Abstract
Purpose: To implement an accelerated MR-acquisition method allowing to map (Formula presented.) relaxation and absolute concentration of sodium within skeletal muscles at 3T. Methods: A fast-UTE-2D density-weighted concentric-ring-trajectory 23Na-MRSI technique was used to acquire 64 time points of FID with a spectral bandwidth of 312.5 Hz with an in-plane resolution of 2.5 × 2.5 mm2 in ~15 min. The fast-relaxing 23Na signal was localized with a single-shot, inversion-recovery-based, non-echo (SIRENE) outer volume suppression (OVS) method. The sequence was verified using simulation and phantom studies before implementing it in human calf muscles. To evaluate the 2D-SIRENE-MRSI (UTE = 0.55 ms) imaging performance, it was compared to a 3D-MRI (UTE = 0.3 ms) sequence. Both data sets were acquired within 2 same-day sessions to assess repeatability. The (Formula presented.) values were fitted voxel-by-voxel using a biexponential model for the 2D-MRSI data. Finally, intra-subject coefficients of variation (CV) were estimated. Results: The MRSI-FID data allowed us to map the fast and slow components of (Formula presented.) in the calf muscles. The spatial distributions of 23Na concentration for both MRSI and 3D-MRI acquisitions were significantly correlated (P
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Alhulail, A. A., Xia, P., Shen, X., Nichols, M., Volety, S., Farley, N., … Emir, U. E. (2021). Fast in vivo 23Na imaging and T2∗ mapping using accelerated 2D-FID UTE magnetic resonance spectroscopic imaging at 3 T: Proof of concept and reliability study. Magnetic Resonance in Medicine, 85(4), 1783–1794. https://doi.org/10.1002/mrm.28576
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