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Figure 20 in The Lower Jurassic ornithischian dinosaur Heterodontosaurus tucki Crompton & Charig, 1962: cranial anatomy, functional morphology, taxonomy, and relationships
Figure 20. Heterodontosaurus tucki Crompton & Charig, 1962. SAM-PK-K337 (holotype). Anterior dentition preserved on the right side of the skull (based on a photograph taken during early preparation – prior to the complete removal of matrix from the lateral surface of the dentary caniniform. Note, the first premaxillary caniniform is not preserved on this side of the skull; the first premaxillary incisiform is only preserved on the left side of the skull. Inset diagram: sketch of the profiles of the left premaxillary dentition of SAM-PK-K337 (prepared by A. W. C./A. J. C.). For full list of abbreviations see end of paper.
Figure 30 in The Lower Jurassic ornithischian dinosaur Heterodontosaurus tucki Crompton & Charig, 1962: cranial anatomy, functional morphology, taxonomy, and relationships
Figure 30. Heterodontosaurus tucki. SAM-PK-K1334 (referred specimen). Posterior portion of the left maxilla. Segmented image prepared from computed tomography scans of the original. A, lateral aspect. Bones displayed as grey, erupted crowns shown in yellow. B, semi-transparent image of the maxilla to show the extent and arrangement of individual teeth in the maxilla. Red areas indicate the presence of replacement crowns embedded within the body of the maxilla. For full list of abbreviations see end of paper.
Figure 25 in Cranial osteology and phylogenetic position of the theropod dinosaur Proceratosaurus bradleyi (Woodward, 1910) from the Middle Jurassic of England
Figure 25. Body size evolution in basal coelurosaurs and tyrannosauroids. Size classes: 0–10 kg (white); 10–100 kg (); 100–1000 kg (); more than 1000 kg ().
Figure 16 in Cranial osteology and phylogenetic position of the theropod dinosaur Proceratosaurus bradleyi (Woodward, 1910) from the Middle Jurassic of England
Figure 16. Proceratosaurus bradleyi, stereophotographs and interpretative drawing of the skull in posterior (occipital) view. Abbreviations: bo, basioccipital; boc, basioccipital condyle; bpt, basipterygoid process; bs, basisphenoid; bsr, basisphenoid recess; bsw, basisphenoid web; bt, basal tuber; fre, facet for the attachment of the musculus depressor mandibulae on the retroarticular process of the mandible; man, mandible; ptq, quadrate wing of the pterygoid; q, quadrate; qf, quadrate foramen; qma, quadrate mandibular articulation. Scale bar: 5 cm.
Figure 13 in Cranial osteology and phylogenetic position of the theropod dinosaur Proceratosaurus bradleyi (Woodward, 1910) from the Middle Jurassic of England
Figure 13. Proceratosaurus bradleyi. Saggital CT slice of the skull in right lateral view, showing elements of the palate and braincase. Abbreviations: bpt, basipterygoid process; bs, basisphenoid; pal, palatine; pt, pterygoid; rp, retroartticular process of the mandible.
Figure 15 in Cranial osteology and phylogenetic position of the theropod dinosaur Proceratosaurus bradleyi (Woodward, 1910) from the Middle Jurassic of England
Figure 15. Proceratosaurus bradleyi, horizontal CT slice of the posterior part of the skull, showing the ectopterygoid and the ventral end of the pterygoid wing of the quadrate. Abbreviations: ect, ectopterygoid; ectr, ectopterygoid recess; q, quadrate; qptw, pterygoid wing of the quadrate.
Figure 10 in Ontogeny and variation of the pachycephalosaurine dinosaur Sphaerotholus buchholtzae, and its systematics within the genus
Figure 10. Three-dimensional geometric morphometric principal component analysis of examined pachycephalosaurines. Red square = Sphaerotholus edmontonenesis; green star = S. goodwini; blue circles = S. buchholtzae; yellow triangles = Foraminacephale brevis. Specimens not to scale.
Figure 10 in The braincase, brain and palaeobiology of the basal sauropodomorph dinosaur Thecodontosaurus antiquus
Figure 10. Evolution of endocranial morphology in Sauropodomorpha. Endocasts are in lateral view and not to scale. Abbreviations: asc, anterior semicircular canal; fl, floccular lobe; laby, endosseous labyrinth. The simplified phylogeny of Sauropodomorpha is based on the studies by Remes et al. (2009), Otero & Pol (2013), Langer et al. (2019) and McPhee et al. (2020). Saturnalia and Plateosaurus endocasts are from the study by Bronzati et al. (2017); Spinophorosaurus endocast is from the study by Knoll et al. (2012). The phylogenetic tree was edited in ITOL v.5 (https://itol.embl.de). Silhouettes are from http://phylopic.org
Figure 7 in The braincase, brain and palaeobiology of the basal sauropodomorph dinosaur Thecodontosaurus antiquus
Figure 7. Model of the supraoccipital of Thecodontosaurus antiquus, specimen YPM 2192, in anterior (A), posterior (B), right lateral (C), dorsal (D), ventral (E) and right ventrolateral (F) views. Abbreviations: ascp, anterior semicircular canal passage; boas, basioccipital articular surface; ccp, crus commune passage; er, endocranial roof; flf, floccular fossa; fm, foramen magnum; nc, nuchal crest; ooas, otoccipital articular surface; poas, prootic articular surface; pscp, posterior semicircular canal passage; soas, supraoccipital articular surface; voen, vena occipitalis externa notch. Scale bar: 1 cm.
Figure 5 in The braincase, brain and palaeobiology of the basal sauropodomorph dinosaur Thecodontosaurus antiquus
Figure 5. Model of the prootics of Thecodontosaurus antiquus, specimen YPM 2192, in anterior (A), posterior (B), right lateral (C), left lateral (D), left medial (E), right medial (F), dorsal (G) and ventral (H) views. Abbreviations: ascp, anterior semicircular canal passage; cpo, crista prootica; dld, dorsolateral depression of prootic; flf, floccular fossa; lsas, laterosphenoid articular surface; lscp, lateral semicircular canal passage; mpp, musculus protactor pterygoideus attachment site; ooas, otoccipital articular surface; pp, preotic pendant; psas, parabasisphenoid articular surface; soas, supraoccipital articular surface; V, trigeminal nerve (cranial nerve V) foramen; vc, vestibular chamber; vcmn, vena cerebralis media notch; VII, facial nerve (cranial nerve VII) foramen. Scale bar: 1 cm.
Figure 12 in The earliest-diverging avemetatarsalian: a new osteoderm- bearing taxon from the Triassic (?Earliest Late Triassic) of Madagascar and the composition of avemetatarsalian assemblages prior to the radiation of dinosaurs
Figure 12. Anterior or middle trunk vertebrae referred to Mambachiton fiandohana (FMNH PR 5065). Anterior or middle trunk vertebra in less lateral (A), right lateral (B), anterior (C), posterior (D), dorsal (E), and ventral (F) views. Second anterior or middle trunk vertebra in less lateral (G), right lateral (H), anterior (I), posterior (J), dorsal (K), and ventral (L) views. Arrows indicate anterior direction. Scale bars = 1 cm. Abbreviations: dia, diapophysis; ns, neural spine; par, parapophysis; pre, prezygapophysis; poz, postzygapophysis.
Figure 11. A in The earliest-diverging avemetatarsalian: a new osteoderm- bearing taxon from the Triassic (?Earliest Late Triassic) of Madagascar and the composition of avemetatarsalian assemblages prior to the radiation of dinosaurs
Figure 11. A, principal component analysis (PCA) of both less and right lateral cervical osteoderms of the holotype (UA 8-25-97-132). Grouping is based on general location of the osteoderms in the series: anterior, posterior, and central and correspond to the leưers (right side) and numbers (less side) of (C). B, lollipop diagram and wireframe graph for less lateral PC1, superimposed over osteoderm 1 in (C). Arrow indicates anterior direction.
Figure 9 in The earliest-diverging avemetatarsalian: a new osteoderm- bearing taxon from the Triassic (?Earliest Late Triassic) of Madagascar and the composition of avemetatarsalian assemblages prior to the radiation of dinosaurs
Figure 9. Digital reconstruction of the osteoderms of the holotype of Mambachiton fiandohana (UA 8-25-97-132). Both paramedian rows of osteoderms (alternating purple and red = right side; alternating pink and turquoise = less side) in dorsal (A) and ventral (B) views. Less paramedian row in lateral (C), dorsolateral (D), ventral (E), and medial (F) views. Isolated osteoderm from the less paramedial row in dorsolateral (G), lateral (H), medial (I), and ventral (J) views and isolated osteoderm from the right paramedial row in dorsolateral (K), lateral (L), medial (M), and ventral (N) views. Arrows indicate anterior direction. Scale bars = 5 in A–F and 1 cm in G–N. Abbreviations: ap, anterior process; gap, groove for anterior process.
Dinosaur
3D сканер Artec Spider Source: Objaverse 1.0 / Sketchfab
DNA sequences from two non-avian dinosaurs
GEO Series GSE241491. Tyrannosaurus rex; Brachylophosaurus canadensis. 12 samples. Type: Other.
Figure 3 in Late Cretaceous dinosaurs from the Denver Basin, Colorado
Figure 3. (Caption on facing page.)
Appendix 1 in Late Cretaceous dinosaurs from the Denver Basin, Colorado
Appendix 1 (continued from previous page).
Figure 2 in Late Cretaceous dinosaurs from the Denver Basin, Colorado
Figure 2. (Caption on facing page.)
Figure 7 in Late Cretaceous dinosaurs from the Denver Basin, Colorado
Figure 7. Left maxilla of Edmontosaurus sp. (UCM 18953) from Laramie Formation. Scale bar = 10 cm.
Fig. 35 in Cranial anatomy of tyrannosaurid dinosaurs from the Late Cretaceous of Alberta, Canada
Fig. 35. Daspletosaurus sp. (TMP 94.143.1). Right supradentary in lingual view.
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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.