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Network analysis of exploratory behaviors of mice in a spatial learning and memory task

机译:网络在空间学习和记忆任务中的探索行为的网络分析

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摘要

The Barnes maze is one of the main behavioral tasks used to study spatial learning and memory. The Barnes maze is a task conducted on “dry land” in which animals try to escape from a brightly lit exposed circular open arena to a small dark escape box located under one of several holes at the periphery of the arena. In comparison with another classical spatial learning and memory task, the Morris water maze, the negative reinforcements that motivate animals in the Barnes maze are less severe and less stressful. Furthermore, the Barnes maze is more compatible with recently developed cutting-edge techniques in neural circuit research, such as the miniature brain endoscope or optogenetics. For this study, we developed a lift-type task start system and equipped the Barnes maze with it. The subject mouse is raised up by the lift and released into the maze automatically so that it can start navigating the maze smoothly from exactly the same start position across repeated trials. We believe that a Barnes maze test with a lift-type task start system may be useful for behavioral experiments when combined with head-mounted or wire-connected devices for online imaging and intervention in neural circuits. Furthermore, we introduced a network analysis method for the analysis of the Barnes maze data. Each animal’s exploratory behavior in the maze was visualized as a network of nodes and their links, and spatial learning in the maze is described by systematic changes in network structures of search behavior. Network analysis was capable of visualizing and quantitatively analyzing subtle but significant differences in an animal’s exploratory behavior in the maze.
机译:巴恩斯迷宫是用于研究空间学习和记忆的主要行为任务之一。巴恩斯迷宫是在“干地”上进行的一项任务,在此过程中,动物试图从明亮的裸露圆形开放式竞技场逃逸到位于竞技场外围几个洞之一下方的黑暗小逃生箱中。与另一种经典的空间学习和记忆任务莫里斯水迷宫相比,在巴恩斯迷宫中激发动物的负性增强材料的强度和压力都较小。此外,Barnes迷宫与神经回路研究中最新开发的前沿技术(例如微型脑内窥镜或光遗传学)更加兼容。对于本研究,我们开发了一种升降式任务启动系统,并为其配备了Barnes迷宫。鼠标被举起的物体抬起并自动释放到迷宫中,以便在反复试验中从完全相同的起始位置开始平稳地导航迷宫。我们认为,与举升式任务启动系统一起进行的Barnes迷宫测试与用于网络成像和神经回路干预的头戴式或有线连接设备结合使用时,对于行为实验可能有用。此外,我们介绍了一种用于分析Barnes迷宫数据的网络分析方法。每个动物在迷宫中的探索行为都可视化为节点及其链接的网络,而迷宫中的空间学习则通过搜索行为网络结构的系统变化来描述。网络分析能够可视化并定量分析迷宫中动物探索行为的细微但重要的差异。

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