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Navigation by Path Integration and the Fourier Transform: A Spiking-Neuron Model

机译:路径集成和傅里叶变换导航:尖峰 - 神经元模型

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In 2005, Hafting et al [1] reported that some neurons in the entorhinal cortex (EC) fire bursts when the animal occupies locations organized in a hexagonal grid pattern in their spatial environment. Previous to that, place cells had been observed, firing bursts only when the animal occupied a particular region of the environment. Both of these types of cells exhibit theta-cycle modulation, firing bursts in the 4-12Hz range. In addition, grid cells fire bursts of action potentials that precess with respect to the theta cycle, a phenomenon dubbed "theta precession". Since then, various models have been proposed to explain the relationship between grid cells, place cells, and theta precession. However, most models have lacked a fundamental, overarching framework. As a reformulation of the pioneering work of Welday et al [2], we propose that the EC is implementing its spatial coding using the Fourier Transform. We show how the Fourier Shift Theorem relates to the phases of velocity-controlled oscillators (VCOs), and propose a model for how various other spatial maps might be implemented. Our model exhibits the standard EC behaviours: grid cells, place cells, and phase precession, as borne out by theoretical computations and spiking-neuron simulations. We hope that framing this constellation of phenomena in Fourier Theory will accelerate our understanding of how the EC - and perhaps the hippocampus - encodes spatial information.
机译:2005年,Hafting等[1]报告了在动物占据其空间环境中以六边形网格图案组织的位置时,在Entorhinal Cortex(EC)火灾中的一些神经元。在此之前,已经观察到放置细胞,仅当动物占据环境的特定区域时才会烧制突发。这两种类型的细胞都表现出Theta循环调制,在4-12Hz范围内发射突发。此外,网格细胞火灾突发的动作电位,其有效地相对于θ周期,具有“Theta Prepsion”的现象。从那时起,已经提出了各种模型来解释网格细胞,放置细胞和θPEGES的关系之间的关系。然而,大多数模型缺乏基本,总体框架。作为Welday等[2]的开创性工作的重构,我们提出了EC使用傅里叶变换来实现其空间编码。我们展示了傅里叶换档定理如何涉及速度控制振荡器(VCOS)的阶段,并提出了一种模型,用于如何实现各种其他空间地图。我们的型号展示了标准EC行为:网格细胞,放置细胞和阶段进修,由理论计算和尖峰 - 神经元模拟引导。我们希望在傅立叶理论中框架这种现象的现象将加速我们对EC - 以及海马的方式的理解 - 编码空间信息。

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