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FIGURE 1 in Three new Uroplectes (Scorpiones: Buthidae) with punctate metasomal segments from tropical central Africa
FIGURE 1. Map plotting the known distribution of Uroplectes malawicus, sp. nov. (circles), Uroplectes katangensis, sp. nov. (star), and Uroplectes zambezicus, sp. nov. (squares), in the Democratic Republic of Congo, Malawi, Mozambique, Zambia, and Zimbabwe.
FIGURE 10 in Three new Uroplectes (Scorpiones: Buthidae) with punctate metasomal segments from tropical central Africa
FIGURE 10. Habitus, dorsal aspect (A) and ventral aspect (B) of Uroplectes katangensis, sp. nov., holotype ♀ (MRAC 24.290), Mwema, Democratic Republic of Congo. Scale bar = 5 mm.
Text-fig. 8. Palaeogene terrestrial fossiliferous deposits of Africa. Note the position of the Tunisian Oligocene deposits, and their obvious interest in terms of geographic position and age (data for the Palaeogene of North Africa are from Tabuce et al. 2000, 2001, 2011, Delmer et al. 2006, Coster et al. 2012, Yans et al. 2014, Solé et al. 2016). Note that Nakwai (Kenya) is no longer considered to be Oligocene. in Arsinoitherium (Embrithopoda) And Other Large Mammals And Plants From The Oligocene Of Tunisia
Text-fig. 8. Palaeogene terrestrial fossiliferous deposits of Africa. Note the position of the Tunisian Oligocene deposits, and their obvious interest in terms of geographic position and age (data for the Palaeogene of North Africa are from Tabuce et al. 2000, 2001, 2011, Delmer et al. 2006, Coster et al. 2012, Yans et al. 2014, Solé et al. 2016). Note that Nakwai (Kenya) is no longer considered to be Oligocene.
Text-fig. 4. Distribution of arsinoitheres in Africa. Reconstruction of Arsinoitherium is adapted from Pomerol (1973) (the body in the image is probably too similar to that of an elephant, but the reconstruction gives an idea of the dimensions and possible body plan of Arsinoitherium). in Arsinoitherium (Embrithopoda) And Other Large Mammals And Plants From The Oligocene Of Tunisia
Text-fig. 4. Distribution of arsinoitheres in Africa. Reconstruction of Arsinoitherium is adapted from Pomerol (1973) (the body in the image is probably too similar to that of an elephant, but the reconstruction gives an idea of the dimensions and possible body plan of Arsinoitherium).
Text-fig. 6. Distribution of Oligocene continental sediments of Africa, revealing the patchy and incomplete coverage of the occurrences. The Tunisian sedimentary outcrops represent an important resource for the north-western part of the continent. in Arsinoitherium (Embrithopoda) And Other Large Mammals And Plants From The Oligocene Of Tunisia
Text-fig. 6. Distribution of Oligocene continental sediments of Africa, revealing the patchy and incomplete coverage of the occurrences. The Tunisian sedimentary outcrops represent an important resource for the north-western part of the continent.
Figs. 9–13. Barbronia gwalagwalensis, n in Two New Species of Salifid Leeches (Arhynchobdellida: Erpobdelliformes: Salifidae) from South Africa and Madagascar
Figs. 9–13. Barbronia gwalagwalensis, n.sp. 9. Dorsal surface with obvious clitellum (c) and typical arrangement of eyespots (inset). 10. Internal surface of pharynx showing one of three pairs of stylet pores (arrows) on a myognath. 11. Ventral region of clitellum with male (m) and female (f) gonopores as well as the accessory copulatory pores (arrows). 12. The right ovary including an oviducts (od) leading to the female gonopore (f) and an irregularly lobate ovisac (os). 13. Median male reproductive apparatus showing the lack of a prominent atrium at the male gonopore (m) where the sperm ducts (sd) meet as well as the paired ejaculatory bulbs (arrows) just posterior to the female gonopore (f).
Figs 1–8 in Two New Species of Salifid Leeches (Arhynchobdellida: Erpobdelliformes: Salifidae) from South Africa and Madagascar
Figs 1–8. Linta be, n.gen., n.sp. 1. Dorsal surface. 2. Anteriolateral view of head showing first four eyespots of left side (arrows). 3. Lateral view of head showing third, fourth, and fifth eyespots of left side. 4. Internal surface of pharynx with 2 of 3 pairs of stylet pores (arrows) on myognaths. 5. Ventral region of clitellum with male (m) and female (f) gonopores. 6. Median reproductive apparatus with paired ovaries including separate short oviducts (od) and irregularly lobate ovisacs (os). 7. Median reproductive apparatus with ovaries removed revealing posteriolaterally directed male atria (a) with an anteriorly glandular region between them. 8. First of five sets of six pairs of testisacs (arrows) of XV/ XVI.
FIG. 5. — A, B in Pliocene brachiopods from north-western Africa
FIG. 5. — A, B, Gryphus sp. (LP-MNHN B.38671), SEM micrographs; A, transverse section of the entire shell showing the acicular primary layer (top) underlain by the secondary layer of anvil-shaped fibres, passing into the prismatic tertiary layer; B, section of the shell showing two puncta filled with pyrites, fibres near the canals bent outward; C, D, Terebratula sp. (LP-MNHN B.38316), SEM micrographs; C, transverse section of the shell showing the boundary of the acicular primary and fibrous secondary layers; D, section of the secondary layer showing fibres in oblique and longitudinal section, visible (left) modification of fibres near a punctum. Scale bars: 20 µm.
FIG. 2 in Pliocene brachiopods from north-western Africa
FIG. 2. — Aphelesia bipartita (Brocchi, 1814); A-H, ventral, dorsal, lateral and anterior views of complete specimens, Draria, Algeria (LP-MNHN B.38645); I-L, ventral, dorsal, lateral and anterior views of complete specimen, Mustapha supérieur (Algiers), Algeria (LP- MNHN B.38648); M, interior view of dorsal valve, Bab El Oued, Algeria (LP-MNHN B.38658). Scale bars: 1 cm.
FIG. 4. — A-L in Pliocene brachiopods from north-western Africa
FIG. 4. — A-L, Terebratula sp., ventral, dorsal, lateral and anterior views of complete specimens, Had Mramer, Morocco (LP-MNHN B.38316); M-O, Gryphus sp.; M, N, dorsal and lateral views of complete specimen, Mustapha inférieur (Algiers), Algeria (LP-MNHN B.38671); O, dorsal view of complete specimen, Aïn Benian, Algeria (LP-MNHN B.38666). Scale bars: A-L, 1 cm; M-O, 5 mm.
FIG. 7 in Pliocene brachiopods from north-western Africa
FIG. 7. — Megerlia eusticta (Philippi, 1836); A-H, Oued Zat, Morocco (LP-MNHN B.38317), ventral, dorsal, lateral and anterior views of complete specimens, (H) anterior view slightly oblique; I, J, between Mustapha Aïssat and Bir Mourad Raïs, Algeria (LP-MNHN B.38669), SEM micrograph of ventral view of complete specimen (I) and enlarged fragment (J) to show details of ornamentation. Scale bars: A-H, 1 cm; I, J, 2 mm.
FIG. 6. — A-F in Pliocene brachiopods from north-western Africa
FIG. 6. — A-F, Terebratulina retusa (Linnaeus, 1758), Mustapha (Algiers), Algeria (LP-MNHN B.38659); A-D, ventral, dorsal, lateral and anterior views of complete specimen; E, F, dorsal views of complete specimens; F, SEM micrograph of juvenile specimen; G, H, Megathiris detruncata (Gmelin, 1790), SEM micrographs of ventral and dorsal views of complete specimen, Mustapha (Algiers), Algeria (LP-MNHN B.38665). Scale bars: 2 mm.
FIG. 3 in Pliocene brachiopods from north-western Africa
FIG. 3. — Terebratula terebratula (Linnaeus, 1758); A-F, Douera, Algeria (LP-MNHN B.38650); A-D, ventral, dorsal, lateral and anteri- or views of complete specimen; E, F, dorsal and lateral views of complete specimen; G, dorsal view of complete specimen, Draria, Algeria (LP-MNHN B.38654); H, I, Algiers, between Mustapha inférieur and Bir Mourad Raïs, Algeria (LP-MNHN B.38675); H, inner view of the ventral valve, visible is concave symphytium and massive teeth; I, inner view of complete specimen, showing a prominent cardinal process and narrow outer hinge plates. Scale bars: 1 cm.
FIG. 2. — Left m1 in The last amphicyonid (Mammalia, Carnivora) in Africa
FIG. 2. — Left m1 KNM-FT 3379 of Agnotherium sp. from Fort Ternan, Kenya: A, lingual view; B, buccal view; C, occlusal view. Scale bar: 10 mm.
FIG. 1 in The last amphicyonid (Mammalia, Carnivora) in Africa
FIG. 1. — Molars of Bonisicyon illacabo n. gen, n. sp.: A-C, HMD-1-P11 (holotype), right m1, Hamadi Das, Gona, Ethiopia; D-F, ESC- 2-P224, left m2, Escarpment, Gona, Ethiopia; G, ABD-1-P35, damaged right M2, Asbole Dora, Gona, Ethiopia; A, D, lingual views; B, E, buccal views; C, F, G, occlusal views. Scale bar: 10 mm.
FIG. 25 in Non-marine mammals of Togo (West Africa): an annotated checklist
FIG. 25. — Anomalurus beecrofti Fraser, 1853 from southern Togo. Photograph: Gabriel Hoinsoudé Segniagbeto.
FIG. 30 in Non-marine mammals of Togo (West Africa): an annotated checklist
FIG. 30. — Soricidae species are often traded for traditional medicine. In this case, some Crocidura sp. Individuals at the Marché aux Fétiches, Lomé (August 2013). Photograph: Luca Luiselli.
FIG. 8. — A in Non-marine mammals of Togo (West Africa): an annotated checklist
FIG. 8. — A lion (Panthera leo (Linnaeus, 1758)) skin at Lomé market (April 2013). These felids are probably extinct in Togo, although vagrant individuals are sometimes observed as they come from Benin. Photograph: Fabio Petrozzi.
FIG. 3. — A in Non-marine mammals of Togo (West Africa): an annotated checklist
FIG. 3. — A, Cephalophus rufilatus Gray, 1846; B, Kobus kob (Erxleben, 1777) from Fazao-Malkafassa National Park. Photograph: Gabriel Hoinsoudé Segniagbeto.
FIG. 12 in Non-marine mammals of Togo (West Africa): an annotated checklist
FIG. 12. — Fruit bats are often traded for traditional medicine in fetish markets across Togo. Photograph: Luca Luiselli.
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.