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基于快速3D回波平面稳态自由进动序列的1H磁共振波谱成像:大鼠脑活体实验

Fast 3D echo planar SSFP-based 1H spectroscopic imaging: demonstration on the rat brain in vivo.

作者信息

Althaus Matthias, Dreher Wolfgang, Geppert Christian, Leibfritz Dieter

机构信息

Universität Bremen, Fachbereich 2 Chemie, Institut f. Organ. Chemie, 28334 Bremen, Germany.

出版信息

Magn Reson Imaging. 2006 Jun;24(5):549-55. doi: 10.1016/j.mri.2005.09.015. Epub 2006 Mar 6.

Abstract

A fast proton spectroscopic imaging pulse sequence based on the condition of steady-state free precession is presented. High 3D spatial and temporal resolution is achieved using simultaneous detection of both one spatial and one spectral dimension, with a time-dependent gradient cycle known from echo planar imaging. Additionally, in order to increase the spectral width of the measurement, an interleaved acquisition scheme is shown either for systems with limited gradient switching capabilities or applications with a wide chemical shift range. The pulse sequence is implemented on a standard 4.7-T nuclear magnetic resonance animal imaging system. Measurements with a total measurement time of less than 2.5 min and a nominal voxel size of 6.75 microl using a total of 64 x 32 x 16 voxels are performed on phantoms and healthy rat brain in vivo allowing the rapid detection of signals from both uncoupled and J-coupled spin systems with high signal-to-noise ratio.

摘要

本文提出了一种基于稳态自由进动条件的快速质子光谱成像脉冲序列。通过同时检测一个空间维度和一个光谱维度,并采用来自回波平面成像的时间相关梯度循环,实现了高3D空间和时间分辨率。此外,为了增加测量的光谱宽度,针对梯度切换能力有限的系统或具有宽化学位移范围的应用,展示了一种交错采集方案。该脉冲序列在标准4.7-T核磁共振动物成像系统上实现。在体模和健康大鼠脑体内进行了总测量时间小于2.5分钟、标称体素大小为6.75微升、总共64×32×16体素的测量,能够以高信噪比快速检测来自未耦合和J耦合自旋系统的信号。

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