Variability and standardization of quantitative imaging: monoparametric to multiparametric quantification, radiomics, and artificial intelligence

A Hagiwara, S Fujita, Y Ohno, S Aoki - Investigative radiology, 2020 - journals.lww.com
Radiological images have been assessed qualitatively in most clinical settings by the expert
eyes of radiologists and other clinicians. On the other hand, quantification of radiological …

Probing myelin content of the human brain with MRI: A review

GF Piredda, T Hilbert, JP Thiran… - Magnetic resonance in …, 2021 - Wiley Online Library
Rapid and efficient transmission of electric signals among neurons of vertebrates is ensured
by myelin‐insulating sheaths surrounding axons. Human cognition, sensation, and motor …

Multi‐parametric liver tissue characterization using MR fingerprinting: Simultaneous T1, T2, T2*, and fat fraction mapping

O Jaubert, C Arrieta, G Cruz, A Bustin… - Magnetic resonance …, 2020 - Wiley Online Library
Purpose Quantitative T1, T2, T2*, and fat fraction (FF) maps are promising imaging
biomarkers for the assessment of liver disease, however these are usually acquired in …

[HTML][HTML] 3D Echo Planar Time-resolved Imaging (3D-EPTI) for ultrafast multi-parametric quantitative MRI

F Wang, Z Dong, TG Reese, B Rosen, LL Wald… - Neuroimage, 2022 - Elsevier
Multi-parametric quantitative MRI has shown great potential to improve the sensitivity and
specificity of clinical diagnosis and to enhance our understanding of complex brain …

[HTML][HTML] Free-running cardiac magnetic resonance fingerprinting: Joint T1/T2 map and Cine imaging

O Jaubert, G Cruz, A Bustin, T Schneider… - Magnetic resonance …, 2020 - Elsevier
Purpose To develop and evaluate a novel non-ECG triggered 2D magnetic resonance
fingerprinting (MRF) sequence allowing for simultaneous myocardial T 1 and T 2 mapping …

The road toward reproducibility of parametric mapping of the heart: a technical review

AC Ogier, A Bustin, H Cochet, J Schwitter… - Frontiers in …, 2022 - frontiersin.org
Parametric mapping of the heart has become an essential part of many cardiovascular
magnetic resonance imaging exams, and is used for tissue characterization and diagnosis …

Magnetization‐prepared GRASP MRI for rapid 3D T1 mapping and fat/water‐separated T1 mapping

L Feng, F Liu, G Soultanidis, C Liu… - Magnetic resonance …, 2021 - Wiley Online Library
Purpose This study aimed to (i) develop Magnetization‐Prepared Golden‐angle RAdial
Sparse Parallel (MP‐GRASP) MRI using a stack‐of‐stars trajectory for rapid free‐breathing …

An efficient approach to optimal experimental design for magnetic resonance fingerprinting with B‐splines

E Scope Crafts, H Lu, H Ye, LL Wald… - Magnetic resonance in …, 2022 - Wiley Online Library
Purpose To introduce a computationally efficient approach to optimizing the data acquisition
parameters of MR Fingerprinting experiments with the Cramér–Rao bound. Methods This …

Feasibility of MR fingerprinting using a high-performance 0.55 T MRI system

AE Campbell-Washburn, Y Jiang, G Körzdörfer… - Magnetic resonance …, 2021 - Elsevier
Background MR fingerprinting (MRF) is a versatile method for rapid multi-parametric
quantification. The application of MRF for lower MRI field could enable multi-contrast …

MR fingerprinting for liver tissue characterization: a histopathologic correlation study

S Fujita, K Sano, G Cruz, Y Fukumura, H Kawasaki… - Radiology, 2023 - pubs.rsna.org
Background Liver MR fingerprinting (MRF) enables simultaneous quantification of T1, T2,
T2*, and proton density fat fraction (PDFF) maps in single breath-hold acquisitions …