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麻醉和清醒状态下猴子的高场局部1H核磁共振波谱分析

High-field localized 1H NMR spectroscopy in the anesthetized and in the awake monkey.

作者信息

Pfeuffer Josef, Juchem Christoph, Merkle Hellmut, Nauerth Arno, Logothetis Nikos K

机构信息

Department of Physiology of Cognitive Processes, Max-Planck Institute for Biological Cybernetics, 72076 Tübingen, Germany.

出版信息

Magn Reson Imaging. 2004 Dec;22(10):1361-72. doi: 10.1016/j.mri.2004.10.002.

Abstract

Localized cerebral in vivo 1H NMR spectroscopy (MRS) was performed in the anesthetized as well as the awake monkey using a novel vertical 7 T/60 cm MR system. The increased sensitivity and spectral dispersion gained at high field enabled the quantification of up to 16 metabolites in 0.1- to 1-ml volumes. Quantification was accomplished by using simulations of 18 metabolite spectra and a macromolecule (MM) background spectrum consisting of 12 components. Major cerebral metabolites (concentrations >3 mM) such as glutamate (Glu), N-acetylaspartate (NAA), creatine (Cr)/phosphocreatine (PCr) and myo-inositol (Ins) were identified with an error below 3%; most other metabolites were quantified with errors in the order of 10%. Metabolite ratios were 1.39:1 for total NAA, 1.38:1 for glutamate (Glu)/glutamine (Gln) and 0.09:1 for cholines (Cho) relative to total Cr. Taurine (Tau) was detectable at concentrations lower than 1 mM, while lactate (Lac) remained below the detection limit. The spectral dispersion was sufficient to separate metabolites of similar spectral patterns, such as Gln and Glu, N-acetylaspartylglutamate (NAAG) and NAA, and PCr-Cr. MRS in the awake monkey required the development and refinement of acquisition and correction strategies to minimize magnetic susceptibility artifacts induced by respiration and movement of the mouth or body. Periods with major motion artifacts were rejected, while a frequency/phase correction was performed on the remaining single spectra before averaging. In resting periods, both spectral amplitude and line width, that is, the voxel shim, were unaffected permitting reliable measurements. The corrected spectra obtained from the awake monkey afforded the reliable detection of 6-10 cerebral metabolites of 1-ml volumes.

摘要

使用新型垂直7T/60cm磁共振系统,在麻醉和清醒的猴子身上进行了局部脑活体1H核磁共振波谱(MRS)研究。高场强下灵敏度和谱线分散度的提高,使得能够对0.1至1毫升体积内多达16种代谢物进行定量分析。通过模拟18种代谢物谱和由12个成分组成的大分子(MM)背景谱来完成定量分析。主要的脑代谢物(浓度>3mM),如谷氨酸(Glu)、N-乙酰天门冬氨酸(NAA)、肌酸(Cr)/磷酸肌酸(PCr)和肌醇(Ins),其识别误差低于3%;大多数其他代谢物的定量误差约为10%。相对于总Cr,总NAA的代谢物比率为1.39:1,谷氨酸(Glu)/谷氨酰胺(Gln)为1.38:1,胆碱(Cho)为0.09:1。牛磺酸(Tau)在浓度低于1mM时可检测到,而乳酸(Lac)仍低于检测限。谱线分散度足以分离光谱模式相似的代谢物,如Gln和Glu、N-乙酰天门冬氨酰谷氨酸(NAAG)和NAA,以及PCr-Cr。清醒猴子的MRS需要开发和完善采集与校正策略,以尽量减少呼吸以及口腔或身体运动引起的磁化率伪影。有严重运动伪影的时间段被剔除,而对其余单谱在平均之前进行频率/相位校正。在静息期,光谱幅度和线宽,即体素匀场,均未受影响,从而可以进行可靠的测量。从清醒猴子获得的校正谱能够可靠地检测1毫升体积内的6至10种脑代谢物。

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