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首页> 外文期刊>BioEssays : >In search of a periodic table of the neurons: Axonal-dendritic circuitry as the organizing principle Patterns of axons and dendrites within distinct anatomical parcels provide the blueprint for circuit-based neuronal classification
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In search of a periodic table of the neurons: Axonal-dendritic circuitry as the organizing principle Patterns of axons and dendrites within distinct anatomical parcels provide the blueprint for circuit-based neuronal classification

机译:寻找神经元的周期表:轴突-树突状电路作为组织原理不同解剖区域内轴突和树突的模式为基于回路的神经元分类提供了蓝图

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No one knows yet how to organize, in a simple yet predictive form, the knowledge concerning the anatomical, biophysical, and molecular properties of neurons that are accumulating in thousands of publications every year. The situation is not dissimilar to the state of Chemistry prior to Mendeleev's tabulation of the elements. We propose that the patterns of presence or absence of axons and dendrites within known anatomical parcels may serve as the key principle to define neuron types. Just as the positions of the elements in the periodic table indicate their potential to combine into molecules, axonal and dendritic distributions provide the blueprint for network connectivity. Furthermore, among the features commonly employed to describe neurons, morphology is considerably robust to experimental conditions. At the same time, this core classification scheme is suitable for aggregating biochemical, physiological, and synaptic information.
机译:尚无人知道如何以简单但可预测的方式来组织有关神经元的解剖,生物物理和分子特性的知识,这些知识每年在成千上万的出版物中积累。这种情况与门捷列夫将这些元素制表之前的化学状态并无不同。我们建议在已知的解剖包裹内的轴突和树突的存在或不存在的模式可以作为定义神经元类型的关键原则。正如元素周期表中元素的位置表明其潜在结合成分子一样,轴突和树突状分布也为网络连接提供了蓝图。此外,在通常用于描述神经元的特征中,形态对实验条件具有相当强的鲁棒性。同时,此核心分类方案适用于汇总生化,生理和突触信息。

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