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  2. Iberian ribbed newt - Wikipedia

    en.wikipedia.org/wiki/Iberian_ribbed_newt

    The Iberian ribbed newt (Pleurodeles waltl), also known commonly as the Spanish ribbed newt and el gallipato in Spanish, is a species of salamander in the subfamily Pleurodelinae of the family Salamandridae. The species is native to the central and southern Iberian Peninsula and Morocco. [2] It is the largest European newt species.

  3. Newt - Wikipedia

    en.wikipedia.org/wiki/Newt

    Newts begin to regenerate the ventricle by a thickening of the epicardial layer that protrudes to allow the new vessels to form, and conclude with a regeneration of the entire myocardial wall. [ 19 ] In early stages of development in amphibians, ventilator gas transport and hemoglobin gas transport are independent mechanisms and not yet coupled ...

  4. Regeneration (biology) - Wikipedia

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

    Holometabolous insects can regenerate appendages as larvae prior to the final molt and metamorphosis. Beetle larvae, for example, can regenerate amputated limbs. Fruit fly larvae do not have limbs but can regenerate their appendage primordia, imaginal discs. [30] In both systems, the regrowth of the new tissue delays pupation. [30] [31]

  5. Eastern newt - Wikipedia

    en.wikipedia.org/wiki/Eastern_newt

    Eastern newts are able to regenerate their limbs that were lost to an injury. Forelimb regeneration has been considered to be close to the forelimb development; genes that play a role in forelimb regeneration are known to also be expressed in its developmental stages. [ 36 ]

  6. Autotomy - Wikipedia

    en.wikipedia.org/wiki/Autotomy

    A white-headed dwarf gecko with tail lost due to autotomy. Autotomy (from the Greek auto-, "self-" and tome, "severing", αὐτοτομία) or 'self-amputation', is the behaviour whereby an animal sheds or discards an appendage, [1] usually as a self-defense mechanism to elude a predator's grasp or to distract the predator and thereby allow escape.

  7. Hox genes in amphibians and reptiles - Wikipedia

    en.wikipedia.org/wiki/Hox_genes_in_amphibians...

    Hox genes play a massive role in some amphibians and reptiles in their ability to regenerate lost limbs, especially HoxA and HoxD genes. [1]If the processes involved in forming new tissue can be reverse-engineered into humans, it may be possible to heal injuries of the spinal cord or brain, repair damaged organs and reduce scarring and fibrosis after surgery.

  8. Scar free healing - Wikipedia

    en.wikipedia.org/wiki/Scar_free_healing

    Unlike the limited regeneration seen in adult humans, many animal groups possess an ability to completely regenerate damaged tissue. [4] Full limb regeneration is seen both in invertebrates (e.g. starfish and flatworms which can regenerate fully functioning appendages) and some vertebrates, however in the latter this is almost always confined to the immature members of the species: an example ...

  9. Tylototriton verrucosus - Wikipedia

    en.wikipedia.org/wiki/Tylototriton_verrucosus

    The anal opening is a longitudinal slit, and its borders are not raised. The skin is rough and the parotoid glands are large. There is a strong fold on the chin. The entire newt is uniformly blackish brown, slightly paler on the lips, snout, chin, throat, and under surface of limbs. The lower edge of the tail is orange-yellow. [3]