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一种受视网膜机制启发的颜色恒常性模型。

A Retinal Mechanism Inspired Color Constancy Model.

作者信息

Zhang Xian-Shi, Gao Shao-Bing, Li Ruo-Xuan, Du Xin-Yu, Li Chao-Yi, Li Yong-Jie

出版信息

IEEE Trans Image Process. 2016 Mar;25(3):1219-32. doi: 10.1109/TIP.2016.2516953.

Abstract

In this paper, we propose a novel model for the computational color constancy, inspired by the amazing ability of the human vision system (HVS) to perceive the color of objects largely constant as the light source color changes. The proposed model imitates the color processing mechanisms in the specific level of the retina, the first stage of the HVS, from the adaptation emerging in the layers of cone photoreceptors and horizontal cells (HCs) to the color-opponent mechanism and disinhibition effect of the non-classical receptive field in the layer of retinal ganglion cells (RGCs). In particular, HC modulation provides a global color correction with cone-specific lateral gain control, and the following RGCs refine the processing with iterative adaptation until all the three opponent channels reach their stable states (i.e., obtain stable outputs). Instead of explicitly estimating the scene illuminant(s), such as most existing algorithms, our model directly removes the effect of scene illuminant. Evaluations on four commonly used color constancy data sets show that the proposed model produces competitive results in comparison with the state-of-the-art methods for the scenes under either single or multiple illuminants. The results indicate that single opponency, especially the disinhibitory effect emerging in the receptive field's subunit-structured surround of RGCs, plays an important role in removing scene illuminant(s) by inherently distinguishing the spatial structures of surfaces from extensive illuminant(s).

摘要

在本文中,我们受人类视觉系统(HVS)惊人能力的启发,提出了一种用于计算颜色恒常性的新型模型。HVS能够在光源颜色变化时,很大程度上保持对物体颜色的感知恒定。所提出的模型模仿了HVS第一阶段即视网膜特定层次中的颜色处理机制,从锥状光感受器层和水平细胞(HCs)中出现的适应性,到视网膜神经节细胞(RGCs)层中非经典感受野的颜色拮抗机制和去抑制效应。具体而言,HC调制通过特定于锥状细胞的侧向增益控制提供全局颜色校正,随后RGCs通过迭代适应性细化处理,直到所有三个拮抗通道达到其稳定状态(即获得稳定输出)。与大多数现有算法不同,我们的模型不是明确估计场景照明,而是直接消除场景照明的影响。在四个常用的颜色恒常性数据集上的评估表明,与用于单光源或多光源场景的现有最先进方法相比,所提出的模型产生了具有竞争力的结果。结果表明,单一拮抗作用,特别是在RGCs感受野的亚单位结构周边中出现的去抑制效应,通过固有地区分表面的空间结构与广泛的照明,在消除场景照明方面起着重要作用。

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