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  2. Evolution of the eye - Wikipedia

    en.wikipedia.org/wiki/Evolution_of_the_eye

    Biologist D.E. Nilsson has independently theorized about four general stages in the evolution of a vertebrate eye from a patch of photoreceptors. [5] Nilsson and S. Pelger estimated in a classic paper that only a few hundred thousand generations are needed to evolve a complex eye in vertebrates. [6]

  3. Cephalopod eye - Wikipedia

    en.wikipedia.org/wiki/Cephalopod_eye

    Unlike the vertebrate camera eye, the cephalopods' form as invaginations of the body surface (rather than outgrowths of the brain), and consequently the cornea lies over the top of the eye as opposed to being a structural part of the eye. [4] Unlike the vertebrate eye, a cephalopod eye is focused through movement, much like the lens of a camera ...

  4. Evolution of the Vertebrates - Wikipedia

    en.wikipedia.org/wiki/Evolution_of_the_Vertebrates

    In the book vertebrate evolution is studied utilizing comparative anatomy & functional morphology of existing vertebrates, and fossil records. The book is considered a classic and has been used very frequently as a college-level or university introductory level text on the subjects of basic paleontology and vertebrate evolution. [2]

  5. Cephalization - Wikipedia

    en.wikipedia.org/wiki/Cephalization

    A lobster is heavily cephalized, with eyes, antennae, multiple mouthparts, and the brain (inside the armoured exoskeleton), all concentrated at the animal's head end. Cephalization is an evolutionary trend in animals that, over a sufficient number of generations, concentrates the special sense organs and nerve ganglia towards the front of the ...

  6. Eye development - Wikipedia

    en.wikipedia.org/wiki/Eye_development

    Several layers such as the neural tube, neural crest, surface ectoderm, and mesoderm contribute to the development of the eye. [2] [3] [4] Eye development is initiated by the master control gene PAX6, a homeobox gene with known homologues in humans (aniridia), mice (small eye), and Drosophila (eyeless). The PAX6 gene locus is a transcription ...

  7. Vertebrate visual opsin - Wikipedia

    en.wikipedia.org/wiki/Vertebrate_visual_opsin

    Vertebrate visual opsins are a subclass of ciliary opsins and mediate vision in vertebrates. They include the opsins in human rod and cone cells . They are often abbreviated to opsin , as they were the first opsins discovered and are still the most widely studied opsins.

  8. Ancient jawless fish’s head fossilized in 3D hints at ... - AOL

    www.aol.com/ancient-jawless-fish-head-fossilized...

    A newfound fossil of a jawless fish is the oldest known vertebrate cranium preserved in 3D. The 455 million-year-old find could illuminate how vertebrate heads evolved.

  9. Evolution of color vision in primates - Wikipedia

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

    The evolution of color vision in primates is highly unusual compared to most eutherian mammals. 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.