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视觉刺激期间人脑中葡萄糖消耗的局部1H核磁共振测量。

Localized 1H NMR measurement of glucose consumption in the human brain during visual stimulation.

作者信息

Chen W, Novotny E J, Zhu X H, Rothman D L, Shulman R G

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University School of Medicine, New Haven, CT 06510.

出版信息

Proc Natl Acad Sci U S A. 1993 Nov 1;90(21):9896-900. doi: 10.1073/pnas.90.21.9896.

Abstract

Spatially localized 1H NMR spectroscopy has been applied to measure changes in brain glucose concentration during 8-Hz photic stimulation. NMR spectroscopic measurements were made in a 12-cm3 volume centered on the calcarine fissure and encompassing the primary visual cortex. The average maximum change in glucose levels was 0.34 mumol.g-1 (n = 5) at 15 min; glucose level had turned toward resting level at 25 min. The glucose change was used to calculate the increase of glucose cerebral metabolic rate in the visual cortex region for individual subjects by using the Michaelis-Menten model of glucose transport on the assumption of constant transport kinetics. The glucose cerebral metabolic rate was calculated to increase over the nonstimulated rate by 22% during the first 15 min of photic stimulation. A model in which the glucose metabolic rate gradually decreases during stimulation was proposed as a possible explanation for the recovery of brain glucose and previously measured lactate concentrations to prestimulus values after 15 min.

摘要

空间定位1H核磁共振波谱已被用于测量8赫兹光刺激期间脑葡萄糖浓度的变化。核磁共振波谱测量是在以距状裂为中心、包含初级视觉皮层的12立方厘米体积内进行的。15分钟时葡萄糖水平的平均最大变化为0.34微摩尔·克-1(n = 5);25分钟时葡萄糖水平已恢复到静息水平。通过使用葡萄糖转运的米氏模型,并假设转运动力学恒定,利用葡萄糖变化来计算个体受试者视觉皮层区域葡萄糖脑代谢率的增加。计算得出在光刺激的前15分钟内,葡萄糖脑代谢率比未刺激时的速率增加了22%。提出了一个在刺激过程中葡萄糖代谢率逐渐降低的模型,作为对15分钟后脑葡萄糖和先前测量的乳酸浓度恢复到刺激前值的一种可能解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20fb/47679/e605ed81ccba/pnas01528-0167-a.jpg

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