Yamada H, Sadato N, Konishi Y, Kimura K, Tanaka M, Yonekura Y, Ishii Y
Department of Radiology, Fukui Medical School, Japan.
Neuroreport. 1997 Dec 1;8(17):3775-8. doi: 10.1097/00001756-199712010-00024.
To determine developmental changes of activity-related metabolism in human visual cortex, we performed functional magnetic resonance imaging (fMRI) from the neonatal period. A rapid metabolic changing pattern accompanying normal human brain maturation was revealed by fMRI with photic stimulation. Infants older than 8 weeks of age showed a stimulus-related signal decrease in the visual cortex, whereas younger neonates showed a signal increase. This inversion of response in infants suggests a change in oxygen consumption during neuronal activation, which is related to rapid synapse formation and accompanying increased metabolism. fMRI can detect dynamic metabolic changes during the brain maturation, and provides a new clue in the detection of abnormal brain development or CNS plasticity.
为了确定人类视觉皮层中与活动相关的代谢的发育变化,我们从新生儿期开始进行功能磁共振成像(fMRI)。通过光刺激的fMRI揭示了伴随人类大脑正常成熟的快速代谢变化模式。8周龄以上的婴儿在视觉皮层中表现出与刺激相关的信号减弱,而较小的新生儿则表现出信号增强。婴儿这种反应的反转表明神经元激活期间氧消耗的变化,这与快速的突触形成和随之而来的代谢增加有关。fMRI可以检测大脑成熟过程中的动态代谢变化,并为检测异常脑发育或中枢神经系统可塑性提供新的线索。