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473 results for “sub-saharan Africa”
Fig. 8 in New species of the genus Cerceris LATREILLE, 1802 from Sub-Saharan Africa Hymenoptera, Apoidea, Crabronidae Part I
Fig. 8: Cerceris hanangensis DOLLFUSS nov.sp. ♁: (a) clypeus; (b) clypeus lateral view; (c) flagellum; (d) pygidial plate; (e) petiolus; (f) genitalia dorsal and gonostyle in lateral view.
Fig. 14 in New species of the genus Cerceris LATREILLE, 1802 from Sub-Saharan Africa Hymenoptera, Apoidea, Crabronidae Part I
Fig. 14: Cerceris nigeriaensis DOLLFUSS nov.sp. ♁: (a) clypeus; (b) clypeus lateral; (c) flagellum; (d) pygidial plate; (e) sternum VI lateral view; (f) petiolus; (g) genitalia dorsal and gonostylus in lateral view.
Fig. 17 in New species of the genus Cerceris LATREILLE, 1802 from Sub-Saharan Africa Hymenoptera, Apoidea, Crabronidae Part I
Fig. 17: Cerceris pseudocurvitarsis DOLLFUSS nov.sp. ♀: (a) clypeus; (b) clypeus lateral view; (c) flagellum; (d) pygidial plate; (e) petiolus.
Fig. 6 in New species of the genus Cerceris LATREILLE, 1802 from Sub-Saharan Africa Hymenoptera, Apoidea, Crabronidae Part I
Fig. 6: Cerceris ethiopia DOLLFUSS nov.sp. ♁: (a) clypeus; (b) clypeus lateral view; (c) flagellum; (d) pygidial plate; (e) petiolus; (f) genitalia dorsal and gonostylus in lateral view.
Fig. 20 in New species of the genus Cerceris LATREILLE, 1802 from Sub-Saharan Africa Hymenoptera, Apoidea, Crabronidae Part I
Fig. 20: Cerceris ptah DOLLFUSS nov.sp. ♀: (a) clypeus; (b) clypeus lateral view; (c) flagellum; (d) pygidial plate; (e) petiolus.
Fig. 5 in New species of the genus Cerceris LATREILLE, 1802 from Sub-Saharan Africa Hymenoptera, Apoidea, Crabronidae Part I
Fig. 5: Cerceris ethiopia DOLLFUSS nov.sp. ♀: (a) clypeus; (b) clypeus lateral view; (c) flagellum; (d) pygidial plate; (e) petiolus.
Fig. 12 in New species of the genus Cerceris LATREILLE, 1802 from Sub-Saharan Africa Hymenoptera, Apoidea, Crabronidae Part I
Fig. 12: Cerceris namibiensis DOLLFUSS nov.sp. ♁: (a) clypeus; (b) clypeus lateral view; (c) flagellum; (d) pygidial plate; (e) petiolus; (f) genitalia dorsal and gonostylus in lateral view.
Fig. 16 in New species of the genus Cerceris LATREILLE, 1802 from Sub-Saharan Africa Hymenoptera, Apoidea, Crabronidae Part I
Fig. 16: Cerceris pseudoanubis DOLLFUSS nov.sp. ♁: (a) clypeus; (b) clypeus lateral view; (c) flagellum; (d) pygidial plate; (e) petiolus; (f) genitalia dorsal and gonostyle in lateral view.
Fig. 19 in New species of the genus Cerceris LATREILLE, 1802 from Sub-Saharan Africa Hymenoptera, Apoidea, Crabronidae Part I
Fig. 19: Cerceris pseudosolitaria DOLLFUSS nov.sp. ♁: (a) clypeus; (b) clypeus lateral view; (c) flagellum; (d) pygidial plate; (e) petiolus; (f) genitalia dorsal and gonostyle in lateral view.
Fig. 11 in New species of the genus Cerceris LATREILLE, 1802 from Sub-Saharan Africa Hymenoptera, Apoidea, Crabronidae Part I
Fig. 11: Cerceris namibiensis DOLLFUSS nov.sp. ♀: (a) clypeus; (b) clypeus lateral view; (c) pygidial plate; (d) petiolus.
Comparison of Cropland Maps Derived from Land Cover Maps in Sub-Saharan Africa
<p>This data repository provides the datasets associated with analysis conducted in Kerner et al. (2024), citation below.</p> <p>The CSV file `intercomparison-results.csv` gives a table metrics for each of 11 land cover maps (plus a majority vote ensemble of all maps) evaluated using the reference dataset for each of 8 countries (Kenya, Rwanda, Uganda, Tanzania, Mali, Malawi, Togo, and Zambia). The reference datasets are provided as zip files. To ensure these datasets can be used for independent evaluation and comparison between maps in the future, the reference datasets should ONLY be used for final, independent evaluation of data products/model outputs; they should NOT be used for training models, tuning hyperparameters, or any other decisions during model/map development. </p> <p>The provided tif files contain the consensus maps (sum of all 11 maps) used to compute consensus statistics in Kerner et al. (2024).</p> <p>Kerner, H., Nakalembe, C., Yang, A., Zvonkov, I., McWeeny, R., Tseng, G., and Becker-Reshef, I. (2024). How accurate are existing land cover maps for agriculture in Sub-Saharan Africa? <em>Under review</em>. </p>
1-km high resolution model outputs using the WRF and WRF-Hydro model Raw data from the manuscipt "Process-based Atmosphere-Hydrology-Malaria Modeling: Performance for Spatio-temporal Malaria Transmission Dynamics in Sub-Saharan Africa "
<p>Here we provide the model outputs from the numerical climate model WRF (Weather Research and Forecasting) and its hydrological coupled model WRF-Hydro for the Health and Demographic Surveillance Systems (HDSS) site regions of Nouna in Burkina Faso. Model results are used for investigating the influence of surface hydrology representation, environmental and climate-sensitive driver factors on malaria incidence.<br>The experiments use the following model configuration: 1km horizontal resolution with 200*200 grid points, WSM6 microphysics, ACM2 PBL, and RRTM & Dudhia radiation scheme. WRF uses the Noah LSM, and WRF-Hydro uses the Noah LSM with enhanced lateral hydrological description (https://ral.ucar.edu/projects/wrf_hydro/overview). These simulations were conducted in the Karlsruhe Steinbuch Centre for Computing (SCC) Horeka.</p> <p>Model outputs are provided in daily step (originally derived from the hourly output). Filename with "wrf-hydro_pr_2000-2020_d02-1km.nc" provides Precipitation,<br>n mm/day"wrf-hydro_tas_2000-2020_d02-1km.nc" provides mean temperature in Celsius, "wrf-hydro_tasmax_2000-2020_d02-1km.nc" provides maximum temperature in Celsius, "wrf-hydro_tasmin_2000-2020_d02-1km.nc" provides minmum temperature in Celsius, "wrf-hydro_dtr_2000-2020_d02-1km.nc" provides diurnal temperature ranges in Celius, "wrf-hydro_rh_2000-2020_d02-1km.nc" provides relative humudity in % and "wrf-hydro_sw_2000-2020_d02-1km.nc" provides the surface hydrology.</p>
rwpfunctionality: Water point functionality assessment in nine sub-Saharan Africa and South Asia countries
Water point monitoring data associated with the paper "[Rural water point functionality estimates and associations: evidence from nine countries in sub-Saharan Africa and South Asia](https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2023WR034679)" (Murray, Anna L et al., 2024).
Fig. 131 in The wasp genus Sphex in Sub-Saharan Africa (Hymenoptera: Sphecidae)
Fig. 131. Preliminary hypothesis on the phylogenetic relationships within Sphex Linnaeus, 1758, based on morphological characters.
Figs 124–128. 124–125, 127 in The wasp genus Sphex in Sub-Saharan Africa (Hymenoptera: Sphecidae)
Figs 124–128. 124–125, 127. Habitus of ♀. 126, 128. Habitus of ♂. 124. Sphex meridionalis (Arnold, 1947). 125–126. S. nefrens sp. nov. 127–128. S. occidentalis sp. nov.
Figs 113–118. 113–114, 116 in The wasp genus Sphex in Sub-Saharan Africa (Hymenoptera: Sphecidae)
Figs 113–118. 113–114, 116. Habitus of ♀. 115, 117. Habitus of ♂. 113, 115. Sphex satanas satanas Kohl, 1898. 114. S. satanas memnon subsp. nov. 116–117. S. socotrensis sp. nov. 118. Geographic distribution of S. pseudosatanas sp. nov. (red), S. rufoclypeatus sp. nov. (blue), S. s. satanas (yellow) and S. socotrensis sp. nov. (purple).
Figs 100–105. 100–101. Sphex decipiens Kohl, 1895. 102–103. S. pruinosus Germar, 1817. 104– 105. S. gaullei Berland, 1927. 100, 103, 105 in The wasp genus Sphex in Sub-Saharan Africa (Hymenoptera: Sphecidae)
Figs 100–105. 100–101. Sphex decipiens Kohl, 1895. 102–103. S. pruinosus Germar, 1817. 104– 105. S. gaullei Berland, 1927. 100, 103, 105. Habitus of ♂. 101. Frontal view of ♀. 102, 104. Habitus of ♀.
Figs 79–84. 79–80 in The wasp genus Sphex in Sub-Saharan Africa (Hymenoptera: Sphecidae)
Figs 79–84. 79–80. Apical third of penis valvae in ♂♂ of Sphex camerunicus Strand, 1916. 81–82. Apical third of penis valvae in ♂ of S. nigrohirtus Kohl, 1895. 79, 81. Dorsal view. 80, 82. Lateral view. 83. S. camerunicus, habitus of ♀. 84. S. nigrohirtus, habitus of ♀.
Figs 85–92. 85–86 in The wasp genus Sphex in Sub-Saharan Africa (Hymenoptera: Sphecidae)
Figs 85–92. 85–86. Habitus of ♀. 87–90. habitus of ♂. 85. Sphex incomptus Gerstaecker, 1871. 86– 87. S. pulawskii sp. nov. 88. S. abbotti abbotti W. Fox, 1891. 89. S. abbotti nivarius subsp. nov. 90. S. bohemanni Dahlbom, 1845. 91. Geographic distribution of S. incomptus (red) and S. pulawskii sp. nov. (blue). 92. Geographic distribution of S. a. abbotti (red), S. a. nivarius subsp. nov. (blue), S. abyssinicus (Arnold, 1928) (yellow) and S. bohemanni (purple).
Figs 63–71. 63, 67. Sphex caeruleanus Drury, 1773. 64–65, 68. S in The wasp genus Sphex in Sub-Saharan Africa (Hymenoptera: Sphecidae)
Figs 63–71. 63, 67. Sphex caeruleanus Drury, 1773. 64–65, 68. S. mweruensis (Arnold, 1947). 66. S. hades sp. nov. 69–70. S. haemorrhoidalis Fabricius, 1781. 63–64, 69. Habitus of ♀. 65–66, 70. Habitus of ♂. 67–68. Frontal view of ♀. 71. Geographic distribution of S. haemorrhoidalis (red) and S. victoria sp. nov. (blue).
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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.