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.
536
datasets available to search
ShareScore release 0.9.0
Dataset results
536 results for “Tyrannosaurus rex”
FIGURE 2 in The rostral neurovascular system of Tyrannosaurus rex
FIGURE 2. Nasal canals of Tyrannosaurus rex (FMNH PR 2081) in dorsal view (left) and lateral view (right). Scale bar equals 30 cm.
RESTORATION OF TYRANNOSAURUS REX. From the type skeleton, Amer. Mus. No. 973. Many of the vertebrae belong to No. 5866. in Tyrannosaurus, upper Cretaceous carnivorous dinosaur (second communication)
RESTORATION OF TYRANNOSAURUS REX. From the type skeleton, Amer. Mus. No. 973. Many of the vertebrae belong to No. 5866.
Anterior, lateral, and posterior aspects of the mounted skeleton of Tyrannosaurus rex, chiefly from Amer. Mus. 5027, partly from the type specimen Amer. Mus. 973. The sternal ribs are not restored. The structure of the manus is unknown as yet; the restoration of the digits is conjectural. About natural size. in Skeletal Adaptations of Ornitholestes, Struthiomimus, Tyrannosaurus
Anterior, lateral, and posterior aspects of the mounted skeleton of Tyrannosaurus rex, chiefly from Amer. Mus. 5027, partly from the type specimen Amer. Mus. 973. The sternal ribs are not restored. The structure of the manus is unknown as yet; the restoration of the digits is conjectural. About natural size.
Pelvic arcade and vertebral structure of the second chief specimen of Tyrannosaurus rex, Amer. Mus. 5027, discovered in 1908. An orthogonal projection executed on a very large scale and reproduced one-twelfth natural size. C 1-C 10 cervical series, D 1-D 13 dorsal or thoracic series, S 1-S 5 sacral series, Cd 1- Cd 53 caudal series. The caudals actually preserved are shaded; those drawn in outline are conjectural and restored. The total number of caudals is conjectural. in Skeletal Adaptations of Ornitholestes, Struthiomimus, Tyrannosaurus
Pelvic arcade and vertebral structure of the second chief specimen of Tyrannosaurus rex, Amer. Mus. 5027, discovered in 1908. An orthogonal projection executed on a very large scale and reproduced one-twelfth natural size. C 1-C 10 cervical series, D 1-D 13 dorsal or thoracic series, S 1-S 5 sacral series, Cd 1- Cd 53 caudal series. The caudals actually preserved are shaded; those drawn in outline are conjectural and restored. The total number of caudals is conjectural.
Text-fig. 10.—A possible hunting set of Hell Creek theropods, drawn to scale. A, Tyrannosaurus rex. B, Albertosaurus lancensis. C, the Jordan theropod. D, Saurornithoides mongoliensis. S. mongoliensis is not present in the Hell Creek, but is used to represent those saurornithoidids and dromaeosaurids present and represented by isolated teeth. A fifth form, Paronychodon lacustris, also represented only by isolated teeth has not been included but was probably intermediate between the saurornithoidids and the Jordan theropod. in A new Theropod Dinosaur from the Upper Cretaceous of Central Montana
Text-fig. 10.—A possible hunting set of Hell Creek theropods, drawn to scale. A, Tyrannosaurus rex. B, Albertosaurus lancensis. C, the Jordan theropod. D, Saurornithoides mongoliensis. S. mongoliensis is not present in the Hell Creek, but is used to represent those saurornithoidids and dromaeosaurids present and represented by isolated teeth. A fifth form, Paronychodon lacustris, also represented only by isolated teeth has not been included but was probably intermediate between the saurornithoidids and the Jordan theropod.
Text-fig. 9.—Anterior portion of maxilla of the Jordan theropod (stippled) compared with the corresponding region of the maxillae of other tyrannosaurs. All reproduced to equal length from anterior end of maxilla to anterior margin of antorbital recess (this length in the actual specimens differs by less than 15 percent). A, Juvenile Tyrannosaurus rex. B, Albertosaurus lancensis. C, Juvenile Albertosaurus libratus (AMNH 5664). (A, redrawn from Lawson, 1976; B and C, redrawn from Gilmore, 1946). in A new Theropod Dinosaur from the Upper Cretaceous of Central Montana
Text-fig. 9.—Anterior portion of maxilla of the Jordan theropod (stippled) compared with the corresponding region of the maxillae of other tyrannosaurs. All reproduced to equal length from anterior end of maxilla to anterior margin of antorbital recess (this length in the actual specimens differs by less than 15 percent). A, Juvenile Tyrannosaurus rex. B, Albertosaurus lancensis. C, Juvenile Albertosaurus libratus (AMNH 5664). (A, redrawn from Lawson, 1976; B and C, redrawn from Gilmore, 1946).
Plate 15 in The Cranial Morphology of Tyrannosaurus rex
Plate 15 Tyrannosaurus rex Osborn, Hell Creek Fm., Jordan (Montana) LACM 23844. Fig. 1. Right surangular in lateral view. The pit (white arrow) visible in the lateral buttress, just above the surangular fenestra, is apparently the result of an injury sustained during life. Fig. 2. Right surangular in medial view. Fig. 3. Left angular in medial view. Fig. 4. Left angular in lateral view. Fig. 5. Left articular in medial view. Fig. 6. Left articular in dorsal view. Scale bars 10 cm.
Plate 14 in The Cranial Morphology of Tyrannosaurus rex
Plate 14 Tyrannosaurus rex Osborn, Hell Creek Fm., Jordan (Montana) LACM 23844. Fig. 1. Left splenial, in two pieces not sharing a contact, in lateral view. Fig. 2. Left splenial, in two pieces not sharing a contact, in medial view. Fig. 3. Left prearticular in medial view. Fig. 4. Left prearticular in lateral view. Scale bars 10 cm.
Plate 13 in The Cranial Morphology of Tyrannosaurus rex
Plate 13 Tyrannosaurus rex Osborn, Hell Creek Fm., Jordan (Montana) (AMNH 5027 and LACM 23844) and Custer (Montana) (MOR 008). Fig. 1. Stereo view of the right articular of MOR 008 in posterior view, showing the concave posterior face. Fig. 2. Part of the articular surface on the surangular, for the dentary of LACM 23844 in lateral view. Fig. 3. Detail of the dentary-angular contact of AMNH 5027 in lateral view. A metal supporting bracket for the skull passes over this contact. Scale bars 10 cm.
Plate 12 in The Cranial Morphology of Tyrannosaurus rex
Plate 12 Tyrannosaurus rex Osborn, Hell Creek Fm., Jordan (Montana) LACM 23844. Fig. 1. Left dentary in medial view. Fig. 2. Left dentary in lateral view. Scale bar 10 cm.
Plate 9 in The Cranial Morphology of Tyrannosaurus rex
Plate 9 Tyrannosaurus rex Osborn, Hell Creek Fm., Jordan (Montana) AMNH 5027. Fig. 1. Right epipterygoid.in anterolateral view. 0.6X. Fig. 2. Right epipterygoid in lateral view. The epipterygoid has been displaced forward in this specimen to lay at the back of the left antorbital fenestra. Abbreviations on. specimen: Ec.pt., ectopterygoid; Ep.pt,, epipterygoid; 'La', lachrymal. 0.6 X.
Plate 11 in The Cranial Morphology of Tyrannosaurus rex
Plate 11 Tyrannosaurus rex Osborn, Lance Fm., Converse Co. (Wyoming) AMNH 5117. Fig. 1. Braincase in anteroventral view. Fig. 2. Laterosphenoid region of the braincase in oblique lateroventral aspect. Scale bars 10 cm.
Plate 10 in The Cranial Morphology of Tyrannosaurus rex
Plate 10 Tyrannosaurus rex Osborn, Hell Creek Fm., Jordan (Montana) LACM 23844, Fig, 1. Stereo view of the dorsal articular surface of the quadrate (for the squamosal). Fig. 2. Left quadrate in anteromedial view. The aperture connecting with the internal chambers is visible at lower right, just above the medial articular condyle. Fig. 3. Stereo view of the right surangular in dorsal view, showing facet interpreted as the attachment area for the M. adductor mandibulae externis supeficialis et medialis. Scale bar 10 cm.
Plate 8 in The Cranial Morphology of Tyrannosaurus rex
Plate 8 Tyrannosaurus rex Osborn, Hell Creek Fm., Jordan (Montana) (LACM 23844), and Lance Fm., Converse Co., (Wyoming) (AMNH 5117). Fig. 1. Right pterygoid of LACM 23844 in posterior view. Fig. 2. Right pterygoid of LACM 23844 in lateral view. Fig. 3. Right pterygoid of LACM 23844 in dorsal view. Fig. 4. Articulated frontals and parietals of AMNH 5117 in dorsal view. Scale bars 10 cm.
Plate 7 in The Cranial Morphology of Tyrannosaurus rex
Plate 7 Tyrannosaurus rex Osborn, Hell Creek Fm., Jordan (Montana) (CM 9379) and Custer (Montana) (MOR 008), and Lance Fm., Converse Co., (Wyoming) (AMNH 5117). Fig. 1. Occipital face of AMNH 5117. Part of the posterior wall of the paroccipital process has collapsed forward into the internal chamber of that process, thus revealing its presence. Fig. 2. Right half of the occipital face of CM 9379. Fig. 3. Left ectopterygoid of MOR 008 in ventral view. Fig. 4. Right ectopterygoid of MOR 008 in dorsal view. Scale bars 10 cm.
Plate 4 in The Cranial Morphology of Tyrannosaurus rex
Plate 4 Tyrannosaurus rex Osborn, Hell Creek Fm., Jordan (Montana) (LACM 23844) and Custer (Montana) (MOR 008) Fig. 1. Right postorbital of LACM 23844 in lateral view. Fig. 2. Right postorbital of LACM 23844 in medial view. Fig. 3. Left postorbital of MOR 008 in lateral view. The prominent eave-like projection over the orbit of MOR 008 may be seen, as well as the low roughening in that area in LACM 23844. Scale bars 10 cm.
Fig. 7 in The Cranial Morphology of Tyrannosaurus rex
Fig. 7. Tyrannosaurus rex Osborn, diagram of right quadrate in anterolateral view. — Based largely on LACM 23844, but also on MOR 008. The known extent and positions of the internal chambers are indicated by dotted lines. 0.3 x.
Plate 2 in The Cranial Morphology of Tyrannosaurus rex
Plate 2 Tyrannosaurus rex Osborn, Hell Creek Fm., Jordan (Montana) (LACM 23844) and Custer (Montana) (MOR 008). Fig. 1. Right maxilla of LACM 23844 in medial view. Anterodorsal and posterodorsal to the maxillary fenestra the medial walls of the internal chambers are missing, so that they are exposed to view. Only the posterior part of the palatal process is preserved. Fig. 2. Right squamosal of MOR 008 in dorsal view. Anterior is to the left. Fig. 3. Right squamosal of MOR 008 in ventral view. Anterior is to the right. Scale bars 10 cm.
Fig. 9 in The Cranial Morphology of Tyrannosaurus rex
Fig. 9. Tyrannosaurus rex Osborn, reconstruction of the skull in ventral view. A. Ventral aspect as given by Osborn (1912). Positions of the jugal flexure in SDSM 12047 indicated by arrow. B. Reconstruction proposed here. Scale bar 30 cm.
Plate 6 in The Cranial Morphology of Tyrannosaurus rex
Plate 6 Tyrannosaurus rex Osborn, Hell Creek Fm., Custer (Montana), MOR 008. Fig. 1. Right palatine in lateral view. Fig. 2. Right palatine in ventral view. Fig. 3. Right palatine in dorsal view. The anterolateral portion of this element has been broken away. Scale bars 10 cm.
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.