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Fig. 19 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 19. Coronal CT section through the braincase of the referred specimen of Shamosuchus djadochtaensis IGM 100/1195. See appendix 5 for abbreviations.
Fig. 38 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 38. Reduced strict consensus of the 60 most parsimonious trees obtained in the exploratory analysis including Isisfordia duncani (based on the information provided by Salisbury et al., 2006), showing only the relationship among neosuchians. The two alternative positions retrieved for Isisfordia duncani are indicated with grey lines.
Fig. 22 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 22. Cervicodorsal vertebrae of the referred specimen of Shamosuchus djadochtaensis IGM 100/1195. A, eighth cervical vertebra in posterolateral view; B, first dorsal vertebra in anterolateral view; C, anterior dorsal vertebrae in posterolateral view.
Fig. 28 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 28. Right distal half of humerus, right radius, and right ulna of referred specimen of Shamosuchus djadochtaensis IGM 100/1195 in medial (left) and lateral (right) views. See appendix 5 for abbreviations.
Fig. 34 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 34. Partial proximal ends of metatarsal IV and V of the referred specimen of Shamosuchus djadochtaensis IGM 100/1195 in lateral and posterior views.
Fig. 35 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 35. Individual and systematic variation in the dorsal osteoderms of Shamosuchus djadochtaensis. Paramedian or near paramedian osteoderms (A and C) and more laterally located osteoderms (B). Note the posteriorly restricted location of median ridge (character 274.0).
Fig. 8 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 8. Referred specimen of Shamosuchus djadochtaensis IGM 100/1195 in dorsal view. See appendix 5 for abbreviations.
Fig. 4 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 4. Holotype of Shamosuchus djadochtaensis AMNH FR 6412 in ventral view. See appendix 5 for abbreviations.
Fig. 5 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 5. Holotype of Shamosuchus djadochtaensis AMNH FR 6412 in lateral view. See appendix 5 for abbreviations.
Fig. 6 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 6. Holotype of Shamosuchus djadochtaensis AMNH FR 6412 in occipital view. See appendix 5 for abbreviations.
Fig. 3 in Morphology Of The Late Cretaceous Crocodylomorph Shamosuchus Djadochtaensis And A Discussion Of Neosuchian Phylogeny As Related To The Origin Of Eusuchia
Fig. 3. Holotype of Shamosuchus djadochtaensis AMNH FR 6412 in dorsal view. See appendix 5 for abbreviations.
Fig. 49 in Polybia, Paraphyly, and Polistine Phylogeny
Fig. 49. Consensus tree for eight cladograms resulting from analysis of the adult character matrix in table 1.
Figs. 37–38. Protonectarina sylveirae. 37 in Polybia, Paraphyly, and Polistine Phylogeny
Figs. 37–38. Protonectarina sylveirae. 37. Prothorax in frontal view. 38. Metasomal tergum I in dorsal view. Fig. 39. Polybia rejecta, prothorax in frontal view. Fig. 40. Brachygastra lecheguana, metasomal tergum I in dorsal view.
Figs. 45– 48. Metasomal tergum I in Polybia, Paraphyly, and Polistine Phylogeny
Figs. 45– 48. Metasomal tergum I in dorsal view. 45. Polybia rejecta. 46. Polybia dimidiata. 47. Polybia jurinei. 48. Polybia nidulatrix.
Figs. 29 –32 in Polybia, Paraphyly, and Polistine Phylogeny
Figs. 29 –32. Propodeum in posterior view. 29. Chartergus globiventris. 30. Synoecoides depressus. 31. Polybia emaciata. 32. Polybia liliacea.
Fig. 51. Consensus tree for 13 in Polybia, Paraphyly, and Polistine Phylogeny
Fig. 51. Consensus tree for 13 cladograms resulting from simultaneous analysis of the combined character data in tables 1–3.
Figs. 33–36 in Polybia, Paraphyly, and Polistine Phylogeny
Figs. 33–36. Propodeum in posterior view. 33. Polybia nidulatrix. 34. Polybia rejecta. 35. Polybia jurinei. 36. Polybia bifasciata.
Figs. 21–24 in Polybia, Paraphyly, and Polistine Phylogeny
Figs. 21–24. Mesosoma in lateral view. 21. Synoecoides depressus. 22. Polybia liliacea. 23. Polybia bifasciata. 24. Polybia rejecta.
Fig. 17 in Polybia, Paraphyly, and Polistine Phylogeny
Fig. 17. Polybia jurinei. scutum in dorsal view. Figs. 18–19. Mesosoma in lateral view. 18. Epipona niger. 19. Brachygastra lecheguana. Fig. 20. Brachygastra lecheguana. dorsum of mesosoma in lateral view.
Figs. 13–16 in Polybia, Paraphyly, and Polistine Phylogeny
Figs. 13–16. Head in lateral view. 13. Polybia rejecta. 14. Polybia jurinei. 15. Polybia liliacea (Fabricius). 16. Polybia bifasciata de Saussure.
ScienceDex guides
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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.