Abstract
The use of spin-echoes has been employed in an Echo-Planar Spectroscopic Imaging (EPSI) sequence to collect multiple phase encoded lines within a single TR in a Multi-Echo-based Echo-Planar Spectroscopic Imaging technique (MEEPSI). Despite the T2 dependence on the amplitude of the spin-echoes, the FullWidth at Half Maximum (FWHM) of the derived multi-echo Point Spread Function (PSF) is shown to decrease, indicating an improved overall spatial resolution without requiring any additional scan time. The improved spatial resolution is demonstrated in the one-dimensional (1D) spatial profiles of the N-Acetyl Aspartate (NAA) singlet along the phase encode dimension in a gray matter phantom. Although the improved spatial resolution comes at the expense of spectral resolution, it is shown in vivo that peak broadening due to T2* decay is more significant than the loss of resolution from using spin-echoes and therefore does not affect the ability to quantify metabolites using the LCModel fitting algorithm. © 2011 by the authors.
Author supplied keywords
Cite
CITATION STYLE
Furuyama, J. K., Burns, B. L., Wilson, N. E., & Thomas, M. A. (2011). Multi-echo-based echo-planar spectroscopic imaging using a 3T MRI scanner. Materials, 4(10), 1818–1834. https://doi.org/10.3390/ma4101818
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.