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Two-dimensional modeling of visual receptive fields using Gaussian subunits.

机译:使用高斯亚基对视域进行二维建模。

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摘要

Retinal ganglion cell receptive fields have been successfully described using the difference of Gaussians model introduced by Rodieck. As the basic elements of retinal receptive fields are well described by the Gaussian function, it is natural to model receptive fields beyond this level as a convergence of Gaussian subunits. In this paper the full two-dimensional solution to the problem of calculating the response to drifting gratings of a model receptive field composed of Gaussian subunits is presented. The subunits are not required to be radially symmetric, any number is allowed, with any temporal phase delays; and responses are predicted to gratings of any spatial frequency at any orientation. This solution will greatly extend the range of receptive fields that can be modeled as a convergence of Gaussian subunits, including those with orientational and directional selectivities.
机译:使用Rodieck引入的高斯模型的差异,已经成功地描述了视网膜神经节细胞的感受野。由于高斯函数很好地描述了视网膜感受野的基本元素,因此自然而然地将超出此水平的感受野建模为高斯亚基的会聚。本文针对由高斯子单元组成的模型接收场的漂移光栅响应计算问题提出了完整的二维解决方案。子单元不需要是径向对称的,允许任何数量,并且具有任何时间相位延迟。并预测对任何方向的任何空间频率的光栅的响应。该解决方案将极大地扩展可以被建模为高斯亚基(包括具有定向和方向选择性的亚基)的收敛性的感受野的范围。

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