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What Grid Cells Convey about Rat Location

机译:网格细胞传达有关大鼠位置的信息

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摘要

We characterize the relationship between the simultaneously recorded quantities of rodent grid cell firing and the position of the rat. The formalization reveals various properties of grid cell activity when considered as a neural code for representing and updating estimates of the rat's location. We show that, although the spatially periodic response of grid cells appears wasteful, the code is fully combinatorial in capacity. The resulting range for unambiguous position representation is vastly greater than the ≈1–10 m periods of individual lattices, allowing for unique high-resolution position specification over the behavioral foraging ranges of rats, with excess capacity that could be used for error correction. Next, we show that the merits of the grid cell code for position representation extend well beyond capacity and include arithmetic properties that facilitate position updating. We conclude by considering the numerous implications, for downstream readouts and experimental tests, of the properties of the grid cell code.
机译:我们表征了同时记录的啮齿动物网格细胞射击与大鼠位置之间的关系。当被视为代表和更新大鼠位置估计值的神经代码时,形式化揭示了网格细胞活动的各种特性。我们显示,尽管网格单元的空间周期性响应显得很浪费,但是代码在容量上是完全组合的。明确位置表示的结果范围大大大于各个晶格的≈1-10m周期,从而可以在大鼠的行为觅食范围内提供独特的高分辨率位置规范,并且可以用于纠错。接下来,我们证明了用于位置表示的网格单元代码的优点远远超出了容量范围,并且包括有助于位置更新的算术属性。最后,我们考虑了网格单元代码属性对于下游读数和实验测试的众多含义。

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