Purpose Diffusion-weighted (DW) and dynamic contrast-enhanced magnetic resonance imaging (MRI) are increasingly applied for the assessment of functional tissue biomarkers for diagnosis, lesion characterization, or for monitoring of treatment response. However, these techniques are vulnerable to the influence of various factors, so there is a necessity for a standardized MR quality assurance procedure utilizing a phantom to facilitate the reliable estimation of repeatability of these quantitative biomarkers arising from technical factors (e.g., B1 variation) affecting acquisition on scanners of different vendors and field strengths. The purpose of this study is to present a novel phantom designed for use in quality assurance for multicenter ...
Background and purpose: A wide variation of MRI systems is a challenge in multicenter imaging biomar...
PurposeTo determine the in vitro accuracy, test-retest repeatability, and interplatform reproducibil...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/141340/1/mrm26982.pdfhttps://deepblue....
Purpose: Diffusion‐weighted (DW) and dynamic contrast‐enhanced magnetic resonance imaging (MRI) are...
Purpose: To present the use of a quality control ice‐water phantom for diffusion‐weighted magnetic ...
Purpose: To present the use of a quality control ice-water phantom for diffusion-weighted magnetic r...
Purpose: To determine quantitative quality control procedures to evaluate technical variability in ...
Relevant to co-clinical trials, the goal of this work was to assess repeatability, reproducibility, ...
Purpose: To determine quantitative quality control proce-dures to evaluate technical variability in ...
Purpose: A standard MRI system phantom has been designed and fabricated to assess scanner performan...
PurposeWe present a breast phantom designed to enable quantitative assessment of measurements of T1 ...
Relevant to co-clinical trials, the goal of this work was to assess repeatability, reproducibility, ...
Multi-center functional MRI (fMRI) research studies are advantageous but unavoidably introduce varia...
Background: Many translational MR biomarkers derive from measurements of the water proton longitudin...
PURPOSE:We aimed to compare apparent diffusion coefficient (ADC) values among magnetic resonance ima...
Background and purpose: A wide variation of MRI systems is a challenge in multicenter imaging biomar...
PurposeTo determine the in vitro accuracy, test-retest repeatability, and interplatform reproducibil...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/141340/1/mrm26982.pdfhttps://deepblue....
Purpose: Diffusion‐weighted (DW) and dynamic contrast‐enhanced magnetic resonance imaging (MRI) are...
Purpose: To present the use of a quality control ice‐water phantom for diffusion‐weighted magnetic ...
Purpose: To present the use of a quality control ice-water phantom for diffusion-weighted magnetic r...
Purpose: To determine quantitative quality control procedures to evaluate technical variability in ...
Relevant to co-clinical trials, the goal of this work was to assess repeatability, reproducibility, ...
Purpose: To determine quantitative quality control proce-dures to evaluate technical variability in ...
Purpose: A standard MRI system phantom has been designed and fabricated to assess scanner performan...
PurposeWe present a breast phantom designed to enable quantitative assessment of measurements of T1 ...
Relevant to co-clinical trials, the goal of this work was to assess repeatability, reproducibility, ...
Multi-center functional MRI (fMRI) research studies are advantageous but unavoidably introduce varia...
Background: Many translational MR biomarkers derive from measurements of the water proton longitudin...
PURPOSE:We aimed to compare apparent diffusion coefficient (ADC) values among magnetic resonance ima...
Background and purpose: A wide variation of MRI systems is a challenge in multicenter imaging biomar...
PurposeTo determine the in vitro accuracy, test-retest repeatability, and interplatform reproducibil...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/141340/1/mrm26982.pdfhttps://deepblue....