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Reduction of eddy‐current‐induced distortion in diffusion MRI using a twice‐refocused spin echo

Magnetic Resonance in Medicine · 2002 · Vol. 49(1) · pp. 177–182
Timothy G. ReeseO. HeidRobert M. WeisskoffVan J. Wedeen

Abstract

Image distortion due to field gradient eddy currents can create image artifacts in diffusion-weighted MR images. These images, acquired by measuring the attenuation of NMR signal due to directionally dependent diffusion, have recently been shown to be useful in the diagnosis and assessment of acute stroke and in mapping of tissue structure. This work presents an improvement on the spin-echo (SE) diffusion sequence that displays less distortion and consequently improves image quality. Adding a second refocusing pulse provides better image quality with less distortion at no cost in scanning efficiency or effectiveness, and allows more flexible diffusion gradient timing. By adjusting the timing of the diffusion gradients, eddy currents with a single exponential decay constant can be nulled, and eddy currents with similar decay constants can be greatly reduced. This new sequence is demonstrated in phantom measurements and in diffusion anisotropy images of normal human brain.

Advanced Neuroimaging Techniques and ApplicationsAdvanced MRI Techniques and ApplicationsNMR spectroscopy and applicationsEddy currentDistortion (music)Anisotropic diffusionPulse sequenceImage qualityImaging phantomNuclear magnetic resonanceSpin echoDiffusionSIGNAL (programming language)

MeSH terms

BrainHumansMagnetic Resonance ImagingArtifactsEcho-Planar ImagingPhantoms, ImagingStroke
Citations
1,220
FWCI
17.91
field-weighted impact
References
27
Percentile
100%
vs. same field & year
Citations per year
References
MR diffusion tensor spectroscopy and imaging
Biophysical Journal · 1994 · 6,003 citations
Diffusion tensor MR imaging of the human brain.
Radiology · 1996 · 2,681 citations
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