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Quantified symmetry for entorhinal spatial maps

机译:内嗅空间图的量化对称性

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摘要

General navigation requires a spatial map that is not anchored to one environment. The firing fields of the "grid cells" found in the rat dorsolateral medial entorhinal cortex (dMEC) could be such a map. dMEC firing fields are also thought to be modeled well by a regular triangular grid (a grid with equilateral triangles as units). We use computational means to analyze and validate the regularity of the firing fields both quantitatively (using summary statistics for geometric and photometric regularity) and qualitatively (using symmetry group analysis). Upon quantifying the regularity of real dMEC firing fields, we find that there are two types of grid cells. We show rigorously that both are nearest to triangular grids using symmetry analysis. However, type Ⅲ grid cells are far from regular, both in firing rate (highly non-uniform) and grid geometry. Type Ⅲ grid cells are also more numerous. We investigate the implications of this for the role of grid cells in path integration.
机译:一般导航需要不固定在一个环境上的空间地图。在大鼠背外侧内侧内嗅皮层(dMEC)中发现的“网格细胞”的发射场可能就是这样的图。 dMEC点火场也被认为可以通过规则的三角形网格(以等边三角形为单位的网格)很好地建模。我们使用计算手段来定量(使用几何和光度规则性摘要统计)和定性(使用对称组分析)定性分析和验证发射场的规则性。通过量化实际dMEC点火场的规律性,我们发现存在两种类型的网格单元。我们使用对称性分析严格显示它们都最接近三角形网格。但是,Ⅲ型栅格电池在发射速率(高度不均匀)和栅格几何形状方面都远非常规。 Ⅲ型网格单元也更多。我们调查这对于网格单元在路径集成中的作用的影响。

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