Purpose: To test the hypothesis that synthetic MRI of the knee generates accurate and repeatable quantitative maps and produces morphologic MR images with similar quality and detection rates of structural abnormalities than does conventional MRI. Materials and Methods: Data were collected prospectively between January 2017 and April 2018 and were retrospectively analyzed. An International Society for Magnetic Resonance in Medicine-National Institute of Standards and Technology phantom was used to determine the accuracy of T1, T2, and proton density (PD) quantification. Statistical models were applied for correction. Fifty-four participants (24 men, 30 women; mean age, 40 years; range, 18-62 years) underwent synthetic and conventional 3-T MR...
AbstractObjective: The aim of this study was to evaluate the reliability of a software tool that ass...
SummaryObjectiveQuantitative magnetic resonance imaging (qMRI) of knee cartilage morphology is a pow...
This study aimed to generate synthetic MR images from real CT images. CT# mean and standard deviatio...
Purpose: To test the hypothesis that synthetic MRI of the knee generates accurate and repeatable qua...
Objective: To evaluate the feasibility of synthetic magnetic resonance imaging (MRI) compared to con...
Purpose To develop and validate a hybrid phantom for optimizing MRI sequences of knee articular car...
To assess human articular cartilage tissue functionality by serial multi parametric quantitative MRI...
Background Use of a T2 mapping sequence in addition to the conventional knee MRI protocol increases ...
Magnetic resonance Imaging is the gold standard for assessment of soft tissues; however, X-ray-based...
OBJECTIVES: To investigate the agreement between double-inversion recovery (DIR) with synthetic magn...
AbstractObjective: This study assessed the three-dimensional accuracy of magnetic resonance imaging ...
The purpose was to evaluate the feasibility of quantitative MRI T2 mapping based on the quantitative...
Synthetic magnetic resonance (MR) is a method allowing reduction of examination time and access to q...
OBJECTIVES: To evaluate the accuracy of magnetic resonance imaging measurements of cartilage tissue-...
Magnetic resonance imaging (MRI) has revolutionized the evaluation of musculoskeletal soft tissue di...
AbstractObjective: The aim of this study was to evaluate the reliability of a software tool that ass...
SummaryObjectiveQuantitative magnetic resonance imaging (qMRI) of knee cartilage morphology is a pow...
This study aimed to generate synthetic MR images from real CT images. CT# mean and standard deviatio...
Purpose: To test the hypothesis that synthetic MRI of the knee generates accurate and repeatable qua...
Objective: To evaluate the feasibility of synthetic magnetic resonance imaging (MRI) compared to con...
Purpose To develop and validate a hybrid phantom for optimizing MRI sequences of knee articular car...
To assess human articular cartilage tissue functionality by serial multi parametric quantitative MRI...
Background Use of a T2 mapping sequence in addition to the conventional knee MRI protocol increases ...
Magnetic resonance Imaging is the gold standard for assessment of soft tissues; however, X-ray-based...
OBJECTIVES: To investigate the agreement between double-inversion recovery (DIR) with synthetic magn...
AbstractObjective: This study assessed the three-dimensional accuracy of magnetic resonance imaging ...
The purpose was to evaluate the feasibility of quantitative MRI T2 mapping based on the quantitative...
Synthetic magnetic resonance (MR) is a method allowing reduction of examination time and access to q...
OBJECTIVES: To evaluate the accuracy of magnetic resonance imaging measurements of cartilage tissue-...
Magnetic resonance imaging (MRI) has revolutionized the evaluation of musculoskeletal soft tissue di...
AbstractObjective: The aim of this study was to evaluate the reliability of a software tool that ass...
SummaryObjectiveQuantitative magnetic resonance imaging (qMRI) of knee cartilage morphology is a pow...
This study aimed to generate synthetic MR images from real CT images. CT# mean and standard deviatio...