Phelps M E, Kuhl D E, Mazziota J C
Science. 1981 Mar 27;211(4489):1445-8. doi: 10.1126/science.6970412.
These studies demonstrated increasing glucose metabolic rates in the human primary (PVC) and associative (AVC) visual cortex as the complexity of visual scenes increased. The metabolic response of the AVC increased more rapidly with scene complexity than that of the PVC, indicating the greater involvement of the higher order AVC for complex visual interpretations. Increases in local metabolic activity by as much as a factor of 2 above that of control subjects with eyes closed indicate the wide range and metabolic reserve of the visual cortex.
这些研究表明,随着视觉场景复杂性的增加,人类初级视觉皮层(PVC)和联合视觉皮层(AVC)的葡萄糖代谢率也在上升。与PVC相比,AVC的代谢反应随场景复杂性的增加上升得更快,这表明高阶AVC在复杂视觉解释中发挥了更大作用。与闭眼的对照组相比,局部代谢活动增加了两倍之多,这表明视觉皮层具有广泛的范围和代谢储备。