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The scalable mammalian brain: emergent distributions of glia and neurons

机译:可扩展的哺乳动物大脑:神经胶质和神经元的新分布

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摘要

In this paper, we demonstrate that two characteristic properties of mammalian brains emerge when scaling-up modular, cortical structures. Firstly, the glia-to-neuron ratio is not constant across brains of different sizes: large mammalian brains have more glia per neuron than smaller brains. Our analyses suggest that if one assumes that glia number is proportional to wiring, a particular quantitative relationship emerges between brain size and glia-to-neuron ratio that fits the empirical data. Secondly, many authors have reported that the number of neurons underlying one mm2 of mammalian cortex is remarkably constant, across both areas and species. Here, we will show that such a constancy emerges when enlarging modular, cortical brain structures. Our analyses thus corroborate recent studies on the mammalian brain as a scalable architecture, providing a possible mechanism to explain some of the principles, constancies and rules that hold across brains of different size.
机译:在本文中,我们证明了按比例放大模块化皮质结构时会出现哺乳动物大脑的两个特征。首先,神经胶质与神经元的比例在不同大小的大脑中不是恒定的:大型哺乳动物的大脑每个神经元的神经胶质比较小的大脑更多。我们的分析表明,如果假设神经胶质细胞的数目与布线成正比,那么脑尺寸和神经胶质与神经元的比例之间就会出现一种特殊的定量关系,这与经验数据相符。其次,许多作者报告说,在哺乳动物哺乳动物皮层的1平方毫米底下,神经元的数量非常恒定,无论在区域还是物种上。在这里,我们将证明当扩大模块化皮质大脑结构时会出现这种恒定性。因此,我们的分析证实了对哺乳动物大脑作为可扩展结构的最新研究,提供了一种可能的机制来解释跨越不同大小的大脑的某些原理,一致性和规则。

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