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Framing of grid cells within and beyond navigation boundaries

机译:导航边界内外的网格单元框架

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摘要

Grid cells represent an ideal candidate to investigate the allocentric determinants of the brain’s cognitive map. Most studies of grid cells emphasized the roles of geometric boundaries within the navigational range of the animal. Behaviors such as novel route-taking between local environments indicate the presence of additional inputs from remote cues beyond the navigational borders. To investigate these influences, we recorded grid cells as rats explored an open-field platform in a room with salient, remote cues. The platform was rotated or translated relative to the room frame of reference. Although the local, geometric frame of reference often exerted the strongest control over the grids, the remote cues demonstrated a consistent, sometimes dominant, countervailing influence. Thus, grid cells are controlled by both local geometric boundaries and remote spatial cues, consistent with prior studies of hippocampal place cells and providing a rich representational repertoire to support complex navigational (and perhaps mnemonic) processes.>DOI:
机译:网格细胞是研究大脑认知图的同素异型决定因素的理想人选。网格细胞的大多数研究都强调了动物航行范围内几何边界的作用。诸如在本地环境之间进行新颖的路线选择之类的行为表明,存在来自导航提示之外的远程提示的其他输入。为了研究这些影响,我们记录了网格细胞,当大鼠在一个显着且遥远的线索中探索一个开放式平台时,我们将其记录下来。平台相对于参考房间框架旋转或平移。尽管局部的几何参照系通常对网格具有最强的控制力,但是远程提示却显示出一致的,有时是主导的反补贴影响。因此,网格细胞受局部几何边界和远程空间线索的控制,与先前对海马体细胞的研究一致,并提供了丰富的代表性库来支持复杂的导航(或助记符)过程。> DOI:

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