[HTML][HTML] Recommendation for cardiac magnetic resonance imaging-based phenotypic study: imaging part

C Wang, Y Li, J Lv, J Jin, X Hu, X Kuang, W Chen… - Phenomics, 2021 - Springer
Cardiac magnetic resonance (CMR) imaging provides important biomarkers for the early
diagnosis of many cardiovascular diseases and has been reported to reveal phenome-wide …

[HTML][HTML] Artificial intelligence in cardiac magnetic resonance fingerprinting

C Velasco, TJ Fletcher, RM Botnar… - Frontiers in …, 2022 - frontiersin.org
Magnetic resonance fingerprinting (MRF) is a fast MRI-based technique that allows for
multiparametric quantitative characterization of the tissues of interest in a single acquisition …

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 …

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 …

Free‐running 3D whole‐heart T1 and T2 mapping and cine MRI using low‐rank reconstruction with non‐rigid cardiac motion correction

A Phair, G Cruz, H Qi, RM Botnar… - Magnetic Resonance in …, 2023 - Wiley Online Library
Purpose To introduce non‐rigid cardiac motion correction into a novel free‐running
framework for the simultaneous acquisition of 3D whole‐heart myocardial T 1 T _1 and T 2 T …

3D whole‐heart isotropic‐resolution motion‐compensated joint T1/T2 mapping and water/fat imaging

G Milotta, A Bustin, O Jaubert, R Neji… - Magnetic …, 2020 - Wiley Online Library
Purpose To develop a free‐breathing isotropic‐resolution whole‐heart joint T1 and T2
mapping sequence with Dixon‐encoding that provides coregistered 3D T1 and T2 maps and …

Free-running simultaneous myocardial T1/T2 mapping and cine imaging with 3D whole-heart coverage and isotropic spatial resolution

H Qi, A Bustin, G Cruz, O Jaubert, H Chen… - Magnetic resonance …, 2019 - Elsevier
Purpose To develop a free-running framework for 3D isotropic simultaneous myocardial
T1/T2 mapping and cine imaging. Methods Continuous data acquisition with 3D golden …

Free‐breathing simultaneous myocardial T1 and T2 mapping with whole left ventricle coverage

R Guo, X Cai, S Kucukseymen… - Magnetic …, 2021 - Wiley Online Library
Purpose To develop a free‐breathing sequence, that is, Multislice Joint T1‐T2, for
simultaneous measurement of myocardial T1 and T2 for multiple slices to achieve whole left …

Generalized low‐rank nonrigid motion‐corrected reconstruction for MR fingerprinting

G Cruz, H Qi, O Jaubert, T Kuestner… - Magnetic …, 2022 - Wiley Online Library
Purpose Develop a novel low‐rank motion‐corrected (LRMC) reconstruction for nonrigid
motion‐corrected MR fingerprinting (MRF). Methods Generalized motion‐corrected (MC) …

Cartesian dictionary‐based native T1 and T2 mapping of the myocardium

M Henningsson - Magnetic Resonance in Medicine, 2022 - Wiley Online Library
Purpose To implement and evaluate a new dictionary‐based technique for native
myocardial T1 and T2 mapping using Cartesian sampling. Methods The proposed technique …