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  2. Color blindness - Wikipedia

    en.wikipedia.org/wiki/Color_blindness

    Color blindness is any deviation of color vision from normal trichromatic color vision (often as defined by the standard observer) that produces a reduced gamut. Mechanisms for color blindness are related to the functionality of cone cells , and often to the expression of photopsins , the photopigments that 'catch' photons and thereby convert ...

  3. Congenital red–green color blindness - Wikipedia

    en.wikipedia.org/wiki/Congenital_red–green...

    An example Ishihara test that may be used to detect red–green color blindness. Those with normal color vision should be able to see a green "74" on an orange background. Those with red–green color blindness may see the number "21" or no number at all, with the green and red hues appearing much more similar, if not indistinguishable. Specialty

  4. Dichromacy - Wikipedia

    en.wikipedia.org/wiki/Dichromacy

    Deuteranopia is a severe form of red-green color blindness, in which the M-cone is absent. It is sex-linked and affects about 1% of males. Color vision is very similar to protanopia. [2] Tritanopia is a severe form of blue-yellow color blindness, in which the S-cone is absent. It is much rarer than the other types, occurring in about 1 in ...

  5. Impossible color - Wikipedia

    en.wikipedia.org/wiki/Impossible_color

    A fictitious color or imaginary color is a point in a color space that corresponds to combinations of cone cell responses in one eye that cannot be produced by the eye in normal circumstances seeing any possible light spectrum. [4] No physical object can have an imaginary color.

  6. Color vision - Wikipedia

    en.wikipedia.org/wiki/Color_vision

    The basis for this variation is the number of cone types that differ between species. Mammals, in general, have a color vision of a limited type, and usually have red–green color blindness, with only two types of cones. Humans, some primates, and some marsupials see an extended range of colors, but only by comparison with other mammals.

  7. I'm blind. My eyes are different sizes and colors. Will I ...

    www.aol.com/news/eyes-different-sizes-colors...

    My right eye is lazy, shriveled and blind; it moves like an out-of-control marble circling a drain. My left eye suffers hemorrhages that can cause episodes of total blindness.

  8. Cone cell - Wikipedia

    en.wikipedia.org/wiki/Cone_cell

    Illustration of the distribution of cone cells in the fovea of an individual with normal color vision (left), and a color blind (protanopic) retina. Note that the center of the fovea holds very few blue-sensitive cones. Distribution of rods and cones along a line passing through the fovea and the blind spot of a human eye [11]

  9. Blind man sees for the first time years thanks to bionic eye

    www.aol.com/news/2014-10-10-blind-man-sees-for...

    After living in darkness for most of his life, a North Carolina man can now see thanks to a bionic eye. 66-year-old Larry Hester lost his vision in his thirties after being diagnosed with ...