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2,315 results for “dinosaur”
Fig. 1 in A new sauropod dinosaur from the Lower Cretaceous Cedar Mountain Formation, Utah, USA
Fig. 1. Skeletal inventory of the camarasauromorph sauropod Brontomerus mcintoshi gen. et sp. nov. from the Lower Cretaceous Cedar Mountain Formation of Utah, in left lateral view. Preserved elements are white, missing elements are reconstructed in gray. After a Camarasaurus grandis reconstruction kindly provided by Scott Hartman.
Fig. 5 in New remains attributable to the holotype of the sauropod dinosaur Neuquensaurus australis, with implications for saltasaurine systematics
Fig. 5. Holotypic seventh sacral vertebra of the sauropod Neuquensaurus australis (Lydekker, 1893), MLP Ly 1, from the Late Cretaceous of Neuquén, Argentina in left lateral (A), ventral (B), anterior (C), right lateral (D), dorsal (E), and posterior (F) views.
Fig. 8. Sauropod sacrum PVL 4017−18 in New remains attributable to the holotype of the sauropod dinosaur Neuquensaurus australis, with implications for saltasaurine systematics
Fig. 8. Sauropod sacrum PVL 4017−18 from the Saltasaurus loricatus quarry at El Brete, Argentina. Stereophotographs in right lateral view, with anterior towards the top. The abbreviations s1 and s7 indicate sacral vertebral identity.
Fig. 10 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 10. The hadrosaurid dinosaur Sahaliyania elunchunorum gen. et sp. nov. from the Upper Cretaceous Yuliangze Formation at the Wulaga quarry, China. A. GMH W103, right ilium in lateral (A1) and medial (A2) views. B. GMH W400−2, right ischium in lateral view. C. GMH W179, left pubis in lateral (C1) and medial (C2) views.
Fig. 9 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 9. The hadrosaurid dinosaur Sahaliyania elunchunorum gen. et sp. nov. from the Upper Cretaceous Yuliangze Formation at the Wulaga quarry, China. A. GMH W201, right humerus in caudal (A1) and cranial (A2) views. B. Relative growth of the width of the deltopectoral crest (y) and of the length of the humerus (x) in lambeosaurine dinosaurs.
Fig. 6 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 6. The hadrosaurid dinosaur Sahaliyania elunchunorum gen. et sp. nov. from the Upper Cretaceous Yuliangze Formation at the Wulaga quarry, China. A. GMH W451, left dentary in medial (A1) and lateral (A2) views. B. GMH W153, right dentary in medial (B1) and lateral (B2) views, and detail of dentary teeth (B3).
Fig. 3 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 3. The hadrosaurid dinosaur Sahaliyania elunchunorum gen. et sp. nov. holotype GMH W453 from the Upper Cretaceous Yuliangze Formation at the Wulaga quarry, China. Braincase in caudal (A, B) and right lateral (C, D) views. Dotted lines indicate hypothetical sutures. Photographs (A, C) and explanatory drawings (B, D).
Fig. 13 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 13. The hadrosaurid dinosaur Wulagasaurus dongi gen. et sp. nov. from the Upper Cretaceous Yuliangze Formation at the Wulaga quarry, China. GMH WJ1, braincase in dorsal (A, B) and caudal (C, D) views. Photographs (A, C) and explanatory drawings (B, D).
Fig. 1. A in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 1. A. Location of the Amur/Heilongjiang Region in Asia. B. A sketch map of the Amur/Heilongjiang Region (modified from Kirillova 2003). The main dinosaur sites are indicated by solid triangles.
Fig. 17 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 17. The hadrosaurid dinosaur Wulagasaurus dongi gen et sp. nov. from the Upper Cretaceous Yuliangze Formation at the Wulaga quarry, China. A. GMH W320, right humerus in medial (A1), cranial (A2), lateral (A3), and caudal (A4) views. B. GMH W398−A,?left ischium in?lateral view.
Fig. 8 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 8. The hadrosaurid dinosaur Sahaliyania elunchunorum gen. et sp. nov. from the Upper Cretaceous Yuliangze Formation at the Wulaga quarry, China. A. GMH W148, right scapula in medial (A1) and lateral (A2) views. B. GMH W165, right sternal in ventral view.
Fig. 12 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 12. The hadrosaurid dinosaur Wulagasaurus dongi gen. et sp. nov. from the Upper Cretaceous Yuliangze Formation at the Wulaga quarry, China. A. GMHWJ1, braincase in left (A1, A2) and right lateral (A3, A4) views; photographs (A1, A3) and explanatory drawings (A2, A4). B. GMH W421, braincase in right lateral (B1) and dorsal (B2) views.
Fig. 5 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 5. Relative growth of the height of the jugal neck (y) and of the jugal length (x) in lambeosaurine dinosaurs from the Amur/Heilongjiang region.
Fig. 15 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 15. The hadrosaurid dinosaur Wulagasaurus dongi gen. et sp. nov. from the Upper Cretaceous Yuliangze Formation at the Wulaga quarry, China. A. Holotype GMH W184, right dentary in lateral (A1) and medial (A2) views. B. GMH W217, right dentary in lateral (B1) and medial (B2) views.
Fig. 14 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 14. The hadrosaurid dinosaur Wulagasaurus dongi gen. et sp. nov. from the Upper Cretaceous Yuliangze Formation at the Wulaga quarry, China. A. GMH W166, left jugal in lateral (A1) and medial (A2) views. B. GMH W233, left maxilla in lateral (B1) and medial (B2) views.
Fig. 4 in New hadrosaurid dinosaurs from the uppermost Cretaceous of northeastern China
Fig. 4. The hadrosaurid dinosaur Sahaliyania elunchunorum gen. et sp. nov. from the Upper Cretaceous Yuliangze Formation at the Wulaga quarry, China. A. GMH W200−A, left jugal in medial (A1) and lateral (A2) views. B. GMH W199, left maxilla in lateral (B1) and medial (B2) views. C. GMH W476, right quadrate in lateral (C1) and medial (C2) views.
FIG. 2 in Pennaraptoran Theropod Dinosaurs Past Progress And New Frontiers
FIG. 2. Angle formed between the main axis of the scapulocoracoid glenoid and main vertebral column axis in selected paravians. Pectoral girdle of the London specimen of Archaeopteryx, Saurornitolestes, Rhea americana, and Vultur gryphus, in right lateral view. Not to scale.
FIG. 3. Rhea americana siblings climbing a 45 in Pennaraptoran Theropod Dinosaurs Past Progress And New Frontiers
FIG. 3. Rhea americana siblings climbing a 45° ramp without performing WAIR. Individual on the left has its wings folded to the body, individual on the right has its wings extended.
FIG. 1 in Pennaraptoran Theropod Dinosaurs Past Progress And New Frontiers
FIG. 1. Wing posture of American ostrich (Rhea americana) with the humerus totally abducted. Photograph taken by Ramón Moller Jensen.
FIG. 2 in Pennaraptoran Theropod Dinosaurs Past Progress And New Frontiers
FIG. 2. Three axes scatterplot of a functional landscape of Theropoda flight capability as estimated by logged body mass, pectoral muscle mass, and wing area. The surface is a smoothed regression through all the points. The surface has a discrete ridge on which extant volant birds lie on whereas all nonavialan theropods plot on its slope.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.