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鸽子的几何导航需要海马体结构。

Hippocampal formation is required for geometric navigation in pigeons.

作者信息

Vargas Juan Pedro, Petruso Edward J, Bingman Verner P

机构信息

Department of Psychology and J.P. Scott Center for Neuroscience, Mind and Behaviour, Bowling Green State University, 43403 Bowling Green, OH 43403, USA.

出版信息

Eur J Neurosci. 2004 Oct;20(7):1937-44. doi: 10.1111/j.1460-9568.2004.03654.x.

Abstract

The geometric properties of bounded space have attracted considerable attention as a source of spatial information that can guide goal navigation. Although the use of geometric information to navigate has been observed in every species studied to date, the neural mechanisms that support the representation of geometric information are still debated. With the purpose of investigating this topic, we trained pigeons with lesion to the hippocampal formation to search for food in a rectangular-shaped arena containing one wall of a different color that served as the only distinctive environmental feature. Although lesioned pigeons learned the task even faster than control animals, probe trials showed that they were insensitive to geometric information. Control animals could encode and use both geometric and feature information to locate the goal. By contrast, lesioned pigeons relied exclusively on the feature information provided by the wall of a different color. The results indicate that the avian hippocampal formation is critical for learning the geometric properties of space in homing pigeons.

摘要

有界空间的几何属性作为一种能够引导目标导航的空间信息来源,已经引起了相当大的关注。尽管迄今为止在每一个被研究的物种中都观察到了利用几何信息进行导航的现象,但支持几何信息表征的神经机制仍存在争议。为了研究这个主题,我们训练了海马结构受损的鸽子,让它们在一个矩形场地中寻找食物,该场地中有一堵颜色不同的墙,这是唯一独特的环境特征。尽管受损的鸽子比对照动物更快地学会了任务,但探测试验表明它们对几何信息不敏感。对照动物能够编码并利用几何和特征信息来定位目标。相比之下,受损的鸽子完全依赖于不同颜色墙壁提供的特征信息。结果表明,鸟类的海马结构对于信鸽学习空间的几何属性至关重要。

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