Literature DB >> 17191247

Systematic investigation of balanced steady-state free precession for functional MRI in the human visual cortex at 3 Tesla.

Kai Zhong1, Jochen Leupold, Juergen Hennig, Oliver Speck.   

Abstract

Previous studies have applied balanced steady-state free precession (bSSFP) to functional brain imaging. Methods that exploit the strong frequency dependence of the MR signal in the bSSFP transition band are strongly affected by field inhomogeneity and frequency drifts. Recent bSSFP studies using "on-resonance" (in the bSSFP passband) acquisition claimed that higher sensitivity was achieved compared to traditional fMRI methods. However, the contrast mechanism that generates activation-related signal changes in bSSFP imaging is not yet fully understood. We performed a systematic study of on-resonance bSSFP signal behavior using a multiecho balanced SSFP sequence with different TRs at 3 Tesla. We conclude that intravoxel dephasing, or the off-resonance averaged steady state, dominates the bSSFP signal decay and determines the bSSFP fMRI contrast. Experimental findings were confirmed by simulations based on existing theories for signal formation around blood vessels in inhomogeneous tissues. The activation-induced signal change in on-resonance bSSFP increases with TE, and the TE dependence of the contrast-to-noise ratio (CNR) in bSSFP is similar to that in gradient echo-planar imaging (GE-EPI). However, GE-EPI has a significantly higher CNR efficiency.

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Year:  2007        PMID: 17191247     DOI: 10.1002/mrm.21103

Source DB:  PubMed          Journal:  Magn Reson Med        ISSN: 0740-3194            Impact factor:   4.668


  18 in total

1.  Full-brain coverage and high-resolution imaging capabilities of passband b-SSFP fMRI at 3T.

Authors:  Jin Hyung Lee; Serge O Dumoulin; Emine U Saritas; Gary H Glover; Brian A Wandell; Dwight G Nishimura; John M Pauly
Journal:  Magn Reson Med       Date:  2008-05       Impact factor: 4.668

2.  Fat-suppressed alternating-SSFP for whole-brain fMRI using breath-hold and visual stimulus paradigms.

Authors:  Tiffany Jou; Steve Patterson; John M Pauly; Chris V Bowen
Journal:  Magn Reson Med       Date:  2015-06-02       Impact factor: 4.668

3.  Sensitivity and specificity of high-resolution balanced steady-state free precession fMRI at high field of 9.4T.

Authors:  Sung-Hong Park; Tae Kim; Ping Wang; Seong-Gi Kim
Journal:  Neuroimage       Date:  2011-06-17       Impact factor: 6.556

4.  Integrated SSFP for functional brain mapping at 7T with reduced susceptibility artifact.

Authors:  Kaibao Sun; Rong Xue; Peng Zhang; Zhentao Zuo; Zhongwei Chen; Bo Wang; Thomas Martin; Yi Wang; Lin Chen; Sheng He; Danny J J Wang
Journal:  J Magn Reson       Date:  2016-12-30       Impact factor: 2.229

5.  Steady-state functional MRI using spoiled small-tip fast recovery imaging.

Authors:  Hao Sun; Jeffrey A Fessler; Douglas C Noll; Jon-Fredrik Nielsen
Journal:  Magn Reson Med       Date:  2014-03-11       Impact factor: 4.668

6.  Layer-specific functional and anatomical MRI of the retina with passband balanced SSFP.

Authors:  Eric R Muir; Timothy Q Duong
Journal:  Magn Reson Med       Date:  2011-05-20       Impact factor: 4.668

7.  T2-weighted 3D fMRI using S2-SSFP at 7 tesla.

Authors:  Markus Barth; Heiko Meyer; Stephan A R Kannengiesser; Jonathan R Polimeni; Lawrence L Wald; David G Norris
Journal:  Magn Reson Med       Date:  2010-04       Impact factor: 4.668

8.  Oscillating steady-state imaging (OSSI): A novel method for functional MRI.

Authors:  Shouchang Guo; Douglas C Noll
Journal:  Magn Reson Med       Date:  2020-01-08       Impact factor: 4.668

Review 9.  Seven topics in functional magnetic resonance imaging.

Authors:  Peter A Bandettini
Journal:  J Integr Neurosci       Date:  2009-09       Impact factor: 2.117

10.  Parametric dependence of myocardial blood oxygen level dependent, balanced steady-state free-precession imaging at 1.5 T: theory and experiments.

Authors:  Xiangzhi Zhou; Richard Tang; Rachel Klein; Debiao Li; Rohan Dharmakumar
Journal:  Magn Reson Med       Date:  2010-02       Impact factor: 4.668

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