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首页> 外文期刊>Cell Reports >Report Hippocampal Global Remapping Can Occur without Input from the Medial Entorhinal Cortex
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Report Hippocampal Global Remapping Can Occur without Input from the Medial Entorhinal Cortex

机译:报告如果没有内侧内嗅皮层的输入,就可能发生海马区整体重映射

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Summary The high storage capacity of the episodic memory system relies on distinct representations for events that are separated in time and space. The spatial component of these computations includes the formation of independent maps by hippocampal place cells across environments, referred to as global remapping. Such remapping is thought to emerge by the switching of input patterns from specialized spatially selective cells in medial entorhinal cortex (mEC), such as grid and border cells. Although it has been shown that acute manipulations of mEC firing patterns are sufficient for inducing hippocampal remapping, it remains unknown whether specialized spatial mEC inputs are necessary for the reorganization of hippocampal spatial representations. Here, we examined remapping in rats without mEC input to the hippocampus and found that highly distinct spatial maps emerged rapidly in every individual rat. Our data suggest that hippocampal spatial computations do not depend on inputs from specialized cell types in mEC.
机译:总结情景存储系统的高存储容量依赖于时间和空间上分离的事件的不同表示。这些计算的空间成分包括跨环境的海马位置细胞形成的独立图,称为全局重新映射。据认为,这种重新映射是通过切换内侧内嗅皮层(mEC)中特定的空间选择性细胞(例如网格和边界细胞)的输入模式而出现的。尽管已经表明,对mEC激发模式的急性操作足以诱导海马重映射,但尚不清楚是否需要专门的空间mEC输入来重组海马空间表示。在这里,我们检查了没有将mEC输入海马的大鼠的重新映射,发现在每只大鼠中迅速出现了高度不同的空间图。我们的数据表明,海马空间计算不依赖于mEC中特定细胞类型的输入。

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