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Improving information perception from digital images for users with dichromatic color vision

机译:为双色彩色视觉用户改善数字图像的信息感知能力

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摘要

Color vision deficiency (CVD) is the inability or limited ability to recognize colors and discriminate between them. A person with this condition perceives a narrower range of colors compared to a person with a normal color vision. A growing number of researchers are striving to improve the quality of life for CVD patients. Finding cure, making rectification equipment, providing simulation tools and applying color transformation methods are among the efforts being made by researchers in this field. In this study we concentrate on recoloring digital images in such a way that users with CVD, especially dichromats, perceive more details from the recolored images compared to the original image. The main focus is to give the CVD user a chance to find information within the picture which they could not perceive before. However, this transformed image might look strange or unnatural to users with normal color vision. During this color transformation process, the goal is to keep the overall contrast of the image constant while adjusting the colors that might cause confusion for the CVD user. First, each pixel in the RGB-image is converted to HSV color space in order to be able to control hue, saturation and intensity for each pixel and then safe and problematic hue ranges need to be found. The method for recognizing these ranges was inspired by a condition called “unilateral dichromacy” in which the patient has normal color vision in one eye and dichromacy in another. A special grid-like color card is designed, having constant saturation and intensity over the entire image, while the hue smoothly changes from one block to another to cover the entire hue range. The next step is to simulate the way this color card is perceived by a dichromatic user and finally to find the colors that are perceived identically from two images and the ones that differ too much. This part makes our method highly customizable and we can apply it to other types of CVD, even personalize it for the color vision of a specific observer. The resulting problematic colors need to be dealt with by shifting the hue or saturation based on some pre-defined rules. The results for the method have been evaluated both objectively and subjectively. First, we simulated a set of images as they would be perceived by a dichromat and compared them with simulated view of our transformed images. The results clearly show that our recolored images can eliminate a lot of confusion from user and convey more details. Moreover, an online questionnaire was created and 39 users with CVD confirmed that the transformed images allow them to perceive more information compared to the original images.
机译:色觉不足(CVD)是无法识别颜色或区分颜色的能力有限。与具有正常色觉的人相比,具有这种情况的人所感知的色彩范围更窄。越来越多的研究人员正在努力改善CVD患者的生活质量。寻找固化,制造矫正设备,提供仿真工具和应用颜色转换方法是该领域研究人员正在努力的工作。在这项研究中,我们集中精力对数字图像进行重新着色,以使使用CVD的用户(尤其是重色差)与原始图像相比,可以从重新着色的图像中了解更多细节。主要重点是使CVD用户有机会在图片中查找他们之前无法感知的信息。但是,对于具有正常色觉的用户,此转换后的图像可能看起来很奇怪或不自然。在此颜色转换过程中,目标是保持图像的整体对比度恒定,同时调整可能会使CVD用户感到困惑的颜色。首先,将RGB图像中的每个像素转换为HSV色彩空间,以便能够控制每个像素的色相,饱和度和强度,然后需要找到安全且有问题的色相范围。识别这些范围的方法是受一种称为“单侧双色性”的情况的启发,在这种情况下,患者的一只眼睛具有正常的色觉,而另一只眼睛则具有双色性。设计了一种特殊的网格状色卡,在整个图像上具有恒定的饱和度和强度,同时色相从一个块平滑过渡到另一个,以覆盖整个色相范围。下一步是模拟双色用户感知此色卡的方式,并最终从两个图像中找到相同感觉的颜色,以及发现相差太大的颜色。这部分使我们的方法高度可定制,我们可以将其应用于其他类型的CVD,甚至可以针对特定观察者的色觉进行个性化设置。需要根据一些预定义的规则通过改变色调或饱和度来解决由此产生的有问题的颜色。该方法的结果已被客观和主观评估。首先,我们模拟了双色差影像会感知到的一组图像,并将它们与我们转换后的图像的模拟视图进行了比较。结果清楚地表明,我们的重新着色图像可以消除用户的很多困惑并传达更多细节。此外,创建了一个在线调查表,有39位CVD的用户确认与原始图像相比,转换后的图像使他们可以感知更多信息。

著录项

  • 作者

    Shayeghpour, Omid;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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