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Objective analysis of the topological organization of the human cortical visual connectome suggests three visual pathways

机译:对人类皮层视觉连接体拓扑结构的客观分析提出了三种视觉途径

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摘要

The cortical visual system is composed of many areas serving various visual functions. In non-human primates, these are broadly organised into two distinct processing pathways: a ventral pathway for object recognition, and a dorsal pathway for action. In humans, recent theoretical proposals suggest the possible existence of additional pathways, but direct empirical evidence has yet to be presented. Here, we estimated the connectivity patterns between 22 human visual areas using resting-state functional MRI data of 470 individuals, leveraging the unprecedented data quantity and quality of the Human Connectome Project and a novel probabilistic atlas. An objective, data-driven analysis into the topological organisation of connectivity and subsequent quantitative confirmation revealed a highly significant triple dissociation between the retinotopic areas on the dorsal, ventral and lateral surfaces of the human occipital lobe. This suggests that the functional organisation of the human visual system involves not two but three cortical pathways.
机译:皮层视觉系统由服务各种视觉功能的许多区域组成。在非人类的灵长类动物中,这些大致分为两个不同的加工途径:用于物体识别的腹侧途径和用于动作的背侧途径。在人类中,最近的理论建议表明可能存在其他途径,但是尚未提供直接的经验证据。在这里,我们利用470个人的静止状态功能MRI数据,利用人类Connectome项目前所未有的数据量和质量以及新颖的概率图集,估计了22个人类视觉区域之间的连通性模式。对连通性的拓扑结构进行客观,数据驱动的分析,然后进行定量确认,揭示了人类枕叶背,腹和侧面的视网膜区域之间的高度重要的三重解离。这表明人类视觉系统的功能组织不涉及两个而是三个皮质途径。

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