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Avisaurus

Avisaurus (meaning "bird lizard") is a genus of enantiornithine avialan from the Late Cretaceous of North America . [ 1 ] Discovery Avisaurus archibaldi was discovered in the La...

Avisaurus (meaning "bird lizard") is a genus of enantiornithineavialan from the Late Cretaceous of North America.[1]

Discovery

Avisaurus archibaldi was discovered in the Late Cretaceous Hell Creek Formation of North America (Maastrichtian, from c.70.6–66 million years ago), making it one of the last enantiornithines. It was collected in 1975 in the UCMP locality V73097, in Garfield County, Montana, USA. The holotype is represented by a single fossil of a tarsometatarsus in the collection of the University of California Museum of Paleontology. It has the catalog number UCMP 117600. The species name honors J. David Archibald, its discoverer, from The University of California, Berkeley. It was initially described as the left tarsometatarsus of a non-avian theropod by Brett-Surman and Paul in 1985. It was later redescribed as the right tarsometatarsus of an enantiornithine bird by Chiappe in 1992.[2]

Avisaurus gloriae Varricchio and Chiappe 1995,[3] discovered in the late Campanian Upper Two Medicine Formation of Glacier County, Montana, USA, was renamed Gettyia by Atterholt et al. (2018).[4] In 2024, another species of Avisaurus from the Hell Creek Formation was named as Avisaurus darwini, with the specific name in honor of Charles Darwin.[5]

Description

Size (lower right) compared to contemporary birds, pterosaurs, and a human

Avisaurus was a large enantiornithine, with A. darwini weighing up to 1.2 kilograms (2.6 lb) and A. archibaldi weighing up to 1.7 kilograms (3.7 lb).[5] The type specimen of A. archibaldi has a maximum length of 73.9 mm (2.91 in), making it one of the largest known tarsometatarsi of an enantiornithine.[3]

Classification

This genus belongs to the enantiornithinefamilyAvisauridae, which also contains similar animals from South America such as Soroavisaurus, Neuquenornis and Intiornis.[5]

Brett-Surman and Paul (1985) explicitly considered the possibility that A. archibaldi was an enantiornithine. The authors described and named UCMP 117600 formally, but they looked at other enantiornithine material, including the "metatarsus" PVL 4690 from Argentina. The authors assigned this latter fossil to Avisaurus sp. From this they concluded that members of the genus Avisaurus existed in both North and South America in the Late Cretaceous. Moreover, the authors concluded that the length/width ratio and degree of metacarpal fusion of these bones were more like those of non — avian dinosaurs. A terrestrial dinosaur genus in both continents would then support Brett — Surman's theory that there had been a land connection between the two continents.[6]

Further discoveries and further study by Chiappe showed that all of the material belonged to enantiornithine birds, and PVL 4690 was given its own genus Soroavisaurus.[2]

Paleoenvironment and paleobiology

Avisaurus remains fossilized in the humid low-lying swamps, lakes, and river basins of the western shore of the Western Interior Seaway, Hell Creek Formation.[5]

Inwardly curved claws of the Avisaurus tarsis resemble those of eudromaeosaurs, indicating that it was predatory. It likely preyed on other vertebrates, with similarity to some modern raptors.[7][5]

References

  1. ^PaleoBiology Database: Avisaurus, basic info
  2. ^ a b Chiappe, Luis M. (1992) "Tarsometatarsi enantiornitinos (Aves) y las afinidades aviares de los Avisauridae del Cretácico Superior" "Revista de Paleontología de Vertebrados" 3 de septiembre de 1992, Volumen 12 n.º 3 pp. 344-350
  3. ^ a b Varricchio, David J., Chiappe, Luis M. (1995) "Un nuevo ave enantiornitina de la Formación Two Medicine del Cretácico Superior de Montana" " Journal of Vertebrate Paleontology" 14 de marzo de 1995, vol. 15, n.º 1, págs. 201-204
  4. ^ Atterholt, Jessie; Hutchison, J. Howard; O'Connor, Jingmai K. (2018-11-13). "El enantiornitino más completo de Norteamérica y un análisis filogenético de los Avisauridae" . PeerJ . 6 e5910 . doi : 10.7717/peerj.5910 . ISSN  2167-8359 . PMC  6238772. PMID  30479894 .
  5. ^ a b c d e Clark, Alexander D.; Atterholt, Jessie; Scannella, John B.; Carroll, Nathan; O'Connor, Jingmai K. (2024-10-09). "Nueva diversidad de enantiornites en la Formación Hell Creek y la morfología funcional del tarsometatarso de los avisáuridos" . PLOS ONE . 19 (10) e0310686. doi : 10.1371/journal.pone.0310686 . ISSN 1932-6203 . PMC 11463745. PMID 39383133 .   
  6. ^ Brett-Surman, Michael K., Paul, Gregory S. (1985) "Una nueva familia de dinosaurios parecidos a aves que vincula Laurasia y Gondwana." "Journal of Vertebrate Paleontology" 5(2): 133-138.
  7. ^ Matthew P. Martyniuk (2012). Guía de campo de las aves mesozoicas y otros dinosaurios alados . Pan Aves. pág. 142. ISBN 978-0-9885965-0-4Consultado el 29 de agosto de 2022 .

Lecturas adicionales

  • Brett-Surman, Michael K. y Paul, Gregory S. (1985): Una nueva familia de dinosaurios parecidos a aves que conecta Laurasia y Gondwana. J. Vertebr. Paleontol. 5 (2): 133–138.
  • Cambra-Moo, Óscar; Delgado Buscalioni, Ángela; Cubo, Jorge; Castañuela, Jacques; Loth, Marie-Madeleine; de Margerie, Emmanuel & de Ricqlès, Armand (2006): Observaciones histológicas de hueso enantiornitina (Saurischia, Aves) del Cretácico Inferior de Las Hoyas (España). CR Palevol 5 (5): 685–691. doi : 10.1016/j.crpv.2005.12.018 PDF texto completo
  • Chiappe, Luis M. (1993): Enantiornithine (Aves) Tarsometatarsi from the Cretaceous Lecho Formation of Northwestern Argentina. American Museum Novitates3083: 1-27. [English with Spanish abstract] PDF fulltext
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