Shenzhoupterus
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Shenzhoupterus
''Shenzhoupterus'' is a genus of chaoyangopterid pterosaur from the Jiufotang Formation of modern-day Liaoning, China. Fossil remains of ''Shenzhoupterus'' date back to the Early Cretaceous period, approximately 120 million years ago. Etymology ''Shenzhoupterus'' was named in 2008 by Lü Junchang, David Unwin, Xu Li and Zhang Xingliao. The type species is ''Shenzoupterus chaoyangensis''. The genus name is derived from ''Shenzhou'', an old name for China, "the divine land", and a Latinized Greek ''pteron'', "wing". The specific name refers to Chaoyang. Description ''Shenzhoupterus'' is based on holotype HGM 41HIII-305A (Henan Geological Museum at Zhengzhou), the articulated skull and skeleton of a single individual, with a wingspan of . ''Shenzhoupterus'' lacked teeth, and had a crest on its skull that arched over the eyes and terminated in a small point toward the back of the head. The nasoantorbital fenestra (an opening incorporating the holes for the nostrils and the antor ...
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Shenzhoupterus
''Shenzhoupterus'' is a genus of chaoyangopterid pterosaur from the Jiufotang Formation of modern-day Liaoning, China. Fossil remains of ''Shenzhoupterus'' date back to the Early Cretaceous period, approximately 120 million years ago. Etymology ''Shenzhoupterus'' was named in 2008 by Lü Junchang, David Unwin, Xu Li and Zhang Xingliao. The type species is ''Shenzoupterus chaoyangensis''. The genus name is derived from ''Shenzhou'', an old name for China, "the divine land", and a Latinized Greek ''pteron'', "wing". The specific name refers to Chaoyang. Description ''Shenzhoupterus'' is based on holotype HGM 41HIII-305A (Henan Geological Museum at Zhengzhou), the articulated skull and skeleton of a single individual, with a wingspan of . ''Shenzhoupterus'' lacked teeth, and had a crest on its skull that arched over the eyes and terminated in a small point toward the back of the head. The nasoantorbital fenestra (an opening incorporating the holes for the nostrils and the antor ...
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Chaoyangopterid
Chaoyangopteridae (or chaoyangopterids) is a family of pterosaurs within the larger group Azhdarchoidea. Chaoyangopterids lived mostly during the Early Cretaceous period, though possible members, ''Microtuban'', ''Xericeps'' and ''Argentinadraco'', may extend the fossil range to the Late Cretaceous. History The clade Chaoyangopteridae was first defined in 2008 by Lü Junchang and David Unwin as: "''Chaoyangopterus'', ''Shenzhoupterus'', their most recent common ancestor and all taxa more closely related to this clade than to '' Tapejara'', ''Tupuxuara'' or ''Quetzalcoatlus''". Based on neck and limb proportions, it has been suggested they occupied a similar ecological niche to that of azhdarchid pterosaurs, though it is possible they were more specialized as several genera occur in Liaoning, while azhdarchids usually occur by one genus in a specific location. Description Chaoyangopterids are distinguished from other pterosaurs by several traits of the nasoantorbital fenestra, a la ...
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Chaoyangopterinae
Chaoyangopteridae (or chaoyangopterids) is a family of pterosaurs within the larger group Azhdarchoidea. Chaoyangopterids lived mostly during the Early Cretaceous period, though possible members, ''Microtuban'', '' Xericeps'' and ''Argentinadraco'', may extend the fossil range to the Late Cretaceous. History The clade Chaoyangopteridae was first defined in 2008 by Lü Junchang and David Unwin as: "'' Chaoyangopterus'', '' Shenzhoupterus'', their most recent common ancestor and all taxa more closely related to this clade than to '' Tapejara'', ''Tupuxuara'' or ''Quetzalcoatlus''". Based on neck and limb proportions, it has been suggested they occupied a similar ecological niche to that of azhdarchid pterosaurs, though it is possible they were more specialized as several genera occur in Liaoning, while azhdarchids usually occur by one genus in a specific location. Description Chaoyangopterids are distinguished from other pterosaurs by several traits of the nasoantorbital fenestra, a ...
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Chaoyangopterus
''Chaoyangopterus'' is a genus of chaoyangopterid pterosaur known from a partial skeleton found in Liaoning, China. ''Chaoyangopterus'' was found in rocks dating back to the Aptian-age Lower Cretaceous Jiufotang Formation of Dapingfang, Chaoyang. Etymology ''Chaoyangopterus'' was named and described in 2003 by Wang Xiaolin and Zhou Zhonghe. The type species is ''Chaoyangopterus zhangi''. The genus name is derived from Chaoyang and a Latinized Greek ''pteron'', "wing". The specific name honors journalist Zhang Wanlian for his efforts in protecting fossil sites. Description ''Chaoyangopterus'' is based on holotype IVPP V13397, which includes the front of the skull, the lower jaws, the neck vertebrae, the shoulder and pelvic girdles, and the limbs. The skull is about long and toothless, and its wingspan is estimated to have been around . Wang and Zhou concluded that it compared most closely to ''Nyctosaurus'' and classified it as a nyctosaurid, although they found that i ...
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Jidapterus
''Jidapterus'' is a genus of chaoyangopterid pterosaur from the Aptian-age Lower Cretaceous Jiufotang Formation of Chaoyang, Liaoning, China. The genus was in 2003 named by Dong Zhiming, Sun Yue-Wu and Wu Shao-Yuan. The type species is ''Jidapterus edentus''. The genus name is derived from ''Jílín Dàxué'' or "Jilin University" and a Latinized Greek ''pteron'', "wing". The specific name means "toothless" in Latin. Description ''Jidapterus'' is based on holotype CAD-01, a nearly complete skeleton with partial skull. The skull is toothless and relatively long, with a straight and very pointed beak, and a large hole where the antorbital fenestra is joined with the nostrils. The eye sockets are small, and there is no crest along the lower jaw as seen in ornithocheiroids, although a short projection was present at the back of the skull. The wingspan of this individual was estimated to be . Classification The classification of ''Jidapterus'' has been unstable; the original auth ...
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Azhdarchoidea
Azhdarchoidea (or azhdarchoids) is a group of pterosaurs within the suborder Pterodactyloidea, more specifically within the group Ornithocheiroidea. Pterosaurs belonging to this group lived throughout the Early Cretaceous, Early and Late Cretaceous periods, with one tentative member, ''Tendaguripterus'', that lived in the Late Jurassic period. The largest azhdarchoids include members of the family Azhdarchidae, examples of these are ''Quetzalcoatlus'', ''Hatzegopteryx'', and ''Arambourgiania''. The Azhdarchoidea has been recovered as either closely related to the Ctenochasmatoidea, as the sister taxon of the Pteranodontoidea within the Ornithocheiroidea, or within the Tapejaroidea, which in turn was also within the Ornithocheiroidea. Classification Azhdarchoidea was given a phylogenetic definition by David Unwin in 2003. Unwin defined the group as the most recent common ancestor of ''Quetzalcoatlus'' and ''Tapejara (pterosaur), Tapejara'', and all its descendants.Unwin, D. M., (20 ...
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Eoazhdarcho
''Eoazhdarcho'' is a genus of azhdarchoid pterodactyloid pterosaur named in 2005 by Chinese paleontologists Lü Junchang and Ji Qiang. The type and only known species is ''Eoazhdarcho liaoxiensis''. The fossil was found in the Aptian-age Lower Cretaceous Jiufotang Formation of Chaoyang, Liaoning, China. Etymology The genus name, ''Eoazhdarcho'', combines a Greek ''eos'', "dawn" with the name of the genus ''Azhdarcho'', with the implication it was an early related form of the latter. The specific name, ''liaoxiensis'', refers to the ancient region Liaoxi. Description ''Eoazhdarcho'' is based on holotype GMN-03-11-02, a partial skeleton and lower jaw, and is distinguished from other pterosaurs by the proportions of its bones. The metacarpals are very elongated but the cervical vertebrae and hind limbs are not. It was relatively small by azhdarchoid standards, with a wingspan of about 1.6 meters (5.2 feet). Classification The describers first assigned ''Eoazhdarcho'' t ...
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Jiufotang Formation
The Jiufotang Formation (Chinese: 九佛堂组, pinyin: ''jiǔfótáng zǔ'') is an Early Cretaceous geological formation in Chaoyang, Liaoning which has yielded fossils of feathered dinosaurs, primitive birds, pterosaurs, and other organisms (see Jehol Biota). It is a member of the Jehol group. The exact age of the Jiufotang has been debated for years, with estimates ranging from the Late Jurassic to the Early Cretaceous. New uranium-lead dates reveal the formation is deposited in the Aptian stage of the Early Cretaceous. Fossils of ''Microraptor'' and ''Jeholornis'' are from the Jiufotang. Fossil content Choristoderans Fish Mammaliamorphs Several mammaliamorph specimens have been found from the Jiufotang, but only two have been formally described and named. Ornithischians Pterosaurs Saurischians A large titanosaur is present in the formation. Enantiornithines Euornithines Misc theropods See also * Yixian Formation * List of dinosaur-bearing rock for ...
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Genus
Genus ( plural genera ) is a taxonomic rank used in the biological classification of extant taxon, living and fossil organisms as well as Virus classification#ICTV classification, viruses. In the hierarchy of biological classification, genus comes above species and below family (taxonomy), family. In binomial nomenclature, the genus name forms the first part of the binomial species name for each species within the genus. :E.g. ''Panthera leo'' (lion) and ''Panthera onca'' (jaguar) are two species within the genus ''Panthera''. ''Panthera'' is a genus within the family Felidae. The composition of a genus is determined by taxonomy (biology), taxonomists. The standards for genus classification are not strictly codified, so different authorities often produce different classifications for genera. There are some general practices used, however, including the idea that a newly defined genus should fulfill these three criteria to be descriptively useful: # monophyly – all descendants ...
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Wingspan
The wingspan (or just span) of a bird or an airplane is the distance from one wingtip to the other wingtip. For example, the Boeing 777–200 has a wingspan of , and a wandering albatross (''Diomedea exulans'') caught in 1965 had a wingspan of , the official record for a living bird. The term wingspan, more technically extent, is also used for other winged animals such as pterosaurs, bats, insects, etc., and other aircraft such as ornithopters. In humans, the term wingspan also refers to the arm span, which is distance between the length from one end of an individual's arms (measured at the fingertips) to the other when raised parallel to the ground at shoulder height at a 90º angle. Former professional basketball player Manute Bol stood at and owned one of the largest wingspans at . Wingspan of aircraft The wingspan of an aircraft is always measured in a straight line, from wingtip to wingtip, independently of wing shape or sweep. Implications for aircraft design and anima ...
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Tapejaridae
Tapejaridae (from a Tupi word meaning "the old being") are a family of pterodactyloid pterosaurs from the Cretaceous period. Members are currently known from Brazil, England, Hungary, Morocco, Spain, the United States, and China. The most primitive genera were found in China, indicating that the family has an Asian origin. Description Tapejarids were small to medium-sized pterosaurs with several unique, shared characteristics, mainly relating to the skull. Most tapejarids possessed a bony crest arising from the snout (formed mostly by the premaxillary bones of the upper jaw tip). In some species, this bony crest is known to have supported an even larger crest of softer, fibrous tissue that extends back along the skull. Tapejarids are also characterized by their large nasoantorbital fenestra, the main opening in the skull in front of the eyes, which spans at least half the length of the entire skull in this family. Their eye sockets were small and pear-shaped. Studies of tapejarid ...
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Cladogram
A cladogram (from Greek ''clados'' "branch" and ''gramma'' "character") is a diagram used in cladistics to show relations among organisms. A cladogram is not, however, an evolutionary tree because it does not show how ancestors are related to descendants, nor does it show how much they have changed, so many differing evolutionary trees can be consistent with the same cladogram. A cladogram uses lines that branch off in different directions ending at a clade, a group of organisms with a last common ancestor. There are many shapes of cladograms but they all have lines that branch off from other lines. The lines can be traced back to where they branch off. These branching off points represent a hypothetical ancestor (not an actual entity) which can be inferred to exhibit the traits shared among the terminal taxa above it. This hypothetical ancestor might then provide clues about the order of evolution of various features, adaptation, and other evolutionary narratives about ance ...
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