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11,982 results for “africa”
Figure 12 in Water mites from West Africa (Acari: Hydrachnidia)
Figure 12 Hygrobatopsis(Hygrobatopsella) inflata (K. Viets), female. A – dorsum; B – venter; C – palp + gnathosoma; D – I-leg-4–6. Scale bars: A-B = 100 µm; C-D = 50 µm.
Figure 10 in Water mites from West Africa (Acari: Hydrachnidia)
Figure 10 Hygrobatopsis(Hygrobatopsis) levipalpis (K. Viets), female. A = palps of slide NHRS-GULI000073415; B = palp of slide NHRSGULI000073414. Photographed by Gunvi Lindberg (© 2021 Naturhistoriska riksmuseet). Original photo cropped, light levels and contrast adjusted. Made available by the Swedish Museum of Natural History under Creative Commons Attribution 4.0 International Public License, CC-BY 4.0 [https://creativecommons.org/licenses/by/4.0/legalcode].
Figure 11 in Water mites from West Africa (Acari: Hydrachnidia)
Figure 11 Hygrobatopsis(Hygrobatopsella) inflata (K. Viets), male. A – dorsum; B – venter; C – genital field; D – palp; E – IV-leg-4–6. Scale
Figure 8 in Water mites from West Africa (Acari: Hydrachnidia)
Figure 8 Hygrobates(Hygrobates) pseudoniloticus n. sp., holotype female. A - venter; B – palp; C – I-leg-4–6. Scale bars: A = 100 µm, B-C
Figure 9 in Water mites from West Africa (Acari: Hydrachnidia)
Figure 9 Hygrobatopsis(?) convexipalpis n.sp., holotype female. A – dorsum; B – venter; C – palp; D – palp. Scale bars: A-B = 100 µm, C-D = 50 µm.
Figure 7 in Water mites from West Africa (Acari: Hydrachnidia)
Figure 7 Hygrobates(Hygrobates) niloticus Walter, female. A - venter; B – palp; C – I-leg-4–6. Scale bars: A = 100 µm, B-C = 50 µm.
Figure 6 in Water mites from West Africa (Acari: Hydrachnidia)
Figure 6 Hygrobates(Hygrobates) dentipalpis n. sp., holotype male. A – venter; B – palp; C – I-leg-4–6. Scale bars: A = 100 µm, B-C = 50 µm.
Figure 5 in Water mites from West Africa (Acari: Hydrachnidia)
Figure 5 Atractides (Atractides) vietsi Cook, female. A – dorsum; B – venter; C – left palp; D – right palp; E – I-leg-5–6. Scale bars: A-B = 100 µm, C-E = 50 µm.
Figure 3 in Water mites from West Africa (Acari: Hydrachnidia)
Figure 3 Limnesia (Limnesia) stagnalis n. sp., A-C holotype male, D paratype female. A – venter; B – palp; C – IV-leg-5–6; D – genital field region. Scale bars: A, D 100 = µm, B-C = 50 µm.
Figure 2 in Water mites from West Africa (Acari: Hydrachnidia)
Figure 2 Limnesia (Limnesia) monodi Walter, genital field region female, Avu lagoon. Scale bar: 100 µm.
Text-fig. 1. Relief map of Africa to show the location of the Cheringoma Plateau at the southern extremity of the African Rift System. in Stratigraphy, Chronology And Palaeontology Of The Tertiary Rocks Of The Cheringoma Plateau, Mozambique
Text-fig. 1. Relief map of Africa to show the location of the Cheringoma Plateau at the southern extremity of the African Rift System.
Fig. 2 in First records of the Chrysis leachii group from sub-Saharan Africa, with description of a new species (Hymenoptera, Chrysididae)
Fig. 2. Chrysis rasnitsyni sp. n., female: A – habitus, lateral view; B – head, frontal view; C – metasoma, postero-lateral view; D – metasoma, ventral view. Scale bars 1.0 mm.
Figure 113 in Scorpions of the Horn of Africa (Arachnida Scorpiones) Part XXVIII Scorpions of Djibouti
Figure 113. Confirmed geographic distribution of scorpions in Djibouti. Maps created in Google Maps (2022).
Figures 100–111 in Scorpions of the Horn of Africa (Arachnida Scorpiones) Part XXVIII Scorpions of Djibouti
Figures 100–111: Figures 100–110: Hemiscorpius lipsae sp. n. female holotype, pedipalp (100–109) and telson lateral (110). Figures 100– 109. Chela, dorsal (100), external (101), and ventral (102) views. Patella, dorsal (103), external (104) and ventral (105) views. Femur and trochanter, dorsal (106), and ventral (107) views. Movable (108) and fixed (109) fingers dentation. The trichobothrial pattern indicated in Figures 100–106 by white circles. Figure 111. Hemiscorpius tellini, female holotype, pedipalp chela dorsal.
Figures 95–99 in Scorpions of the Horn of Africa (Arachnida Scorpiones) Part XXVIII Scorpions of Djibouti
Figures 95–99. Hemiscorpius lipsae sp. n. female holotype, carapace and tergites I–III (95), sternopectinal region and sternites III–IV (96), metasoma and telson, lateral (97), dorsal (98), and ventral (99) views. Scale bar: 10 mm (73–75).
Figures 79–82 in Scorpions of the Horn of Africa (Arachnida Scorpiones) Part XXVIII Scorpions of Djibouti
Figures 79–82: Morphometric comparisons of Orthochirus species. Figures. 79–80. Rank ordered horizontal bar plots of adult male carapace lengths of 42 species (79), and adult male total lengths of 40 species (= anterior margin of carapace to tip of aculeus of extended telson) (80). Figure 81. Bivariate scatter plot of adult male total length vs. adult male carapace length for 39 species. Dark brown bars and symbols highlight the species O. afar; orange bars and symbols highlight the species chosen by Lourenço & Ythier (2021: 345) to represent "moderate-size Orthochirus species". Figure 82. Horizontal bar plot of mean punctae diameters on ventral and lateral surfaces of metasoma IV, expressed as percentage of metasoma IV length, in six females of Orthochirus. Dark brown bars: specimens assigned to the species O. afar Kovařík & Lowe, 2016 (or a closely similar species); green bars: specimens assigned to the species O. olivaceus (Karsch, 1881). The dark female from Nubia (leg. Brignoli, 1975) is statistically grouped with O. afar. In all figures, plotted values are either single measurements or means, and error bars are standard deviations (SD).
Figures 33–40 in Scorpions of the Horn of Africa (Arachnida Scorpiones) Part XXVIII Scorpions of Djibouti
Figures 33–40: Compsobuthus vannii, Djibouti. Figures 33, 35. Male from Tadjourah Province, Day, 11.7813°N 42.6408°E, 1490 m a. s. l., carapace and tergites I–III (33), sternopectinal region and sternites (35). Figures 34, 37–40. Female from Tadjourah Province, Abourma, 11.8941°N 42.4877°E, 800 m a. s. l., carapace and tergites I–III (34), sternopectinal region and sternite III (36), and left legs I–IV, retrolateral aspect (37–40).
Figures 73–76 in Scorpions of the Horn of Africa (Arachnida Scorpiones) Part XXVIII Scorpions of Djibouti
Figures 73–76: Neobuthus ferrugineus, Djibouti, Barra Yer, 11.31°N 42.71°E, 585 m a. s. l. Figures 73–74. Male, dorsal (73) and ventral (74) views. Figures 75–76. Female, dorsal (75) and ventral (76) views. Scale bar: 10 mm.
Figures 71–72 in Scorpions of the Horn of Africa (Arachnida Scorpiones) Part XXVIII Scorpions of Djibouti
Figures 71–72. Microbuthus litoralis, female from Djibouti, Arta Province, Djalelo, 11.3652°N 42.8404°E, 690 m a. s. l. in dorsal (71) and ventral (72) views. Scale bar: 10 mm.
Figures 25–32 in Scorpions of the Horn of Africa (Arachnida Scorpiones) Part XXVIII Scorpions of Djibouti
Figures 25–32: Compsobuthus vannii, Djibouti. Figures 25, 27–29. Male from Tadjourah Province, Day, 11.7813°N 42.6408°E, 1490 m a. s. l., telson lateral (25), metasoma and telson, lateral (27), dorsal (28), and ventral (29) views. Figures 26, 30–32. Female from Tadjourah Province, Abourma, 11.8941°N 42.4877°E, 800 m a. s. l., telson lateral 26), metasoma and telson, lateral (30), dorsal (31), and ventral (32) views. Scale bars: 10 mm (27–29, 30–32).
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)
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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.