Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
307
datasets available to search
ShareScore release 0.7.1
Dataset results
307 results for “Ornithischia”
Figure 6 in The record of Torosaurus (Ornithischia: Ceratopsidae) in Canada and its taxonomic implications
Figure 6. Osteohistology of Torosaurus cf. T. latus (EM P16.1). A, thin section of cortical bone of left femoral diaphysis ('B9- 3') (red bounding boxes indicate details in B); B, details of A, showing poorly vascularized periosteum (left) and deep cortex (right). Arrow indicates possible line of arrested growth. Note the lack of a discernible 'External Fundamental System' in B. Further imagery available at links in Appendix 2.
Figure 3 in The record of Torosaurus (Ornithischia: Ceratopsidae) in Canada and its taxonomic implications
Figure 3. Squamosals attributable to Torosaurus. A, EM P16.1; B, MPM VP6841; C, YPM 1830, holotype of T. latus (mirrored left squamosal). Note that EM P16.1 and MPM VP6841 share a wide squamosal blade, broadly rounded caudolateral corner (indicated by arrows) and a large fenestra within the blade. Squamosals scaled to same length to emphasize shape differences. Image in B provided by R. Hunt-Foster and image in C provided by A. Farke (used with permission).
Figure 2 in The record of Torosaurus (Ornithischia: Ceratopsidae) in Canada and its taxonomic implications
Figure 2. Parietosquamosal frill of Torosaurus cf. T. latus (EM P16.1.). A, dorsal surface; B, interpretive reconstruction of dorsal surface; C, schematic transverse cross-section of squamosal near caudal edge, based on sketch by H. Jones; D, schematic of frill, showing paired fossae and channels on ventral surface of squamosals, based on sketch by H. Jones. Abbreviations: p, parietal; pf, parietal fenestra; sq, squamosal; sqaf, accessory fenestra of squamosal; sqb, squamosal bar.
Figure 1 in The record of Torosaurus (Ornithischia: Ceratopsidae) in Canada and its taxonomic implications
Figure 1. Locality information pertinent to Canadian Torosaurus specimens. A, map (created using https://www. simplemappr.net/) showing locations of EM P16.1 and UALVP 1646 (stars). B, stratigraphic context of EM P16.1 and UALVP 1646, with distribution of Hell Creek Formation Torosaurus for context. Note that the precise placement of EM P16.1 within the Frenchman Formation is unknown. The precise location of MPM VP6841 within the upper Hell Creek Formation is likewise uncertain. Abbreviations: Fm, Formation; K-Pg, Cretaceous-Palaeogene boundary; Mtn, Mountain.
Figure 7 in The record of Torosaurus (Ornithischia: Ceratopsidae) in Canada and its taxonomic implications
Figure 7. Parietal of Torosaurus cf. T. latus (UALVP 1646). A, dorsal surface; B, interpretive reconstruction of dorsal surface; C, ventral surface; D, interpretive reconstruction ventral surface; E, detail of left parietal fenestra. Arrows in B and D indicate epiparietal loci. Arrows in E indicate unbroken margin of parietal fenestra. Abbreviations: mb, median bump; pf, parietal fenestra; pfo, parietal fossa.
Figure 5 in The record of Torosaurus (Ornithischia: Ceratopsidae) in Canada and its taxonomic implications
Figure 5. Osteohistology of Torosaurus cf. T. latus (EM P16.1). A, thin section of trabecular bone of left femoral metaphysis ('B9-2A') (red bounding box indicates detail in B); B, detail of A, showing large, subcircular erosion bays and dense, Haversian tissue; C, thin section of cortical bone of left femoral metaphysis ('B9-2B'), sampled immediately adjacent and superficial to A (red bounding box indicates detail in D); D, detail of C, showing periosteum. Arrows indicate lines of arrested growth. Note the lack of a discernible 'External Fundamental System' in D. Further imagery available at links in Appendix 2.
Fig. 1 in On the find of a primitive hadrosauroid dinosaur (Ornithischia, Hadrosauroidea) in the Cretaceous of the Belgorod Region.
Fig. 1. Lower molars of therians. A. Lainodon orueetxebarriai, zhelestid placental mammal, Late Cretaceous, Spain, left m1?, stereo occlusal view (L1AT 14, holotype). B. Therian mammal, Late Cretaceous, Madagascar, left molar, (UA 8699), B1, stereo occlusal view, B2, posterior view. C. Sorlestes budan, zhelestid placental mammal, Late Cretaceous, Uzbekistan, right molar (reversed), (CCMGE 3/12176, part of holotype dentary), C1, stereo occlusal view, C2, posterior view. D, E. Pediomys hatcheri, marsupial mammal, Late Cretaceous, United States, D1, right m1 (reversed) (UCMP127642), D2, the same, posterior view, E1, left m2 or 3 (UCMP 135217), E2, the same, posterior view. Scale bars, 1 mm.
Fig. 5 in A New Specimen of Pinacosaurus grangeri (Dinosauria: Ornithischia) from the Late Cretaceous of Mongolia: Ontogeny and Phylogeny of Ankylosaurs
Fig. 5. Pinacosaurus grangeri. Narial regions in left anterodorsolateral view showing the diversity and proposed homologies of the narial apertures and recesses. A, AMNH 6523. B, ZPAL MgDII/1. C, IGM 100/1014. See appendix 4 for abbreviations. Scale bars equal 2 cm.
Fig. 2. Pinacosaurus grangeri. IGM 100 in A New Specimen of Pinacosaurus grangeri (Dinosauria: Ornithischia) from the Late Cretaceous of Mongolia: Ontogeny and Phylogeny of Ankylosaurs
Fig. 2. Pinacosaurus grangeri. IGM 100/1014. Dorsal view of skull. See appendix 4 for abbreviations. Scale bar equals 5 cm.
Fig. 1 in A New Specimen of Pinacosaurus grangeri (Dinosauria: Ornithischia) from the Late Cretaceous of Mongolia: Ontogeny and Phylogeny of Ankylosaurs
Fig. 1. Map of Mongolia showing major fossiliferous localities, including Ukhaa Tolgod, where the new specimen of Pinacosaurus grangeri was found. Modified from Gao and Norell (2000).
Fig. 4. Pinacosaurus grangeri. IGM 100 in A New Specimen of Pinacosaurus grangeri (Dinosauria: Ornithischia) from the Late Cretaceous of Mongolia: Ontogeny and Phylogeny of Ankylosaurs
Fig. 4. Pinacosaurus grangeri. IGM 100/1014. Stereopairs of narial region in left anterolateral view showing narial apertures and recesses. See appendix 4 for abbreviations. Scale bar equals 2 cm.
Fig. 8. Pinacosaurus grangeri. IGM 100 in A New Specimen of Pinacosaurus grangeri (Dinosauria: Ornithischia) from the Late Cretaceous of Mongolia: Ontogeny and Phylogeny of Ankylosaurs
Fig. 8. Pinacosaurus grangeri. IGM 100/1014. Left hemimandible in buccal (A) and lingual (B) views. See appendix 4 for abbreviations. Scale bar equals 5 cm.
Fig. 9 in A New Specimen of Pinacosaurus grangeri (Dinosauria: Ornithischia) from the Late Cretaceous of Mongolia: Ontogeny and Phylogeny of Ankylosaurs
Fig. 9. Strict consensus of 16 equally parsimonious trees found in this cladistic analysis (length = 118 steps; consistency index (CI) = 0.475; retention index (RI) = 0.700; rescaled consistency index (RCI) = 0.332). Node A = Ankylosauria; node B = Nodosauridae; node G = Ankylosauridae. A list of the apomorphies at each lettered node is presented in appendix 3.
Fig. 18 in Yamaceratops dorngobiensis, a New Primitive Ceratopsian (Dinosauria: Ornithischia) from the Cretaceous of Mongolia
Fig. 18. Left ilium of the referred specimen of Yamaceratops dorngobiensis (IGM 100/1303) in lateral (A) and medial (B) views. Abbreviations are listed in appendix 3.
Fig. 10 in Yamaceratops dorngobiensis, a New Primitive Ceratopsian (Dinosauria: Ornithischia) from the Cretaceous of Mongolia
Fig. 10. Ventral view of the holotype skull of Yamaceratops dorngobiensis (IGM 100/1315). Abbreviations are listed in appendix 3.
Fig. 5 in Yamaceratops dorngobiensis, a New Primitive Ceratopsian (Dinosauria: Ornithischia) from the Cretaceous of Mongolia
Fig. 5. Left maxilla of the referred specimen of Yamaceratops dorngobiensis in lateral (A) and medial (B) views. Abbreviations are listed in appendix 3.
Fig. 2 in Yamaceratops dorngobiensis, a New Primitive Ceratopsian (Dinosauria: Ornithischia) from the Cretaceous of Mongolia
Fig. 2. Rostral view of the holotype skull of Yamaceratops dorngobiensis (IGM 100/1315). Abbreviations are listed in appendix 3.
Fig. 1 in Yamaceratops dorngobiensis, a New Primitive Ceratopsian (Dinosauria: Ornithischia) from the Cretaceous of Mongolia
Fig. 1. Left lateral view of the holotype skull of Yamaceratops dorngobiensis (IGM 100/1315). Abbreviations are explained in appendix 3.
Fig. 8 in Yamaceratops dorngobiensis, a New Primitive Ceratopsian (Dinosauria: Ornithischia) from the Cretaceous of Mongolia
Fig. 8. Occipital view of the holotype skull of Yamaceratops dorngobiensis (IGM 100/1315). Abbreviations are listed in appendix 3.
Fig. 4 in Yamaceratops dorngobiensis, a New Primitive Ceratopsian (Dinosauria: Ornithischia) from the Cretaceous of Mongolia
Fig. 4. Rostral bone of the referred specimen of Yamaceratops dorngobiensis (IGM 100/1303) in lateral
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.