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

机译:通过路径积分和傅立叶变换进行导航:Spiking-Neuron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:在2005年,Hafting等人[1]报告说,当动物占据其空间环境中以六边形网格模式组织的位置时,内嗅皮层(EC)中的一些神经元会爆发。在此之前,已经观察到位置细胞,仅在动物占据环境的特定区域时才会爆炸。这两种类型的电池都具有θ周期调制,在4-12Hz范围内发射脉冲。另外,网格单元发射相对于θ周期进动的动作电位爆发,这种现象被称为“θ进动”。从那时起,提出了各种模型来解释网格单元,位置单元和theta进动之间的关系。但是,大多数模型都缺乏基本的总体框架。作为对Welday等人[2]的开创性工作的重新表述,我们建议EC正在使用傅立叶变换来实现其空间编码。我们将展示傅立叶频移定理与速度控制振荡器(VCO)的相位之间的关系,并提出一个模型,说明如何实现各种其他空间图。我们的模型表现出标准的EC行为:网格计算,位置计算和相位进动,这通过理论计算和尖峰中子模拟得到了证实。我们希望在傅立叶理论中对这种现象进行构架将有助于我们进一步了解EC(也许是海马体)如何编码空间信息。

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