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  2. Blue-cone monochromacy - Wikipedia

    en.wikipedia.org/wiki/Blue-cone_monochromacy

    Blue cone monochromacy (BCM) is an inherited eye disease that causes severe color blindness, poor visual acuity, nystagmus, hemeralopia, and photophobia due to the absence of functional red (L) and green (M) cone photoreceptor cells in the retina. BCM is a recessive X-linked disease and almost exclusively affects XY karyotypes.

  3. Color blindness - Wikipedia

    en.wikipedia.org/wiki/Color_blindness

    Ishihara color test [2] Treatment: ... skin color, eye color, ... normal color vision and 'superior' color vision. The cone complement contains the types of cones (or ...

  4. Gene therapy for color blindness - Wikipedia

    en.wikipedia.org/wiki/Gene_therapy_for_color...

    The retina of the human eye contains photoreceptive cells called cones that allow color vision. A normal trichromat possesses three different types of cones to distinguish different colors within the visible spectrum. The three types of cones are designated L, M, and S cones, each containing an opsin sensitive to a different portion of the ...

  5. Monochromacy - Wikipedia

    en.wikipedia.org/wiki/Monochromacy

    Red cone monochromacy (RCM), also known as L-cone monochromacy, is a condition where the blue and green cones are absent in the fovea. Like GCM, the prevalence of RCM is also estimated at less than 1 in 1 million. Cone Monochromats with normal rod function can sometimes exhibit mild color vision due to conditional dichromacy.

  6. Cone cell - Wikipedia

    en.wikipedia.org/wiki/Cone_cell

    There are about six to seven million cones in a human eye (vs ~92 million rods), with the highest concentration being towards the macula. [1] Cones are less sensitive to light than the rod cells in the retina (which support vision at low light levels), but allow the perception of color.

  7. The mantis shrimp is the most beautiful and deadly animal in ...

    www.aol.com/news/2016-08-16-the-mantis-shrimp-is...

    The mantis shrimp has 16 color-receptive cones in their eyes. Humans have only three. The spectrum of colors we see comes from three base colors: green, blue and red.

  8. Cone dystrophy - Wikipedia

    en.wikipedia.org/wiki/Cone_dystrophy

    Cone dystrophy; Fundus of a 45 year-old patient with cone rod dystrophy segregating with a loss-of-function mutation (E1087X) in ABCA4. Note the presence of various-shaped pigment deposits in the posterior pole with atrophy of the retina, while the retina appears less damaged in periphery (upper part of the photograph). Specialty: Ophthalmology

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