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fossile

Nature du spécimen

226 image(s) · 216 Actualités

Galerie d'images

Sable riche en coquilles fossiles provenant de l'intérieur de puits de dissolution du site de l'Ariey. On y voit des coraux, oursins plats (Amphiope), gastéropodes (Melongena, Conus, Cypraea) et des bivalves (Lucina & Barbatia)

Sable riche en coquilles fossiles provenant de l'intérieur de puits de dissolution du site de l'Ariey. On y voit des coraux, oursins plats (Amphiope), gastéropodes (Melongena, Conus, Cypraea) et des bivalves (Lucina & Barbatia)

fossile
Figure 1. Evolution of macroecological traits in Dinosauria. Large scale event in dinosaur evolution (a); the origin of dinosaurs (star), hyperthermals (volcano), the earliest fossil Avialae (bird), the earliest fossil angiosperm (flower), the Cretaceous/Palaeogene mass extinction (asteroid). Phylogeny of dinosaurs (b) redrawn from Sereno and adapted to the current consensus and upon which an ancestral state reconstruction of temperature niche (mean annual temperature) after Chiarenza et al. is plotted; Mesozoic palaeogeographies (c) for Triassic (T), Jurassic (J) and Cretaceous (K). Silhouette colours symbolize body mass for each of the taxa represented; information on dietary habits are plotted after Barrett and Zanno & Makovicky; numbers represent clades discussed through this study: 1, Ornithischia; 2, Thyreophora; 3, Ornithopoda; 4, Hadrosauroidea; 5, Marginocephalia; 6, Ceratopsia; 7, Saurischia; 8, Sauropodomorpha; 9, Sauropoda; 10, Theropoda; 11, Ceratosauria; 12, Tetanurae; 13, Coelurosauria; 14, Maniraptoriformes; 15, Maniraptora; 16, Deinonychosauria; 17, Avialae; 18, Ornithothoraces. Palaeogeographies modified from original plots via R package ‘mapast’ using plate models by Scotese.

Figure 1. Evolution of macroecological traits in Dinosauria. Large scale event in dinosaur evolution (a); the origin of dinosaurs (star), hyperthermals (volcano), the earliest fossil Avialae (bird), the earliest fossil angiosperm (flower), the Cretaceous/Palaeogene mass extinction (asteroid). Phylogeny of dinosaurs (b) redrawn from Sereno and adapted to the current consensus and upon which an ancestral state reconstruction of temperature niche (mean annual temperature) after Chiarenza et al. is plotted; Mesozoic palaeogeographies (c) for Triassic (T), Jurassic (J) and Cretaceous (K). Silhouette colours symbolize body mass for each of the taxa represented; information on dietary habits are plotted after Barrett and Zanno & Makovicky; numbers represent clades discussed through this study: 1, Ornithischia; 2, Thyreophora; 3, Ornithopoda; 4, Hadrosauroidea; 5, Marginocephalia; 6, Ceratopsia; 7, Saurischia; 8, Sauropodomorpha; 9, Sauropoda; 10, Theropoda; 11, Ceratosauria; 12, Tetanurae; 13, Coelurosauria; 14, Maniraptoriformes; 15, Maniraptora; 16, Deinonychosauria; 17, Avialae; 18, Ornithothoraces. Palaeogeographies modified from original plots via R package ‘mapast’ using plate models by Scotese.

écaille Crétacé Jurassique Mésozoïque +23
Simplified cladogram of Dinosauria with the distribution of feathers according to the fossil record. Despite its more ancient origin, it
was only in maniraptoriformes that modern-type feathers (pennaceous feathers) have arisen (Based in Xu & Guo, 2009; Clarke,

2013; Godefroit et al., 2013; Han et al., 2014; Koshchowitz et al., 2014).

Simplified cladogram of Dinosauria with the distribution of feathers according to the fossil record. Despite its more ancient origin, it was only in maniraptoriformes that modern-type feathers (pennaceous feathers) have arisen (Based in Xu & Guo, 2009; Clarke, 2013; Godefroit et al., 2013; Han et al., 2014; Koshchowitz et al., 2014).

plume fossile Dinosauria Maniraptoriformes +1
Photographer: User:Ballista

Edited in Adobe PhotoShop: User:Firsfron
Photographed object is in fact a cast of a real fossil. It's part of a hands-on exhibit of the NHM in London.

Photographer: User:Ballista Edited in Adobe PhotoShop: User:Firsfron Photographed object is in fact a cast of a real fossil. It's part of a hands-on exhibit of the NHM in London.

moulage fossile Neotheropoda
The Chicago specimen of Archaeopteryx (PA 830), a well-preserved fossil highlighting the transitional features between non-avian dinosaurs and birds, housed at the Field Museum of Natural History.

The Chicago specimen of Archaeopteryx (PA 830), a well-preserved fossil highlighting the transitional features between non-avian dinosaurs and birds, housed at the Field Museum of Natural History.

musée fossile spécimen Archaeopteryx +2
Duria Antiquior, célèbre aquarelle du géologue Henry de la Beche représentant la vie dans l'ancien Dorset d'après des fossiles trouvés par Mary Anning.

Duria Antiquior, célèbre aquarelle du géologue Henry de la Beche représentant la vie dans l'ancien Dorset d'après des fossiles trouvés par Mary Anning.

old school fossile Ichthyosaurus Plesiosaurus +1
Geographic and geologic map showing the location and involved strata of the studied fossil sites in the Xinhe Formation. (A, B) location of the fossiliferous localities in the Gansu Province. (C) Geological map of the involved strata of the studied fossil site (from State Bureau of Surveying and Mapping, GS (2016)2884). White star=Jinchuanloong niedu. Black star=plesiosaur fossils. (D) Stratigraphic chart of the Jurassic at the localities.

Geographic and geologic map showing the location and involved strata of the studied fossil sites in the Xinhe Formation. (A, B) location of the fossiliferous localities in the Gansu Province. (C) Geological map of the involved strata of the studied fossil site (from State Bureau of Surveying and Mapping, GS (2016)2884). White star=Jinchuanloong niedu. Black star=plesiosaur fossils. (D) Stratigraphic chart of the Jurassic at the localities.

Jurassique fossile Jinchuanloong Plesiosauria +1
Jinchuanloong is a relatively basal sauropod that measured an estimated 10 m in length. Sauropod skulls typically don't preserve well in the fossil record, but Jinchuanloong is known mainly from the skull, and parts of the neck and tail. Like all sauropods, Jinchuanloong was a quadrupedal herbivore that used its long neck to reach the vegetation that it fed on.

Jinchuanloong is a relatively basal sauropod that measured an estimated 10 m in length. Sauropod skulls typically don't preserve well in the fossil record, but Jinchuanloong is known mainly from the skull, and parts of the neck and tail. Like all sauropods, Jinchuanloong was a quadrupedal herbivore that used its long neck to reach the vegetation that it fed on.

fossile Jinchuanloong crâne
Artists’ reconstruction of the living Sarabosaurus dahli swimming with ammonites and fish in southern Utah, 94 million years ago. Artwork by Andrey Atuchin. On June 23, 2023, the following link will go live for more information, www.blm.gov/press-release/94-million-year-old-fossil-prov...

Artists’ reconstruction of the living Sarabosaurus dahli swimming with ammonites and fish in southern Utah, 94 million years ago. Artwork by Andrey Atuchin. On June 23, 2023, the following link will go live for more information, www.blm.gov/press-release/94-million-year-old-fossil-prov...

fossile Sarabosaurus Selmasaurini
Various fossils pertaining to the holotype of the Triassic ichthyosaur Toretocnemus (originally Leptocheirus, also Merriamia) zitteli. This image is derived from plate 23 in Merriam (1903), done by an uncredited artist. The arrangement of the individual figures has been modified from the original (most notably, figures 3 and 4 were swapped to minimize confusion).
Original description:
Leptocheirus zitteli n. gen. and sp.
Figures reproduced natural size from the type specimen.

Fig. 1.— Right side of skull.
Fig. 2. — Cross-section of posterior portion of the lower jaw, taken above the point marked A on the lateral view of the skull.
Fig. 3. — Cross-section of the upper and lower jaws, taken at the break immediately behind the point marked Sp on the lateral view of the skull.
Fig. 4. — Lateral view of an anterior caudal centrum.
Legend (modified from original):

Ar - articular
A - angular
D - dentary
J - jugal
L - lacrimal
Mx - maxilla
Po - postorbital
Sa - surangular
Se - sclerotic ring
Sp - spenial
T - cross-section of tooth
X - doubtful element

Various fossils pertaining to the holotype of the Triassic ichthyosaur Toretocnemus (originally Leptocheirus, also Merriamia) zitteli. This image is derived from plate 23 in Merriam (1903), done by an uncredited artist. The arrangement of the individual figures has been modified from the original (most notably, figures 3 and 4 were swapped to minimize confusion). Original description: Leptocheirus zitteli n. gen. and sp. Figures reproduced natural size from the type specimen. Fig. 1.— Right side of skull. Fig. 2. — Cross-section of posterior portion of the lower jaw, taken above the point marked A on the lateral view of the skull. Fig. 3. — Cross-section of the upper and lower jaws, taken at the break immediately behind the point marked Sp on the lateral view of the skull. Fig. 4. — Lateral view of an anterior caudal centrum. Legend (modified from original): Ar - articular A - angular D - dentary J - jugal L - lacrimal Mx - maxilla Po - postorbital Sa - surangular Se - sclerotic ring Sp - spenial T - cross-section of tooth X - doubtful element

description Trias fossile holotype +7
Photograph of a fossil cast of a Tanycolagreus topwilsoni skeleton taken at the North American Museum of Ancient Life.

Photograph of a fossil cast of a Tanycolagreus topwilsoni skeleton taken at the North American Museum of Ancient Life.

musée moulage fossile Coeluridae +2
Tanycolagreus fossil holotype TPII 2000-09-29, North American Museum of Ancient Life.

Tanycolagreus fossil holotype TPII 2000-09-29, North American Museum of Ancient Life.

musée États-Unis fossile holotype +2
Diagram of the skull of Taniwhasaurus antarcticus, the areas in black being the known fossil material.
Reference source:

Álvarez–Herrera, Agnolin & Novas (2020) "A rostral neurovascular system in the mosasaur Taniwhasaurus antarcticus"

Diagram of the skull of Taniwhasaurus antarcticus, the areas in black being the known fossil material. Reference source: Álvarez–Herrera, Agnolin & Novas (2020) "A rostral neurovascular system in the mosasaur Taniwhasaurus antarcticus"

fossile Plioplatecarpinae Taniwhasaurus crâne
Ctenochasma elegans (syn. Pterodactylus elegans) fossil from Solnhofen, Germany

American Museum of Natural History, New York, FR-5147
Received in exchange from the Paläontologisches Museum München, 1909
Taxons Ctenochasmatidae

Ctenochasma elegans (syn. Pterodactylus elegans) fossil from Solnhofen, Germany American Museum of Natural History, New York, FR-5147 Received in exchange from the Paläontologisches Museum München, 1909

musée Allemagne fossile Ctenochasma +5
Ctenochasma elegans (syn. Pterodactylus elegans) fossil from Solnhofen, Germany

American Museum of Natural History, New York, FR-5147
Received in exchange from the Paläontologisches Museum München, 1909
Taxons Gnathosaurinae

Ctenochasma elegans (syn. Pterodactylus elegans) fossil from Solnhofen, Germany American Museum of Natural History, New York, FR-5147 Received in exchange from the Paläontologisches Museum München, 1909

musée Allemagne fossile Ctenochasma +5
Ctenochasma elegans (syn. Pterodactylus elegans) fossil from Solnhofen, Germany

American Museum of Natural History, New York, FR-5147
Received in exchange from the Paläontologisches Museum München, 1909
Taxons Moganopterinae

Ctenochasma elegans (syn. Pterodactylus elegans) fossil from Solnhofen, Germany American Museum of Natural History, New York, FR-5147 Received in exchange from the Paläontologisches Museum München, 1909

musée Allemagne fossile Ctenochasma +5
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Actualités

Ce fossile de dinosaure capture les derniers instants d'une attaque de T. rex
dent prédateur proie fossile Dinosauria Edmontosaurus Tyrannosaurus découverte crâne
Un crâne fossilisé d'Edmontosaure avec une dent de tyrannosaure encore incrustée dans son visage a fourni aux scientifiques de rares preuves d'une rencontre dramatique entre prédateur et proie. La découverte suggère que le carnivore géant a prononcé une morsure face-à-face incroyablement puissante, offrant de nouveaux indices sur la façon dont le tyrannosaure chassait.
14/07/2026 sciencedaily ⚙ Traduction automatique
Une oie fossile rare réécrit l'histoire des oiseaux géants de Nouvelle-Zélande
Nouvelle-Zélande fossile oiseau découverte évolution
Les scientifiques ont découvert une oie fossile jusqu'alors inconnue qui remet en question une théorie vieille de plusieurs décennies sur l'évolution des oiseaux de Nouvelle-Zélande. La découverte suggère que les oies géantes incapables de voler du pays ont évolué à partir d'arrivées beaucoup plus récentes, révélant une histoire évolutive beaucoup plus dynamique qu'on ne le pensait autrefois.
11/07/2026 sciencedaily ⚙ Traduction automatique
New Jurassic Fossil Reveals How Birds Lost Their Dinosaur Tails
Un nouveau fossile jurassique révèle comment les oiseaux ont perdu leur queue de dinosaure
Chine Jurassique fossile Dinosauria Zhengheornis oiseau
Des paléontologues chinois ont décrit un petit oiseau jurassique jusqu'alors inconnu dont la queue courte offre de nouvelles preuves de la façon dont les premiers oiseaux ont troqué leur longue queue semblable à celle d'un dinosaure contre le coccyx compact qui aide les oiseaux vivants à voler. L'article Un nouveau fossile du Jurassique révèle comment les oiseaux ont perdu leurs queues de dinosaures est apparu en premier sur Sci.News : Breaking Science News.
07/07/2026 sci-news ⚙ Traduction automatique
Les abeilles anciennes ont transformé les alvéoles dentaires en minuscules pépinières il y a 20 000 ans
os dent nid fossile oiseau découverte insecte mammifères
Une étonnante découverte de fossiles montre que d'anciennes abeilles utilisaient les alvéoles vides des os de mammifères comme de minuscules nids après que des hiboux aient dispersé les os sur le sol d'une grotte il y a 20 000 ans. Il s’agit de la première preuve connue de nidification d’abeilles dans des os d’animaux, révélant une stratégie de survie étonnamment créative.
05/07/2026 sciencedaily ⚙ Traduction automatique
83-Million-Year-Old Fossil Rewrites Timeline of Antarctica’s First Dinosaur Discovery
Un fossile vieux de 83 millions d’années réécrit la chronologie de la première découverte de dinosaures en Antarctique
vertèbre Antarctique fossile Dinosauria Titanosauria découverte
Un petit fossile collecté sur une île de l'Antarctique il y a plus de quatre décennies est la vertèbre caudale d'un dinosaure sauropode titanosaure qui parcourait l'Antarctique il y a environ 83 millions d'années, selon un nouvel article paru dans la revue Acta Palaeontologica Polonica. La chronologie de la première découverte de dinosaures en Antarctique réécrite par un fossile vieux de 83 millions d'années est apparue en premier sur Sci.News : Breaking Science News.
01/07/2026 sci-news ⚙ Traduction automatique
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