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 …

Magnetic resonance fingerprinting Part 1: Potential uses, current challenges, and recommendations

ME Poorman, MN Martin, D Ma… - Journal of Magnetic …, 2020 - Wiley Online Library
Magnetic resonance fingerprinting (MRF) is a powerful quantitative MRI technique capable
of acquiring multiple property maps simultaneously in a short timeframe. The MRF …

Fast 3D brain MR fingerprinting based on multi‐axis spiral projection trajectory

X Cao, H Ye, C Liao, Q Li, H He… - Magnetic resonance in …, 2019 - Wiley Online Library
Purpose To develop a fast, sub‐millimeter 3D magnetic resonance fingerprinting (MRF)
technique for whole‐brain quantitative scans. Methods An acquisition trajectory based on …

Three‐dimensional simultaneous brain T1, T2, and ADC mapping with MR Multitasking

S Ma, CT Nguyen, F Han, N Wang… - Magnetic resonance …, 2020 - Wiley Online Library
Purpose To develop a simultaneous T1, T2, and ADC mapping method that provides co‐
registered, distortion‐free images and enables multiparametric quantification of 3D brain …

3D free‐breathing cardiac magnetic resonance fingerprinting

G Cruz, O Jaubert, H Qi, A Bustin, G Milotta… - NMR in …, 2020 - Wiley Online Library
Purpose To develop a novel respiratory motion compensated three‐dimensional (3D)
cardiac magnetic resonance fingerprinting (cMRF) approach for whole‐heart myocardial T1 …

Sparsity and locally low rank regularization for MR fingerprinting

G Lima da Cruz, A Bustin, O Jaubert… - Magnetic resonance …, 2019 - Wiley Online Library
Purpose Develop a sparse and locally low rank (LLR) regularized reconstruction to
accelerate MR fingerprinting (MRF). Methods Recent works have introduced low rank …

Myocardial T1, T2, T2*, and fat fraction quantification via low‐rank motion‐corrected cardiac MR fingerprinting

GJ Lima da Cruz, C Velasco, B Lavin… - Magnetic …, 2022 - Wiley Online Library
Purpose Develop a novel 2D cardiac MR fingerprinting (MRF) approach to enable
simultaneous T1, T2, T2*, and fat fraction (FF) myocardial tissue characterization in a single …

3D magnetic resonance fingerprinting for rapid simultaneous T1, T2, and T1ρ volumetric mapping of human articular cartilage at 3 T

A Sharafi, MVW Zibetti, G Chang, M Cloos… - NMR in …, 2022 - Wiley Online Library
Quantitative MRI can detect early biochemical changes in cartilage; however, the
conventional techniques only measure one parameter (eg, T1, T2, and T1ρ) at a time while …

[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 …

Motion robust MR fingerprinting scan to image neonates with prenatal opioid exposure

D Ma, C Badve, JEP Sun, S Hu, X Wang… - Journal of Magnetic …, 2024 - Wiley Online Library
Purpose To explore whether MR fingerprinting (MRF) scans provide motion‐robust and
quantitative brain tissue measurements for non‐sedated infants with prenatal opioid …