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家鸽导航中禽背侧丘脑核的参与。

Involvement of the Avian Dorsal Thalamic Nuclei in Homing Pigeon Navigation.

作者信息

Jorge Paulo E, Pinto Belmiro V, Bingman Verner P, Phillips John B

机构信息

MARE - Marine and Environmental Sciences Centre, ISPA - Instituto Universitário, Lisbon, Portugal.

SIM - Laboratory for Systems Instrumentation and Modeling in Science and Technology for Space and the Environment, Faculdade de Ciências da Universidade de Lisboa, Lisbon, Portugal.

出版信息

Front Behav Neurosci. 2017 Nov 2;11:213. doi: 10.3389/fnbeh.2017.00213. eCollection 2017.

Abstract

The navigational ability of birds has been a focus of popular and scientific interest for centuries, but relatively little is known about the neuronal networks that support avian navigation. In the brain, regions like the piriform cortex, olfactory bulbs, hippocampal formation, vestibular nuclei, and the wulst, are among the brain regions often discussed as involved in avian navigation. However, despite large literature showing a prominent role of some anterior and dorsal thalamic nuclei in mammalian spatial navigation, little is known about the role of the thalamus in avian navigation. Here, we analyzed a possible role of the dorsal anterior thalamic nuclei in avian navigation by combining olfactory manipulations during the transport of young homing pigeons to a release site and c-Fos immunohistochemistry for the mapping brain activity. The results reveal that odor modulated neurons in the avian dorsolateral lateral (DLL) subdivision of the anterior thalamic nuclei are actively involved in processing outward journey, navigational information. Outward journey information is used by pigeons to correctly determine the homeward direction. DLL participation in acquiring path-based information, and its modulation by olfactory exposure, broadens our understanding of the neural pathways underlying avian navigation.

摘要

几个世纪以来,鸟类的导航能力一直是大众和科学界关注的焦点,但对于支持鸟类导航的神经网络,我们却知之甚少。在大脑中,诸如梨状皮质、嗅球、海马结构、前庭核以及中脑视叶等区域,常被认为与鸟类导航有关。然而,尽管有大量文献表明某些丘脑前核和背侧丘脑核在哺乳动物空间导航中起着重要作用,但丘脑在鸟类导航中的作用却鲜为人知。在此,我们通过在将幼归巢鸽运送到放飞地点的过程中进行嗅觉操控,并利用c-Fos免疫组织化学技术来绘制大脑活动,分析了丘脑前背核在鸟类导航中的可能作用。结果显示,丘脑前核背外侧外侧(DLL)亚区中受气味调节的神经元积极参与处理外出旅程的导航信息。外出旅程信息被鸽子用来正确确定归巢方向。DLL参与获取基于路径的信息,以及其受嗅觉暴露的调节,拓宽了我们对鸟类导航潜在神经通路的理解。

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