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Boundary coding in the rat subiculum

机译:大鼠下丘脑的边界编码

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摘要

The spatial mapping function of the hippocampal formation is likely derived from two sets of information: one based on the external environment and the other based on self-motion. Here, we further characterize 'boundary vector cells' (BVCs) in the rat subiculum, which code space relative to one type of cue in the external environment: boundaries. We find that the majority of cells with fields near the perimeter of a walled environment exhibit an additional firing field when an upright barrier is inserted into the walled environment in a manner predicted by the BVC model. We use this property of field repetition as a heuristic measure to define BVCs, and characterize their spatial and temporal properties. In further tests, we find that subicular BVCs typically treat drop edges similarly to walls, including exhibiting field repetition when additional drop-type boundaries are added to the testing environment. In other words, BVCs treat both kinds of edge as environmental boundaries, despite their dissimilar sensory properties. Finally, we also report the existence of 'boundary-off cells', a new class of boundary-coding cells. These cells fire everywhere except where a given BVC might fire.
机译:海马结构的空间作图功能可能来自两套信息:一套基于外部环境,另一套基于自我运动。在这里,我们进一步表征大鼠下丘脑中的“边界向量细胞”(BVC),其相对于外部环境中的一种线索:边界编码空间。我们发现,当以BVC模型预测的方式将直立屏障插入壁环境时,大多数具有靠近壁环境周长的场的单元会显示出额外的激发场。我们使用场重复的这种特性作为一种启发式方法来定义BVC,并表征其时空特性。在进一步的测试中,我们发现,特殊的BVC通常会像对待墙一样处理掉落边缘,包括在将额外的掉落类型边界添加到测试环境时表现出场重复。换句话说,BVC将两种边缘都视为环境边界,尽管它们的感官特性不同。最后,我们还报告了“边界关闭单元”的存在,这是一类新的边界编码单元。这些单元会在除指定BVC可能触发的位置之外的所有位置触发。

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