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Cooperative interactions between hippocampal and striatal systems support flexible navigation

机译:海马和纹状体系统之间的协作相互作用支持灵活导航

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摘要

Research in animals and humans has demonstrated that the hippocampus is critical for retrieving distinct representations of overlapping sequences of information. There is recent evidence that the caudate nucleus and orbitofrontal cortex are also involved in disambiguation of overlapping spatial representations. The hippocampus and caudate are functionally distinct regions, but both have anatomical links with the orbitofrontal cortex. The present study used an fMRI-based functional connectivity analysis in humans to examine the functional relationship between the hippocampus, caudate, and orbitofrontal cortex when participants use contextual information to navigate well-learned spatial routes which share common elements. Participants were trained outside the scanner to navigate virtual mazes from a first-person perspective. Overlapping condition mazes began and ended at distinct locations, but converged in the middle to share some hallways with another maze. Non-overlapping condition mazes did not share any hallways with any other maze. Successful navigation through the overlapping hallways required contextual information identifying the current navigational route to guide the appropriate response for a given trial. Results revealed greater functional connectivity between the hippocampus, caudate, and orbitofrontal cortex for overlapping mazes compared to non-overlapping mazes. The current findings suggest that the hippocampus and caudate interact with prefrontal structures cooperatively for successful contextually dependent navigation.
机译:对动物和人类的研究表明,海马对于检索信息重叠序列的不同表示至关重要。最近有证据表明,尾状核和眶额皮质也参与了重叠的空间表征的消歧。海马和尾状是功能上不同的区域,但两者都与眶额皮质有解剖联系。本研究使用基于功能磁共振成像的功能性连接分析技术,研究参与者在使用上下文信息导航共享共同元素的良好学习空间路线时,海马,尾状和眶额皮质之间的功能关系。参与者在扫描仪外接受了培训,可以从第一人称视角浏览虚拟迷宫。重叠的迷宫在不同的位置开始和结束,但是在中间汇聚在一起,与另一个迷宫共享一些走廊。不重叠的迷宫没有与其他迷宫共用任何走廊。要在重叠的走廊中成功导航,需要上下文信息来标识当前的导航路线,以指导给定试验的适当响应。结果显示,与非重叠迷宫相比,重叠迷宫的海马,尾状和眶额皮质之间的功能连接性更高。目前的发现表明,海马和尾状与前额叶结构协同相互作用,可以成功地进行上下文相关的导航。

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