Mayer Dirk, Levin Yakir S, Hurd Ralph E, Glover Gary H, Spielman Daniel M
Richard M. Lucas Center for Magnetic Resonance Spectroscopy and Imaging, Department of Radiology, Stanford University, Stanford, California 94305-5488, USA.
Magn Reson Med. 2006 Oct;56(4):932-7. doi: 10.1002/mrm.21025.
A fast spiral chemical shift imaging (spCSI) sequence was developed for application to hyperpolarized (13)C imaging. The sequence exploits sparse spectra, which can occur in such applications, and prior knowledge of resonance frequencies to reduce the measurement time by undersampling the data in the spectral domain. As a consequence, multiple reconstructions of a given data set have to be computed in which only components with frequencies within a certain bandwidth are reconstructed "in focus" while others are severely blurred ("spectral tomosynthesis"). The sequence was tested at 3 T on a phantom containing approximately 1.5-M solutions of alanine (Ala), lactate (Lac), and pyruvate-pyruvate hydrate C1-C2 ester (with two resonances, PPE1 and PPE2) at thermal equilibrium polarization, all enriched to 99% (13)C in the C1 carbonyl positions. Results from spCSI with a single spatial interleaf (single-shot spCSI) and three interleaves (three-shot spCSI) were compared with those obtained by phase-encoded free induction decay CSI (FIDCSI). The metabolic maps of all four resonances for three-shot spCSI, and of PPE1 and PPE2 for single-shot spCSI demonstrate resolution and localization properties similar to those of the FIDCSI images. The metabolic maps of Ala and Lac for single-shot spCSI contain minor artifacts due to signal overlap of aliased resonances.
开发了一种快速螺旋化学位移成像(spCSI)序列,用于超极化(13)C成像。该序列利用了此类应用中可能出现的稀疏光谱以及共振频率的先验知识,通过在光谱域对数据进行欠采样来减少测量时间。因此,必须对给定数据集进行多次重建,其中仅重建特定带宽内频率的分量使其“聚焦”,而其他分量则严重模糊(“光谱断层合成”)。在3T磁场下,对一个含有处于热平衡极化状态的丙氨酸(Ala)、乳酸(Lac)和丙酮酸 - 丙酮酸水合物C1 - C2酯(有两个共振峰,PPE1和PPE2)的1.5M溶液的模型进行了测试,所有这些物质在C1羰基位置均富集至99%的(13)C。将具有单个空间隔行扫描(单激发spCSI)和三个隔行扫描(三激发spCSI)的spCSI结果与通过相位编码自由感应衰减CSI(FIDCSI)获得的结果进行了比较。三激发spCSI的所有四个共振峰以及单激发spCSI的PPE1和PPE2的代谢图谱显示出与FIDCSI图像相似的分辨率和定位特性。单激发spCSI的Ala和Lac代谢图谱由于混叠共振的信号重叠而包含一些小伪影。