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Large-scale network organization in the avian forebrain: a connectivity matrix and theoretical analysis

机译:禽前脑的大型网络组织:连通性矩阵和理论分析

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摘要

Many species of birds, including pigeons, possess demonstrable cognitive capacities, and some are capable of cognitive feats matching those of apes. Since mammalian cortex is laminar while the avian telencephalon is nucleated, it is natural to ask whether the brains of these two cognitively capable taxa, despite their apparent anatomical dissimilarities, might exhibit common principles of organization on some level. Complementing recent investigations of macro-scale brain connectivity in mammals, including humans and macaques, we here present the first large-scale “wiring diagram” for the forebrain of a bird. Using graph theory, we show that the pigeon telencephalon is organized along similar lines to that of a mammal. Both are modular, small-world networks with a connective core of hub nodes that includes prefrontal-like and hippocampal structures. These hub nodes are, topologically speaking, the most central regions of the pigeon's brain, as well as being the most richly connected, implying a crucial role in information flow. Overall, our analysis suggests that indeed, despite the absence of cortical layers and close to 300 million years of separate evolution, the connectivity of the avian brain conforms to the same organizational principles as the mammalian brain.
机译:许多鸟类(包括鸽子)具有明显的认知能力,有些鸟类具有与猿类相匹配的认知能力。由于哺乳动物皮质是层状的,而禽端脑是有核的,因此自然要问这两个具有认知能力的类群的大脑,尽管它们在解剖学上明显不同,但在某种程度上可能表现出共同的组织原理。补充最近对哺乳动物(包括人和猕猴)进行大规模大脑连接的研究,我们在这里提出了鸟类前脑的第一个大规模“接线图”。使用图论,我们证明鸽子的脑神经组织与哺乳动物的组织相似。两者都是模块化的小世界网络,具有集线器节点的连接核心,其中包括前额叶样和海马结构。从拓扑结构上讲,这些枢纽节点是鸽子大脑的最中央区域,并且连接最紧密,这暗示着信息流中的关键作用。总的来说,我们的分析表明,确实,尽管没有皮质层并且有近3亿年的独立进化,但禽类大脑的连通性符合与哺乳动物大脑相同的组织原理。

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