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In the past, equine color vision was tested with stimuli composed either of painted cards or photographic slides or through physiological testing using electroretinogram flicker photometry. Some studies produced similar results, but others did not, demonstrating that there was not yet a definitive answer regarding color vision in horses (Equus caballus). In this study, a pseudoisochromatic plate test--which is highly effective in testing color vision both in small children and in adult humans--was used for the first time on a nonhuman animal. Stimuli consisted of different colored dotted circles set against backgrounds of varying dots. The coloration of the circles corresponded to the visual capabilities of different types of color deficiencies (anomalous trichromacy and dichromacy). Four horses were tested on a 2-choice discrimination task. All horses successfully reached criterion for gray circles and demonstration circles. None of the horses were able to discriminate the protan-deutan plate or the individual protan or deutan plates. However, all were able to discriminate the tritan plate. The results suggest that horses are dichromats with color vision capabilities similar to those of humans with red-green color deficiencies. (PsycINFO Database Record (c) 2010 APA, all rights reserved)  相似文献   
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With the development of our modern information society, digital products have become integrated into daily life. Research on the color ergonomics of user interfaces is a pressing issue. However, color‐vision‐deficient individuals (CVDIs), who account for 4.25% of the population, must use interfaces designed for individuals with normal color vision; the demands of CVDIs have not been sufficiently addressed. In this article, we investigate color associations in the color ergonomics of user interface interaction in a manner that aims both to improve interaction efficiency and to meet the psychological needs of CVDIs. First, we study color physiological cognitions in the color interactions of user interfaces for red‐green dichromats (RGDs) to determine the single‐color, two‐color, and three‐color combinations with high discrimination for a later experiment. Second, we explore the psychological–cognition relationships of colors in user‐interface interactions for RGDs. In an experiment involving 10 pairs of association semantemes and corresponding colors, the experimental results show that RGDs have different color cognitions caused by specific visual color expressions and unconscious environmental influences. Therefore, this article argues that RGD design should consider not only the habitual colors of solidified cognitions but also instinctive color associations. Finally, based on the results of previous experiments, we apply association color to the new interface design of computer security software (360 Total Security) for RGDs. Experimental results indicate that the application of color association in our new design can improve both interaction efficiency and CVDI user experience. © 2015 Wiley Periodicals, Inc. Col Res Appl, 41, 547–563, 2016  相似文献   
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