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  2. Bat wing development - Wikipedia

    en.wikipedia.org/wiki/Bat_wing_development

    Recently, there have been comparative studies of mouse and bat forelimb development to understand the genetic basis of morphological evolution. Consequently, the bat wing is a valuable evo-devo model for studying the evolution of vertebrate limb diversity. Diagram showing homologous skeletal structures of bat and mouse

  3. Patagium - Wikipedia

    en.wikipedia.org/wiki/Patagium

    Wing of a desert red bat (Lasiurus blossevillii) In bats, the skin forming the surface of the wing is an extension of the skin of the abdomen that runs to the tip of each digit, uniting the forelimb with the body. The patagium of a bat has four distinct parts: Propatagium: the patagium present from the neck to the first digit.

  4. Bat - Wikipedia

    en.wikipedia.org/wiki/Bat

    Little brown bat take off and flight. The finger bones of bats are much more flexible than those of other mammals, owing to their flattened cross-section and to low levels of calcium near their tips. [53] [54] The elongation of bat digits, a key feature required for wing development, is due to the upregulation of bone morphogenetic proteins (Bmps).

  5. Forelimb - Wikipedia

    en.wikipedia.org/wiki/Forelimb

    Bat wings are composed largely of a thin membrane of skin supported on the five fingers, whereas bird wings are composed largely of feathers supported on much reduced fingers, with finger 2 supporting the alula and finger 4 the primary feathers of the wing; there are only distant homologies between birds and bats, with much closer homologies ...

  6. Bat flight - Wikipedia

    en.wikipedia.org/wiki/Bat_flight

    A bat wing, which is a highly modified forelimb. Bats are the only mammal capable of true flight. Bats use flight for capturing prey, breeding, avoiding predators, and long-distance migration. Bat wing morphology is often highly specialized to the needs of the species. This image is displaying the anatomical makeup of a specific bat wing.

  7. Comparative anatomy - Wikipedia

    en.wikipedia.org/wiki/Comparative_anatomy

    It also assists scientists in classifying organisms based on similar characteristics of their anatomical structures. A common example of comparative anatomy is the similar bone structures in forelimbs of cats, whales, bats, and humans. All of these appendages consist of the same basic parts; yet, they serve completely different functions.

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  9. Homology (biology) - Wikipedia

    en.wikipedia.org/wiki/Homology_(biology)

    A common example of homologous structures is the forelimbs of vertebrates, where the wings of bats and birds, the arms of primates, the front flippers of whales, and the forelegs of four-legged vertebrates like horses and crocodilians are all derived from the same ancestral tetrapod structure.