman analysis; slope, intercept, average bias, and R2 w...
BackgroundProton density fat fraction (PDFF) estimation requires spectral modeling of the hepatic tr...
To assess and compare the diagnostic performance of magnitude-reconstruction chemical-shift-encoded ...
PurposeTo assess feasibility of and agreement between magnetic resonance imaging (MRI) and magnetic ...
PurposeTo determine the accuracy and the effect of possible subject-based confounders of magnitude-b...
PurposeTo assess accuracy of magnitude-based magnetic resonance imaging (M-MRI) in children to estim...
Purpose To assess accuracy of magnitude-based magnetic resonance imaging (M-MRI) in children to esti...
PurposeDetermine intra- and inter-examination repeatability of magnitude-based magnetic resonance im...
PurposeTo examine the reproducibility of quantitative magnetic resonance (MR) methods to estimate he...
PurposeTo prospectively describe magnitude-based multi-echo gradient-echo hepatic proton density fat...
PurposeTo assess and compare the accuracy of magnitude-based magnetic resonance imaging (MRI-M) and ...
Purpose: Determine intra- and inter-examination repeatability of magnitude-based magnetic resonance ...
Purpose To determine the linearity, bias, and precision of hepatic proton density fat fraction (PDFF...
The purpose of this work was to investigate sources of bias in magnetic resonance imaging (MRI) live...
PurposeTo evaluate the diagnostic performance of previously proposed high-specificity magnetic reson...
PurposeMRI proton density fat fraction (PDFF) can be calculated using magnitude (MRI-M) or complex (...
BackgroundProton density fat fraction (PDFF) estimation requires spectral modeling of the hepatic tr...
To assess and compare the diagnostic performance of magnitude-reconstruction chemical-shift-encoded ...
PurposeTo assess feasibility of and agreement between magnetic resonance imaging (MRI) and magnetic ...
PurposeTo determine the accuracy and the effect of possible subject-based confounders of magnitude-b...
PurposeTo assess accuracy of magnitude-based magnetic resonance imaging (M-MRI) in children to estim...
Purpose To assess accuracy of magnitude-based magnetic resonance imaging (M-MRI) in children to esti...
PurposeDetermine intra- and inter-examination repeatability of magnitude-based magnetic resonance im...
PurposeTo examine the reproducibility of quantitative magnetic resonance (MR) methods to estimate he...
PurposeTo prospectively describe magnitude-based multi-echo gradient-echo hepatic proton density fat...
PurposeTo assess and compare the accuracy of magnitude-based magnetic resonance imaging (MRI-M) and ...
Purpose: Determine intra- and inter-examination repeatability of magnitude-based magnetic resonance ...
Purpose To determine the linearity, bias, and precision of hepatic proton density fat fraction (PDFF...
The purpose of this work was to investigate sources of bias in magnetic resonance imaging (MRI) live...
PurposeTo evaluate the diagnostic performance of previously proposed high-specificity magnetic reson...
PurposeMRI proton density fat fraction (PDFF) can be calculated using magnitude (MRI-M) or complex (...
BackgroundProton density fat fraction (PDFF) estimation requires spectral modeling of the hepatic tr...
To assess and compare the diagnostic performance of magnitude-reconstruction chemical-shift-encoded ...
PurposeTo assess feasibility of and agreement between magnetic resonance imaging (MRI) and magnetic ...