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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Feasibility of in vivo measurement of glucose metabolism in the mouse hypothalamus by 1 1 H‐[ 13 13 C] MRS at 14.1T
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Feasibility of in vivo measurement of glucose metabolism in the mouse hypothalamus by 1 1 H‐[ 13 13 C] MRS at 14.1T

机译:在14.1T的1 1 H-[13 13 C] MRS中,小鼠下丘脑中葡萄糖代谢体内体内测量的可行性

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Purpose Determine the feasibility of 1 H‐[ 13 C] MRS in the mouse hypothalamus using a 14.1T magnet. Methods We optimized the design of a 1 H‐[ 13 C] surface coil to maximize the signal‐to‐noise ratio of 1 H‐[ 13 C] MRS in the mouse hypothalamus. With enhanced signal, 13 C accumulation in glucose metabolites was measured in a 8.7?μL voxel in the hypothalamus of 5 healthy mice during the continuous administration of [1,6‐ 13 C 2 ]glucose. Results Accumulation of 13 C label in glucose C6 and lactate C3 was visible in the hypothalamus 11?min after glucose administration. The 13 C fractional enrichment (FE) curves of lactate C3, glutamate and glutamine C4, glutamate+glutamine C3 and C2, GABA C2, C3, and C4, and aspartate C3 were measured with a time resolution of 11?min over 190?min. FE time‐courses and metabolic pool sizes were averaged to fit a novel one‐compartment model of brain energy metabolism that incorporates the main features of the hypothalamus. Conclusion Dynamic 1 H‐[ 13 C] MRS is able to measure in vivo brain metabolism in small and deep areas of the mouse brain such as the hypothalamus, and it can be used to calculate metabolic fluxes, including glutamatergic and GABAergic metabolism as well as the contribution of metabolic sources other than glucose.
机译:目的使用14.1T磁铁确定鼠标下丘脑中1 h-[13 c] MRS的可行性。方法我们优化了1 h-[13 c]表面线圈的设计,以最大化鼠标下丘脑中1 h-[13 c] mrs的信噪比。通过增强的信号,在连续施用[1,6-13 C 2]葡萄糖的连续施用期间,在8.7Ω·μl体素中测量葡萄糖代谢物中的13℃累积。结果在葡萄糖给药后,在下丘脑11?min中,在葡萄糖C6和乳酸C3中累积13℃标记的累积。乳酸C3,谷氨酸和谷氨酰胺C4,谷氨酸+谷氨酰胺C3和C2,GABA C2,C3和C4的13 C分数富集(Fe)曲线,并在190℃的时间分辨率测量11Ω·分钟的时间分辨率测量。 Fe-Time-Courses和代谢池尺寸平均以适应新颖的脑能代谢模型,包括下丘脑的主要特征。结论动态1 H-[13 c] MRS能够在小鼠脑中的小和深处的小脑代谢中测量如下丘脑的小和深部,并且可用于计算代谢势次,包括谷氨酸和GABAGIC代谢以及除了葡萄糖之外的代谢源的贡献。

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