Сообщество, посвящённое ра - Stenopterygius
April 10th, 2012
07:46 pm
[industrialterro]

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Stenopterygius

 Stenopterygius is an extinct genus of thunnosaur ichthyosaur known from Europe (England, France, Germany, Luxembourg and Switzerland). Maximum length was 4 meters.

 Most of the known specimens of Stenopterygius, more than 100, were recently redescribed by Michael W. Maisch. He found that S. quadriscissus (the type species) also includes S. eos, S. incessus and S. macrophasma, as well as specimens previously referred to S. hauffianus and S. megacephalus. Maisch followed Woodward (1932) and considered Ichthyosaurus triscissus to be a valid species of Stenopterygius. The type specimens of S. longifrons, S. megacephalus, and S. megalorhinus were all referred to this species as the name I. triscissus has a priority over them. Some specimens previously referred to S. megalorhinus, as well as the holotype of S. cuneiceps, were found to belong to a species of their own for which the binomen Stenopterygius uniter can be used. As the holotype of S. uniter was destroyed in World War II, Maisch proposed a neotype. Maisch also found that S. promegacephalus is a nomen dubium as it is based on juvenile specimen, and that the lectotype of S. hauffianus can be determined as Stenopterygius cf. S. quadriscissus at best, and therefore this species should be considered a nomen dubium. He found out that most specimens previously referred to S. hauffianus can be referred to S. quadriscissus, while the rest belongs to a highly distinctive new taxon that can't be referred to any valid species of Stenopterygius. This species was reassigned to its own genus, Hauffiopteryx.

 Stenopterygius is known from the lectotype GPIT 43/0219-1, articulated complete skeleton which preserved a very large embryo. The animal is about 3.15 m (10.3 ft) in length. It was collected from the Harpoceras elegantulum-exaratum ammonoid subzones (more specifically Lias ε II3-4), Harpoceras falcifer zone, of the famous Posidonien-Schiefer lagerstätte (Posidonia Shale) of Holzmaden, dating to the early Toarcian stage of the Early Jurassic, about 182 million years ago. Maisch referred to the type species 30 additional specimens, all came from Dobbertin of Mecklenburg-Vorpommern and Holzmaden, Germany and Dudelange, Luxembourg. They were collected from the Harpoceras palum to H. falciferum ammonoid subzones (Lias ε I2-II11, lower-middle early Toarcian), Harpoceras tenuicostatum-falcifer zones, of the Posidonia Shale. S. triscissus is known from the holotype GPIT 12/0224-2, articulated almost complete skeleton. The animal is a young adult about 2.1 m (6.9 ft) in length. It was collected from the Harpoceras exaratum-elegans ammonoid subzones (more specifically Lias ε II6), Harpoceras falcifer zone, of the Posidonia Shale, in Ohmden, dating to the middle Early Toarcian stage of the Early Jurassic. Maisch referred to this species 13 additional specimens, all came from various localities in England, France, Germany, Luxembourg and Switzerland. They were collected from the Lias ε II1-III, dating to the middle-late Early Toarcian. S. uniter is known from the holotype SMNS 14216, articulated complete skeleton which was destroyed in World War II. The animal is an adult about 3.35 m (11.0 ft) in length. The proposed neotype is GPIT 1491/10, articulated almost complete skeleton. The animal is a young adult about 2.34 m (7.7 ft) in length. It was collected from the Harpoceras falcifer ammonoid subzones (more specifically Lias ε II10), Harpoceras falcifer zone, of the Posidonia Shale, in Holzmaden, dating to the middle Early Toarcian stage of the Early Jurassic. Maisch referred to this species 10 additional specimens, all came from Holzmaden. They were collected from the Harpoceras exaratum to H. falciferum ammonoid subzones (Lias ε II6-II11, middle early Toarcian), Harpoceras falcifer zones, of the Posidonia Shale.

 Additional materials were described by Hannah Caine and Michael J. Benton in 2011, from the early Toarcian of Strawberry Bank, Ilminster of England. The specimens are all juveniles or infants which preserved mostly by almost complete skeletons and some skulls. They include BRLSI M1405, BRLSI M1407, BRLSI M1408, BRLSI M1409. Caine and Benton referred these specimens to S. triscissus.

 Maisch and Matzke (2000) and Maisch (2010) regarded Chacaicosaurus and Hauffiopteryx to be stenopterygiids. However, they didn't performed any cladistic analyses to confirm these claims. Fischer et al. (2011) performed a cladistic analysis that found Chacaicosaurus to be a basal thunnosaur which is placed outside both Stenopterygiidae and Ophthalmosauridae. Both Maisch (2008) and Caine and Benton (2011) performed cladistic analyses that found Hauffiopteryx to be either a basalmost member of Eurhinosauria or a basalmost member of Thunnosauria (which is an equivalent position to a basalmost member of Stenopterygiidae sensu Maisch [2008] with exclusion of Ichthyosaurus). These results mean that Stenopterygiidae is a monotypic family which include only the type genus Stenopterygius.

 Stenopterygius was physically similar to the better known Ichthyosaurus, but had a smaller skull and narrower flippers. Beautifully preserved fossils of Stenopterygius have been found in Germany. Its skull was extended into a kind of a beak and was armed with a quantity of large teeth. The limbs had been transformed to fin-like structures. The tail terminated in a large, semicircular, leathery, vertical caudal fin and even a triangular dorsal fin was present.

 The habits of Stenopterygius were similar to those of present-day dolphins. It spent most of its life in the open sea, where it hunted fish, cephalopods and other animals. The abdominal cavity of skeletons of this ichthyosaur often contains the remains of such food.

 One famous fossil is that of a mother and baby that died in childbirth (ichthyosaurs were viviparous). This proved that ichthyosaur infants were born tail-first, just like cetaceans, to prevent them from drowning before fully clearing the birth canal.

 Stenopterygius was a very fast swimmer, with a cruising speed similar to that of tuna, which is among the fastest of all living fishes.

 

 Репродукции (1, 2, 3, 4, 5, 6, 7, 8, 9):

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 Размеры тела в сравнении с человеком:

 

 

 

 Ископаемые останки (1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12):

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

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From:[info]industrialterro
Date:January 12th, 2019 - 03:20 pm
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"Уникальный образец ихтиозавра юрского периода сохранил остатки мягких тканей, которые указали на теплокровность этих морских рептилий.

Почти всю мезозойскую эру, пока на суше доминировали динозавры, «царями морей» оставались родственные им ихтиозавры. Внешне они чем-то напоминали современных дельфинов, хотя размеры могли набирать китовые. И, подобно млекопитающим сегодняшнего океана, эти рептилии были теплокровны — к такому выводу пришли авторы статьи, опубликованной в журнале Nature.

Палеонтолог из Лундского университета Йохан Линдгрен (Johan Lindgren) вместе с коллегами из Швеции и других стран провел новый анализ образца представителя рода Stenopterygius, ранее найденного в Германии, в шахтах Хольцмадена, и датированного возрастом 180 миллионов лет. Такие ихтиозавры достигали нескольких метров и, видимо, были довольно распространены: сегодня известны более сотни их останков. Однако изученные в этот раз оказались уникальны и сохранили небольшие фрагменты мягких тканей.

Современные технологии, включая рентгенографию, масс-спектрометрию, иммуногистологический анализ и тому подобное позволили ученым определить состав и внутреннюю структуру образца вплоть до отдельных слоев клеток. Были идентифицированы участки гладкой кожи, потерявшей характерную для рептилий чешую. На поверхности удалось рассмотреть пигментацию, показав, что Stenopterygius использовали обычную для морских животных маскировку: темная верхняя сторона тела, а светлая — нижняя. Но ткани под поверхностью оказались куда интереснее.

Внутренние слои кожи переходили в изолирующий жировой слой характерного состава. Такой плотный жир служит современным морским животным для накопления запасов, теплоизоляции и придания большей плавучести. Он имеется лишь у теплокровных амниот — млекопитающих, птиц и рептилий, а в качестве адаптации к жизни в холодной воде — у китов, полярных медведей, пингвинов, морских котиков, некоторых черепах. Это, по мнению авторов работы, надежно указывает на теплокровность ихтиозавров."

http://paleonews.ru/new/1171-teplokrovnye-ichtiozavry
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