论文标题
小鼠的功能磁共振光谱
Functional Magnetic Resonance Spectroscopy in the mouse
论文作者
论文摘要
功能磁共振光谱(FMR)在提出刺激后量化了代谢变化,因此与功能磁共振成像(fMRI)相比,可以提供互补信息。然而,据我们所知,尽管鼠模型对于基本和应用研究至关重要,但尚未在小鼠中进行FMR。在这里,我们首次在小鼠中进行了FMRS实验,并显示了这种方法可靠地量化代谢变异的可行性。特别是,我们观察到在通常用于fMRI(刺激的短期)的块范式中,在视觉刺激中观察到小鼠上丘的代谢变异,然后是恢复期。我们明显地报告了谷氨酸的强大调节以及NAAG,PCR和CR的调节。无刺激的对照实验揭示了潜在的代谢信号“漂移”与功能活性无关,该功能活性通常在分析FMRS数据时应考虑在内。我们的发现对于FMR在鼠标中的未来应用是有希望的。
Functional magnetic resonance spectroscopy (fMRS) quantifies metabolic variations upon presentation of a stimulus and can therefore provide complementary information compared to functional magnetic resonance imaging (fMRI). However, to our knowledge, fMRS has not yet been performed in the mouse, despite that murine models are crucial for basic and applied research. Here, we performed fMRS experiments in the mouse, for the first time, and show the feasibility of such an approach for reliably quantifying metabolic variations. In particular, we observed metabolic variations in the superior colliculus of mice upon visual stimulation in a block paradigm commonly used for fMRI (short periods of stimulus), followed by a recovery period. We notably report a robust modulation of glutamate, as well as a modulation of NAAG, PCr and Cr. A control experiment with no stimulation reveals potential metabolic signal "drifts" that are not correlated with the functional activity, which should be taken into account when analyzing fMRS data in general. Our findings are promising for future applications of fMRS in the mouse.