1 Center for Magnetic Resonance Research, Department of Radiology, University of Minnesota, Minneapolis, MN, USA.
2 Division of Endocrinology and Diabetes, Department of Medicine, University of Minnesota, Minneapolis, MN, USA.
J Cereb Blood Flow Metab. 2018 Feb;38(2):347-359. doi: 10.1177/0271678X17695291. Epub 2017 Feb 24.
In the present study, we aimed at determining the metabolic responses of the human visual cortex during the presentation of chromatic and achromatic stimuli, known to preferentially activate two separate clusters of neuronal populations (called "blobs" and "interblobs") with distinct sensitivity to color or luminance features. Since blobs and interblobs have different cytochrome-oxidase (COX) content and micro-vascularization level (i.e., different capacities for glucose oxidation), different functional metabolic responses during chromatic vs. achromatic stimuli may be expected. The stimuli were optimized to evoke a similar load of neuronal activation as measured by the bold oxygenation level dependent (BOLD) contrast. Metabolic responses were assessed using functional H MRS at 7 T in 12 subjects. During both chromatic and achromatic stimuli, we observed the typical increases in glutamate and lactate concentration, and decreases in aspartate and glucose concentration, that are indicative of increased glucose oxidation. However, within the detection sensitivity limits, we did not observe any difference between metabolic responses elicited by chromatic and achromatic stimuli. We conclude that the higher energy demands of activated blobs and interblobs are supported by similar increases in oxidative metabolism despite the different capacities of these neuronal populations.
在本研究中,我们旨在确定人类视觉皮层在呈现彩色和非彩色刺激时的代谢反应,这些刺激已知优先激活两个分离的神经元群体簇(称为“blob”和“interblob”),它们对颜色或亮度特征具有不同的敏感性。由于 blob 和 interblob 具有不同的细胞色素氧化酶 (COX) 含量和微血管化水平(即葡萄糖氧化的不同能力),因此在彩色与非彩色刺激期间可能会出现不同的功能代谢反应。刺激物经过优化,以通过血氧水平依赖 (BOLD) 对比测量到类似的神经元激活负荷。在 12 名受试者中,使用 7T 的功能 H MRS 评估代谢反应。在彩色和非彩色刺激期间,我们观察到谷氨酸和乳酸盐浓度的典型增加,以及天冬氨酸和葡萄糖浓度的降低,这表明葡萄糖氧化增加。然而,在检测灵敏度范围内,我们没有观察到彩色和非彩色刺激引起的代谢反应之间的任何差异。我们得出结论,尽管这些神经元群体的能力不同,但激活的 blob 和 interblob 的更高能量需求通过氧化代谢的相似增加得到支持。