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1,015 results for “West Africa”
Fig. 6. Saraina rubrofasciata. A in Redescriptions Of Little Known Jumping Spider Genera (Araneae: Salticidae) From West Africa
Fig. 6. Saraina rubrofasciata. A = female epigyne, ventral view, B = vulva dorsal view, C = diagrammatic curse of sperm ducts. Scale 0.1 mm
Fig. 5. Saraina rubrofasciata. A in Redescriptions Of Little Known Jumping Spider Genera (Araneae: Salticidae) From West Africa
Fig. 5. Saraina rubrofasciata. A = male habitus, dorsal view B = same, lateral view C = female habitus, dorsal view D = same, lateral view, E = palp, ventral view, F = same, retrolateral view, G =
Fig. 4. Pellolessertia castanea. A in Redescriptions Of Little Known Jumping Spider Genera (Araneae: Salticidae) From West Africa
Fig. 4. Pellolessertia castanea. A= palp, ventral view, B= same, retrolateral view, C= habitus, fronto-lateral view, D= same, dorsal view, E= same, lateral view. Scales 0.1 mm for palps, 1.0 mm
Fig. 3. Alfenus species. Alfenus calamistratus A in Redescriptions Of Little Known Jumping Spider Genera (Araneae: Salticidae) From West Africa
Fig. 3. Alfenus species. Alfenus calamistratus A= carapace, frontal view, B = same, fronto-lateral view, C = palp, ventral view, D = same, retrolateral view. A. chrysophaeus E = palp, ventral view, F = same, retrolateral view, G = carapace, fronto-lateral view. Scales 0.2 mm for palps, 1.0 mm for cara-
Fig. 2 in Redescriptions Of Little Known Jumping Spider Genera (Araneae: Salticidae) From West Africa
Fig. 2. Automontage images of Alfenus. Alfenus calamistratus A = male holotype, fronto-lateral view, B = specimen from Congo, fronto-lateral view, C = male holotype, dorsal view, D = palp of the holotype, ventral view, E = specimen from Congo, dorsal view, F = same, palp dorsal view; A.
Fig. 1 in Redescriptions Of Little Known Jumping Spider Genera (Araneae: Salticidae) From West Africa
Fig. 1. Habitus of Alfenus. A= Alfenus calamistratus; B= A. chrysophaeus; C= A. calamistratus. Scale = 1.0 mm
Figs. 1-3 in Description of a new species of Thaumaglossa Redtenbacher, 1867 (Coleoptera¡ Dermestidae) from the Republic of Equatorial Guinea (West Africa).
Figs. 1-3.- Thaumaglossa escalerai, new species. 1.- habitus, dorsal aspect. 2.- antenna. 3.- genitalia.
Figure 6 in Reproductive biology of Elops lacerta (Elopiformes: Elopidae) in the Gulf of Guinea, Côte d'Ivoire, West Africa
Figure 6. – Size at first sexual maturity (FL50) of males and females Elops lacerta caught from January 2019 to December 2020.
Figure 13 in Spatial and temporal variations of fish communities in the longitudinal gradient of the Mono River (Benin and Togo: West Africa)
Figure 13. – Indicator species for each cluster of the dendrogram resulting from the self-organizing map procedure (n = 10). IndVal values (in %) are shown in brackets. Shown indicator values (p <0.05) are only those greater than 25%.
Figure 2 in Spatial and temporal variations of fish communities in the longitudinal gradient of the Mono River (Benin and Togo: West Africa)
Figure 2. – Variation (average and standard deviation) in species richness by sampling sites. Site order follows the upstream-downstream gradient.
Figure 12 in Spatial and temporal variations of fish communities in the longitudinal gradient of the Mono River (Benin and Togo: West Africa)
Figure 12. – Correlation circle of the environmental variable, which discriminate clusters (n = 3) defined by the self-organizing map for stations in the F1 x F2 design for the factorial discriminant analysis. Dis, distance from source; FoBa, forest area; CaHi, canopy height; Vol, flow velocity; Cond, conductivity; Trans, water transparency; Alt, altitude.
Figure 7 in Spatial and temporal variations of fish communities in the longitudinal gradient of the Mono River (Benin and Togo: West Africa)
Figure 7. – Hierarchical classification of the nodes of the Kohonen map based on the species richness of the sites (n = 10). A: Self-organizing map (SOM) (20 nodes); B: Hierarchical clustering of the SOM nodes with a Ward linkage method and a Euclidean distance: the numbers (i.e. ranging from 1 to 20) correspond to those assigned on each node of the SOM.
Figure 1 in Length-weight relationships of 19 fish species from two tropical artificial reservoirs (Manantali and Selingue) in Mali, West Africa
Figure 1. – Situation map (top) and detailed map (bottom) of the two Malian lakes studied: (A) Manantali, (B) Sélingué.
Figure 1 in The influence of land use-impacted tributaries on water quality and phytoplankton in the Mooi River, North West Province, South Africa
Figure 1: Catchment area of the Mooi River from its source to the confluence with the Vaal River, showing the position of sampling sites in the main stream (1–8) and in the tributaries (WFS, GM and WS). Different types of land use activities in the catchment are also indicated on the map.
Figure 3 in The influence of land use-impacted tributaries on water quality and phytoplankton in the Mooi River, North West Province, South Africa
Figure 3: Canonical Correspondence Analysis (CCA) of the physico-chemical environmental variables, natural log of the phytoplankton data, and the different sites located in the Mooi River for 2015.
Approximate map of Sulemaana Kantè's post-1941 travels and history of residence in West Africa
<p>Approximate map of Kantè’s post-1941 travels and history of residence in West Africa. Originally appeared in the following:</p> <p>Donaldson, Coleman. 2017. “Clear Language: Script, Register and the N’ko Movement of Manding-Speaking West Africa.” Doctoral Dissertation, Philadelphia, PA: University of Pennsylvania. Philadelphia, PA. <a href="https://repository.upenn.edu/dissertations/AAI10681364/">https://repository.upenn.edu/dissertations/AAI10681364/</a>.</p> <p>Created with data from the following sources:</p> <p>Amselle, Jean-Loup. 2003. “Peut-on être musulman sans être arabe? : A propos du N’ko malinké d’Afrique de l’Ouest.” In <em>Islam et villes en Afrique au sud du Sahara: entre soufisme et fondamentalisme</em>, edited by Adriana Piga and Costanza Ventura, 257–69. Paris: Karthala.</p> <p>Kántɛ, Sùlemáana. 1968. <em>Ɲìninkalibá’ 5 n’à jáabi’</em> ߢߌ߬ߣߌ߲߬ߞߊ߬ߟߌ߬ߓߊ ߅ ߣߴߊ߬ ߖߊ߯ߓߌ [Five Big Questions and Their Answer]. Edited by Bàbá Màmádi Jàanɛ.</p> <p>Oyler, Dianne White. 2005. <em>The History of the N’ko Alphabet and Its Role in Mandé Transnational Identity: Words as Weapons</em>. Cherry Hill, NJ: Africana Homestead Legacy Publishers.</p> <p>Sangaré, Mahmoud. 2011. <em>Jón yé Sòlomána Kántɛ́ dí?</em> ߖߐ߲߫ ߧߋ߫ ߛߟߏ߬ߡߣߊ߫ ߞߊ߲ߕߍ߫ ߘߌ߫؟ [Who Is Sulemaana Kantè?]. Bamako, Mali.</p> <p>--</p> <p>Blog: <a href="https://ajami.hypotheses.org/">https://ajami.hypotheses.org/</a><br> Project: <a href="https://www.manuscript-cultures.uni-hamburg.de/ajami/index_e.html">https://www.manuscript-cultures.uni-hamburg.de/ajami/index_e.html</a></p>
Fig. 3 in A new species of Quadrivisio (Amphipoda, Maeridae) from coastal tropical lagoons (Benin, West Africa)
Fig. 3. Quadrivisio laleyei sp. nov. A., C. Holotype, ♂, 7.5 mm, MNHN IU-2017-209, gnathopod. B., D. Paratype, ♀, 7.0 mm, MNHN IU-2017-211, gnathopod.
Fig. 2 in A new species of Quadrivisio (Amphipoda, Maeridae) from coastal tropical lagoons (Benin, West Africa)
Fig. 2. Quadrivisio laleyei sp. nov., ♂, holotype, 7.5 mm, MNHN IU-2017-209. A. Habitus (scale 1). B. Lower lip (scale 3). C. First antenna (scale 2). D. Second antenna (scale 2). E. Left mandible (scale 4). F. Maxilliped palp (scale 3).
Fig. 5 in A new species of Quadrivisio (Amphipoda, Maeridae) from coastal tropical lagoons (Benin, West Africa)
Fig. 5. Quadrivisio laleyi sp. nov. A–D., F. Holotype, ♂, 7.5 mm, MNHN IU-2017-209. E. Paratype, ♀, 7.0 mm, MNHN IU-2017-211. A. Male uropod 1 (scale 1). B. Male uropod 2 (scale 1). C. Male urosome (scale 1). D. Male uropod 3 (scale 1). E. Female uropod 3 (scale 1). F. Male telson (scale 2).
Fig. 4 in A new species of Quadrivisio (Amphipoda, Maeridae) from coastal tropical lagoons (Benin, West Africa)
Fig. 4. Quadrivisio laleyi sp. nov. A–B., D–E. Holotype, ♂, 7.5 mm, MNHN IU-2017-209. C. Paratype, ♂, 7.6 mm, MNHN IU-2017-210. A. Pereopod 3. B. Pereopod 4. C. Pereopod 5. D. Pereopod 6. E. Pereopod 7.
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.