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Figure 33 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 33. One of 12 most parsimonious cladograms found from analysis of the 25 taxa for which there are immature stage data, under both EW and IW.
Figure 28 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 28. Bremer support (above branches) and relative Bremer support values (below branches) for the EW analysis of adult data only.
Figure 31 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 31. One of 10 most parsimonious cladograms obtained from analysis of adult data only, but with characters 6 and 51 deactivated, under IW. Unambiguously optimized characters only are shown. Unique characters are indicated by closed circles, homoplasies by open circles.
Figure 22 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 22. One of 10 most parsimonious cladograms obtained from analysis of the complete data set under equal weighting (EW). Unambiguously optimized characters only are shown. Unique characters (see text for discussion) are indicated by closed circles, homoplasies by open circles.
Figure 20. Spiracular furrows, segment A5 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 20. Spiracular furrows, segment A5 (right side), dorsal side uppermost, anterior end to right. A, Manduca albiplaga. B, Coelonia fulvinotata. C, Acherontia atropos. D, Xanthopan morganii.
Figure 34 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 34. Strict consensus tree of the 12 most parsimonious cladograms found from analysis of the 25 taxa for which there are immature stage data, under both EW and IW.
Figure 19 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 19. Subdorsal patches of sharp thorns on pupal segment A5, anterior end uppermost. A, Cocytius antaeus, left side. B, Neococytius cluentius, right side.
Figure 17 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 17. Pupal mesothoracic spiracles, dorsal side uppermost, anterior to right. A, Psilogramma menephron. B, Manduca hannibal. C, Cocytius antaeus. D, Xanthopan morganii.
Figure 18 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 18. Pupal metathoracic plates (right side), dorsal views, anterior end uppermost. A, Psilogramma menephron. B, Manduca hannibal. C, Acherontia atropos. D, Cocytius antaeus. E, Xanthopan morganii. F, Pantophaea favillacea.
Figure 13. Lamellae antevaginales, ventral views. A in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 13. Lamellae antevaginales, ventral views. A, Manduca rustica, BMNH sphingid preparation #1076. B, Xanthopan morganii, BMNH sphingid preparation #1013. C, Meganoton rubescens, BMNH sphingid preparation #990. D, Megacorma obliqua, BMNH sphingid preparation #1027.
Figure 30 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 30. Bremer support (above branches) and relative Bremer support values (below branches) for the IW analysis of adult data only.
Figure 14 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 14. Internal female genitalia, dorsal views, illustrating twisting of the ductus seminalis. A, Macropoliana ferax, BMNH sphingid preparation #1052, no twist. B, Coelonia fulvinotata, BMNH sphingid preparation #997, half twist. C, Cocytius duponchel, BMNH sphingid preparation #1020, full twist.
Figure 12. Aedeagi. A in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 12. Aedeagi. A, Meganoton analis, lateral view, left side, BMNH sphingid preparation #1055. B, Pantophaea jordani, lateral view, right side, BMNH sphingid preparation #1048. C, Pantophaea favillacea, slightly oblique lateral view, left side, BMNH sphingid preparation #1047. D, Manduca rustica, dorsolateral (right) view, BMNH sphingid preparation #1075. E, Cocytius antaeus, lateral view, right side, BMNH sphingid preparation #1035. F, Cocytius mortuorum, lateral view, right side, BMNH sphingid preparation #1034. G, Cocytius beelzebuth, ventral view, BMNH sphingid preparation #1028. H, Neococytius cluentius, dorsal view, BMNH sphingid preparation #1082.
Figure 15 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 15. Female genitalia, lateral (right) view, of Panogena lingens, BMNH sphingid preparation #1031, illustrating the ovoid appendix antrum at the base of the ductus bursae dorsally and the full twist of the ductus seminalis. Note also the helical pattern on the twisted antrum formed by the membranous dorsal and sclerotized ventral surfaces.
Figure 10. Valve outlines. A in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 10. Valve outlines. A, Manduca rustica, BMNH sphingid preparation #1075. B, Neococytius cluentius, BMNH sphingid preparation #1082.
Figure 11. Right harpes, inner views. A in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 11. Right harpes, inner views. A, Agrius godarti, BMNH sphingid preparation #1038. B, Coelonia fulvinotata, BMNH sphingid preparation #996. C, Coelonia brevis, BMNH sphingid preparation #1057. D, Coelonia solani, BMNH sphingid preparation #1042. E, Acherontia atropos, BMNH sphingid preparation #994. F, Megacorma obliqua, BMNH sphingid preparation #1026. G, Meganoton rubescens, BMNH sphingid preparation #989. H, Manduca hannibal, BMNH sphingid preparation #1077. I, Cocytius antaeus, BMNH sphingid preparation #1035; dense tuft of brown setae on dorsal surface not shown. J, Manduca rustica, BMNH sphingid preparation #1075.
Figure 9 in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 9. Stylized drawings of plectral scales. A, Meganoton analis. B, Psilogramma menephron. C, Poliana micra.
Figure 8. Juxtas. A in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 8. Juxtas. A, Manduca albiplaga, lateral (left) view, BMNH sphingid preparation #1014; showing posterior lip (lateral rim stippled). B, Cocytius antaeus, lateral (left) view, BMNH sphingid preparation #1035; showing anterior keel (lateral rim stippled). C, Manduca sexta, ventral view, BMNH sphingid preparation #981. D, Xanthopan morganii, ventral view, BMNH sphingid preparation #1012. E, Cocytius beelzebuth, ventral view, BMNH sphingid preparation #1028. F, Amphimoea walkeri, ventral view, BMNH sphingid preparation #1004.
Figure 5. Unci. A in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 5. Unci. A, Cocytius antaeus, dorsal view, BMNH sphingid preparation #1035. B, Macropoliana ferax, dorsal view, BMNH sphingid preparation #1053. C, Agrius convolvuli, dorsal view, BMNH sphingid preparation #1000. D, Xanthopan morganii, dorsal view, BMNH sphingid preparation #1012. E, Cocytius beelzebuth, ventral view, BMNH sphingid preparation #1028. F, Meganoton rubescens, dorsal view, BMNH sphingid preparation #989.
Figure 1. Descaled labial palps, outer views. A in The phylogenetic relationships of Morgan's Sphinx, Xanthopan morganii (Walker), the tribe Acherontiini, and allied long-tongued hawkmoths (Lepidoptera: Sphingidae, Sphinginae)
Figure 1. Descaled labial palps, outer views. A, Cocytius beelzebuth, BMNH sphingid preparation #1028. B, Meganoton rubescens, BMNH sphingid preparation #989.
ScienceDex guides
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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.