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20 results for “Cryolophosaurus”
Figure 20 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 20. Strict consensus of 108 MPTs. All trees have length of 833 steps, CI 0.489, RI 0.772. Bootstrap values> 50% are listed to the left of nodes, and Bremer support values> 1 are listed to the right. Several theropod clades are indicated in bold.
Figure 17 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 17. Left femur of Cryolophosaurus ellioti in anterior (A), lateral (B), medial (C) and posterior (D) aspects.
Figure 12 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 12. Mid-posterior dorsal vertebra (∼D7–13) of Cryolophosaurus ellioti in anterior (A), left lateral (B) and posterior (C) aspects. Two articulated posterior dorsal vertebrae (> D9) of Cryolophosaurus ellioti in posterior (D), right lateral (E) and left lateral (F) aspects. Posterior dorsal vertebra (∼D14) of Cryolophosaurus ellioti in anterior (G), left lateral (H) and posterior (I) aspects.
Figure 11 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 11. Several articulated posterior cervical vertebrae and ribs of Cryolophosaurus ellioti in left lateral (A), and left posterolateral (B), aspects (photo courtesy of J. Weinstein).
Figure 13 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 13. Fifth sacral vertebra (= 'caudosacral 1') and fused sacral ribs of Cryolophosaurus ellioti in anterior (A), left lateral (B), posterior (C) and dorsal (D) aspects. Anterior–middle caudal vertebra of Cryolophosaurus ellioti in anterior (E), left lateral (F) and posterior (G) aspects.
Figure 10 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 10. Braincase of Cryolophosaurus ellioti in right lateral aspect (A), and interpretive line drawing (B).
Figure 9 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 9. Skull of Cryolophosaurus ellioti in posterior aspect (A), and interpretive line drawing (B). Portions of two articulated posterior cervical vertebrae and ribs are visible in lateral aspect posterolateral to the skull.
Figure 7 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 7. Skull of Cryolophosaurus ellioti in anterior, and slightly oblique anterior aspect, highlighting the ornamentation of the dorsal crest (photo courtesy of J. Weinstein).
Figure 5 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 5. Skull of Cryolophosaurus ellioti in left lateral aspect (A), and interpretive line drawing (B). Several articulated posterior cervical vertebrae are preserved on the same block, posterior to the skull, and are visible in dorsal aspect (photo courtesy of J. Weinstein).
Figure 19 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 19. Left tibia, fibula, astragalus and calcaneum of Cryolophosaurus ellioti preserved in articulation in posterior (A) and anterior (B) aspects, and interpretive line drawing of anterior aspect (C) (photos courtesy of ReBecca Hunt).
Figure 4 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 4. Skull of Cryolophosaurus ellioti in right lateral aspect (A), and interpretive line drawing (B). Several articulated posterior cervical vertebrae are preserved on the same block, posterior to the skull, and are visible in ventral aspect (photo courtesy of J. Weinstein).
Figure 2 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 2. Detailed stratigraphy of the Fremouw, Falla and Hanson Formations in the Beardmore Glacier region. Several important vertebrate faunas are indicated. Rock unit legend abbreviations: carb, carbonaceous; cg, conglomorate; crs, coarse; Fm, Formation; med, medium; mdst, mudstone; sltst, siltstone; ss, sandstone.
Figure 3 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 3. Left maxilla of Cryolophosaurus ellioti in lateral (A), and medial (B), aspects. Right maxilla of Cryolophosaurus ellioti in lateral (C) aspect.
Figure 1 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 1. Generalized map of Antarctica (A), with inset maps showing the Central Transantarctic Mountains (B), and the Beardmore Glacier area where the Mount Kirkpatrick dinosaur site is located (C). D, generalized stratigraphy and age of rock units in the Beardmore Glacier area.
Figure 8 in Osteology of Cryolophosaurus ellioti (Dinosauria: Theropoda) from the Early Jurassic of Antarctica and implications for early theropod evolution
Figure 8. Portions of the left jugal, postorbital and squamosal of Cryolophosaurus ellioti in medial aspect (A), and interpretive line drawing (B). These elements have been split in half from the left side of the skull.
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.
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.
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OpenNeuro
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