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使用具有32通道阵列线圈的二维灵敏度编码(2D-SENSE)的加速短回波时间三维质子回波平面光谱成像。

Accelerated short-TE 3D proton echo-planar spectroscopic imaging using 2D-SENSE with a 32-channel array coil.

作者信息

Otazo Ricardo, Tsai Shang-Yueh, Lin Fa-Hsuan, Posse Stefan

机构信息

Electrical and Computer Engineering Department, University of New Mexico, Albuquerque, New Mexico 87131, USA.

出版信息

Magn Reson Med. 2007 Dec;58(6):1107-16. doi: 10.1002/mrm.21426.

Abstract

MR spectroscopic imaging (MRSI) with whole brain coverage in clinically feasible acquisition times still remains a major challenge. A combination of MRSI with parallel imaging has shown promise to reduce the long encoding times and 2D acceleration with a large array coil is expected to provide high acceleration capability. In this work a very high-speed method for 3D-MRSI based on the combination of proton echo planar spectroscopic imaging (PEPSI) with regularized 2D-SENSE reconstruction is developed. Regularization was performed by constraining the singular value decomposition of the encoding matrix to reduce the effect of low-value and overlapped coil sensitivities. The effects of spectral heterogeneity and discontinuities in coil sensitivity across the spectroscopic voxels were minimized by unaliasing the point spread function. As a result the contamination from extracranial lipids was reduced 1.6-fold on average compared to standard SENSE. We show that the acquisition of short-TE (15 ms) 3D-PEPSI at 3 T with a 32 x 32 x 8 spatial matrix using a 32-channel array coil can be accelerated 8-fold (R = 4 x 2) along y-z to achieve a minimum acquisition time of 1 min. Maps of the concentrations of N-acetyl-aspartate, creatine, choline, and glutamate were obtained with moderate reduction in spatial-spectral quality. The short acquisition time makes the method suitable for volumetric metabolite mapping in clinical studies.

摘要

在临床可行的采集时间内实现全脑覆盖的磁共振波谱成像(MRSI)仍然是一项重大挑战。MRSI与并行成像相结合有望减少较长的编码时间,并且预计使用大阵列线圈的二维加速将提供高加速能力。在这项工作中,基于质子回波平面波谱成像(PEPSI)与正则化二维灵敏度编码(2D-SENSE)重建相结合,开发了一种用于三维MRSI的超高速方法。通过约束编码矩阵的奇异值分解进行正则化,以减少低数值和重叠线圈灵敏度的影响。通过消除点扩散函数的混叠,将光谱体素间的光谱异质性和线圈灵敏度不连续性的影响降至最低。结果,与标准SENSE相比,颅外脂质的污染平均降低了1.6倍。我们表明,在3T场强下,使用32通道阵列线圈以32×32×8的空间矩阵采集短回波时间(15 ms)的三维PEPSI时,可沿y-z方向加速8倍(R = 4×2),从而实现最短1分钟的采集时间。在空间光谱质量略有下降的情况下,获得了N-乙酰天门冬氨酸、肌酸、胆碱和谷氨酸浓度图。短采集时间使得该方法适用于临床研究中的体积代谢物图谱绘制。

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