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Fig. 4 in Cranial Osteology of the Theropod Dinosaur Incisivosaurus gauthieri (Theropoda: Oviraptorosauria)
Fig. 4. The skull of the holotype of Incisivosaurus gauthieri (IVPP V 13326) in (A) dorsal and (B) ventral views. Abbreviations in appendix 1.
Fig. 6 in Cranial Osteology of the Theropod Dinosaur Incisivosaurus gauthieri (Theropoda: Oviraptorosauria)
Fig. 6. The mandible of the holotype of Incisivosaurus gauthieri (IVPP V 13326) in (A) anterior, (B) right lateral, and (C) left lateral views.
Fig. 9 in Cranial Osteology of the Theropod Dinosaur Incisivosaurus gauthieri (Theropoda: Oviraptorosauria)
Fig. 9. Horizontal CT slices through the skull of the holotype of Incisivosaurus gauthieri (IVPP V 13326). Abbreviations in appendix 1.
Fig. 13 in Cranial Osteology of the Theropod Dinosaur Incisivosaurus gauthieri (Theropoda: Oviraptorosauria)
Fig. 13. Sagittal cutaway of a virtual rendering of the skull of the holotype of Incisivosaurus gauthieri
Fig. 3 in Cranial Osteology of the Theropod Dinosaur Incisivosaurus gauthieri (Theropoda: Oviraptorosauria)
Fig. 3. The skull of the holotype of Incisivosaurus gauthieri (IVPP V 13326) in (A) right lateral and (B) left lateral views. Abbreviations in appendix 1.
FIGURE 12 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 12. Surangular pocket shown in sagittal slices from most lateral (A) to most medial (D). Arrow points to pneumatic pocket. Pocket can be seen dissipating into the trabecular bone of the surangular. Scale bar = 40 mm.
FIGURE 10 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 10. Right ectopterygoid in ventral (A), dorsal (B), lateral (C), and medial (D) views. Left column shows renders the bone semitransparent, right column shows the isolated sinus. Scale bar = 10 mm.
FIGURE 7 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 7. Right quadrate in lateral (A), medial (B), dorsal (C), and ventral (D) views. Left column shows renders the bone semitransparent, right column shows the isolated sinus. Scale bar = 20 mm.
FIGURE 5 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 5. Left jugal in lateral (A), medial (B), dorsal (C), and ventral (D) views. Left column shows renders the bone semitransparent, right column shows the isolated sinus. Scale bar = 25 mm.
FIGURE 4 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 4. Left lacrimal (A), medial (B), dorsal (C), and ventral (D) views. Left column shows renders the bone semitransparent, right column shows the isolated sinus. Scale bar = 25 mm.
FIGURE 8 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 8. Left palatine in lateral (A), medial (B), dorsal (C), and ventral (D) views. Left column shows renders the bone semitransparent, right column shows the isolated sinus. Scale bar = 15 mm.
FIGURE 15 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 15. Pneumatic features on selected cranial bones of Tarbosaurus bataar (ZPAL collection). Main body of left lacrimal ZPAL MgD-I/4 in lateral view (A), anterior ramus of left lacrimal ZPAL MgD-I/4 in lateral view (B); left palatine ZPAL MgD-I/4 in lateral view (C), right squamosal ZPAL MgD-I/4 in ventral view (D), right ectopterygoid ZPAL MgD-I/34 in ventral view (E); left surangular ZPAL MgD-I/3 in lateral view (F). Scale bars = 3 cm. Arrows denote external pneumatic features (foramina and fenestrae).
FIGURE 11 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 11. Left surangular in lateral (A), medial (B), dorsal (C), and ventral (D) view. Scale bar = 30 mm.
FIGURE 1 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 1. Left maxilla in lateral (A), medial (B), dorsal (C), and ventral (D) views. Left column shows antorbital sinus in approximate life position, with maxilla semitransparent. Middle column shows maxilla semitransparent without the antorbital sinus. Right column shows isolated maxillary sinus. Scale bar = 45 mm.
FIGURE 3 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 3. Right lacrimal in lateral (A), medial (B), dorsal (C), and ventral (D) views. Left column shows renders the bone semitransparent, right column shows the isolated sinus. Scale bar = 25 mm.
FIGURE 13 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 13. Right angular in lateral (A), medial (B), dorsal (C), and ventral (D) views. Scale bar = 20 mm.
FIGURE 6 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 6. Squamosal and postorbital in lateral (A), medial (B), dorsal (C), and ventral (D) views. Red box in (A) shows location of images in (B), (C), and (D). Left column shows renders the bone semitransparent, right column shows the isolated sinus. Scale bar = 15 mm.
Fig. 6 in A Small Derived Theropod from Öösh, Early Cretaceous, Baykhangor Mongolia
Fig. 6. Systematic variation in maxillary fenestra morphology among coelurosaur theropods. Shanag ashile (IGM 100/1119), top, illustrating a dorsally displaced maxillary fenestra (character 237.1) and a maxillary fenestra recessed within a shallow caudal or caudodorsally open fossa (character 239.1). Dilong paradoxus (IVPP V14243), bottom, illustrating the absence of the above character states (character 237.0 and 239.0).
Fig. 7 in A Small Derived Theropod from Öösh, Early Cretaceous, Baykhangor Mongolia
Fig. 7. Systematic variation in jugal morphology among dromaeosaurid theropods. Tsaagan mangas (IGM 100/1015), top, illustrating a wide jugal process of the maxilla below the external antorbital fenestra (character 238.1). Velociraptor mongoliensis (AMNH FR 6515), bottom, illustrating a narrow jugal process of the maxilla below the external antorbital fenestra (character 238.0). Images not to scale.
Fig. 13 in A Small Derived Theropod from Öösh, Early Cretaceous, Baykhangor Mongolia
Fig. 13. Systematic variation in jugal/antorbital fenestra morphology in theropod dinosaurs. Oviraptor philoceratops (AMNH 6517), bottom, illustrating a jugal that does not participate in the antorbital fenestra (character 246.0). Tsaagan mangas (IGM 100/1015), top, illustrating a jugal that does participate in the antorbital fenestra (character 246.1). Images not to scale.
ScienceDex guides
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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.