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Modeling grid fields instead of modeling grid cells An effective model at the macroscopic level and its relationship with the underlying microscopic neural system

机译:为网格场建模而不是为网格单元建模宏观级别的有效模型及其与基础微观神经系统的关系

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A neuron's firing correlates are defined as the features of the external world to which its activity is correlated. In many parts of the brain, neurons have quite simple such firing correlates. A striking example are grid cells in the rodent medial entorhinal cortex: their activity correlates with the animal's position in space, defining 'grid fields' arranged with a remarkable periodicity. Here, we show that the organization and evolution of grid fields relate very simply to physical space. To do so, we use an effective model and consider grid fields as point objects (particles) moving around in space under the influence of forces. We reproduce several observations on the geometry of grid patterns. This particle-like behavior is particularly salient in a recent experiment in which two separate grid patterns merge. We discuss pattern formation in the light of known results from physics of two-dimensional colloidal systems. Notably, we study the limitations of the widely used 'gridness score' and show how physics of 2d systems could be a source of inspiration, both for data analysis and computational modeling. Finally, we draw the relationship between our 'macroscopic' model for grid fields and existing 'microscopic' models of grid cell activity and discuss how a description at the level of grid fields allows to put constraints on the underlying grid cell network.
机译:神经元的发射关联定义为与其活动关联的外部世界的特征。在大脑的许多部位,神经元具有非常简单的这种发射关联。一个明显的例子是啮齿动物内侧内嗅皮层中的网格细胞:它们的活动与动物在空间中的位置相关,从而定义了以显着周期性排列的“网格区域”。在这里,我们表明网格场的组织和演变非常简单地与物理空间有关。为此,我们使用有效的模型,并将网格场视为在力的作用下在空间中移动的点对象(粒子)。我们重现关于网格图案几何形状的一些观察结果。这种类似粒子的行为在最近的实验中尤为突出,在该实验中,两个单独的网格图案合并了。我们根据二维胶体系统物理学的已知结果讨论图案形成。值得注意的是,我们研究了广泛使用的“网格度得分”的局限性,并展示了二维系统的物理原理如何成为数据分析和计算建模的灵感来源。最后,我们绘制了网格领域的“宏观”模型与网格单元活动的现有“微观”模型之间的关系,并讨论了在网格域级别的描述如何允许对基础网格单元网络施加约束。

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