首页> 美国卫生研究院文献>The Journal of Neuroscience >The Conjoint Importance of the Hippocampus and Anterior Thalamic Nuclei for Allocentric Spatial Learning: Evidence from a Disconnection Study in the Rat
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The Conjoint Importance of the Hippocampus and Anterior Thalamic Nuclei for Allocentric Spatial Learning: Evidence from a Disconnection Study in the Rat

机译:海马和丘脑前核对同种异体空间学习的联合重要性:来自大鼠断线研究的证据。

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摘要

A disconnection procedure was used to test whether the hippocampus and anterior thalamic nuclei form functional components of the same spatial memory system. Unilateral excitotoxic lesions were placed in the anterior thalamic (AT) nuclei and hippocampus (HPC) in either the same (AT-HPC Ipsi group) or contralateral (AT-HPC Contra group) hemispheres of rats. The behavioral effects of these combined lesions were compared in several spatial memory tasks sensitive to bilateral hippocampal lesions. In all of the tasks tested, T-maze alternation, radial arm maze, and Morris water maze, those animals with lesions placed in the contralateral hemispheres were more impaired than those animals with lesions in the same hemisphere. These results provide direct support for the notion that the performance of tasks that require spatial memory rely on the operation of the anterior thalamus and hippocampus within an integrated neural network.
机译:断开连接程序用于测试海马和丘脑前核是否形成同一空间记忆系统的功能组件。在大鼠的同一半球(AT-HPC Ipsi组)或对侧(AT-HPC相反组)的前丘脑(AT)核和海马(HPC)中放置单侧兴奋性损伤。在几个对双侧海马病变敏感的空间记忆任务中比较了这些合并病变的行为效应。在所有测试任务中(T迷宫交替,radial臂迷宫和莫里斯水迷宫),与对侧半球中具有病变的动物相比,对侧半球中具有病变的动物的损伤更大。这些结果直接支持以下观点:需要空间记忆的任务的执行取决于集成神经网络中前丘脑和海马的操作。

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