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In vivo solvent-suppressed localized hydrogen nuclear magnetic resonance spectroscopy: a window to metabolism?

机译:体内溶剂抑制的局部氢核磁共振波谱:代谢的窗口?

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摘要

Solvent-suppression NMR techniques are combined with a pulsed magnetic field gradient and surface coil detection method of spatial localization. The result is a technique that enables observation of metabolites in the hydrogen (1H) NMR chemical-shift spectra from preselected disk-shaped volumes of biological tissue in vivo. Localized spectra are recorded from the normal human brain and forearm and from a dog in acquisition periods of 2 s using a 1.5-T imaging/spectroscopy system. This is several hundred-fold faster than acquiring similar state-of-the-art 31P NMR spectra of brain metabolites in vivo. Spectroscopy experiments are followed by conventional surface coil imaging sequences to precisely define the selected volume. Contamination of spectra by lipid resonances is a problem.
机译:溶剂抑制NMR技术与脉冲磁场梯度和空间定位的表面线圈检测方法相结合。结果是,一项技术使得能够从体内生物组织的预选盘状体积中观察氢(1H)NMR化学位移光谱中的代谢物。使用1.5-T成像/光谱系统在2 s的采集时间内记录了正常人脑和前臂以及狗的局部光谱。这比在体内获取类似的脑代谢物的最新31P NMR谱快了数百倍。光谱实验之后是常规的表面线圈成像序列,以精确定义选定的体积。脂质共振对光谱的污染是一个问题。

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