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82 image(s) · 38 Actualités

Galerie d'images

Changmiania liaoningensis, an ornithopod dinosaur from the Lower Cretaceous of Lujiatun (Liaoning Province, China).
(A) Holotype PMOL AD00114 in dorsal view; (B) anterior part of the holotype PMOL AD00114 in caudolateral view; (C) referred specimen PMOL LFV022 in dorsal view. Red arrows indicate the emplacement of the gastrolith clusters.
Taxons Changmiania

Changmiania liaoningensis, an ornithopod dinosaur from the Lower Cretaceous of Lujiatun (Liaoning Province, China). (A) Holotype PMOL AD00114 in dorsal view; (B) anterior part of the holotype PMOL AD00114 in caudolateral view; (C) referred specimen PMOL LFV022 in dorsal view. Red arrows indicate the emplacement of the gastrolith clusters.

Chine Crétacé holotype spécimen +2
Life restoration of the Triassic ichthyosaur Callawayia neoscapularis. Three specimens of this ichthyosaur are known, the holotype, ROM 41993, and two referred specimens, TMP 94.380.11 and 94.382.2. The skull is primarily based on ROM 41993, cross-checked against TMP 94.380.11 and TMP 94.382.2. The vertebral column is based primarily on TMP 94.382.2 as it is the most complete of these specimens, while the ribs were based on ROM 41993. The forelimbs were mainly based on those of ROM 41993, with TMP 94.380.11 used to determine their breadth. The hindlimbs were based on TMP 94.380.11, especially the more complete right hindlimb.
ROM 41993 was cross-scaled with TMP 94.380.11 by the dimensions of the forelimb epipodials, which produced similar vertebral dimensions. The two TMP specimens were cross-scaled based on femoral length, also producing similar vertebral dimensions. Nicholls & Manabe (2001) stated that no wedge-shaped caudal centra supporting a tailbend were found and that there was no evidence of a bend being present, though considered that they might have existed in the gap in the preserved caudals. Since various other Triassic ichthyosaurs have since been found to have tail bends, one was illustrated here. A modest downturn of roughly 15° was illustrated, comparable to that in Guanlingsaurus, and the location of the bend within the gap in the preserved vertebrae matches well with the location of the bend in Guizhouichthyosaurus.

References
McGowan, C. (1994). "A new species of Shastasaurus (Reptilia: Ichthyosauria) from the Triassic of British Columbia: The most complete exemplar of the genus". Journal of Vertebrate Paleontology 14 (2): 168–179. DOI:10.1080/02724634.1994.10011550.
Nicholls, E. L.; Manabe, M. (2001). "A new genus of ichthyosaur from the Late Triassic Pardonet Formation of British Columbia: Bridging the Triassic-Jurassic gap". Canadian Journal of Earth Sciences 38 (6): 983–1002.
Ji, C.; Jiang, D.Y.; Hao, W.; Sun, Y. (2011). "True tailbend occurred in the Late Triassic: Evidence from ichthyosaur skeletons of South China". Acta Scientiarum Naturalium Universitatis Pekinensis 47 (2): 309–314.
Shang, Q. H.; Li, C. (2009). "On the occurrence of the ichthyosaur Shastasaurus in the Guanling biota (Late Triassic), Guizhou, China". Vertebrata PalAsiatica 47 (3): 178–193.
Taxons Guanlingsaurus

Life restoration of the Triassic ichthyosaur Callawayia neoscapularis. Three specimens of this ichthyosaur are known, the holotype, ROM 41993, and two referred specimens, TMP 94.380.11 and 94.382.2. The skull is primarily based on ROM 41993, cross-checked against TMP 94.380.11 and TMP 94.382.2. The vertebral column is based primarily on TMP 94.382.2 as it is the most complete of these specimens, while the ribs were based on ROM 41993. The forelimbs were mainly based on those of ROM 41993, with TMP 94.380.11 used to determine their breadth. The hindlimbs were based on TMP 94.380.11, especially the more complete right hindlimb. ROM 41993 was cross-scaled with TMP 94.380.11 by the dimensions of the forelimb epipodials, which produced similar vertebral dimensions. The two TMP specimens were cross-scaled based on femoral length, also producing similar vertebral dimensions. Nicholls & Manabe (2001) stated that no wedge-shaped caudal centra supporting a tailbend were found and that there was no evidence of a bend being present, though considered that they might have existed in the gap in the preserved caudals. Since various other Triassic ichthyosaurs have since been found to have tail bends, one was illustrated here. A modest downturn of roughly 15° was illustrated, comparable to that in Guanlingsaurus, and the location of the bend within the gap in the preserved vertebrae matches well with the location of the bend in Guizhouichthyosaurus. References McGowan, C. (1994). "A new species of Shastasaurus (Reptilia: Ichthyosauria) from the Triassic of British Columbia: The most complete exemplar of the genus". Journal of Vertebrate Paleontology 14 (2): 168–179. DOI:10.1080/02724634.1994.10011550. Nicholls, E. L.; Manabe, M. (2001). "A new genus of ichthyosaur from the Late Triassic Pardonet Formation of British Columbia: Bridging the Triassic-Jurassic gap". Canadian Journal of Earth Sciences 38 (6): 983–1002. Ji, C.; Jiang, D.Y.; Hao, W.; Sun, Y. (2011). "True tailbend occurred in the Late Triassic: Evidence from ichthyosaur skeletons of South China". Acta Scientiarum Naturalium Universitatis Pekinensis 47 (2): 309–314. Shang, Q. H.; Li, C. (2009). "On the occurrence of the ichthyosaur Shastasaurus in the Guanling biota (Late Triassic), Guizhou, China". Vertebrata PalAsiatica 47 (3): 178–193.

Chine Jurassique Trias supérieur Trias +12
Prismatoolithus tiantaiensis eggs (IVPP V16515) on display at the Paleozoological Museum of China.
Taxons Prismatoolithidae

Prismatoolithus tiantaiensis eggs (IVPP V16515) on display at the Paleozoological Museum of China.

musée Chine Prismatoolithidae Prismatoolithus
Prismatoolithus tiantaiensis eggs (IVPP V16515) on display at the Paleozoological Museum of China.
Taxons Prismatoolithus

Prismatoolithus tiantaiensis eggs (IVPP V16515) on display at the Paleozoological Museum of China.

musée Chine Prismatoolithidae Prismatoolithus
Prismatoolithus tiantaiensis eggs (IVPP V16515) on display at the Paleozoological Museum of China.
Taxons Prismatoolithus

Prismatoolithus tiantaiensis eggs (IVPP V16515) on display at the Paleozoological Museum of China.

musée Chine Prismatoolithidae Prismatoolithus
Elangatoolithidae fossil dinosaur eggs, from China. Exhibit in the Academy of Natural Sciences, 1900 Benjamin Franklin Parkway, Philadelphia, Pennsylvania, USA. Photography was permitted in this area of the museum without restrictions.
Taxons Elongatoolithidae

Elangatoolithidae fossil dinosaur eggs, from China. Exhibit in the Academy of Natural Sciences, 1900 Benjamin Franklin Parkway, Philadelphia, Pennsylvania, USA. Photography was permitted in this area of the museum without restrictions.

musée Chine États-Unis fossile +2
Earth during the Middle Ordivician Period @ 460 Ma. Gondwana is seen above the equator (Australia & South China) and bellow the equator (North China, Kazakh terranes, Tarim, Antartica, India, Madagascar, Africa and South America). Laurentia, Baltica & Sibera are seperate continents, with Avalonia on its way to collide Baltica to form the Calledonian Orogeny, and Acadia on its way to collide Laurentia to form the Acadian Orogeny.
Legend:

Dark blue = ocean
Light blue = shallow seas
Tan = landmass
Black outlines = modern day coastlines showing their respective positions
Intervalles Darriwilian

Earth during the Middle Ordivician Period @ 460 Ma. Gondwana is seen above the equator (Australia & South China) and bellow the equator (North China, Kazakh terranes, Tarim, Antartica, India, Madagascar, Africa and South America). Laurentia, Baltica & Sibera are seperate continents, with Avalonia on its way to collide Baltica to form the Calledonian Orogeny, and Acadia on its way to collide Laurentia to form the Acadian Orogeny. Legend: Dark blue = ocean Light blue = shallow seas Tan = landmass Black outlines = modern day coastlines showing their respective positions

Australie Chine Inde Madagascar +1
West of Chilton Chine The coastline west of the chine is accessible at lowish tides.  The various rock strata in the Wealden Beds can be seen, with the chalk of Highdown Cliffs SZ3285 beyond.
Formations Wessex

West of Chilton Chine The coastline west of the chine is accessible at lowish tides. The various rock strata in the Wealden Beds can be seen, with the chalk of Highdown Cliffs SZ3285 beyond.

Chine
Fossil of Mei long (holotype), on temporary display at the Shanghai Natural History Museum as part of the exhibition "China's Dinosaur World". Shot on July 22, 2025.
Taxons Mei

Fossil of Mei long (holotype), on temporary display at the Shanghai Natural History Museum as part of the exhibition "China's Dinosaur World". Shot on July 22, 2025.

musée Chine fossile holotype +1
Fossil specimen (IVPP V17903) of Corpulentapus lilasia on display at the Paleozoological Museum of China.
Taxons Corpulentapus

Fossil specimen (IVPP V17903) of Corpulentapus lilasia on display at the Paleozoological Museum of China.

musée Chine fossile spécimen +1
Holotype of Ikrandraco avatar on display at the Paleozoological Museum of China.
Taxons Ikrandraco

Holotype of Ikrandraco avatar on display at the Paleozoological Museum of China.

musée Chine holotype Ikrandraco +1
Holotype specimen (GMV2128) of Dendrorhynchoides curvidentatus on display at the Geological Museum of China.
Taxons Dendrorhynchoides

Holotype specimen (GMV2128) of Dendrorhynchoides curvidentatus on display at the Geological Museum of China.

musée Chine holotype spécimen +1
Holotype skeleton of Jianchangnathus robustus on display at the Paleozoological Museum of China.
Taxons Jianchangnathus

Holotype skeleton of Jianchangnathus robustus on display at the Paleozoological Museum of China.

musée Chine holotype Jianchangnathus +1
Holotype skeleton (AGB 6257) of Cartorhynchus lenticarpus on display at the Geological Museum of China.

Holotype skeleton (AGB 6257) of Cartorhynchus lenticarpus on display at the Geological Museum of China.

musée Chine holotype squelette
Reconstruction of skeleton; Lower Cretaceous (120 mio. Years); Jungar Basin, China.
Taxons Dsungaripteridae

Reconstruction of skeleton; Lower Cretaceous (120 mio. Years); Jungar Basin, China.

Chine Crétacé Dsungaripteridae Dsungaripterus +1
Reconstruction of skeleton; Lower Cretaceous (120 mio. Years); Jungar Basin, China.
Taxons Dsungaripterus

Reconstruction of skeleton; Lower Cretaceous (120 mio. Years); Jungar Basin, China.

Chine Crétacé Dsungaripteridae Dsungaripterus +1
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Actualités

Haolong: Beast of the Week
Haolong : Bête de la semaine
Chine Crétacé Crétacé inférieur juvénile spécimen Dinosauria Haolong
 Cette semaine, nous allons découvrir un dinosaure nouvellement décrit qui est si unique qu'il change complètement ce que nous pensions savoir sur la peau des dinosaures !  Entrez Haolong Dongi ! Haolong était un dinosaure herbivore qui vivait dans ce qui est aujourd'hui le Liaoning, en Chine, au début du Crétacé, il y a environ 112,5 millions d'années.  Le seul spécimen enregistré mesure environ 8 pieds (2,45 m) du bec à la queue, mais il était juvénile lorsqu'il est mort, l'espèce a donc probablement grandi.  Le nom du genre se traduit du chinois par "S
08/03/2026 prehistoricbeastoftheweek ⚙ Traduction automatique
Un dinosaure vieux de 125 millions d'années avec des pointes creuses jamais vues auparavant découvert en Chine
Chine juvénile Dinosauria Iguanodontia
Un dinosaure vieux de 125 millions d’années vient de réécrire ce que nous pensions savoir sur la vie préhistorique. Des scientifiques chinois ont découvert un iguanodontien juvénile exceptionnellement préservé, avec une peau fossilisée si détaillée que les cellules individuelles sont encore visibles. Plus étonnant encore, le dinosaure herbivore était couvert de pointes creuses ressemblant à des porcs-épics, des structures jamais documentées auparavant chez aucun dinosaure.
18/02/2026 sciencedaily ⚙ Traduction automatique
Des outils anciens en Chine obligent les scientifiques à repenser les premiers humains
Chine datation découverte fouille
Les archéologues du centre de la Chine ont découvert des preuves que les premiers humains étaient bien plus inventifs qu’on ne le pensait depuis longtemps. Les fouilles sur le site de Xigou révèlent des outils en pierre avancés, y compris les premiers exemples connus d'outils équipés de manches en Asie de l'Est, remontant à 160 000 ans. Ces découvertes montrent que les anciennes populations de la région ont soigneusement planifié, fabriqué et adapté leurs outils pour s'adapter à des environnements changeants.
31/01/2026 sciencedaily-human-evo ⚙ Traduction automatique
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