crâne

Type de vue

244 image(s) · 27 Actualités

Galerie d'images

Skull of Dromiceiomimus
Taxons Dromiceiomimus

Skull of Dromiceiomimus

Dromiceiomimus crâne
Skull of Saichania, Warsaw Museum of Evolution
Taxons Saichania

Skull of Saichania, Warsaw Museum of Evolution

musée Saichania évolution crâne
Skull of Oohkotokia horneri, gen. et sp. nov. (MOR 433, holotype)
Taxons Oohkotokia

Skull of Oohkotokia horneri, gen. et sp. nov. (MOR 433, holotype)

holotype Oohkotokia crâne
The incomplete skull and vertebrae of the holotype of Omphalosaurus nevadanus, seen in dorsal (left) and ventral view (right). This image was derived by combining plates 8 and 9 of Merriam (1906), done by an uncredited artist.
Legend:

A - angular
D - dentary
Pl - palatine
Pt - pterygoid
Sa - surangular
Sp - splenial
V - vertebrae
a, b, c - "doubtful elements"
Taxons Omphalosaurus

The incomplete skull and vertebrae of the holotype of Omphalosaurus nevadanus, seen in dorsal (left) and ventral view (right). This image was derived by combining plates 8 and 9 of Merriam (1906), done by an uncredited artist. Legend: A - angular D - dentary Pl - palatine Pt - pterygoid Sa - surangular Sp - splenial V - vertebrae a, b, c - "doubtful elements"

holotype Merriamia Omphalosaurus crâne
Restored Placochelys placodonta skull at the Museum für Naturkunde, Berlin.
Taxons Placochelys

Restored Placochelys placodonta skull at the Museum für Naturkunde, Berlin.

musée Placochelyidae Placochelys crâne
Comparison of cranial features between closely related southern Laramidian taxa; (A), Akainacephalus johnsoni (UMNH VP 20202) from the Late Cretaceous Kaiparowits Formation of Utah; and (B), Nodocephalosaurus kirtlandensis (SMP VP-900) from the Late Cretaceous Kirtland Formation of New Mexico, in left lateral views. Various synapomorphies are shared with N. kirtlandensis (highlighted in black and white arrows) and includes “flaring nostrils”; enlarged, laterally projecting, loreal osteoderms that are situated directly dorsal to the external nares. Other synapomorphies include pyramid-shaped nasal and frontal osteoderms positioned on the dorsal regions of the skull. A number of significant differences have been observed between both specimens; in A. johnsoni, the anterior, and posterior supraorbital bosses form an enlarged element that is somewhat backswept, whereas in N. kirtlandensis, the posterior and anterior supraorbital bosses are clearly defined as individual osteoderms, and are much smaller in size. Additionally, the squamosal horn in Akainacephalus is very small but is prominent and tetrahedrally shaped in Nodocephalosaurus. The quadratojugal horn in Akainacephalus is massive, has a subtriangular morphology in lateral view and projects almost entirely ventral, whereas in Nodocephalosaurus, the quadratojugal horn is smaller and has a typical fin-shaped morphology. Study sites: asob, anterior supraorbital boss; ext naris, external naris; laca, lacrimal caputegulum; loca, loreal caputegulum; naca, nasal caputegulae; orb, orbit; psob, posterior supraorbital boss; qjh, quadratojugal horn; sqh, squamosal horn.

Comparison of cranial features between closely related southern Laramidian taxa; (A), Akainacephalus johnsoni (UMNH VP 20202) from the Late Cretaceous Kaiparowits Formation of Utah; and (B), Nodocephalosaurus kirtlandensis (SMP VP-900) from the Late Cretaceous Kirtland Formation of New Mexico, in left lateral views. Various synapomorphies are shared with N. kirtlandensis (highlighted in black and white arrows) and includes “flaring nostrils”; enlarged, laterally projecting, loreal osteoderms that are situated directly dorsal to the external nares. Other synapomorphies include pyramid-shaped nasal and frontal osteoderms positioned on the dorsal regions of the skull. A number of significant differences have been observed between both specimens; in A. johnsoni, the anterior, and posterior supraorbital bosses form an enlarged element that is somewhat backswept, whereas in N. kirtlandensis, the posterior and anterior supraorbital bosses are clearly defined as individual osteoderms, and are much smaller in size. Additionally, the squamosal horn in Akainacephalus is very small but is prominent and tetrahedrally shaped in Nodocephalosaurus. The quadratojugal horn in Akainacephalus is massive, has a subtriangular morphology in lateral view and projects almost entirely ventral, whereas in Nodocephalosaurus, the quadratojugal horn is smaller and has a typical fin-shaped morphology. Study sites: asob, anterior supraorbital boss; ext naris, external naris; laca, lacrimal caputegulum; loca, loreal caputegulum; naca, nasal caputegulae; orb, orbit; psob, posterior supraorbital boss; qjh, quadratojugal horn; sqh, squamosal horn.

Mexique Kaiparowits Kirtland Crétacé +6
Riojasaurus skull cast, Copenhagen.
Taxons Riojasaurus

Riojasaurus skull cast, Copenhagen.

moulage Riojasauridae Riojasaurus crâne
Skull of Pistosaurus longaevus (cast - USNM 16107) in right, left and posterior views.
Taxons Pistosaurus

Skull of Pistosaurus longaevus (cast - USNM 16107) in right, left and posterior views.

moulage Pistosauria Pistosauridae crâne
Skull of Pistosaurus longaevus (cast - USNM 16107) in right, left and posterior views.
Taxons Pistosauridae

Skull of Pistosaurus longaevus (cast - USNM 16107) in right, left and posterior views.

moulage Pistosauria Pistosauridae crâne
Skull replica of Vagaceratops at Canadian Museum of Nature
Taxons Vagaceratops

Skull replica of Vagaceratops at Canadian Museum of Nature

musée Vagaceratops crâne
Skull cast of Anchiceratops ornatus (original specimen: TMP 1983.001.0001) on display at the University of Michigan Museum of Natural History.
Taxons Anchiceratops

Skull cast of Anchiceratops ornatus (original specimen: TMP 1983.001.0001) on display at the University of Michigan Museum of Natural History.

musée moulage spécimen Anchiceratops +1
Cranial remains of Arthropterygius chrisorum CCMGE 17–44/13328 (A–J) and PMO 222.669 (L, M).

(A, B) Right postfrontal in ventral (A) and dorsal (B) views. (C) Left lateral view on articulated postfrontal, prefrontal and nasal. (D) Left prefrontal in ventral view. (E, F) Right prefrontal in ventral (E) and dorsal (F) views. (G, H) left nasal in dorsal (G) and ventral (H) views. (I, J) Left jugal in medial (I) and lateral (J) views. (K) Cranial reconstruction, showing the depicted elements (colored). (L, M) oblique dorsal view and interpretation of sutures of the skull roof of PMO 222.669. Abbreviations: ffr, facet for the frontal; fnas, facet of the nasal; fpo, facet for the postorbital; fpref, facet for the prefrontal; fqj, facet for the quadratojugal; fsut, facet for the supratemporal; lw, lateral wing of the nasal lamella; nas, nasal; par, parietal; pf, parietal foramen; pref, prefrontal; sut, supratemporal. Both scale bars represent 10 cm.
Taxons Arthropterygius

Cranial remains of Arthropterygius chrisorum CCMGE 17–44/13328 (A–J) and PMO 222.669 (L, M). (A, B) Right postfrontal in ventral (A) and dorsal (B) views. (C) Left lateral view on articulated postfrontal, prefrontal and nasal. (D) Left prefrontal in ventral view. (E, F) Right prefrontal in ventral (E) and dorsal (F) views. (G, H) left nasal in dorsal (G) and ventral (H) views. (I, J) Left jugal in medial (I) and lateral (J) views. (K) Cranial reconstruction, showing the depicted elements (colored). (L, M) oblique dorsal view and interpretation of sutures of the skull roof of PMO 222.669. Abbreviations: ffr, facet for the frontal; fnas, facet of the nasal; fpo, facet for the postorbital; fpref, facet for the prefrontal; fqj, facet for the quadratojugal; fsut, facet for the supratemporal; lw, lateral wing of the nasal lamella; nas, nasal; par, parietal; pf, parietal foramen; pref, prefrontal; sut, supratemporal. Both scale bars represent 10 cm.

écaille Arthropterygius crâne
Skull of Lesothosaurus - ornithischian dinosaur
Taxons Lesothosaurus

Skull of Lesothosaurus - ornithischian dinosaur

Dinosauria Lesothosauria Ornithischia Stormbergia +1
Skull of Lesothosaurus - ornithischian dinosaur
Taxons Stormbergia

Skull of Lesothosaurus - ornithischian dinosaur

Dinosauria Lesothosauria Ornithischia Stormbergia +1
The nodosaurid dinosaur, Glyptodontopelta is mostly known from isolated osteoderms ("armor plates"). The specimen SMP VP-1580 (State Museum of Pennysylvania) is however, the most complete known specimen, comprising parts of the skull, hundreds of osteoderms and fragments. This specimen was discovered in 2003 by Warwick Fowler, in the Naashoibito Member of the Ojo Alamo Formation (Maatrichtian, Late Cretaceous) of the San Juan Basin, New Mexico, during an expedition led by Dr. Robert Sullivan.
Taxons Glyptodontopelta

The nodosaurid dinosaur, Glyptodontopelta is mostly known from isolated osteoderms ("armor plates"). The specimen SMP VP-1580 (State Museum of Pennysylvania) is however, the most complete known specimen, comprising parts of the skull, hundreds of osteoderms and fragments. This specimen was discovered in 2003 by Warwick Fowler, in the Naashoibito Member of the Ojo Alamo Formation (Maatrichtian, Late Cretaceous) of the San Juan Basin, New Mexico, during an expedition led by Dr. Robert Sullivan.

armure musée Mexique Denver +9
Reconstruction and restoration of the skull of Eolambia.

(A) Skull reconstruction of Eolambia in left lateral view by the lead author. Bones in white are unknown, bones in dark grey are based primarily upon the adult holotype (CEUM 9758) or paratype (CEUM 5212), and bones in light grey are based primarily upon juvenile elements from the Eo2 and WS8 bonebeds. Sutures and points of contact between bones are marked in black. Scale bar equals 10 cm; scale is calibrated with the dentary of CEUM 9758. (B) Life restoration of the head of Eolambia by Lukas Panzarin. Abbreviations: an, angular; d, dentary; f, frontal; j, jugal; l, lacrimal; mx, maxilla; na, nasal; pd, predentary; pmx, premaxilla; po, postorbital; prf, prefrontal; q, quadrate; qj, quadratojugal; sa, surangular; sq, squamosal.
Taxons Eolambia

Reconstruction and restoration of the skull of Eolambia. (A) Skull reconstruction of Eolambia in left lateral view by the lead author. Bones in white are unknown, bones in dark grey are based primarily upon the adult holotype (CEUM 9758) or paratype (CEUM 5212), and bones in light grey are based primarily upon juvenile elements from the Eo2 and WS8 bonebeds. Sutures and points of contact between bones are marked in black. Scale bar equals 10 cm; scale is calibrated with the dentary of CEUM 9758. (B) Life restoration of the head of Eolambia by Lukas Panzarin. Abbreviations: an, angular; d, dentary; f, frontal; j, jugal; l, lacrimal; mx, maxilla; na, nasal; pd, predentary; pmx, premaxilla; po, postorbital; prf, prefrontal; q, quadrate; qj, quadratojugal; sa, surangular; sq, squamosal.

os écaille holotype juvénile +2
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Actualités

Meet Bataspis crux, Jawless Fish that Cruised Devonian Seas with Batwing Head
Rencontrez Bataspis crux, un poisson sans mâchoire qui naviguait dans les mers du Dévonien avec une tête de chauve-souris
mâchoire Chine Dévonien Dévonien poisson nouvelle espèce crâne
Des paléontologues chinois ont identifié une nouvelle espèce de poisson blindé et sans mâchoire provenant de roches vieilles d'environ 419 millions d'années, dont le crâne avait la forme d'une aile de chauve-souris et dont la tête inhabituelle en faisait un planeur efficace dans les mers du Dévonien. L'article Rencontrez Bataspis crux, un poisson sans mâchoire qui a navigué dans les mers du Dévonien avec une tête de chauve-souris est apparu en premier sur Sci.News : Breaking Science News.
18/08/2026 sci-news ⚙ Traduction automatique
Un fossile vieux de 30 ans cachait les os d'un mystérieux monstre marin ancien
os mâchoire Crétacé fossile Mosasaurus nouvelle espèce crâne
Des fossiles collectés à Osaka il y a plus de 30 ans ont révélé une surprise cachée à la vue de tous : quatre os jusqu'alors méconnus provenant d'un mosasaure géant du Crétacé. Parmi eux se trouve le premier prémaxillaire confirmé – l’os le plus en avant de la mâchoire supérieure – jamais identifié dans un fossile de mosasaure japonais. Plus intrigant encore, certaines parties du crâne présentent des caractéristiques anatomiques inhabituelles qui ne correspondent pas aux mosasaures connus, ce qui laisse penser que les restes appartiennent à une espèce entièrement nouvelle.
15/08/2026 sciencedaily ⚙ Traduction automatique
Un nouveau genre de dinosaure troodontidé du Nouveau-Mexique
os Mexique Campanien Crétacé Crétacé supérieur fossile Dinevenator Dinosauria Troodontidae nouvelle espèce crâne
Les paléontologues ont nommé une nouvelle espèce de dinosaure théropode du Nouveau-Mexique. Le dinosaure, Dinevenator Robustus, vivait il y a environ 73 millions d'années (stade faunique campanien du Crétacé supérieur). Les chercheurs ont identifié le dinosaure à partir d’un os fossile du crâne (un frontal) trouvé dans le nord-ouest du Nouveau-Mexique. Il représente un nouveau genre et une nouvelle espèce de troodontidé. Troodontidés
13/08/2026 everythingdinosaur ⚙ Traduction automatique
L’oiseau dodo possédait un monde sensoriel secret que les scientifiques découvrent seulement maintenant
oiseau tomographie découverte crâne
Les tomodensitogrammes des crânes de dodo les plus rares au monde suggèrent que l'oiseau disparu aurait pu avoir un odorat plus fort, un bec très sensible et un mode de vie qui s'étendait jusqu'à l'aube et au crépuscule. Ces découvertes contribuent à renverser des mythes vieux de plusieurs siècles et à révéler un animal bien plus complexe que le fameux dodo « stupide » de l’imagination populaire.
09/08/2026 sciencedaily-paleo ⚙ Traduction automatique
Un fossile oublié vient de révéler un nouveau prédateur du Trias datant d'il y a 210 millions d'années
mâchoire prédateur proie Mexique Trias fossile crâne
Un fossile négligé depuis près de 80 ans a révélé un parent de crocodile jusqu'alors inconnu qui vivait il y a 210 millions d'années dans ce qui est aujourd'hui le Nouveau-Mexique. Nommé Eosphorosuchus lacrimosa, ce prédateur de la taille d'un chacal avait un crâne renforcé, des muscles de mâchoire puissants et un museau court conçu pour s'attaquer à des proies plus grosses.
30/07/2026 sciencedaily ⚙ Traduction automatique
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