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A Connection Between Image Processing and Artificial Neural Networks Layers Through a Geometric Model of Visual Perception

机译:视觉感知几何模型在图像处理与人工神经网络层之间的联系

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In this paper, we establish a connection between image processing, visual perception, and deep learning by introducing a mathematical model inspired by visual perception from which neural network layers and image processing models for color correction can be derived. Our model is inspired by the geometry of visual perception and couples a geometric model for the organization of some neurons in the visual cortex with a geometric model of color perception. More precisely, the model is a combination of a Wilson-Cowan equation describing the activity of neurons responding to edges and textures in the area V1 of the visual cortex and a Retinex model of color vision. For some particular activation functions, this yields a color correction model which processes simultaneously edges/textures, encoded into a Riemannian metric, and the color contrast, encoded into a nonlocal covariant derivative. Then, we show that the proposed model can be assimilated to a residual layer provided that the activation function is nonlinear and to a convolutional layer for a linear activation function. Finally, we show the accuracy of the model for deep learning by testing it on the MNIST dataset for digit classification.
机译:在本文中,我们通过引入受视觉启发的数学模型来建立图像处理,视觉感知和深度学习之间的联系,从中可以得出神经网络层和用于色彩校正的图像处理模型。我们的模型受到视觉感知几何的启发,并将视觉皮层中一些神经元组织的几何模型与色彩感知的几何模型结合在一起。更准确地说,该模型是威尔逊-科万方程式的组合,该方程式描述了神经元对视觉皮层区域V1中的边缘和纹理的响应以及彩色视觉的Retinex模型。对于某些特定的激活函数,这将生成一个颜色校正模型,该模型可同时处理编码为Riemannian度量的边缘/纹理和编码为非局部协变量导数的颜色对比度。然后,我们表明,只要激活函数是非线性的,就可以将所提出的模型同化为残差层,而对于线性激活函数,则可以同化为卷积层。最后,我们通过在MNIST数据集上进行数字分类测试来证明深度学习模型的准确性。

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