Kusaka Takashi, Kawada Kou, Okubo Kensuke, Nagano Keiko, Namba Masanori, Okada Hitoshi, Imai Tadashi, Isobe Kenichi, Itoh Susumu
Maternal Perinatal Center, Faculty of Medicine, Kagawa University, Kagawa, Japan.
Hum Brain Mapp. 2004 Jun;22(2):122-32. doi: 10.1002/hbm.20020.
During the developmental stage, the brain undergoes anatomic, functional, and metabolic changes necessary to support the complex adaptive behavior of a mature individual. Estimation of developmental changes occurring in different regions of the brain would provide a means of relating various behavioral phenomena to maturation-specific brain structures, thereby providing useful information on structure-function relationships in both normal and disease states. We used multichannel near-infrared spectroscopy (MNIRS), a new noninvasive imaging technique for revealing the course of neural activity in selected brain regions, to monitor the activities of the visual cortex as mirrored by hemodynamic responses in infants subjected to photostimulation during natural sleep. In the infants, oxyhemoglobin and total hemoglobin decreased and deoxyhemoglobin increased in the visual cortex with photostimulation. This pattern of responses was different from the response pattern in adults reported previously. The different patterns of responses to photostimulation in the visual cortices of infants and adults might reflect developmental and behavioral differences. It may reflect a different functional organization of the visual cortex in infants or ongoing retinal development. Our results demonstrated that regional hemodynamic change could be detected in a small area around the visual cortex. MNIRS offers considerable potential for research and noninvasive clinical applications.
在发育阶段,大脑会经历解剖学、功能和代谢方面的变化,以支持成熟个体复杂的适应性行为。估计大脑不同区域发生的发育变化,将提供一种把各种行为现象与特定成熟阶段的脑结构联系起来的方法,从而为正常和疾病状态下的结构 - 功能关系提供有用信息。我们使用多通道近红外光谱技术(MNIRS),一种用于揭示选定脑区神经活动过程的新型非侵入性成像技术,来监测在自然睡眠期间接受光刺激的婴儿视觉皮层的活动,这种活动通过血流动力学反应来反映。在婴儿中,光刺激时视觉皮层中的氧合血红蛋白和总血红蛋白减少,脱氧血红蛋白增加。这种反应模式与先前报道的成年人的反应模式不同。婴儿和成年人视觉皮层对光刺激的不同反应模式可能反映了发育和行为上的差异。这可能反映了婴儿视觉皮层不同的功能组织或视网膜的持续发育。我们的结果表明,可以在视觉皮层周围的小区域检测到局部血流动力学变化。MNIRS在研究和非侵入性临床应用方面具有相当大的潜力。