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84 results for “Troodontidae”
Fig. 24 in A Review of the Mongolian Cretaceous Dinosaur Saurornithoides (Troodontidae: Theropoda)
Fig. 24. Continued. The posterior dermal roof and braincase of Zanabazar junior (IGM 100/1) in posterior (C, opposite) posterodorsal (D, above) views.
Fig. 9 in A Review of the Mongolian Cretaceous Dinosaur Saurornithoides (Troodontidae: Theropoda)
Fig. 9. Photograph of the right orbit of Saurornithoides mongoliensis (AMNH FR 6516) showing a small remnant of the scleral ring (three scleral ossicles).
Fig. 23 in A Review of the Mongolian Cretaceous Dinosaur Saurornithoides (Troodontidae: Theropoda)
Fig. 23. CT image of coronal slice (208) through the rostrum and interfenestral bar of Zanabazar junior (IGM 100/1). The bar is penetrated dorsally by a space confluent with the nasal passage (that may include the maxillary antrum) and ventrally by the interfenestral canal. The nasal lacks pneumatic fossa.
Fig. 12 in A Review of the Mongolian Cretaceous Dinosaur Saurornithoides (Troodontidae: Theropoda)
Fig. 12. Photograph of the closely appressed upper dentition of Saurornithoides mongoliensis (AMNH FR 6516) showing the distinct posterior serration (A), and Osborn's original illustration of the same region (B).
Fig. 13 in A Review of the Mongolian Cretaceous Dinosaur Saurornithoides (Troodontidae: Theropoda)
Fig. 13. Medial view of the left dentary tooth row of Saurornithoides mongoliensis (AMNH FR 6516). The jaw is preserved in occlusion so that the mandibular teeth are visible only in medial view.
Fig. 6 in A Review of the Mongolian Cretaceous Dinosaur Saurornithoides (Troodontidae: Theropoda)
Fig. 6. Three caudal vertebrae originally described as belonging to the holotype of Saurornithoides mongoliensis but which are now identified as protoceratopsian (AMNH FR 30613; AMNH 6516, visible on the specimen, is its original specimen number before it was recognized as protoceratopsian and recatalogued).
Fig. 21 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 21. Strict consensus of coelurosaurian interrelationships found in our phylogenetic analysis of
Fig. 19 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 19. Right knee of the holotype specimen IGM 100/983 in (A) medial and (B) lateral views. Abbreviations are listed in appendix 1.
Fig. 20 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 20. Pedal phalanges of the holotype specimen IGM 100/983. Abbreviations are listed in appendix 1.
Fig. 17 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 17. Cervical and caudal vertebrae of IGM 100/984 in (A) posterodorsal and (B) dorsal views. Abbreviations are listed in appendix 1.
Fig. 15 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 15. The braincase of the holotype specimen IGM 100/983. Top, left lateral; middle, ventral; lower, dorsal views. Abbreviations are listed in Appendix 1.
Fig. 18 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 18. Dorsal vertebrae of IGM 100/983 in right and left lateral views. Abbreviations are list ed in appendix 1.
Fig. 13 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 13. Stereopair of the lacrimalnasal area of IGM 100/984 in dorsal view. Notice the large extensions of the lacrimal over the antorbital bar. Abbreviations are listed in appendix 1.
Fig. 16 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 16. The teeth of the right maxilla and dentary of the holotype (IGM 100/983). Notice both the lack of serrations and the heterodont condition.
Fig. 10 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 10. Rendered view of the holotype rostrum of IGM 100/983 showing the narial chamber in relation to the maxillary sinus and the palate. Abbreviations are listed in appendix 1.
Fig. 4 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 4. Stereopair of the ventral surface of the premaxillary area in the referred specimen IGM 100/984.
Fig. 2 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 2. The rostrum of the holotype specimen IGM 100/983 in right lateral and dorsal views. Abbreviations are listed in appendix 1.
Fig. 9 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 9. CT scans of the rostrum of IGM 100/983. Notice the osseous floor to the nasal cavity (fnc) as it extends through the interfenestral bar in C, D, E, and F. Abbreviations are listed in appendix 1.
Fig. 14 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 14. Stereopairs of the braincase of the holotype specimen IGM 100/983. Top, posterior; middle, anterior; lower, right lateral views. Abbreviations are listed in appendix 1.
Fig. 6 in Osteology and Relationships of Byronosaurus jaffei (Theropoda: Troodontidae)
Fig. 6. Stereopair of the right dorsooblique dorsal surface of the rostrum in the referred specimen IGM 100/984. Notice the entrance to the supraalveolar canal (fsac) which we interpret as the subnarial foramen. Abbreviations are listed in appendix 1.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.