Myocardial T1 and ECV measurement: underlying concepts and technical considerations

AA Robinson, K Chow, M Salerno - JACC: Cardiovascular Imaging, 2019 - jacc.org
Myocardial native T1 and extracellular volume fraction (ECV) mapping have emerged as
cardiac magnetic resonance biomarkers providing unique insight into cardiac …

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 …

Water–fat Dixon cardiac magnetic resonance fingerprinting

O Jaubert, G Cruz, A Bustin, T Schneider… - Magnetic resonance …, 2020 - Wiley Online Library
Purpose Cardiac magnetic resonance fingerprinting (cMRF) has been recently introduced to
simultaneously provide T1, T2, and M0 maps. Here, we develop a 3‐point Dixon‐cMRF …

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 …

Deep learning reconstruction for cardiac magnetic resonance fingerprinting T1 and T2 mapping

JI Hamilton, D Currey, S Rajagopalan… - Magnetic resonance …, 2021 - Wiley Online Library
Purpose To develop a deep learning method for rapidly reconstructing T1 and T2 maps from
undersampled electrocardiogram (ECG) triggered cardiac magnetic resonance …

[HTML][HTML] Recent technologies in cardiac imaging

Q Counseller, Y Aboelkassem - Frontiers in Medical Technology, 2023 - frontiersin.org
Cardiac imaging allows physicians to view the structure and function of the heart to detect
various heart abnormalities, ranging from inefficiencies in contraction, regulation of …

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 …

Simultaneous T1, T2, and T cardiac magnetic resonance fingerprinting for contrast agent–free myocardial tissue characterization

C Velasco, G Cruz, B Lavin, A Hua… - Magnetic resonance …, 2022 - Wiley Online Library
Purpose To develop a simultaneous T1, T2, and T1ρ cardiac magnetic resonance
fingerprinting (MRF) approach to enable comprehensive contrast agent–free myocardial …

A self-supervised deep learning reconstruction for shortening the breathhold and acquisition window in cardiac magnetic resonance fingerprinting

JI Hamilton - Frontiers in Cardiovascular Medicine, 2022 - frontiersin.org
The aim of this study is to shorten the breathhold and diastolic acquisition window in cardiac
magnetic resonance fingerprinting (MRF) for simultaneous T1, T2, and proton spin density …

MR fingerprinting enables quantitative measures of brain tissue relaxation times and myelin water fraction in the first five years of life

Y Chen, MH Chen, KR Baluyot, TM Potts, J Jimenez… - Neuroimage, 2019 - Elsevier
Quantitative assessments of normative brain development using MRI are of critical
importance to gain insights into healthy neurodevelopment. However, quantitative MR …