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965 results for “theropod”
Fig. 6 in The Perinate Skull of Byronosaurus (Troodontidae) with Observations on the Cranial Ontogeny of Paravian Theropods
Fig. 6. Phylogenetic relationships of selected paravian taxa (after Makovicky et al., 2003). The inferred position of the Ukhaa Tolgod perinates as Byronosaurus is based on a series of derived characters (see text).
Fig. 11 in Cranial Osteology of the Theropod Dinosaur Incisivosaurus gauthieri (Theropoda: Oviraptorosauria)
Fig. 11. Sagittal CT slices through the skull of the holotype of Incisivosaurus gauthieri (IVPP V 13326). Abbreviations in appendix 1.
FIGURE 9 in The cranial pneumatic sinuses of the tyrannosaurid Alioramus (Dinosauria: Theropoda) and the evolution of cranial pneumaticity in theropod dinosaurs
FIGURE 9. Right pterygoid in lateral (A), medial (B), dorsal (C), and ventral (D) views. Scale bar = 25 mm.
Figure 15 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 15. Left ilium, pubis and ischium of Cryolophosaurus ellioti in lateral (A) aspect, and left and right ischia of Cryolophosaurus ellioti in medial (B), posterior (C) and anterior (D) aspects.
Figure 14 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 14. Proximal and distal left humerus of Cryolophosaurus ellioti in posterior (A, C) and anterior (B, D) aspects. Proximal right ulna of Cryolophosaurus ellioti in medial (E) and lateral (F) aspects. Proximal right radius of Cryolophosaurus ellioti in medial (G) and lateral (H) aspects.
Figure 16 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 16. Proximal right femur of Cryolophosaurus ellioti in anterior (A) and posterior (B) aspects. Left femur of Cryolophosaurus ellioti in proximal (C) and distal (D) aspects. Anterior is to the right in Figure 15C, and toward the bottom in Figure 15D.
Figure 13 in Baurusuchid crocodyliforms as theropod mimics: clues from the skull and appendicular morphology of Stratiotosuchus maxhechti (Upper Cretaceous of Brazil)
Figure 13. Left and right femora of S. maxhechti (DGM 1477-R) in cranial view. Scale bar = 10 cm.
Figure 2 in Aspects of comparative cranial mechanics in the theropod dinosaurs Coelophysis, Allosaurus and Tyrannosaurus
Figure 2. Stress distribution within the crania of Coelophysis (A, D, G), Allosaurus (B, E, H) and Tyrannosaurus (C, F, I) during bite loading. See scale for stress type and magnitude (tension is positive; compression negative); units are Pascals (1 Pa = 1 N/m2). A–C, principal stress 3, mainly compression; D–F: principal stress 1, mainly tensile; G–I, In-plane shear stress (Tau XY). Divergent arrows indicate orientation of tensile stress, convergent arrows indicate orientation of compressive stress, phylogeny as for Fig. 1. 10 000 N bite load applied to all models.
Figure 4 in Intestinal preservation in a birdlike dinosaur supports conservatism in digestive canal evolution among theropods
Figure 4. Affinities of Daurlong wangi. Time-calibrated Maximum Clade Credibility Tree reconstructed by the tip-dating Bayesian inference analysis. Values at branches indicate posterior probability. Scale bar = 100 mm. Skeletal drawing credit: Marco Auditore (CC-BY 4.0).
Fig. 2 in Caudipteryx as a non-avialan theropod rather than a flightless bird
Fig. 2. Cladogram showing hypothesised placement of Caudipteryx (solid circle) and other oviraptorosaurs within Maniraptoriformes (compiled from many authors).
Fig. 3 in Caudipteryx as a non-avialan theropod rather than a flightless bird
Fig. 3. The graphs presented by Jones et al. (2000). A. Total hind limb length against trunk length. B. Effective hind limb length against trunk length. Regression statistics based on our re−analysis are given in Table 1 (see Jones et al. 2000 for original statistics). This figure redrawn with permission from Nature (Jones et al. 2000), copyright (2000), Macmillan Magazines Ltd.
Data from: Macroevolutionary and morphofunctional patterns in theropod skulls: a morphometric approach
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Data from: Body size as a driver of scavenging in theropod dinosaurs
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Data from: The good, the bad, and the ugly: the influence of skull reconstructions and intraspecific variability in studies of cranial morphometrics in theropods and basal saurischians
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Data from: Using striated tooth marks on bone to predict body size in theropod dinosaurs: a model based on feeding observations of Varanus komodoensis, the Komodo monitor
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Data from: Estimating cranial musculoskeletal constraints in theropod dinosaurs
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Data from: Ventilatory mechanics from maniraptoran theropods to extant birds
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Data from: The evolution of cranial form and function in theropod dinosaurs: insights from geometric morphometrics
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Data from: Allometric scaling of seed retention time in seed dispersers and its application to estimation of seed dispersal potentials of theropod dinosaurs
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Data from: Phylogenetic variation in hind-limb bone scaling of flightless theropods
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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.