Correction of physiologically induced global off-resonance effects in dynamic echo-planar and spiral functional imaging

In functional magnetic resonance imaging, a rapid method such as echo‐planar (EPI) or spiral is used to collect a dynamic series of images. These techniques are sensitive to changes in resonance frequency which can arise from respiration and are more significant at high magnetic fields. To decrease...

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Published inMagnetic resonance in medicine Vol. 47; no. 2; pp. 344 - 353
Main Authors Pfeuffer, Josef, Van de Moortele, Pierre-Francois, Ugurbil, Kamil, Hu, Xiaoping, Glover, Gary H.
Format Journal Article
LanguageEnglish
Published New York Wiley Subscription Services, Inc., A Wiley Company 01.02.2002
Williams & Wilkins
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Summary:In functional magnetic resonance imaging, a rapid method such as echo‐planar (EPI) or spiral is used to collect a dynamic series of images. These techniques are sensitive to changes in resonance frequency which can arise from respiration and are more significant at high magnetic fields. To decrease the noise from respiration‐induced phase and frequency fluctuations, a simple correction of the “dynamic off‐resonance in k‐space” (DORK) was developed. The correction uses phase information from the center of k‐space and a navigator echo and is illustrated with dynamic scans of single‐shot and segmented EPI and, for the first time, spiral imaging of the human brain at 7 T. Image noise in the respiratory spectrum was measured with an edge operator. The DORK correction significantly reduced respiration‐induced noise (image shift for EPI, blurring for spiral, ghosting for segmented acquisition). While spiral imaging was found to exhibit less noise than EPI before correction, the residual noise after the DORK correction was comparable. The correction is simple to apply and can correct for other sources of frequency drift and fluctuations in dynamic imaging. Magn Reson Med 47:344–353, 2002. © 2002 Wiley‐Liss, Inc.
Bibliography:istex:52CF85F66EB29B14A9A00446FF7D3B5BB439D8B7
National Institutes of Health - No. RR08079; No. RR09784; No. RO1MH55346
ArticleID:MRM10065
W.M. Keck Foundation
ark:/67375/WNG-K853XTNN-S
National Foundation of Functional Brain Imaging (NFFBI)
ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 23
ISSN:0740-3194
1522-2594
DOI:10.1002/mrm.10065