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鸟类海马体中存在位置细胞吗?

Are There Place Cells in the Avian Hippocampus?

作者信息

Sherry David F, Grella Stephanie L, Guigueno Mélanie F, White David J, Marrone Diano F

机构信息

Advanced Facility for Avian Research, Western University, London, ON, Canada.

出版信息

Brain Behav Evol. 2017;90(1):73-80. doi: 10.1159/000477085. Epub 2017 Sep 4.

DOI:10.1159/000477085
PMID:28866682
Abstract

Birds possess a hippocampus that serves many of the same spatial and mnemonic functions as the mammalian hippocampus but achieves these outcomes with a dramatically different neuroanatomical organization. The properties of spatially responsive neurons in birds and mammals are also different. Much of the contemporary interest in the role of the mammalian hippocampus in spatial representation dates to the discovery of place cells in the rat hippocampus. Since that time, cells that respond to head direction and cells that encode a grid-like representation of space have been described in the rat brain. Research with homing pigeons has discovered hippocampal cells, including location cells, path cells, and pattern cells, that share some but not all properties of spatially responsive neurons in the rodent brain. We have recently used patterns of immediate-early gene expression, visualized by the catFISH method, to investigate how neurons in the hippocampus of brood-parasitic brown-headed cowbirds respond to spatial context. We have found cells that discriminate between different spatial environments and are re-activated when the same spatial environment is re-experienced. Given the differences in habitat and behaviour between birds and rodents, it is not surprising that spatially responsive cells in their hippocampus and other brain regions differ. The enormous diversity of avian habitats and behaviour offers the potential for understanding the general principles of neuronal representation of space.

摘要

鸟类拥有一个海马体,其发挥着许多与哺乳动物海马体相同的空间和记忆功能,但通过截然不同的神经解剖组织来实现这些功能。鸟类和哺乳动物中空间反应性神经元的特性也有所不同。当代对哺乳动物海马体在空间表征中作用的许多兴趣都源于大鼠海马体中位置细胞的发现。从那时起,在大鼠大脑中已经描述了对头部方向做出反应的细胞以及编码空间网格状表征的细胞。对归巢鸽子的研究发现了海马体细胞,包括位置细胞、路径细胞和模式细胞,它们与啮齿动物大脑中空间反应性神经元有一些但并非全部相同的特性。我们最近使用通过catFISH方法可视化的即刻早期基因表达模式,来研究巢寄生棕头牛鹂海马体中的神经元如何对空间环境做出反应。我们发现了能够区分不同空间环境并在相同空间环境再次出现时被重新激活的细胞。鉴于鸟类和啮齿动物在栖息地和行为上的差异,它们海马体及其他脑区中的空间反应性细胞有所不同也就不足为奇了。鸟类栖息地和行为的巨大多样性为理解空间神经元表征的一般原则提供了潜力。

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