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Ensemble Place Codes in Hippocampus: CA1, CA3, and Dentate Gyrus Place Cells Have Multiple Place Fields in Large Environments

机译:在海马中集成位置代码:CA1,CA3和Dentate Gyrus位置单元在大型环境中具有多个位置字段

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摘要

Previously we reported that the hippocampus place code must be an ensemble code because place cells in the CA1 region of hippocampus have multiple place fields in a more natural, larger-than-standard enclosure with stairs that permitted movements in 3-D. Here, we further investigated the nature of hippocampal place codes by characterizing the spatial firing properties of place cells in the CA1, CA3, and dentate gyrus (DG) hippocampal subdivisions as rats foraged in a standard 76-cm cylinder as well as a larger-than-standard box (1.8 m×1.4 m) that did not have stairs or any internal structure to permit movements in 3-D. The rats were trained to forage continuously for 1 hour using computer-controlled food delivery. We confirmed that most place cells have single place fields in the standard cylinder and that the positional firing pattern remapped between the cylinder and the large enclosure. Importantly, place cells in the CA1, CA3 and DG areas all characteristically had multiple place fields that were irregularly spaced, as we had reported previously for CA1. We conclude that multiple place fields are a fundamental characteristic of hippocampal place cells that simplifies to a single field in sufficiently small spaces. An ensemble place code is compatible with these observations, which contradict any dedicated coding scheme.
机译:先前我们曾报道过,海马的位置代码必须是整体代码,因为海马CA1区中的位置细胞在更自然的,比标准的更大的外壳中具有多个位置字段,并带有允许3D运动的阶梯。在这里,我们通过在标准的76厘米圆柱体以及更大的圆柱体中觅食的大鼠中,表征CA1,CA3和齿状回(DG)海马区的位置细胞的空间放电特性,进一步研究了海马区位代码的性质比标准盒子(1.8 m×1.4 m)更大的盒子,没有台阶或任何内部结构可以在3-D模式下移动。使用计算机控制的食物输送训练大鼠连续觅食1小时。我们确认,大多数放置单元在标准圆柱体中都具有单个放置场,并且位置发射模式在圆柱体与大外壳之间重新映射。重要的是,正如我们先前对CA1的报道,CA1,CA3和DG区域中的位置单元均具有多个不规则间隔的位置场。我们得出的结论是,多个场所场是海马场所细胞的基本特征,它可以在足够小的空间中简化为单个场。集成的场所代码与这些观察结果兼容,这与任何专用的编码方案相矛盾。

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