Accelerated parallel imaging for functional imaging of the human brain

被引:46
作者
de Zwart, JA
van Gelderen, P
Golay, X
Ikonomidou, VN
Duyn, JH
机构
[1] NINDS, Adv MRI Sect, LFMI, NIH, Bethesda, MD 20892 USA
[2] Natl Inst Neurosci, Dept Neuroradiol, Singapore, Singapore
关键词
parallel imaging; fMRI; rapid imaging; echo-planar imaging; geometrical distortions; SENSE; SMASH;
D O I
10.1002/nbm.1043
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Accelerated parallel imaging (PI) techniques have recently been applied to functional imaging experiments of the human brain in order to improve the performance of commonly used single-shot techniques like echo-planar imaging (EPI). Potential benefits of PI-fMRI include the reduction of geometrical distortions due to off-resonance signals, the reduction of signal-loss in areas with substantial signal inhomogeneity, increases of the spatial and temporal resolution of the fMR1 experiment and reduction of gradient acoustic noise. Although PI generally leads to a substantial decrease in image signal-to-noise ratio (SNR), its effect on the temporal stability of the signal, which ultimately determines fMRI performance, is only partially determined by image SNR. Therefore, the penalty for using PI is generally not as severe as the SNR reduction. The majority of problems related to single-shot techniques become more severe at an increased magnetic field strength, making PI an important tool in achieving the full potential of fMRI at high field. Copyright (C) 2006 John Wiley & Sons, Ltd.
引用
收藏
页码:342 / 351
页数:10
相关论文
共 108 条
[11]  
2-S
[12]   REDUCTION OF SUSCEPTIBILITY ARTIFACT IN GRADIENT-ECHO IMAGING [J].
CHO, ZH ;
RO, YM .
MAGNETIC RESONANCE IN MEDICINE, 1992, 23 (01) :193-200
[13]   Functional MR imaging using gradient-echo echo-planar imaging in the presence of large static field inhomogeneities [J].
Constable, RT .
JMRI-JOURNAL OF MAGNETIC RESONANCE IMAGING, 1995, 5 (06) :746-752
[14]   THE LOSS OF SMALL OBJECTS IN VARIABLE TE IMAGING - IMPLICATIONS FOR FSE, RARE, AND EPI [J].
CONSTABLE, RT ;
GORE, JC .
MAGNETIC RESONANCE IN MEDICINE, 1992, 28 (01) :9-24
[15]   Temporal dynamics of the BOLD fMRI impulse response [J].
de Zwart, JA ;
Silva, AC ;
van Gelderen, P ;
Kellman, P ;
Fukunaga, M ;
Chu, RX ;
Koretsky, AP ;
Frank, JA ;
Duyn, JH .
NEUROIMAGE, 2005, 24 (03) :667-677
[16]   Signal-to-noise ratio and parallel Imaging performance of a 16-channel receive-only brain coil array at 3.0 Tesla [J].
de Zwart, JA ;
Ledden, PJ ;
van Gelderen, P ;
Bodurka, J ;
Chu, RX ;
Duyn, JH .
MAGNETIC RESONANCE IN MEDICINE, 2004, 51 (01) :22-26
[17]   Reduction of gradient acoustic noise in MRI using SENSE-EPI [J].
de Zwart, JA ;
van Gelderen, P ;
Kellman, P ;
Duyn, JH .
NEUROIMAGE, 2002, 16 (04) :1151-1155
[18]   Application of sensitivity-encoded echo-planar imaging for blood oxygen level-dependent functional brain imaging [J].
de Zwart, JA ;
van Gelderen, P ;
Kellman, P ;
Duyn, JH .
MAGNETIC RESONANCE IN MEDICINE, 2002, 48 (06) :1011-1020
[19]   Design of a SENSE-optimized high-sensitivity MRI receive coil for brain imaging [J].
de Zwart, JA ;
Ledden, PJ ;
Kellman, P ;
van Gelderen, P ;
Duyn, JH .
MAGNETIC RESONANCE IN MEDICINE, 2002, 47 (06) :1218-1227
[20]   Optimized EPI for fMRI studies of the orbitofrontal cortex [J].
Deichmann, R ;
Gottfried, JA ;
Hutton, C ;
Turner, R .
NEUROIMAGE, 2003, 19 (02) :430-441