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7特斯拉下沙鼠脑的影像引导质子光谱分析。

Image directed proton spectroscopy of gerbil brain at 7 tesla.

作者信息

Middleton D A, Hockings P D, Glen S, Reid D G, Rose S E, Crozier S, Roffman W, Rothaul A L, Hunter A J, Doddrell D M

机构信息

Analytical Sciences Department, SmithKline Beecham Pharmaceuticals Ltd, Welwyn AL6 9AR, UK.

出版信息

NMR Biomed. 1995 May;8(3):118-26. doi: 10.1002/nbm.1940080307.

Abstract

Image directed localized 1H NMR spectra were obtained at 7 T (300 MHz) from cubic volumes of less than 40 microL in the gerbil brain. Signals from cerebral metabolites commonly detected in other rodent species were easily assigned, and high resolution spectroscopy (360 MHz) of aqueous brain extracts assisted the tentative identification of partially overlapping resonances from lower concentration compounds like alanine, lysine, gamma-aminobutyrate, valine, leucine and isoleucine. Weak coupling at 7 T was manifest in the resolution of signals from the gamma-CH2 groups of glutamine and glutamate. Down-field of water, signals assigned to purine nucleotides were conspicuous in the extract spectra, but localized spectra acquired routinely in vivo, using selective excitation and gradient crushing (SUBMERGE) for water suppression, exhibited little or no signal from purines. When localized in vivo spectra were acquired without water suppression, however, or using a low power binomial excitation sequence rather than SUBMERGE, a broad signal appeared at the resonant frequency of purine aromatic protons. NMR experiments on the nucleotide adenosine 5'-monophosphate (AMP) in 90% glycerol/10% D2O solution demonstrated that pre-irradiation of the water signal even for less than 100 ms attenuated the nucleotide signal appreciably. This implies that the soft pulses required for selective excitation of water in sequences such as SUBMERGE induce spin-diffusion which eliminates or diminishes the signal from nucleotides in vivo.

摘要

在7T(300MHz)磁场下,从沙鼠脑内小于40微升的立方体体积中获取了图像引导的局部1H NMR光谱。在其他啮齿动物物种中常见的脑代谢物信号易于识别,脑水提取物的高分辨率光谱(360MHz)有助于初步鉴定来自较低浓度化合物(如丙氨酸、赖氨酸、γ-氨基丁酸、缬氨酸、亮氨酸和异亮氨酸)的部分重叠共振峰。7T磁场下的弱耦合在谷氨酰胺和谷氨酸γ-CH2基团信号的分辨率中表现明显。在水的低场,提取物光谱中归属于嘌呤核苷酸的信号很明显,但在体内常规采集的局部光谱中,使用选择性激发和梯度压制(SUBMERGE)抑制水信号时,嘌呤几乎没有信号。然而,当在不抑制水信号的情况下采集体内局部光谱,或使用低功率二项式激发序列而非SUBMERGE时,在嘌呤芳香质子的共振频率处会出现一个宽信号。在90%甘油/10%D2O溶液中对核苷酸5'-单磷酸腺苷(AMP)进行的NMR实验表明,即使对水信号预辐照不到100毫秒,核苷酸信号也会明显减弱。这意味着在SUBMERGE等序列中选择性激发水所需的软脉冲会诱导自旋扩散,从而消除或减弱体内核苷酸的信号。

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