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地标导航与自我运动引导导航的独立性:网格细胞的不同作用。

Independence of landmark and self-motion-guided navigation: a different role for grid cells.

作者信息

Poucet Bruno, Sargolini Francesca, Song Eun Y, Hangya Balázs, Fox Steven, Muller Robert U

机构信息

Aix-Marseille Université, CNRS, Laboratoire de Neurosciences Cognitives UMR 7291, , Fédération 3C FR 3512, Marseille, France.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2013 Dec 23;369(1635):20130370. doi: 10.1098/rstb.2013.0370. Print 2014 Feb 5.

Abstract

Recent interest in the neural bases of spatial navigation stems from the discovery of neuronal populations with strong, specific spatial signals. The regular firing field arrays of medial entorhinal grid cells suggest that they may provide place cells with distance information extracted from the animal's self-motion, a notion we critically review by citing new contrary evidence. Next, we question the idea that grid cells provide a rigid distance metric. We also discuss evidence that normal navigation is possible using only landmarks, without self-motion signals. We then propose a model that supposes that information flow in the navigational system changes between light and dark conditions. We assume that the true map-like representation is hippocampal and argue that grid cells have a crucial navigational role only in the dark. In this view, their activity in the light is predominantly shaped by landmarks rather than self-motion information, and so follows place cell activity; in the dark, their activity is determined by self-motion cues and controls place cell activity. A corollary is that place cell activity in the light depends on non-grid cells in ventral medial entorhinal cortex. We conclude that analysing navigational system changes between landmark and no-landmark conditions will reveal key functional properties.

摘要

近期对空间导航神经基础的兴趣源于具有强烈、特定空间信号的神经元群体的发现。内侧内嗅皮层网格细胞规则的放电场阵列表明,它们可能为位置细胞提供从动物自身运动中提取的距离信息,我们通过引用新的相反证据对这一观点进行了批判性审视。接下来,我们质疑网格细胞提供刚性距离度量的观点。我们还讨论了仅使用地标而无需自身运动信号即可实现正常导航的证据。然后,我们提出了一个模型,该模型假设导航系统中的信息流在明暗条件之间会发生变化。我们假设真正类似地图的表征位于海马体,并认为网格细胞仅在黑暗中具有关键的导航作用。按照这种观点,它们在光照下的活动主要由地标而非自身运动信息塑造,因此与位置细胞的活动一致;在黑暗中,它们的活动由自身运动线索决定并控制位置细胞的活动。一个推论是,光照下位置细胞的活动取决于腹内侧内嗅皮层中的非网格细胞。我们得出结论,分析地标和无地标条件下导航系统的变化将揭示关键的功能特性。

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