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首页> 外文期刊>Journal of Neurophysiology >Home, head direction stability, and grid cell distortion
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Home, head direction stability, and grid cell distortion

机译:家庭,头部方向稳定性和网格细胞变形

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The home is a unique location in the life of humans and animals. In rats, home presents itself as a multicompartmental space that involves integrating navigation through subspaces. Here we embedded the laboratory rat's home cage in the arena, while recording neurons in the animal's parasubiculum and medial entorhinal cortex, two brain areas encoding the animal's location and head direction. We found that head direction signals were unaffected by home cage presence or translocation. Head direction cells remain globally stable and have similar properties inside and outside the embedded home. We did not observe egocentric bearing encoding of the home cage. However, grid cells were distorted in the presence of the home cage. While they did not globally remap, single firing fields were translocated toward the home. These effects appeared to be geometrical in nature rather than a home-specific distortion and were not dependent on explicit behavioral use of the home cage during a hoarding task. Our work suggests that medial entorhinal cortex and parasubiculum do not remap after embedding the home, but local changes in grid cell activity overrepresent the embedded space location and might contribute to navigation in complex environments.
机译:家庭是人类和动物生活中的独特地位。在大鼠中,Home将其自身呈现为涉及通过子空间集成导航的多个空间。在这里,我们嵌入了实验室大鼠的家庭笼子在竞技场,同时在动物的寄生管和内侧梭形皮层中记录神经元,两个脑区域编码动物的位置和头部方向。我们发现头部方向信号不受家庭笼子存在或易位的影响。头部方向电池保持全球稳定,在嵌入的家中内外具有类似的性质。我们没有观察到主笼的Egocentric轴承编码。然而,网格细胞在家庭笼子存在下扭曲。虽然他们没有全局重拍,但是单一的射击字段逐渐朝向家庭迁移。这些效果似乎是性质的几何,而不是家用的失真,并且不依赖于囤积任务期间家庭笼的明确行为使用。我们的作品表明,嵌入房屋后,内侧的Entorhinal Cortex和Parasubicul在嵌入房屋后不会重新映射,但网格单元活动的本地变化超越了嵌入式空间位置,并且可能有助于在复杂环境中导航。

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