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Image Content Enhancement Through Salient Regions Segmentation for People With Color Vision Deficiencies

机译:通过显着区域分割为有色觉障碍的人增强图像内容

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Color vision deficiencies affect visual perception of colors and, more generally, color images. Several sciences such as genetics, biology, medicine, and computer vision are involved in studying and analyzing vision deficiencies. As we know from visual saliency findings, human visual system tends to fix some specific points and regions of the image in the first seconds of observation summing up the most important and meaningful parts of the scene. In this article, we provide some studies about human visual system behavior differences between normal and color vision-deficient visual systems. We eye-tracked the human fixations in first 3 seconds of observation of color images to build real fixation point maps. One of our contributions is to detect the main differences between the aforementioned human visual systems related to color vision deficiencies by analyzing real fixation maps among people with and without color vision deficiencies. Another contribution is to provide a method to enhance color regions of the image by using a detailed color mapping of the segmented salient regions of the given image. The segmentation is performed by using the difference between the original input image and the corresponding color blind altered image. A second eye-tracking of color blind people with the images enhanced by using recoloring of segmented salient regions reveals that the real fixation points are then more coherent (up to 10%) with the normal visual system. The eye-tracking data collected during our experiments are in a publicly available dataset called Eye-Tracking of Color Vision Deficiencies.
机译:色觉缺陷会影响颜色的视觉感,更常见的是会影响彩色图像的视觉感。遗传学,生物学,医学和计算机视觉等几门科学都涉及研究和分析视觉缺陷。从视觉显着性发现中我们知道,人类视觉系统倾向于在观察的最初几秒钟内固定图像的某些特定点和区域,从而总结出场景中最重要和最有意义的部分。在本文中,我们提供了一些有关正常视觉和彩色视觉缺陷视觉系统之间人类视觉系统行为差异的研究。我们在观察彩色图像的前三秒内跟踪了人类注视,以构建真实的注视点图。我们的贡献之一是,通过分析有和没有色觉缺陷的人之间的真实注视图,来检测与色觉缺陷有关的上述人类视觉系统之间的主要差异。另一贡献是提供一种通过使用给定图像的分段显着区域的详细颜色映射来增强图像的颜色区域的方法。通过使用原始输入图像和相应的色盲更改图像之间的差异来执行分割。对色盲人进行的第二次眼动追踪,通过使用分割的显着区域进行重新着色来增强图像,这表明,真正的注视点与正常视觉系统相比更加连贯(最高10%)。在我们的实验过程中收集的眼动数据位于称为“色觉缺陷眼动跟踪”的公共可用数据集中。

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