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Three-dimensional optical topography of brain activity in infants watching videos of human movement

机译:观看人类运动视频的婴儿大脑活动的三维光学地形

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We present 3D optical topography images reconstructed from data obtained previously while infants observed videos of adults making natural movements of their eyes and hands. The optical topography probe was placed over the temporal cortex, which in adults is responsible for cognitive processing of similar stimuli. Increases in oxyhaemoglobin were measured and reconstructed using a multispectral imaging algorithm with spatially variant regularization to optimize depth discrimination. The 3D optical topography images suggest that similar brain regions are activated in infants and adults. Images were presented showing the distribution of activation in a plane parallel to the surface, as well as changes in activation with depth. The time-course of activation was followed in the pixel which demonstrated the largest change, showing that changes could be measured with high temporal resolution. These results suggest that infants a few months old have regions which are specialized for reacting to human activity, and that these subtle changes can be effectively analysed using 3D optical topography.
机译:我们呈现了3D光学地形图像,该图像是根据先前获得的数据重建的,而婴儿则观察到成年人的眼睛和手自然运动的视频。将光学形貌探针放置在颞皮质上,该皮质在成人中负责类似刺激的认知加工。使用多光谱成像算法对氧合血红蛋白的增加进行测量和重构,并采用空间变异正则化来优化深度判别。 3D光学地形图图像表明,婴儿和成人中相似的大脑区域被激活。呈现的图像显示了激活在平行于表面的平面中的分布以及激活随深度的变化。在显示最大变化的像素中遵循激活的时间过程,这表明可以用高时间分辨率测量变化。这些结果表明,几个月大的婴儿具有专门针对人类活动做出反应的区域,这些细微的变化可以使用3D光学地形图进行有效分析。

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