DocumentCode :
1495021
Title :
Cartesian echo planar hybrid scanning with two to eight echoes
Author :
Kashmar, G. ; Nalcioglu, O.
Author_Institution :
Dept. of Radiol. Sci., California Univ., CA, USA
Volume :
10
Issue :
1
fYear :
1991
fDate :
3/1/1991 12:00:00 AM
Firstpage :
1
Lastpage :
10
Abstract :
A method of fast nuclear magnetic resonance (NMR) imaging which uses only square wave gradient shapes and also collects data on Cartesian coordinates in a way similar to the blipped echo planar imaging method (BEPI) is described. The method is a heuristic attempt at finding an optimal data collection strategy for NMR imaging. Its advantages and disadvantages compared to other methods are carefully analyzed. Clinical size anatomical (head and body) images are shown. It is found that the interecho phase-angle discrepancies that are caused bv the B0 inhomogeneity and by the gradient wave form distortion can largely be eliminated by using the half Fourier method with full Fourier phase map correction, but one phase map is required for each echo. GRASS/FLASH spoiling techniques are incorporated into the method in order to allow multiecho speed increases for scans which would run under 10 s using a single-echo method. The technique can be applied directly to GRASS/FLASH itself, as is demonstrated by a two-echo GRASS scan. The fastest image was 1.9 s
Keywords :
biomedical NMR; patient diagnosis; 1.9 s; 10 s; B0 inhomogeneity; Cartesian coordinates; Cartesian echo planar hybrid scanning; Fourier phase map correction; blipped echo planar imaging method; clinical size anatomical images; fast NMR imaging method; gradient wave form distortion; half Fourier method; heuristic method; interecho phase-angle discrepancies; optimal data collection strategy; square wave gradient shapes; Cancer; Fast Fourier transforms; Heart; Magnetic heads; Magnetic resonance imaging; Phase distortion; Physics; Pixel; Reconstruction algorithms; Shape;
fLanguage :
English
Journal_Title :
Medical Imaging, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0062
Type :
jour
DOI :
10.1109/42.75606
Filename :
75606
Link To Document :
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