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.
767
datasets available to search
ShareScore release 0.9.0
Dataset results
767 results for “Theropoda”
Fig. 1 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 1. The holotype locality looking north. The arrow signifies the point of discovery of IGM 100/
Figure 6 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 6. Skull of Cryolophosaurus ellioti in dorsal aspect (photo courtesy of J. Weinstein).
Figure 18 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 18. Proximal left tibia of Cryolophosaurus ellioti in proximal (A) and lateral (B) aspects.
Fig. 44 in The Osteology Of Alioramus, A Gracile And Long-Snouted Tyrannosaurid (Dinosauria: Theropoda) From The Late Cretaceous Of Mongolia
Fig. 44. Lateral (maxillary or dentary) teeth of the holotype specimen of Alioramus altai (IGM 100/
Fig. 43 in The Osteology Of Alioramus, A Gracile And Long-Snouted Tyrannosaurid (Dinosauria: Theropoda) From The Late Cretaceous Of Mongolia
Fig. 43. Lateral (maxillary or dentary) teeth of the holotype specimen of Alioramus altai (IGM 100/
Fig. 36 in The Osteology Of Alioramus, A Gracile And Long-Snouted Tyrannosaurid (Dinosauria: Theropoda) From The Late Cretaceous Of Mongolia
Fig. 36. Closeup photo of the left surangular of the holotype specimen of Alioramus altai (IGM 100/
Fig. 28 in The Osteology Of Alioramus, A Gracile And Long-Snouted Tyrannosaurid (Dinosauria: Theropoda) From The Late Cretaceous Of Mongolia
Fig. 28. Closeup photos of the left palatine of the holotype specimen of Alioramus altai (IGM 100/
Figure 2 in Abelisauroidea (Theropoda, Dinosauria) from Africa: a review of the fossil record
Figure 2. Map of the Continental Africa and Arabian Peninsula and the African countries that have abelisaur records.
Figure 3 in Abelisauroidea (Theropoda, Dinosauria) from Africa: a review of the fossil record
Figure 3. Africa abelisauroid record distribution from Late Jurassic to Late Cretaceous, ages from Cohen et al. (2020).
Data from: Convergent avialan brain morphology in Sinovenator (Troodontidae, Theropoda)
Open the record for dataset details and reuse information.
A new Unenlagiinae (Theropoda: Dromaeosauridae) from the Late Cretaceous of Brazil
Open the record for dataset details and reuse information.
Supporting CT data for: Ontogenetic changes in endocranial anatomy in <em>Gorgosaurus libratus</em> (Theropoda: Tyrannosauridae) provide insight into the evolution of the tyrannosauroid endocranium
Open the record for dataset details and reuse information.
A comprehensive anatomical and phylogenetic evaluation of Dilophosaurus wetherilli (Dinosauria: Theropoda) with descriptions of new specimens from the Kayenta Formation of northern Arizona
Open the record for dataset details and reuse information.
Morphology and osteohistology of a large-bodied caenagnathid (Theropoda: Oviraptorosauria) from the Hell Creek Formation (Montana): implications for size-based classifications and growth reconstruction in theropods
Open the record for dataset details and reuse information.
Fig. 11 in A new tyrannosaurine (Theropoda:Tyrannosauridae) from the Campanian Foremost Formation of Alberta, Canada, provides insight into the evolution and biogeography of tyrannosaurids
Fig. 11. Single most parsimonious tree of Eutyrannosauria (832 steps) using the modified dataset of Carr et al. (2017). Bremer support (when 3) and bootstrap indices (when 50) are located adjacent to nodes. Numbers in black circles indicate named clades (either node-based or stem-based): 1) Eutyrannosauria (sensu Delcourt and Grillo, 2018); 2) Tyrannosauridae; 3) Albertosaurinae; 4) Tyrannosaurinae; 5) Alioramini; 6) Daspletosaurini. Branch lengths and divergence times are not time calibrated. Taxon colors correspond to location of occurrence-orange, Appalachia; purple, southern Laramidia; red, northern Laramidia; blue, Asia. Stage boundaries after Ogg and Hinnov (2012). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Fig. 8 in A new tyrannosaurine (Theropoda:Tyrannosauridae) from the Campanian Foremost Formation of Alberta, Canada, provides insight into the evolution and biogeography of tyrannosaurids
Fig. 8. Comparison of left frontal in dorsal view in tyrannosaurids.A) Thanatotheristes TMP 2010.5.7. White dash line represents nondiagnostic postorbital fragment attached to the frontal. B) Subcutaneous surface of frontal of Daspletosaurus torosus TMP 2001.036.0001. Abbreviations: apc, anterior postorbital contact expansion; aesc, autapomorphic anterior extension of sagittal crest; ifs, interfrontal suture; ls, lacrimal socket; np, nasal process; os, orbital slot; PA, parietal; PF, prefrontal; pfl, prefrontolacrimal process; pfn, prefrontonasal process; po, postorbital fragment; sc, sagittal crest; stf, supratemporal fossa; str, supratemporal ridge. Scale bars equal 5 cm.
Fig. 7 in A new tyrannosaurine (Theropoda:Tyrannosauridae) from the Campanian Foremost Formation of Alberta, Canada, provides insight into the evolution and biogeography of tyrannosaurids
Fig. 7. Right postorbital fragment of Thanatotheristes holotype (TMP 2010.5.7). A) Specimen in lateral view, demonstrating arced subcutaneous ridges, B) and medial view. Note prominent bracing ridge for jugal contact on the medial surface of the bone. Abbreviations: br, bracing ridge for jugal contact; djc, dorsal extent of jugal contact; scr, subcutaneous ridges; sr, smooth region along lateral surface posterior margin. Scale bar equals 2 cm.
Fig. 5 in A new tyrannosaurine (Theropoda:Tyrannosauridae) from the Campanian Foremost Formation of Alberta, Canada, provides insight into the evolution and biogeography of tyrannosaurids
Fig. 5. Left maxilla of referred specimen of Thanatotheristes (TMP 2018.16.1) in lateral view. Note the presence of pronounced vertical ridges (arrows) on subcutaneous surface, an autapomorphy of the taxon. Abbreviations: dvr, dorsoventral ridges; sc-afos, subcutaneous-antorbital fossa boundary. Scale bar equals 5 cm.
Fig. 6 in A new tyrannosaurine (Theropoda:Tyrannosauridae) from the Campanian Foremost Formation of Alberta, Canada, provides insight into the evolution and biogeography of tyrannosaurids
Fig. 6. Comparison of right jugal (lateral view) and jugal sinus in tyrannosaurids. A) Thanatotheristes holotype (TMP 2010.5.7). B) Daspletosaurus torosus (TMP 2001.36.1). Black line represents position of transverse CT slice in the top right. Note the elliptical shape and extensive sinus inflation in the suborbital region cross section of Thanatotheristes, constrasting with the tear-drop shaped and constricted sinus of Daspletosaurus. Abbreviation: jse, jugal sinus endocast. Scale bars equal 3 cm.
Figure 22. A in Functional morphology of neck musculature in the Tyrannosauridae (Dinosauria, Theropoda) as determined via a hierarchical inferential approach
Figure 22. A, origins and insertions of mm. intercristales (top, light-fill shapes), mm. intertransversarii (dark-fill shapes) and an interpretation of dorsal, rib head origins (large light-filled shapes) of m. iliocostalis capitis, of Tyrannosaurus rex (AMNH 5027). B, moment arms for lateroflexion by mm. intertransversarii on C6–C8 of Tyrannosaurus rex (BHI 3033, ventral view).
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.