Posse Stefan, Otazo Ricardo, Tsai Shang-Yueh, Yoshimoto Akio Ernesto, Lin Fa-Hsuan
Department of Neurology, University of New Mexico School of Medicine, Albuquerque, New Mexico 87131, USA.
Magn Reson Med. 2009 Mar;61(3):541-7. doi: 10.1002/mrm.21855.
A magnetic resonance spectroscopic imaging (MRSI) pulse sequence based on proton-echo-planar-spectroscopic-imaging (PEPSI) is introduced that measures two-dimensional metabolite maps in a single excitation. Echo-planar spatial-spectral encoding was combined with interleaved phase encoding and parallel imaging using SENSE to reconstruct absorption mode spectra. The symmetrical k-space trajectory compensates phase errors due to convolution of spatial and spectral encoding. Single-shot MRSI at short TE was evaluated in phantoms and in vivo on a 3-T whole-body scanner equipped with a 12-channel array coil. Four-step interleaved phase encoding and fourfold SENSE acceleration were used to encode a 16 x 16 spatial matrix with a 390-Hz spectral width. Comparison with conventional PEPSI and PEPSI with fourfold SENSE acceleration demonstrated comparable sensitivity per unit time when taking into account g-factor-related noise increases and differences in sampling efficiency. LCModel fitting enabled quantification of inositol, choline, creatine, and N-acetyl-aspartate (NAA) in vivo with concentration values in the ranges measured with conventional PEPSI and SENSE-accelerated PEPSI. Cramer-Rao lower bounds were comparable to those obtained with conventional SENSE-accelerated PEPSI at the same voxel size and measurement time. This single-shot MRSI method is therefore suitable for applications that require high temporal resolution to monitor temporal dynamics or to reduce sensitivity to tissue movement.
介绍了一种基于质子回波平面波谱成像(PEPSI)的磁共振波谱成像(MRSI)脉冲序列,该序列可在单次激发中测量二维代谢物图谱。回波平面空间谱编码与交错相位编码以及使用灵敏度编码(SENSE)的并行成像相结合,以重建吸收模式谱。对称的k空间轨迹补偿了由于空间和谱编码卷积导致的相位误差。在配备12通道阵列线圈的3-T全身扫描仪上,对体模和活体进行了短回波时间(TE)的单次MRSI评估。采用四步交错相位编码和四倍SENSE加速来编码一个16×16的空间矩阵,谱宽为390 Hz。与传统PEPSI和四倍SENSE加速的PEPSI相比,考虑到与g因子相关的噪声增加和采样效率差异,单位时间内的灵敏度相当。LCModel拟合能够在体内对肌醇、胆碱、肌酸和N-乙酰天门冬氨酸(NAA)进行定量,其浓度值在传统PEPSI和SENSE加速的PEPSI测量范围内。在相同体素大小和测量时间下,克拉美-罗下界与传统SENSE加速的PEPSI相当。因此,这种单次MRSI方法适用于需要高时间分辨率来监测时间动态或降低对组织运动敏感性的应用。