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通过神经动力学产生的视觉错觉:Wilson-Cowan 型模型和有效表示原理。

Visual illusions via neural dynamics: Wilson-Cowan-type models and the efficient representation principle.

机构信息

Departament de Tecnologies de la Informació i les Comunicacions, Universitat Pompeu Fabra, Barcelona, Spain.

UCA, CNRS, INRIA, Laboratoire d'Informatique, Signaux et Systèmes de Sophia Antipolis, Sophia Antipolis, France.

出版信息

J Neurophysiol. 2020 May 1;123(5):1606-1618. doi: 10.1152/jn.00488.2019. Epub 2020 Mar 11.

Abstract

We reproduce suprathreshold perception phenomena, specifically visual illusions, by Wilson-Cowan (WC)-type models of neuronal dynamics. Our findings show that the ability to replicate the illusions considered is related to how well the neural activity equations comply with the efficient representation principle. Our first contribution consists in showing that the WC equations can reproduce a number of brightness and orientation-dependent illusions. Then we formally prove that there cannot be an energy functional that the WC dynamics are minimizing. This leads us to consider an alternative, variational modeling, which has been previously employed for local histogram equalization (LHE) tasks. To adapt our model to the architecture of V1, we perform an extension that has an explicit dependence on local image orientation. Finally, we report several numerical experiments showing that LHE provides a better reproduction of visual illusions than the original WC formulation, and that its cortical extension is capable also to reproduce complex orientation-dependent illusions. We show that the Wilson-Cowan equations can reproduce a number of brightness and orientation-dependent illusions. Then we formally prove that there cannot be an energy functional that the Wilson-Cowan equations are minimizing, making them suboptimal with respect to the efficient representation principle. We thus propose a slight modification that is consistent with such principle and show that this provides a better reproduction of visual illusions than the original Wilson-Cowan formulation. We also consider the cortical extension of both models to deal with more complex orientation-dependent illusions.

摘要

我们通过神经元动力学的威尔逊-考恩(WC)类型模型再现了阈上感知现象,特别是视觉错觉。我们的研究结果表明,复制所考虑的错觉的能力与神经活动方程与有效表示原理的符合程度有关。我们的第一个贡献在于表明 WC 方程可以再现许多亮度和方向相关的错觉。然后,我们正式证明 WC 动力学不可能最小化能量泛函。这导致我们考虑替代的变分建模,之前已经用于局部直方图均衡化(LHE)任务。为了使我们的模型适应 V1 的结构,我们进行了扩展,该扩展对局部图像方向具有显式依赖性。最后,我们报告了几个数值实验,表明 LHE 比原始 WC 公式提供了更好的视觉错觉再现,并且其皮质扩展也能够再现复杂的方向相关错觉。我们表明威尔逊-考恩方程可以再现许多亮度和方向相关的错觉。然后,我们正式证明威尔逊-考恩方程不可能最小化能量泛函,因此相对于有效表示原理来说它们是次优的。我们因此提出了一个与该原理一致的轻微修改,并表明这比原始威尔逊-考恩公式提供了更好的视觉错觉再现。我们还考虑了这两个模型的皮质扩展,以处理更复杂的方向相关错觉。

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