Literature DB >> 16345040

High-resolution FMRI at 1.5T using balanced SSFP.

Karla L Miller1, Stephen M Smith, Peter Jezzard, John M Pauly.   

Abstract

The resolution in conventional BOLD FMRI is considerably lower than can be achieved with other MRI methods, and is insufficient for many important applications. One major difficulty in robustly improving spatial resolution is the poor image quality in BOLD FMRI, which suffers from distortions, blurring, and signal dropout. This work considers the potential for increased resolution with a new FMRI method based on balanced SSFP. This method establishes a blood oxygenation sensitive steady-state (BOSS) signal, in which the frequency sensitivity of balanced SSFP is used to detect the frequency shift of deoxyhemoglobin. BOSS FMRI is highly SNR efficient and does not suffer from image distortions or signal dropout, making this method an excellent candidate for high-resolution FMRI. This study presents the first demonstration of high-resolution BOSS FMRI, using an efficient 3D stack-of-segmented EPI readout and combined acquisition at multiple center frequencies. BOSS FMRI is shown to enable high-resolution FMRI data (1 x 1 x 2 mm(3)) in both visual and motor systems using standard hardware at 1.5 T. Currently, the major limitation of BOSS FMRI is its sensitivity to temporal and spatial field drift.

Mesh:

Year:  2006        PMID: 16345040     DOI: 10.1002/mrm.20753

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


  26 in total

Review 1.  Advances in magnetic resonance neuroimaging.

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2.  Event-related single-shot volumetric functional magnetic resonance inverse imaging of visual processing.

Authors:  Fa-Hsuan Lin; Thomas Witzel; Joseph B Mandeville; Jonathan R Polimeni; Thomas A Zeffiro; Douglas N Greve; Graham Wiggins; Lawrence L Wald; John W Belliveau
Journal:  Neuroimage       Date:  2008-04-23       Impact factor: 6.556

3.  Improving contrast to noise ratio of resonance frequency contrast images (phase images) using balanced steady-state free precession.

Authors:  Jongho Lee; Masaki Fukunaga; Jeff H Duyn
Journal:  Neuroimage       Date:  2010-10-30       Impact factor: 6.556

4.  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

5.  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

6.  High spatial resolution compressed sensing (HSPARSE) functional MRI.

Authors:  Zhongnan Fang; Nguyen Van Le; ManKin Choy; Jin Hyung Lee
Journal:  Magn Reson Med       Date:  2015-10-29       Impact factor: 4.668

7.  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

Review 8.  Functional imaging and related techniques: an introduction for rehabilitation researchers.

Authors:  Bruce Crosson; Anastasia Ford; Keith M McGregor; Marcus Meinzer; Sergey Cheshkov; Xiufeng Li; Delaina Walker-Batson; Richard W Briggs
Journal:  J Rehabil Res Dev       Date:  2010

9.  Linear constraint minimum variance beamformer functional magnetic resonance inverse imaging.

Authors:  Fa-Hsuan Lin; Thomas Witzel; Thomas A Zeffiro; John W Belliveau
Journal:  Neuroimage       Date:  2008-07-11       Impact factor: 6.556

10.  In vivo MRI assessment of placental and foetal oxygenation changes in a rat model of growth restriction using blood oxygen level-dependent (BOLD) magnetic resonance imaging.

Authors:  S Aimot-Macron; L J Salomon; B Deloison; R Thiam; C A Cuenod; O Clement; N Siauve
Journal:  Eur Radiol       Date:  2013-02-26       Impact factor: 5.315

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