» Articles » PMID: 27100142

Quantitative Rotating Frame Relaxometry Methods in MRI

Overview
Journal NMR Biomed
Publisher Wiley
Date 2016 Apr 22
PMID 27100142
Citations 20
Authors
Affiliations
Soon will be listed here.
Abstract

Macromolecular degeneration and biochemical changes in tissue can be quantified using rotating frame relaxometry in MRI. It has been shown in several studies that the rotating frame longitudinal relaxation rate constant (R1ρ ) and the rotating frame transverse relaxation rate constant (R2ρ ) are sensitive biomarkers of phenomena at the cellular level. In this comprehensive review, existing MRI methods for probing the biophysical mechanisms that affect the rotating frame relaxation rates of the tissue (i.e. R1ρ and R2ρ ) are presented. Long acquisition times and high radiofrequency (RF) energy deposition into tissue during the process of spin-locking in rotating frame relaxometry are the major barriers to the establishment of these relaxation contrasts at high magnetic fields. Therefore, clinical applications of R1ρ and R2ρ MRI using on- or off-resonance RF excitation methods remain challenging. Accordingly, this review describes the theoretical and experimental approaches to the design of hard RF pulse cluster- and adiabatic RF pulse-based excitation schemes for accurate and precise measurements of R1ρ and R2ρ . The merits and drawbacks of different MRI acquisition strategies for quantitative relaxation rate measurement in the rotating frame regime are reviewed. In addition, this review summarizes current clinical applications of rotating frame MRI sequences. Copyright © 2016 John Wiley & Sons, Ltd.

Citing Articles

Ultrafast - NMR for Correlating Different Motional Regimes of Molecules.

Tolkkinen K, Mankinen O, Mailhiot S, Telkki V Anal Chem. 2024; 96(42):16534-16542.

PMID: 39383336 PMC: 11503516. DOI: 10.1021/acs.analchem.4c00513.


Combining T1rho and advanced diffusion MRI for noninvasively staging liver fibrosis: an experimental study in rats.

Guo Y, Guo T, Huang C, Sun P, Wu Z, Jin Z Abdom Radiol (NY). 2024; 49(6):1881-1891.

PMID: 38607572 PMC: 11213740. DOI: 10.1007/s00261-024-04327-3.


Assessment of myocardial injuries in ischaemic and non-ischaemic cardiomyopathies using magnetic resonance T1-rho mapping.

Bustin A, Pineau X, Sridi S, van Heeswijk R, Jais P, Stuber M Eur Heart J Cardiovasc Imaging. 2023; 25(4):548-557.

PMID: 37987558 PMC: 10966324. DOI: 10.1093/ehjci/jead319.


Alternating Look-Locker for quantitative T , T and B 3D MRI mapping.

Wu L, Carchi C, Michaeli S, Mangia S, Idiyatullin D Magn Reson Med. 2023; 91(1):149-161.

PMID: 37582198 PMC: 10651079. DOI: 10.1002/mrm.29839.


Magnetic resonance myocardial T1ρ mapping : Technical overview, challenges, emerging developments, and clinical applications.

Bustin A, Witschey W, van Heeswijk R, Cochet H, Stuber M J Cardiovasc Magn Reson. 2023; 25(1):34.

PMID: 37331930 PMC: 10278347. DOI: 10.1186/s12968-023-00940-1.