首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >NMR measurement of brain oxidative metabolism in monkeys using 13C-labeled glucose without a 13C radiofrequency channel.
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NMR measurement of brain oxidative metabolism in monkeys using 13C-labeled glucose without a 13C radiofrequency channel.

机译:使用13C标记的葡萄糖而没有13C射频通道的NMR在猴子中进行脑氧化代谢的测量。

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We detected glutamate C4 and C3 labeling in the monkey brain during an infusion of [U-13C6]glucose, using a simple 1H PRESS sequence without 13C editing or decoupling. Point-resolved spectroscopy (PRESS) spectra revealed decreases in 12C-bonded protons, and increases in 13C-bonded protons of glutamate. To take full advantage of the simultaneous detection of 12C- and 13C-bonded protons, we implemented a quantitation procedure to properly measure both glutamate C4 and C3 enrichments. This procedure relies on LCModel analysis with a basis set to account for simultaneous signal changes of protons bound to 12C and 13C. Signal changes were mainly attributed to 12C- and 13C-bonded protons of glutamate. As a result, we were able to measure the tricarboxylic acid (TCA) cycle flux in a 3.9 cm3 voxel centered in the monkey brain on a whole-body 3 Tesla system (VTCA = 0.55 +/- 0.04 micromol x g(-1) x min(-1), N = 4). This work demonstrates that oxidative metabolism can be quantified in deep structures of the brainon clinical MRI systems, without the need for a 13C radiofrequency (RF) channel.
机译:我们使用简单的1H PRESS序列而不进行13C编辑或去耦,在输注[U-13C6]葡萄糖的过程中在猴脑中检测到谷氨酸C4和C3标记。点分辨光谱法(PRESS)光谱显示,与12C键合的质子的谷氨酸减少,而在与13C键合的谷氨酸的质子增加。为了充分利用同时检测12C和13C键合质子的优势,我们实施了定量程序以正确测量谷氨酸C4和C3的富集程度。此过程依赖于LCModel分析,并具有一个基础集,以说明与12C和13C结合的质子同时发生信号变化的情况。信号变化主要归因于谷氨酸的12 C键和13 C键质子。结果,我们能够在全身3特斯拉系统上以猴子脑为中心的3.9 cm3体素中测量三羧酸(TCA)循环通量(VTCA = 0.55 +/- 0.04 micromol xg(-1)x min(-1),N = 4)。这项工作表明,氧化代谢可以在大脑MRI系统的深层结构中进行定量,而无需13C射频(RF)通道。

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