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FIGURE 14. Stasimopus hewitti, n in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 14. Stasimopus hewitti, n. sp., ♀ (TMSA FIGURE 15. Stasimopus hewitti, n. sp., ♀ (TMSA 3154), leg I. A. Tibia, metatarsus, tarsus, prolateral 3154). A. Leg III patella, tibia, metatarsus, tarsus, aspect. B. Tibia, metatarsus, dorsal aspect. C. Tibia, prolateral aspect. B. Leg III tibia, metatarsus, tarmetatarsus, tarsus, retrolateral aspect. D. Spinner- sus, dorsal aspect. C. Leg III patella, tibia, metaets, ventral aspect. Scale: A–C, 1 mm. D, 0.5 mm. tarsus, tarsus, retrolateral aspect. D. Leg IV
FIGURE 11. Stasimopus hewitti, n in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 11. Stasimopus hewitti, n. sp., ♀ (TMSA 3154). A. Prosoma, dorsal aspect. B. Prosoma, ventral aspect. C. Carapace, lateral aspect. Scale: 2 mm.
FIGURE 9. Stasimopus robertsi Hewitt, 1910 in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 9. Stasimopus robertsi Hewitt, 1910, ♂ (TMSA 3084). A–C. Leg III metatarsus, tarsus. D–F. Leg IV metatarsus, tarsus. A, D. Prolateral aspect. B, E. Ventral aspect. C, F. Retrolateral aspect. Scale: 1 mm.v
FIGURE 12. Stasimopus hewitti, n in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 12. Stasimopus hewitti, n. sp., paratype ♂ (TMSA 23989). A. Pedipalp patella, tibia, embolus, prolateral aspect. B. Pedipalp tibia, embolus, ventral aspect. C, D. Leg I patella, tibia, metatarsus, tarsus. C. Prolateral aspect. D. Ventral aspect. E. Leg I metatarsus, tarsus, retrolateral aspect. F. Leg I tarsus, ventral aspect. Scale: A–E, 1 mm. F, 0.5 mm.
FIGURE 8. Stasimopus robertsi Hewitt, 1910 in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 8. Stasimopus robertsi Hewitt, 1910, ♂ (TMSA 3084). A. Pedipalp patella, tibia, bulb, prolateral aspect. B. Pedipalp tibia, bulb, ventral aspect. C, D. Leg I patella, tibia, metatarsus, tarsus. C. Prolateral aspect. D. Ventral aspect. E. Leg I metatarsus, tarsus, retrolateral aspect. F. Leg I tarsus, ventral aspect. Scale: A–E, 1 mm. F, 0.5 mm.
FIGURE 7. Stasimopus robertsi Hewitt, 1910 in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 7. Stasimopus robertsi Hewitt, 1910, ♀ (TMSA 3226). A. Prosoma, dorsal aspect. B. Prosoma, ventral aspect. C. Carapace, lateral aspect. Scale: 2 mm.
FIGURE 6. Stasimopus robertsi Hewitt, 1910 in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 6. Stasimopus robertsi Hewitt, 1910, ♂ (TMSA 3084). A. Prosoma, dorsal aspect. B. Prosoma, ventral aspect. C. Carapace, lateral aspect. Scale: 2 mm.
FIGURE 5 in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 5. Four species of Stasimopus Simon, 1892, ocular pattern. A, B. Stasimopus robertsi Hewitt, 1910. A. Paratype ♂ (TMSA 3084). B. ♀ (TMSA 3226). C, D. Stasimopus hewitti, n. sp. C. ♂ (TMSA 23989). D. ♀ (TMSA 3154). E, F. Stasimopus griswoldi, n. sp. E. ♂ (TMSA 23993). F. ♀ (TMSA 23998). G, H. Stasimopus filmeri, n. sp. G. ♂ (TMSA 24000). H. ♀ (TMSA 24001). Scale: 0.5 mm.
FIGURE 3 in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 3. Known distributions of Stasimopus robertsi Hewitt, 1910 (squares), Stasimopus hewitti, n. sp. (circles), Stasimopus griswoldi, n. sp. (triangles), and Stasimopus filmeri, n. sp. (crosses), on topography with major urban areas and provincial boundaries indicated. Inset indicates extent of mapped region within South Africa.
FIGURE 2 in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 2. Four species of Stasimopus Simon, 1892, habitus in life. A. Stasimopus hewitti, n. sp. B. Stasimopus robertsi Hewitt, 1910. C, D. Stasimopus griswoldi, n. sp. E, F. Stasimopus filmeri, n. sp. A, C, E. ♂. B, D, F. ♀.
FIGURE 1 in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 1. Habitats and burrows of Stasimopus Simon, 1892, from Gauteng and North West Provinces, South Africa. A. Stasimopus robertsi Hewitt, 1910, habitat, Faerie Glen Nature Reserve, Gauteng Province, Acacia karroo open woodland on red-structured clay soils. B. Stasimopus hewitti, n. sp., habitat, Roodeplaat Dam Nature Reserve, Gauteng Province, Acacia–Cymbopogon/Setaria open woodland on well-drained, red soils. C. Stasimopus griswoldi, n. sp., habitat, Farm Hartebeestfontein 473, North West Province, Acacia karroo open woodland on red, structured clay soils. D. Stasimopus filmeri, n. sp., habitat, Mokoya Lodge, Gauteng Province, Acacia caffra closed woodland on rocky soils. E, F. S. hewitti, n. sp., burrow entrance with trapdoor, Kameeldrift, Gauteng Province. E. Trapdoor closed. F. Trapdoor open. Scale: 1 cm.
Fig. 23 in Revision of Phoenicocoris Reuter with Descriptions of Three New Species from North America and a New Genus from Japan (Heteroptera: Miridae: Phylinae)
Fig. 23. Male genitalia of Phoenicocoris species—australis, Florida: ''Wiggen's Place''; claricornis, North Carolina: Raleigh; longirostris, Colorado: West Chicago Creek; modestus, Finland: Parainen [Pargas]; nevadensis, Nevada: Carroll Summit; obscurellus, England: Frensham Common. Scale = 0.10 mm.
Fig. 26 in Revision of Phoenicocoris Reuter with Descriptions of Three New Species from North America and a New Genus from Japan (Heteroptera: Miridae: Phylinae)
Fig. 26. Male genitalia of Atractotomus and Salicarus species—Salicarus fulvicornis, Mongolia: 15 km SSE of Hongora; roseri, England: Kennington; Atractotomus magnicornis, Ontario: Ottawa, Central Experimental Farm, 7.VI.1991, M.D. Schwartz, Picea abies, P. glauca (CNC); Atractotomus mali, British Columbia: Boundary Bay, 12.VI.1994, B. Gill, J. Bell, Crataegus sp. (CNC). Scale = 0.10 mm.
Fig. 20 in Revision of Phoenicocoris Reuter with Descriptions of Three New Species from North America and a New Genus from Japan (Heteroptera: Miridae: Phylinae)
Fig. 20. Scanning electron micrographs of Phoenicocoris dissimilis (Reuter), Huntsville, Pennsylvania. A. Head and thorax, lateral view. B. Scalelike setae, dorsal view. Scales as indicated.
Fig. 19 in Revision of Phoenicocoris Reuter with Descriptions of Three New Species from North America and a New Genus from Japan (Heteroptera: Miridae: Phylinae)
Fig. 19. Scanning electron micrographs of Phoenicocoris strobicola (Knight), Nepean, Ontario. A. Head and thorax, lateral view. B. Scalelike setae, dorsal view. C. Hind femora, dorsobasal view. D. Hind femora, dorsodistal view. E. Pretarsus, apical view. F. Vesica, distal view. Scales as indicated.
Fig. 18 in Revision of Phoenicocoris Reuter with Descriptions of Three New Species from North America and a New Genus from Japan (Heteroptera: Miridae: Phylinae)
Fig. 18. Scanning electron micrographs of Phoenicocoris rostratus (Knight), Fish Creek, Colorado. A. Head and thorax, lateral view. B. Scalelike setae, dorsal view. C. Pretarsus, apical view. D. Hind femora, dorsodistal view. Scales and magnifications as indicated.
Fig. 16 in Revision of Phoenicocoris Reuter with Descriptions of Three New Species from North America and a New Genus from Japan (Heteroptera: Miridae: Phylinae)
Fig. 16. Scanning electron micrographs of Phoenicocoris pallidicornis, n.sp., Falcon Lake, Manitoba. A. Head and thorax, lateral view. B. Scalelike setae, dorsal view. C. Hind femora, dorsobasal view. D. Pretarsus, apical view. Scales as indicated.
Fig. 22 in Revision of Phoenicocoris Reuter with Descriptions of Three New Species from North America and a New Genus from Japan (Heteroptera: Miridae: Phylinae)
Fig. 22. Scanning electron micrographs of Kasumiphylus kyushuensis (Linnavuori), Kônoura Sotome, Japan. A. Head and thorax, lateral view. B. Scalelike setae, dorsal view. C. Pretarsus, apical view. D. Hind femora, dorsodistal view.
Fig. 13 in Revision of Phoenicocoris Reuter with Descriptions of Three New Species from North America and a New Genus from Japan (Heteroptera: Miridae: Phylinae)
Fig. 13. Scanning electron micrographs of Phoenicocoris modestus (MeyerDür), Parainen [Pargas], Finland. A. Scalelike setae, dorsal view. B. Hind femora, dorsodistal view. C. Pretarsus, lateral view. Scales as indicated.
Fig. 11 in Revision of Phoenicocoris Reuter with Descriptions of Three New Species from North America and a New Genus from Japan (Heteroptera: Miridae: Phylinae)
Fig. 11. Scanning electron micrographs of Phoenicocoris longirostris (Knight), Rustler Park, Arizona. A. Pretarsus, apical view. B. Hind femora, dorsodistal view. C. Vesica, distal view. Scales as indicated.
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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.