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  2. Aortic arches - Wikipedia

    en.wikipedia.org/wiki/Aortic_arches

    The first and second arches disappear early. A remnant of the 1st arch forms part of the maxillary artery, [3] a branch of the external carotid artery. The ventral end of the second develops into the ascending pharyngeal artery, and its dorsal end gives origin to the stapedial artery, [3] a vessel which typically atrophies in humans [4] [5] but persists in some mammals.

  3. Aortic arch - Wikipedia

    en.wikipedia.org/wiki/Aortic_arch

    The aortic arch is the connection between the ascending and descending aorta, and its central part is formed by the left 4th aortic arch during early development. [12] The ductus arteriosus connects to the lower part of the arch in foetal life. This allows blood from the right ventricle to mostly bypass the pulmonary vessels as they develop.

  4. Evolution of tetrapods - Wikipedia

    en.wikipedia.org/wiki/Evolution_of_tetrapods

    To function in gas exchange, lungs require a blood supply. In cartilaginous fishes and teleosts, the heart lies low in the body and pumps blood forward through the ventral aorta, which splits up in a series of paired aortic arches, each corresponding to a gill arch. [21] The aortic arches then merge above the gills to form a dorsal aorta ...

  5. Arterial tree - Wikipedia

    en.wikipedia.org/wiki/Arterial_tree

    Toggle Aortic arch subsection. 2.1 brachiocephalic artery. 2.2 left common carotid artery (directly from arch of aorta on left mostly) 2.2.1 internal carotid artery.

  6. Great arteries - Wikipedia

    en.wikipedia.org/wiki/Great_arteries

    The great arteries originate from the aortic arches during embryonic development.The aortic arches start as five pairs of symmetrical vessels connecting the heart with the dorsal aorta but then undergo a significant remodelling, [1] in which some of these vessels regress (aortic arches 1 and 2), the 3rd pair of arches contribute to form the common carotids, the right 4th will contribute to the ...

  7. Teleost - Wikipedia

    en.wikipedia.org/wiki/Teleost

    Teleost skull and jaw anatomy enables them both to suck in prey, and to close the mouth without expelling the prey again. [ 5 ] Distinguishing features of the teleosts are mobile premaxilla , elongated neural arches at the end of the caudal fin and unpaired basibranchial toothplates. [ 6 ]

  8. List of arteries of the human body - Wikipedia

    en.wikipedia.org/wiki/List_of_arteries_of_the...

    Aortic arch: Brachiocephalic a: R common carotid a: R subclavian a: L common carotid a: Internal carotid a: External carotid a: L subclavian a: Vertebral artery: Int. thoracic a: Thyrocervical trunk: Costocervical trunk: Dorsal scapular artery (mostly) Descending aorta : Bronchial as: Abdominal aorta: Celiac a: L gastric a: Common hepatic a ...

  9. Thoracic aorta - Wikipedia

    en.wikipedia.org/wiki/Thoracic_aorta

    Three vessels come out of the aortic arch: the brachiocephalic artery, the left common carotid artery, and the left subclavian artery. These vessels supply blood to the head, neck, thorax and upper limbs. Behind the descending thoracic aorta is the vertebral column and the hemiazygos vein.