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首页> 外文期刊>Frontiers in Behavioral Neuroscience >Are Distal and Proximal Visual Cues Equally Important during Spatial Learning in Mice? A Pilot Study of Overshadowing in the Spatial Domain
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Are Distal and Proximal Visual Cues Equally Important during Spatial Learning in Mice? A Pilot Study of Overshadowing in the Spatial Domain

机译:在小鼠的空间学习过程中,远近视觉提示是否同样重要?空间领域的过度阴影的初步研究

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Animals use distal and proximal visual cues to accurately navigate in their environment, with the possibility of the occurrence of associative mechanisms such as cue competition as previously reported in honey-bees, rats, birds and humans. In this pilot study, we investigated one of the most common forms of cue competition, namely the overshadowing effect, between visual landmarks during spatial learning in mice. To this end, C57BL/6J × Sv129 mice were given a two-trial place recognition task in a T-maze, based on a novelty free-choice exploration paradigm previously developed to study spatial memory in rodents. As this procedure implies the use of different aspects of the environment to navigate (i.e., mice can perceive from each arm of the maze), we manipulated the distal and proximal visual landmarks during both the acquisition and retrieval phases. Our prospective findings provide a first set of clues in favor of the occurrence of an overshadowing between visual cues during a spatial learning task in mice when both types of cues are of the same modality but at varying distances from the goal. In addition, the observed overshadowing seems to be non-reciprocal, as distal visual cues tend to overshadow the proximal ones when competition occurs, but not vice versa. The results of the present study offer a first insight about the occurrence of associative mechanisms during spatial learning in mice, and may open the way to promising new investigations in this area of research. Furthermore, the methodology used in this study brings a new, useful and easy-to-use tool for the investigation of perceptive, cognitive and/or attentional deficits in rodents.
机译:动物使用远端和近端视觉提示在环境中准确导航,并可能发生关联机制,如先前在蜜蜂,大鼠,鸟类和人类中报道的提示竞争。在这项前期研究中,我们研究了提示竞争的最常见形式之一,即小鼠空间学习过程中视觉界标之间的遮盖效应。为此,C57BL / 6J×Sv129小鼠在T迷宫中接受了两次审讯的位置识别任务,该任务基于先前开发的用于研究啮齿动物空间记忆的新颖自由选择探索范式。由于此过程意味着要使用环境的不同方面进行导航(即,小鼠可以从迷宫的每个臂上感知到),因此我们在采集和检索阶段都操纵了远端和近端的视觉界标。我们的前瞻性发现提供了第一组线索,当两种类型的线索具有相同的模态但距目标的距离不同时,它们有助于在空间学习任务期间在视觉线索之间出现阴影。另外,观察到的遮盖似乎是不可逆的,因为当竞争发生时,远侧视觉提示往往会遮盖近端视觉提示,反之则不然。本研究的结果提供了有关小鼠空间学习过程中关联机制发生情况的第一见解,并可能为该领域的有希望的新研究开辟道路。此外,本研究中使用的方法为啮齿动物的知觉,认知和/或注意缺陷调查提供了一种新的,有用且易于使用的工具。

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