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Brain imaging in awake infants by near-infrared optical topography

机译:通过近红外光学地形图对清醒婴儿进行脑成像

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摘要

Studies of young infants are critical to understand perceptual, motor, and cognitive processing in humans. However, brain mechanisms involved are poorly understood, because the use of brain-imaging methods such as functional magnetic resonance imaging in awake infants is difficult. In the present study we show functional brain imaging of awake infants viewing visual stimuli by means of multichannel near-infrared spectroscopy, a technique that permits a measurement of cerebral hemoglobin oxygenation in response to brain activation through the intact skull without subject constraint. We found that event-related increases in oxyhemoglobin were evident in localized areas of the occipital cortex of infants aged 2–4 months in response to a brief presentation of a checkerboard pattern reversal while they maintained fixation to attention-grabbing stimuli. The dynamic change in cerebral blood oxygenation was qualitatively similar to that observed in the adult brain. This result introduces near-infrared optical topography as a method for investigating the functional development of the brain in early infancy.
机译:对幼儿的研究对于了解人类的知觉,运动和认知过程至关重要。但是,由于难以在清醒的婴儿中使用诸如功能磁共振成像之类的脑成像方法,因此涉及的脑机制了解甚少。在本研究中,我们显示了通过多通道近红外光谱法观察清醒的婴儿的功能性大脑成像,该技术通过多通道近红外光谱技术来测量脑血红蛋白的氧合,以响应通过完整头骨的大脑激活而不受受试者的限制。我们发现在2-4个月大的婴儿枕叶皮质局部区域,与事件相关的氧合血红蛋白增加很明显,这是由于对棋盘图案反转的简要介绍,而他们仍对吸引注意力的刺激保持注视。从本质上讲,大脑血液氧合的动态变化与成年大脑中观察到的相似。该结果引入了近红外光学地形图,作为研究婴儿早期大脑功能发育的方法。

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