Dinosauria

Taxon

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Muttaburrasaurus
The plants, animals and climate of the Australian continent have changed dramatically over long periods of time. Imagine this giant creature roaming the luxuriant wet forests that covered parts of the continent in the Cretaceous period, about 100-110 million years ago. The Muttaburrasaurus ambled along on all four legs or stood on its hind legs. Its large teeth were well adapted to eat tough vegetation such as the leathery foliage of the evergreen forests of Araucaria trees, ancient relatives of the bunya pine of south-eastern Queensland.
In 1963, grazier Doug Langdon discovered the fossilised bones of a dinosaur on his property near Muttaburra in central-west Queensland. It was one of the most complete dinosaur skeletons found in Australia. The bones belonged to a new species of ornithopod and palaeontologists named it Muttaburrasaurus langdoni.

Cast of Muttaburresaurus langdoni 1987 made by Queensland Museum, Brisbane National Museum of Australia
Taxons Muttaburrasaurus

Muttaburrasaurus The plants, animals and climate of the Australian continent have changed dramatically over long periods of time. Imagine this giant creature roaming the luxuriant wet forests that covered parts of the continent in the Cretaceous period, about 100-110 million years ago. The Muttaburrasaurus ambled along on all four legs or stood on its hind legs. Its large teeth were well adapted to eat tough vegetation such as the leathery foliage of the evergreen forests of Araucaria trees, ancient relatives of the bunya pine of south-eastern Queensland. In 1963, grazier Doug Langdon discovered the fossilised bones of a dinosaur on his property near Muttaburra in central-west Queensland. It was one of the most complete dinosaur skeletons found in Australia. The bones belonged to a new species of ornithopod and palaeontologists named it Muttaburrasaurus langdoni. Cast of Muttaburresaurus langdoni 1987 made by Queensland Museum, Brisbane National Museum of Australia

os musée Australie Crétacé +5
Montanoceratops cerorhynchus (Brown & Schlaikjer, 1942) - fossil ceratopsian dinosaur skeleton from the Cretaceous of Montana, USA. (MOR 542, Museum of the Rockies, Bozeman, Montana, USA)
The species name is sometimes incorrectly spelled "cerorhynchos".  The original publication spells it "cerorhynchus".  The genus name is sometimes incorrectly spelled "Montanaceratops".
Ceratopsians are the "horned dinosaurs".  They were large, quadrupedal, herbivorous dinosaurs having a beaked skull and a frill - an extension of bone behind the skull that partially covered the neck.  Ceratopsian dinosaurs are known from the Jurassic and Cretaceous.  The last members of the group died out at the Cretaceous-Tertiary boundary, 65 million years ago.
This is a partial skeleton of a juvenile Montanoceratops, a ceratopsian from the near-latest Cretaceous of western North America.  This type of ceratopsian lacked facial horns.


From exhibit signage:
Sixty-eight million years ago, when the horned dinosaurs Triceratops and Torosaurus inhabited the coastal plain near the inland ocean, primitive "horned" dinosaurs named Montanoceratops lived in uplands near the young Rocky Mountains.  These little protoceratopsians fed on plants with slicing teeth and narrow beaks similar to their giant three-horned relatives.


Classification: Animalia, Chordata, Vertebrata, Reptilia, Archosauria, Dinosauria, Ornithischia, Marginocephalia, Ceratopsia, Leptoceratopsidae
Stratigraphy: St. Mary River Formation, Maastrichtian Stage, Upper Cretaceous
Locality: Little Rocky Coulee, north of the town of Cut Bank, eastern Glacier County, northwestern Montana, USA


Info. at:

en.wikipedia.org/wiki/Montanoceratops
Taxons Montanoceratops

Montanoceratops cerorhynchus (Brown & Schlaikjer, 1942) - fossil ceratopsian dinosaur skeleton from the Cretaceous of Montana, USA. (MOR 542, Museum of the Rockies, Bozeman, Montana, USA) The species name is sometimes incorrectly spelled "cerorhynchos". The original publication spells it "cerorhynchus". The genus name is sometimes incorrectly spelled "Montanaceratops". Ceratopsians are the "horned dinosaurs". They were large, quadrupedal, herbivorous dinosaurs having a beaked skull and a frill - an extension of bone behind the skull that partially covered the neck. Ceratopsian dinosaurs are known from the Jurassic and Cretaceous. The last members of the group died out at the Cretaceous-Tertiary boundary, 65 million years ago. This is a partial skeleton of a juvenile Montanoceratops, a ceratopsian from the near-latest Cretaceous of western North America. This type of ceratopsian lacked facial horns. From exhibit signage: Sixty-eight million years ago, when the horned dinosaurs Triceratops and Torosaurus inhabited the coastal plain near the inland ocean, primitive "horned" dinosaurs named Montanoceratops lived in uplands near the young Rocky Mountains. These little protoceratopsians fed on plants with slicing teeth and narrow beaks similar to their giant three-horned relatives. Classification: Animalia, Chordata, Vertebrata, Reptilia, Archosauria, Dinosauria, Ornithischia, Marginocephalia, Ceratopsia, Leptoceratopsidae Stratigraphy: St. Mary River Formation, Maastrichtian Stage, Upper Cretaceous Locality: Little Rocky Coulee, north of the town of Cut Bank, eastern Glacier County, northwestern Montana, USA Info. at: en.wikipedia.org/wiki/Montanoceratops

os musée États-Unis Crétacé +17
Skeletal mount of Archaeoceratops, housed in Tamba Dinosaur Museum
Taxons Archaeoceratops

Skeletal mount of Archaeoceratops, housed in Tamba Dinosaur Museum

musée Archaeoceratops Dinosauria
14365- dinosaur 4155
Taxons Alioramus

14365- dinosaur 4155

Alioramus Dinosauria communication
Wyoming Dinosaur Center
Taxons Mymoorapelta

Wyoming Dinosaur Center

Dinosauria Mymoorapelta
Title: The dinosaur book : the ruling reptiles and their relatives
Identifier: bookruli00colb (find matches)
Year: 1951 (1950s)
Authors: Colbert, Edwin H. (Edwin Harris), 1905-2001; Knight, Charles Robert, 1874-1953; American Museum of Natural History
Subjects: Dinosaurs; Reptiles, Fossil
Publisher: New York : Published for the American Museum of Natural History by McGraw-Hill
Contributing Library: American Museum of Natural History Library
Digitizing Sponsor: IMLS / LSTA / METRO

View Book Page: Book Viewer
About This Book: Catalog Entry
View All Images: All Images From Book
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Text Appearing Before Image: 
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Text Appearing After Image: 
bone A typical example of the parts usually found fossilized: portions of the skeleton of a small dinosaur from Mongolia A.M.N.H. photographs One of the rarest fossils: a dino- saur egg over 60 million years old, compared with a hen's egg (left) and an alligator egg (right)

Note About Images

Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - coloration and appearance of these illustrations may not perfectly resemble the original work.
Taxons Oviraptor

Title: The dinosaur book : the ruling reptiles and their relatives Identifier: bookruli00colb (find matches) Year: 1951 (1950s) Authors: Colbert, Edwin H. (Edwin Harris), 1905-2001; Knight, Charles Robert, 1874-1953; American Museum of Natural History Subjects: Dinosaurs; Reptiles, Fossil Publisher: New York : Published for the American Museum of Natural History by McGraw-Hill Contributing Library: American Museum of Natural History Library Digitizing Sponsor: IMLS / LSTA / METRO View Book Page: Book Viewer About This Book: Catalog Entry View All Images: All Images From Book Click here to view book online to see this illustration in context in a browseable online version of this book. Text Appearing Before Image: ' Text Appearing After Image: bone A typical example of the parts usually found fossilized: portions of the skeleton of a small dinosaur from Mongolia A.M.N.H. photographs One of the rarest fossils: a dino- saur egg over 60 million years old, compared with a hen's egg (left) and an alligator egg (right) Note About Images Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - coloration and appearance of these illustrations may not perfectly resemble the original work.

os livre musée Mongolie +4
Skeleton identified as Nemegtomaia by Greg Funston.[1] Central Museum of Mongolian Dinosaurs, Ulaanbaatar. Complete indexed photo collection at WorldHistoryPics.com.
Taxons Nemegtomaia

Skeleton identified as Nemegtomaia by Greg Funston.[1] Central Museum of Mongolian Dinosaurs, Ulaanbaatar. Complete indexed photo collection at WorldHistoryPics.com.

musée Dinosauria Nemegtomaia squelette
Leaellynasaura amicagraphica, dinosaur, skull. Holotype. [P 185991]
Taxons Leaellynasaura

Leaellynasaura amicagraphica, dinosaur, skull. Holotype. [P 185991]

musée holotype Dinosauria Leaellynasaura +1
Fossil specimen RTMP 82.19.23 - A lacrimal, postorbitals, squamosals, frontals, parietals, and braincase referred to Latenivenatrix mcmasterae, but formerly assigned to Stenonychosaurus inequalis (=Troodon inequalis). Described by 

Currie, 1985. "Cranial anatomy of Stenonychosaurus inequalis (Saurischia, Theropoda) and its bearing on the origin of birds." Canadian Journal of Earth Sciences, 22(1), 643-658.
5d-dinosaur-camp-day2-20120802-15.jpg
Taxons Latenivenatrix

Fossil specimen RTMP 82.19.23 - A lacrimal, postorbitals, squamosals, frontals, parietals, and braincase referred to Latenivenatrix mcmasterae, but formerly assigned to Stenonychosaurus inequalis (=Troodon inequalis). Described by Currie, 1985. "Cranial anatomy of Stenonychosaurus inequalis (Saurischia, Theropoda) and its bearing on the origin of birds." Canadian Journal of Earth Sciences, 22(1), 643-658. 5d-dinosaur-camp-day2-20120802-15.jpg

Canada fossile spécimen Dinosauria +7
Pelvis (fused ilia and pubes) of UALVP 48778, holotype of Hesperonychus elizabethae, from the late Campanian Dinosaur Park Formation of Alberta, Canada. Fossil collected by Dr. Elizabeth Nicholls. Prepared by Clive Coy. Digital photography by Nick Longrich. Additional digital editing by Nick Longrich.
Taxons Hesperonychus

Pelvis (fused ilia and pubes) of UALVP 48778, holotype of Hesperonychus elizabethae, from the late Campanian Dinosaur Park Formation of Alberta, Canada. Fossil collected by Dr. Elizabeth Nicholls. Prepared by Clive Coy. Digital photography by Nick Longrich. Additional digital editing by Nick Longrich.

bassin Canada Dinosaur Park Campanien +6
Sarcosaurus diagram of known material: reconstruction based on basal Ceratosaurs (such as Berberosaurus and Saltriovenator). The Skull was made to look more generic and less like more derived Ceratosaurs such as Ceratosaurus. "Liassaurus", referred to "cf. Sarcosaurus woodi" and is smaller than the holotype: material in light grey is preserved, but to what extent is uncertain as it is not figured.
References:
Carrano and Sampson (2004). "A review of coelophysoids (Dinosauria: Theropoda) from the Early Jurassic of Europe, with comments on the late history of the Coelophysoidea." N. Jb. Geol. Palaont. Mh., 2004(9): 537-558. (for figures of the material)
theropoddatabase.com/Coelophysoidea.htm#Sarcosauruswoodi (for measurements of "Liassaurus")

Allain, Ronan & Tykoski, Ronald & Aquesbi, Najat & Jalil, Nour-Eddine & Monbaron, Michel & Russell, Dale & Taquet, Philippe. (2007). An abelisauroid (Dinosauria: Theropoda) from the Early Jurassic of the High Atlas Mountains, Morocco, and the radiation of Ceratosaurs. Journal of Vertebrate Paleontology. 27. 10.1671/0272-4634(2007)27[610:AADTFT]2.0.CO;2. (for measurements for Berberosaurus)
Taxons Sarcosaurus

Sarcosaurus diagram of known material: reconstruction based on basal Ceratosaurs (such as Berberosaurus and Saltriovenator). The Skull was made to look more generic and less like more derived Ceratosaurs such as Ceratosaurus. "Liassaurus", referred to "cf. Sarcosaurus woodi" and is smaller than the holotype: material in light grey is preserved, but to what extent is uncertain as it is not figured. References: Carrano and Sampson (2004). "A review of coelophysoids (Dinosauria: Theropoda) from the Early Jurassic of Europe, with comments on the late history of the Coelophysoidea." N. Jb. Geol. Palaont. Mh., 2004(9): 537-558. (for figures of the material) theropoddatabase.com/Coelophysoidea.htm#Sarcosauruswoodi (for measurements of "Liassaurus") Allain, Ronan & Tykoski, Ronald & Aquesbi, Najat & Jalil, Nour-Eddine & Monbaron, Michel & Russell, Dale & Taquet, Philippe. (2007). An abelisauroid (Dinosauria: Theropoda) from the Early Jurassic of the High Atlas Mountains, Morocco, and the radiation of Ceratosaurs. Journal of Vertebrate Paleontology. 27. 10.1671/0272-4634(2007)27[610:AADTFT]2.0.CO;2. (for measurements for Berberosaurus)

Maroc Jurassique inférieur Jurassique holotype +8
Diamantinasaurus matildae gen. et sp. nov. (AODF 603)
A. Right side
B. Left side
(both silhouettes with sketched in bone parts of the material currently known at publishing date; scale bars: 5 x 5 = 25 m; complemented with height data here)
Taxons Diamantinasaurus

Diamantinasaurus matildae gen. et sp. nov. (AODF 603) A. Right side B. Left side (both silhouettes with sketched in bone parts of the material currently known at publishing date; scale bars: 5 x 5 = 25 m; complemented with height data here)

os écaille musée Diamantinasauria +1
* Wintonotitan wattsi gen. et sp. nov. (QMF 7292)
(Silhouette with sketched in bone parts of the material currently known at publishing date; scale bar: size unknown — not mentioned in original source)
Taxons Wintonotitan

* Wintonotitan wattsi gen. et sp. nov. (QMF 7292) (Silhouette with sketched in bone parts of the material currently known at publishing date; scale bar: size unknown — not mentioned in original source)

os écaille musée Dinosauria +1
Restoration of Asiaceratops salsopaludalis a ceratopsian dinosaur from the Late Cretaceous of Uzbekistan
Taxons Asiaceratops

Restoration of Asiaceratops salsopaludalis a ceratopsian dinosaur from the Late Cretaceous of Uzbekistan

Ouzbékistan Crétacé Crétacé supérieur Asiaceratops +2
Skeletal reconstructions of Dinosaur Park Formation caenagnathids. Skeletal reconstructions of Citipes elegans (left), Chirostenotes pergracilis (middle), and Caenagnathus collinsi (right), showing variation in skeletal representation and body size. Previously referred material is indicated in white and newly referred material is indicated in red for each taxon. Blue asterisks indicate elements that have been histologically sampled for each taxon. Citipes elegans: dentaries, metatarsal IV; Chirostenotes pergracilis: dentaries, tibia; Caenagnathus collinsi: pubis.
Taxons Caenagnathus

Skeletal reconstructions of Dinosaur Park Formation caenagnathids. Skeletal reconstructions of Citipes elegans (left), Chirostenotes pergracilis (middle), and Caenagnathus collinsi (right), showing variation in skeletal representation and body size. Previously referred material is indicated in white and newly referred material is indicated in red for each taxon. Blue asterisks indicate elements that have been histologically sampled for each taxon. Citipes elegans: dentaries, metatarsal IV; Chirostenotes pergracilis: dentaries, tibia; Caenagnathus collinsi: pubis.

Dinosaur Park Caenagnathidae Caenagnathus Chirostenotes +3
Megapnosaurus is a coelophysid theropod dinosaur from the Early Jurassic Period of Africa. It was a lightly built bipedal carnivore that grew to just over 2 m long and 13 kg in body mass. Its close relation to Coelophysis has caused some confusion in classifying the genus - it had a slender build and curved S-shaped neck, but was more robust. Comparisons between the scleral rings of Megapnosaurus and modern birds and reptiles indicate that it may have been nocturnal.
Taxons Megapnosaurus

Megapnosaurus is a coelophysid theropod dinosaur from the Early Jurassic Period of Africa. It was a lightly built bipedal carnivore that grew to just over 2 m long and 13 kg in body mass. Its close relation to Coelophysis has caused some confusion in classifying the genus - it had a slender build and curved S-shaped neck, but was more robust. Comparisons between the scleral rings of Megapnosaurus and modern birds and reptiles indicate that it may have been nocturnal.

Jurassique inférieur Jurassique Coelophysidae Coelophysis +3
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Actualités

Des empreintes de dinosaures vieilles de 150 millions d'années révèlent quelque chose d'étrange à propos de sa marche
locomotion pathologie empreintes Dinosauria
Un sentier spectaculaire vieux de 150 millions d'années et composé de plus de 130 empreintes de pas capture un sauropode géant effectuant une boucle complète avant de poursuivre son chemin. Sa foulée inégale laisse entendre que le dinosaure au long cou marchait peut-être en boitant.
11/08/2026 sciencedaily ⚙ Traduction automatique
Everything Dinosaur Stocking Nouvelles figurines de tyrannosaure du studio Nanmu
Dinosauria Tyrannosaurus
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10/08/2026 everythingdinosaur ⚙ Traduction automatique
Why Were There No Tiny Non-Avian Dinosaurs? Mammals May Have Been to Blame
Pourquoi n’y avait-il pas de petits dinosaures non aviaires ? Les mammifères pourraient être à blâmer
écologie prédateur reproduction Dinosauria évolution mammifères
Les dinosaures ont évolué pour devenir certains des plus grands animaux ayant jamais foulé la Terre, mais un nouveau modèle mathématique suggère que les premiers mammifères les auraient chassés des niches écologiques réservées aux plus petites créatures. Cet article, intitulé « Pourquoi n'y avait-il pas de minuscules dinosaures non aviens ? Les mammifères en seraient-ils responsables ? », a été initialement publié sur Sci.News: Breaking Science News.
10/08/2026 sci-news ⚙ Traduction automatique
Un fossile de reptile vieux de 240 millions d'années révèle un chapitre perdu avant les dinosaures et les crocodiles
prédateur Brésil Trias fossile Dinosauria évolution autres reptiles
Un reptile vieux de 240 millions d'années découvert au Brésil révèle à quoi ressemblait l'évolution juste avant l'avènement des dinosaures et des crocodiles. Le petit prédateur avait des pattes inhabituellement positionnées qui lui permettaient peut-être de se déplacer plus efficacement que de nombreux reptiles antérieurs. Ses proches parents étaient auparavant connus principalement sur d’autres continents, ce qui suggère que ces animaux anciens se sont répandus beaucoup plus loin dans le monde du Trias que les scientifiques ne le pensaient.
10/08/2026 sciencedaily ⚙ Traduction automatique
Les dinosaures sont devenus des géants – alors pourquoi ne sont-ils jamais devenus minuscules ?
écologie croissance Dinosauria évolution mammifères
Les dinosaures ont conquis la terre à des tailles énormes, mais étrangement, ils n'ont presque jamais évolué pour devenir de véritables animaux minuscules. De nouvelles recherches suggèrent que la physiologie à elle seule ne peut pas expliquer cette extrémité miniature manquante du spectre des dinosaures et que les premiers mammifères pourraient en être en partie responsables. Alors que les dinosaures empêchaient les mammifères de devenir grands, les petits mammifères pourraient leur rendre la pareille en occupant des niches écologiques qui auraient autrement pu accueillir des dinosaures de la taille d'une souris.
09/08/2026 sciencedaily ⚙ Traduction automatique
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