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373 results for “Crocodyliformes”
Fig. 13 in A New Crocodyliform from Zos Canyon, Mongolia
Fig. 13. Lower jaws of the holotype of Zosuchus davidsoni IGM 100/1305 in dorsal (A) and ventral (B) views.
Fig. 6 in Dyrosaurid (Crocodyliformes: Mesoeucrocodylia) Fossils from the Upper Cretaceous and Paleogene of Mali: Implications for Phylogeny and Survivorship across the K/T Boundary
Fig. 6. cf. Sokotosuchus. CNRST SUNY 279, partial skull roof and occiput in A, dorsal and B, occipital views. Scale bar equals 2 cm.
Fig. 5. Chenanisuchus lateroculi. CNRST SUNY 280 in Dyrosaurid (Crocodyliformes: Mesoeucrocodylia) Fossils from the Upper Cretaceous and Paleogene of Mali: Implications for Phylogeny and Survivorship across the K/T Boundary
Fig. 5. Chenanisuchus lateroculi. CNRST SUNY 280, partial skull roof and occiput in A, dorsal and B, occipital views. Scale bar equals 2 cm.
Fig. 2 in Dyrosaurid (Crocodyliformes: Mesoeucrocodylia) Fossils from the Upper Cretaceous and Paleogene of Mali: Implications for Phylogeny and Survivorship across the K/T Boundary
Fig. 2. Diagrammatic stratigraphic sections depicting correlations in age between strata at different Malian localities. Fossils described herein come from deposits in Mali-8 (Maastrichtian), Mali-18 (Paleocene), and Mali-20 (Eocene). Inset: map of eastern Mali showing relative locations of fossiliferous localities.
Fig. 1 in Dyrosaurid (Crocodyliformes: Mesoeucrocodylia) Fossils from the Upper Cretaceous and Paleogene of Mali: Implications for Phylogeny and Survivorship across the K/T Boundary
Fig. 1. Alternative hypotheses explaining the phylogenetic relationships of dyrosaurids. A, ''manual cladogram'', not based on a cladistic data matrix, hypothesized by Buffetaut (1978b). B, cladogram presented by Jouve (2005), based on cladistic analysis of 12 characters. C, cladogram presented by Jouve et al (2005b), based on cladistic analysis of 30 characters. Note basal position of Phosphatosaurus and highly nested position of Hyposaurus common to all hypotheses.
Fig. 7 in Dyrosaurid (Crocodyliformes: Mesoeucrocodylia) Fossils from the Upper Cretaceous and Paleogene of Mali: Implications for Phylogeny and Survivorship across the K/T Boundary
Fig. 7. Phylogenetic relationships and stratigraphic distribution of 10 dyrosaurid taxa and four outgroups, derived from ten equally most parsimonious trees. Tree length 5 66 steps; CI 5 0.6522; RI 5 0.7576; RCI 5 0.4941. Inset shows strict consensus of 10 most parsimonious trees; larger cladogram based on the single agreement subtree, which excluded Chenanisuchus, Congsaurus, and Elosuchus. Fine black lines depict the hypothesized phylogenetic relationships based on the current analysis. Bold black bars indicate the known stratigraphic ranges of taxa; solid gray bars represent inferred occurrences of taxa (i.e., ghost lineages). Alternative positions of Chenanisuchus (two alternatives) Congosaurus (four alternatives), and
Fig. 3 in Dyrosaurid (Crocodyliformes: Mesoeucrocodylia) Fossils from the Upper Cretaceous and Paleogene of Mali: Implications for Phylogeny and Survivorship across the K/T Boundary
Fig. 3. Rhabdognathus keiniensis. Partial skull roof and occiput of two individuals. CNRST SUNY 276 in A, dorsal and B, occipital views. CNRST SUNY 277 in C, dorsal and D, occipital views. Scale bars equal 2 cm.
Fig. 8 in Redescription of the Cranial Morphology of Mariliasuchus amarali, and Its Phylogenetic Affinities (Crocodyliformes, Notosuchia)
Fig. 8. Mandible of MZSP-PV 50 in left lateral view. Scale bar 5 1 cm. Anatomical abbreviations are listed in appendix 1.
Fig. 2 in Redescription of the Cranial Morphology of Mariliasuchus amarali, and Its Phylogenetic Affinities (Crocodyliformes, Notosuchia)
Fig. 2. Columnar section of the studied outcrop, Araçatuba Formation, 18 km southwest from Marília (coordinates: 49°569450W, 22°209320S).
Fig. 1. A in Redescription of the Cranial Morphology of Mariliasuchus amarali, and Its Phylogenetic Affinities (Crocodyliformes, Notosuchia)
Fig. 1. A. Location of the Mariliasuchus occurrence in the Bauru Basin (after Riccomini 1997, modified): 1, Precambrian basement rocks; 2, Paraná Basin (Ordovician to Triassic); 3, Serra Geral Formation (Early Cretaceous); 4, Bauru Basin (Late Cretaceous). B. Stratigraphic relationships of the Bauru Group in the southeastern part of the Bauru Basin: 1, basaltic rocks; 2, cross-bedded sansdstone; 3, massive to slightly stratified sandstone; 4, massive to slightly stratified sandstone interlayered with mudstones; 5, sandstone, siltstone, and mudstone; 6, sandstone and mudstone; 7, sandstone and conglomerate with limestone cement; 8, position of Mariliasuchus remains.
Fig. 5 in Redescription of the Cranial Morphology of Mariliasuchus amarali, and Its Phylogenetic Affinities (Crocodyliformes, Notosuchia)
Fig. 5. Skull of MZSP-PV 50 in left lateral view. Scale bar 5 1 cm. Anatomical abbreviations are listed in appendix 1.
Figure 5 in Cranial osteology and phylogenetic relationships of Hamadasuchus rebouli (Crocodyliformes: Mesoeucrocodylia) from the Cretaceous of Morocco
Figure 5. Details of the cranium of Hamadasuchus rebouli (ROM 52620). A, right posterodorsolateral view into orbit showing prefrontal pillar. B, posteroventral view of occiput. Scale bar = 10 cm.
Figure 2 in Cranial osteology and phylogenetic relationships of Hamadasuchus rebouli (Crocodyliformes: Mesoeucrocodylia) from the Cretaceous of Morocco
Figure 2. Cranium of Hamadasuchus rebouli (ROM 52620). A, right lateral and C, occipital view. B and D, outline drawings corresponding to each view. Scale bar = 10 cm. Anatomical abbreviations are defined in Appendix 1.
Figure 1 in Cranial osteology and phylogenetic relationships of Hamadasuchus rebouli (Crocodyliformes: Mesoeucrocodylia) from the Cretaceous of Morocco
Figure 1. Cranium of Hamadasuchus rebouli (ROM 52620). A, dorsal and C, ventral view. B and D, outline drawings corresponding to each view. Scale bar = 10 cm. Anatomical abbreviations are defined in Appendix 1.
Figure 3 in Cranial osteology and phylogenetic relationships of Hamadasuchus rebouli (Crocodyliformes: Mesoeucrocodylia) from the Cretaceous of Morocco
Figure 3. Details of the cranium of Hamadasuchus rebouli (ROM 52620). Upper details are to same scale; scale bar = 10 cm. Details of the dentition are to same scale; scale bar = 2 cm.
Figure 7 in Cranial osteology and phylogenetic relationships of Hamadasuchus rebouli (Crocodyliformes: Mesoeucrocodylia) from the Cretaceous of Morocco
Figure 7. Partial juvenile crania of Hamadasuchus rebouli. A and C, dorsal and occipital views of ROM 52059. B and D, dorsal and occipital views of ROM 54511. E, partial cranium of Moroccan 'Libycosuchus' (modified from Buffetaut, 1976: fig. 3). Scale bar = 10 cm.
Figure 6 in Cranial osteology and phylogenetic relationships of Hamadasuchus rebouli (Crocodyliformes: Mesoeucrocodylia) from the Cretaceous of Morocco
Figure 6. Partial left dentary of Hamadasuchus rebouli (ROM 49282) in A, lateral, B, medial, C, ventral, and D, dorsal views. Scale bar = 10 cm. Anatomical abbreviations are defined in Appendix 1.
Fig. 2 in A New Gobiosuchid Crocodyliform Taxon from the Cretaceous of Mongolia
Fig. 2. Right supratemporal region of Zaraasuchus shepardi IGM 100/1321 in dorsal view.
Fig. 9 in A New Gobiosuchid Crocodyliform Taxon from the Cretaceous of Mongolia
Fig. 9. Appendicular osteoderms of Zaraasuchus shepardi IGM 100/1321.
Fig. 1 in A New Gobiosuchid Crocodyliform Taxon from the Cretaceous of Mongolia
Fig. 1. Holotype of Zaraasuchus shepardi IGM 100/1321 in dorsal view.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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