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An overview study of various re-coloring and wavelength adjustment algorithm for color vision deficient individuals

机译:色觉缺乏个体的各种重新着色和波长调整算法的概述研究

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Color Blindness which can be also referred as Color Vision Deficiency (CVD) is one of the biggest scaling defect in humans which is still under the research for its accurate detection and cure measures & strategies. Color Blindness is the decreased ability to sight the distinctive colors instantly under normal lighting conditions. There are approximately 250 million individuals who suffer from Color Blindness. So it is need of an hour to understand all the important aspects of the Problem CVD and take the necessary measures to help the People who are knowingly or unknowingly suffering from CVD. In this paper we are going to put light on how exactly color blindness is genetically transferred to children, types in color vision deficiency i.e. Anomalous Trichromacy (protanomaly, deuteranomaly, tritanomaly), Monochromacy and how exactly person sees the normal image under respective CVD and finally put light on few algorithms and strategies which with the help of re-coloring and wavelength shifting actually help the color vision deficient to view and sight all the colors of the actual image distinctively.
机译:色盲,也可以称为色盲(CVD),是人类最大的结垢缺陷之一,其准确的检测和治疗措施及策略仍在研究中。色盲是指在正常照明条件下即时看到独特颜色的能力下降。大约有2.5亿人患有色盲。因此,需要一个小时来了解问题CVD的所有重要方面,并采取必要的措施来帮助有意或无意患有CVD的人们。在本文中,我们将阐明色盲是如何遗传遗传给儿童的,色觉缺陷的类型,即异常三色性(原色,十粒性,三色性),单色性,以及人们在相应的CVD下如何正确看待正常图像,最后重点介绍几种算法和策略,这些算法和策略借助重新着色和波长偏移实际上可以帮助色觉不足,从而无法清晰地观察和观察实际图像的所有颜色。

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