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  2. Tetrachromacy - Wikipedia

    en.wikipedia.org/wiki/Tetrachromacy

    Tetrachromacy is demonstrated among several species of birds, [2] fishes, [3] and reptiles. [3] The common ancestor of all vertebrates was a tetrachromat, but a common ancestor of mammals lost two of its four kinds of cone cell, evolving dichromacy, a loss ascribed to the conjectured nocturnal bottleneck. Some primates then later evolved a ...

  3. Color vision test - Wikipedia

    en.wikipedia.org/wiki/Color_vision_test

    An Ishihara test image as seen by subjects with normal color vision and by those with a variety of color deficiencies. A pseudoisochromatic plate (from Greek pseudo, meaning "false", iso, meaning "same" and chromo, meaning "color"), often abbreviated as PIP, is a style of standard exemplified by the Ishihara test, generally used for screening of color vision defects.

  4. Evolution of color vision in primates - Wikipedia

    en.wikipedia.org/wiki/Evolution_of_color_vision...

    A remote vertebrate ancestor of primates possessed tetrachromacy, [1] but nocturnal, warm-blooded, mammalian ancestors lost two of four cones in the retina at the time of dinosaurs. Most teleost fish , reptiles and birds are therefore tetrachromatic while most mammals are strictly dichromats , the exceptions being some primates and marsupials ...

  5. Talk:Tetrachromacy - Wikipedia

    en.wikipedia.org/wiki/Talk:Tetrachromacy

    The first gives more information about Tetrachromacy than the Tetrachromacy article, (i.e. "each additional type of cones interacts with the other types of cones in such a way that an addition of a new type of cone means an organism can see 100 times as many colours"), however the Tetrachromacy article implies that "Susan Hogan" doesn't exist ...

  6. Color blindness - Wikipedia

    en.wikipedia.org/wiki/Color_blindness

    An Ishihara test image as seen by subjects with normal color vision and by those with a variety of color deficiencies. The main method for diagnosing a color vision deficiency is in testing the color vision directly. The Ishihara color test is the test most often used to detect red–green deficiencies and most often recognized by the public. [1]

  7. Ishihara test - Wikipedia

    en.wikipedia.org/wiki/Ishihara_Test

    The Ishihara test is a color vision test for detection of red–green color deficiencies. It was named after its designer, Shinobu Ishihara, a professor at the University of Tokyo, who first published his tests in 1917. [2] The test consists of a number of Ishihara plates, which are a type of pseudoisochromatic plate.

  8. Farnsworth–Munsell 100 hue test - Wikipedia

    en.wikipedia.org/wiki/Farnsworth–Munsell_100...

    The Farnsworth–Munsell 100 Hue Color Vision test is a color vision test often used to test for color blindness.The system was developed by Dean Farnsworth in the 1940s and it tests the ability to isolate and arrange minute differences in various color targets with constant value and chroma that cover all the visual hues described by the Munsell color system. [1]

  9. Trichromacy - Wikipedia

    en.wikipedia.org/wiki/Trichromacy

    Close-up of a trichromatic in-line shadow mask CRT display, which creates most visible colors through combinations and different levels of the three primary colors: red, green and blue