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Figs. 73–77. Zorocrates terrell, new species. 73. Left male palp, prolateral view. 74 in A Revision of the Spider Genus Zorocrates Simon (Araneae, Zorocratidae)
Figs. 73–77. Zorocrates terrell, new species. 73. Left male palp, prolateral view. 74. Same, ventral view.
Figs. 83–87. Zorocrates potosi, new species. 83. Left male palp, prolateral view. 84 in A Revision of the Spider Genus Zorocrates Simon (Araneae, Zorocratidae)
Figs. 83–87. Zorocrates potosi, new species. 83. Left male palp, prolateral view. 84. Same, ventral view.
Figs. 58–62. Zorocrates chiapa, new species. 58. Left male palp, prolateral view. 59 in A Revision of the Spider Genus Zorocrates Simon (Araneae, Zorocratidae)
Figs. 58–62. Zorocrates chiapa, new species. 58. Left male palp, prolateral view. 59. Same, ventral view.
Figs. 48–52. Zorocrates contreras, new species. 48. Left male palp, prolateral view. 49. Same, ventral view. 50. Same, retrolateral view. 51. Epigynum, ventral view. 52 in A Revision of the Spider Genus Zorocrates Simon (Araneae, Zorocratidae)
Figs. 48–52. Zorocrates contreras, new species. 48. Left male palp, prolateral view. 49. Same, ventral view. 50. Same, retrolateral view. 51. Epigynum, ventral view. 52. Same, dorsal view.
Figs. 43–47. Zorocrates bosenchave, new species. 43. Left male palp, prolateral view. 44. Same, ventral view. 45. Same, retrolateral view. 46. Epigynum, ventral view. 47 in A Revision of the Spider Genus Zorocrates Simon (Araneae, Zorocratidae)
Figs. 43–47. Zorocrates bosenchave, new species. 43. Left male palp, prolateral view. 44. Same, ventral view. 45. Same, retrolateral view. 46. Epigynum, ventral view. 47. Same, dorsal view.
Figs. 4–8. Namundra griffinae, new species. 4. Left male palp, prolateral view. 5. Same, ventral view. 6. Same, retrolateral view. 7. Epigynum, ventral view. 8 in On the First African Spiders of the Subfamily Molycriinae (Araneae, Prodidomidae)
Figs. 4–8. Namundra griffinae, new species. 4. Left male palp, prolateral view. 5. Same, ventral view. 6. Same, retrolateral view. 7. Epigynum, ventral view. 8. Same, dorsal view.
Fig. 52. Male sterno-abdominal cavities. A in Revision of the spider crab genus Maja Lamarck, 1801 (Crustacea: Brachyura: Majoidea: Majidae), with descriptions of seven new genera and 17 new species from the Atlantic and Indo-West Pacific
Fig. 52. Male sterno-abdominal cavities. A, Maja brachydactyla, male (98.4 × 89.0 mm) (ZRC 2009.1130), U.K.; B, Maja crispata, male (63.1 × 51.9 mm) (MNHN-IU-2013-4042), Italy; C, Neomaja goltziana, male (73.4 × 65.0 mm) (MNHN-IU-2013-4046), Congo; D, Paramaja gibba n. sp., male (79.5 × 77.9 mm) (ZRC 2013.1232), Bay of Bengal; E, Alcomaja irrorata n. sp., holotype male (52.6 × 45.7 mm) (NMCR), Philippines; F, Alcomaja desmondi n. sp., holotype male (35.4 × 28.3 mm) (NMCR), Philippines; G, Alcomaja nagashimaensis, male (30.5 × 26.0 mm) (ZRC 2001.430), Philippines; H, Paramaya spinigera, male (85.0 × 66.4 mm) (ZRC 1999.738), Taiwan; I, Holthuija miersi, male (32.6 × 25.6 mm) (ZRC 2000.1497), Singapore; J, Sakaija japonica, male (22.3 × 17.8 mm) (ZRC 2013.1267), Taiwan; K, Planaja plana n. gen. n. sp., holotype male (43.7 × 37.1 mm) (NMCR), Philippines; L, Ovimaja compressipes, male (49.6 × 39.6 mm) (ZRC 2008.1318), Taiwan.
Fig. 50. Male anterior thoracic sternums and abdomens. A in Revision of the spider crab genus Maja Lamarck, 1801 (Crustacea: Brachyura: Majoidea: Majidae), with descriptions of seven new genera and 17 new species from the Atlantic and Indo-West Pacific
Fig. 50. Male anterior thoracic sternums and abdomens. A, Paramaya spinigera, male (85.0 × 66.4 mm) (ZRC 1999.738), Taiwan; B, Paramaya ouch n. sp., holotype male (76.8 × 60.0 mm) (NMCR), Philippines; C, Paramaya coccinea n. sp., holotype male (69.0 × 55.6 mm) (MNHN), Vanuatu; D, Holthuija miersi, male (32.6 × 25.6 mm) (ZRC 2000.1497), Singapore; E, Holthuija miersii, male (22.3 × 16.5 mm) (CBM ZC4001), Singapore; F, Holthuija suluensis, male (11.5 × 8.2 mm) (USNM 48507), Philippines; G, Holthuija pauli n. sp., holotype male (37.3 × 28.0 mm) (NMCR), Philippines; H, Holthuija cognata n. sp., holotype male (29.5 × 23.7 mm) (CBM-ZC3662), Japan; I, Holthuija poorei n. sp., holotype male (24.3 × 18.7 mm) (NMV J63749), Timor Sea.
Fig. 47. Male anterior thoracic sternums and abdomens. A in Revision of the spider crab genus Maja Lamarck, 1801 (Crustacea: Brachyura: Majoidea: Majidae), with descriptions of seven new genera and 17 new species from the Atlantic and Indo-West Pacific
Fig. 47. Male anterior thoracic sternums and abdomens. A, Maja squinado, neotype male (147.1 × 126.3 mm) (SMF-4548), Croatia; B, male (138.0 × 121.0 mm) (ZRC), Croatia; C, Maja brachydactyla, male (98.4 × 89.0 mm) (ZRC 2009.1130), U.K.; D, Maja brachydactyla, male (161.2 × 140.1 mm), (ZRC 2008.0179), Spain; E, Maja cornuta, male (88.8 × 86.8 mm) (NHM 1928.12.1.177) (lectotype of Mamaia queketti Stebbing, 1908), South Africa; F, Maja cornuta, male (115.3 × 103.4 mm) (ZRC 2013.1184), South Africa; G, Maja crispata, male (63.1 × 51.9 mm) (MNHN-IU-2013-4042), Italy; H, Neomaja goltziana, male (73.4 × 65.0 mm) (MNHN-IU-2013-4046), Congo; I, Neomaja goltziana, male (90.2 × 83.1 mm) (MNHN-IU-2013-4044), Gabon.
FIGURE 31. Ricinoides Ewing, 1929 in Systematics Of The "Giant" Ricinulei (Ricinoididae: Ricinoides) Of West Africa, With Descriptions Of Five New Species And Comparative Morphology Of The Male Copulatory Apparatus
FIGURE 31. Ricinoides Ewing, 1929, leg III copulatory apparatus, prolateral (A, B), dorsal (C, D), retrolateral (E, F), ventral (G, H), and frontal (I, J) aspects. A, C, E, G, I. Ricinoides nzerekorensis, sp. nov., paratype ♂ (MRAC 209.286). B, D, F, H, J. Ricinoides taii, sp. nov., holotype ♂ (MRAC 233.458). Scale bars = 0.25 mm.
FIGURE 27 in Systematics Of The "Giant" Ricinulei (Ricinoididae: Ricinoides) Of West Africa, With Descriptions Of Five New Species And Comparative Morphology Of The Male Copulatory Apparatus
FIGURE 27. Ricinoides iita, sp. nov., holotype ♂ (USNM), leg III metatarsus, distal part, prolateral (A) and ventral (B) aspects. Scale bars = 0.25 mm.
FIGURE 26 in Systematics Of The "Giant" Ricinulei (Ricinoididae: Ricinoides) Of West Africa, With Descriptions Of Five New Species And Comparative Morphology Of The Male Copulatory Apparatus
FIGURE 26. Ricinoides westermannii (Guérin-Méneville, 1838), neotype ♂ (ZMB 7013), leg II femur, dorsal (A) and prolateral (B) aspects, tibia, prolateral aspect (C), and metatarsus, prolateral aspect (D). Scale bars = 0.5 mm.
FIGURE 16. Ricinoides Ewing, 1929 in Systematics Of The "Giant" Ricinulei (Ricinoididae: Ricinoides) Of West Africa, With Descriptions Of Five New Species And Comparative Morphology Of The Male Copulatory Apparatus
FIGURE 16. Ricinoides Ewing, 1929, opisthosoma, dorsal aspect. A. Ricinoides nzerekorensis, sp. nov., holotype ♂ (MRAC 209.266). B. Ricinoides taii, sp. nov., holotype ♂ (MRAC 233.458). C. Ricinoides westermannii (Guérin-Méneville, 1838), neotype ♂ (ZMB 7013). Scale bars = 1 mm.
FIGURE 32 in Systematics Of The "Giant" Ricinulei (Ricinoididae: Ricinoides) Of West Africa, With Descriptions Of Five New Species And Comparative Morphology Of The Male Copulatory Apparatus
FIGURE 32. Ricinoides westermannii (Guérin-Méneville, 1838), neotype ♂ (ZMB 7013), leg III copulatory apparatus, prolateral (A), dorsal (B), retrolateral (C), ventral (D), and frontal (E) aspects. Scale bars = 0.25 mm.
FIGURE 23. Ricinoides Ewing, 1929, leg II in Systematics Of The "Giant" Ricinulei (Ricinoididae: Ricinoides) Of West Africa, With Descriptions Of Five New Species And Comparative Morphology Of The Male Copulatory Apparatus
FIGURE 23. Ricinoides Ewing, 1929, leg II femur, dorsal (A, B) and prolateral (C, D) aspects, tibia, prolateral aspect (E, F), and metatarsus, prolateral aspect (G, H). A, C, E, G. Ricinoides eburneus, sp. nov., holotype ♂ (MRAC 230.162). B, D, F, H. Ricinoides feae (Hansen, 1921), lectotype ♂ (MSNG). Scale bars = 0.5 mm.
FIGURE 19. Ricinoides Ewing, 1929 in Systematics Of The "Giant" Ricinulei (Ricinoididae: Ricinoides) Of West Africa, With Descriptions Of Five New Species And Comparative Morphology Of The Male Copulatory Apparatus
FIGURE 19. Ricinoides Ewing, 1929, opisthosoma, ventral aspect. A. Ricinoides nzerekorensis, sp. nov., holotype ♂ (MRAC 209.266). B. Ricinoides taii, sp. nov., holotype ♂ (MRAC 233.458). C. Ricinoides westermannii (Guérin-Méneville, 1838), neotype ♂ (ZMB 7013). Scale bars = 1 mm.
FIGURE 12. Ricinoides Ewing, 1929 in Systematics Of The "Giant" Ricinulei (Ricinoididae: Ricinoides) Of West Africa, With Descriptions Of Five New Species And Comparative Morphology Of The Male Copulatory Apparatus
FIGURE 12. Ricinoides Ewing, 1929, coxosternal region, ventral aspect. A. Ricinoides afzelii (Thorell, 1892), ♀ (BMNH 13588949). B. Ricinoides atewa Naskrecki, 2008, ♀ (AMNH IZC 324883). C. Ricinoides feae (Hansen, 1921), paralectotype ♀ (MSNG), Rio Cacine, Guinea-Bissau. D. Ricinoides kakum, sp. nov., paratype ♀ (MRAC 217.183). E. Ricinoides nzerekorensis, sp. nov., paratype ♀ (MRAC 209.267). F. Ricinoides taii, sp. nov., paratype ♀ (MRAC 233.482). Scale bars = 1 mm.
FIGURE 14. Ricinoides Ewing, 1929 in Systematics Of The "Giant" Ricinulei (Ricinoididae: Ricinoides) Of West Africa, With Descriptions Of Five New Species And Comparative Morphology Of The Male Copulatory Apparatus
FIGURE 14. Ricinoides Ewing, 1929, opisthosoma, dorsal aspect. A. Ricinoides afzelii (Thorell, 1892), ♂ (BMNH 13588948). B. Ricinoides atewa Naskrecki, 2008, holotype ♂ (AMNH IZC 324855). C. Ricinoides eburneus, sp. nov., holotype ♂ (MRAC 230.162). D. Ricinoides feae (Hansen, 1921), lectotype ♂ (MSNG). E. Ricinoides iita, sp. nov., holotype ♂ (USNM). F. Ricinoides kakum, sp. nov., holotype ♂ (MRAC 217.183). Scale bars = 1 mm.
FIGURE 9. Ricinoides Ewing, 1929 in Systematics Of The "Giant" Ricinulei (Ricinoididae: Ricinoides) Of West Africa, With Descriptions Of Five New Species And Comparative Morphology Of The Male Copulatory Apparatus
FIGURE 9. Ricinoides Ewing, 1929, cucullus, anterior aspect. A. Ricinoides afzelii (Thorell, 1892), ♂ (BMNH 13588948). B. Ricinoides atewa Naskrecki, 2008, holotype ♂ (AMNH IZC 324855). C. Ricinoides eburneus, sp. nov., holotype ♂ (MRAC 230.162). D. Ricinoides feae (Hansen, 1921), lectotype ♂ (MSNG). E. Ricinoides iita, sp. nov., holotype ♂ (USNM). F. Ricinoides kakum, sp. nov., holotype ♂ (MRAC 217.183). G. Ricinoides nzerekorensis, sp. nov., holotype ♂ (MRAC 209.266). H. Ricinoides taii, sp. nov., holotype ♂ (MRAC 233.458). Scale bars = 0.5 mm.
FIGURE 11. Ricinoides Ewing, 1929 in Systematics Of The "Giant" Ricinulei (Ricinoididae: Ricinoides) Of West Africa, With Descriptions Of Five New Species And Comparative Morphology Of The Male Copulatory Apparatus
FIGURE 11. Ricinoides Ewing, 1929, coxosternal region, ventral aspect. A. Ricinoides afzelii (Thorell, 1892), ♂ (BMNH 13588948). B. Ricinoides atewa Naskrecki, 2008, holotype ♂ (AMNH IZC 324855). C. Ricinoides eburneus, sp. nov., holotype ♂ (MRAC 230.162). D. Ricinoides feae (Hansen, 1921), lectotype ♂ (MSNG). E. Ricinoides iita, sp. nov., holotype ♂ (USNM). F. Ricinoides kakum, sp. nov., holotype ♂ (MRAC 217.183). Scale bars = 1 mm.
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.