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Key landscapes for the conservation of biodiversity in Sub-Saharan Africa. Proposal for modification of polygons. BIOPAMA.
<p>Key Landscapes for Conservation (KLC) are areas recognised to be of global wildlife importance with intact ecosystems that are capable of sustaining wildlife populations in the face of increasing isolation from other similar areas (Larger Than Elephants - Inputs for EU strategic approach to wildlife conservation in Africa - Regional Analysis, European Commission, 2016).</p> <p>In 2019 and 2020, following discussions with experts, the JRC proposed an update of the layer published in 2016. The 2020 layer was created in QGIS with python (10.5281/zenodo.8207793).</p> <p>The layer is available in three different data formats: ESRI shapefile, geojson and kml.</p> <p>The document KLC_modifications_20200922.pdf illustrates the proposed changes relative to the 2016 version of the polygons.</p> <p> </p>
Benthic and Planktic Foraminifera Counts from Concession 20D on the Orange Shelf, South Africa.
<p>Benthic and planktic foraminifera counts from three vibracores within Concession 20D on the Orange Shelf of western South Africa. The vibracores from which foraminifera were subsampled include inner shelf core 12820D, outer shelf core 14820D, and outer shelf core 14620D. Counts are presented as absolute abundances and were counted to a 300-300 benthic-planktic threshold. Where this threshold could not be met, the total amount of benthic and planktic foraminifera for all sampled sediment was noted. </p>
Figure 6 in Three new Dactylogyrus species (Monogenea: Dactylogyridae) and redescription of one other, gill parasites of five Labeo spp. (Cypriniformes: Cyprinidae) from the Sanaga basin (Cameroon, Central Africa)
Figure 6. Drawing of sclerotized parts of Dactylogyrus yassensis. (DA) dorsal anchor, (DB) Dorsal bar, (VB) ventral bar, (Pe) penis, (AP) accessory piece, (Vg) vagina, (N) needle. Scale bar: 20 Μm.
Figure 3 in Three new Dactylogyrus species (Monogenea: Dactylogyridae) and redescription of one other, gill parasites of five Labeo spp. (Cypriniformes: Cyprinidae) from the Sanaga basin (Cameroon, Central Africa)
Figure 3. Drawing of sclerotized parts of Dactylogyrus sanagaensis sp. nov.: (DA) dorsal anchor, (DB) Dorsal bar, (VB) ventral bar, (Pe) penis, (AP) accessory piece, (Vg) vagina, (N) needle. Scale bar: 20 Μm.
Figure 2 in Three new Dactylogyrus species (Monogenea: Dactylogyridae) and redescription of one other, gill parasites of five Labeo spp. (Cypriniformes: Cyprinidae) from the Sanaga basin (Cameroon, Central Africa)
Figure 2. Measurements taken on sclerotized parts according to Gussev (1962). Anchor: (a) total length, (b) length to notch, (c) outer root length, (d) inner root length, (e) point length; (DB) Dorsal bar and (VB) ventral bar: (x) length, (w) width; (H) hook I to VII: length ("larval hook" + shank = proximal + distal subunit); Male copulatory organ (MCO): (TL) total length, (Pe) penis, (L) length, (APb) accessory piece base length; (Vg) vagina: (L) length, (l) width. Scale bar: 20 Μm.
Figure 7 in Three new Dactylogyrus species (Monogenea: Dactylogyridae) and redescription of one other, gill parasites of five Labeo spp. (Cypriniformes: Cyprinidae) from the Sanaga basin (Cameroon, Central Africa)
Figure 7. Result of the principal component analysis performed on measurements (Μm) of sclerotized parts of monogeneans.
Figure 5 in Three new Dactylogyrus species (Monogenea: Dactylogyridae) and redescription of one other, gill parasites of five Labeo spp. (Cypriniformes: Cyprinidae) from the Sanaga basin (Cameroon, Central Africa)
Figure 5. Drawing of sclerotized parts of Dactylogyrus djimensis sp. nov.: (DA) dorsal anchor, (DB) Dorsal bar, (VB) ventral bar, (Pe) penis, (AP) accessory piece, (Vg) vagina, (N) needle. Scale bar: 20 Μm.
Fig. 3. Drypetes aphanes Quintanar, D.J in Notes on cauliflory, sexual dimorphism and biogeography in Drypetes (Putranjivaceae, Malpighiales) and a taxonomic treatment for D. gabonensis and two new cauliflorous threatened species from Central Africa, D. aphanes sp. nov. and D. cauta sp. nov.
Fig. 3. Drypetes aphanes Quintanar, D.J. Harris & Barberá sp. nov. a. Branch and leaves. b. Petiole and leaf base, adaxial view. c. Female inflorescence. d. Female flower. e. Female sepal, abaxial view. f. Male flower. g. Fruit. – h–n. D.cauta D.J.Harris, Barberá & Quintanar sp. nov. h. Branch and leaves. i. Petiole and leaf base, adaxial view. j. Terminal bud and stipules. k. Female flower. l. Female sepal, abaxial view. m. Male flower. n. Fruit [a–c, g. Breteler 14796 (MO 6561411). d–e. McPherson 16666 (MO 6343500). f. McPherson 16690 (MO 6343501). h–i, m. Le Testu 5512 (P04707049). j. M'Boungou462 (K). k–l. Le Testu 8327 (P04707812). n. McPherson 16249 (MO 04647294)]. Illustration by Román García Mora.
Fig. 4 in Notes on cauliflory, sexual dimorphism and biogeography in Drypetes (Putranjivaceae, Malpighiales) and a taxonomic treatment for D. gabonensis and two new cauliflorous threatened species from Central Africa, D. aphanes sp. nov. and D. cauta sp. nov.
Fig. 4. Distribution of Drypetes gabonensis Pierre ex Hutch. (blue circles), Drypetes aphanes Quintanar, D.J.Harris & Barberá sp. nov. (red triangles) and D.cauta D.J.Harris, Barberá & Quintanar sp. nov. (green squares).
Fig. 2 in Notes on cauliflory, sexual dimorphism and biogeography in Drypetes (Putranjivaceae, Malpighiales) and a taxonomic treatment for D. gabonensis and two new cauliflorous threatened species from Central Africa, D. aphanes sp. nov. and D. cauta sp. nov.
Fig. 2. Drypetesgabonensis Pierre ex Hutch. a. Branch, leaves, male inflorescences. b. Branch, leaves, female inflorescences. c. Male flower before anthesis. d. Male flower. e–f. Sepals of male flower. g. Longitudinal section of male flower. h. Male flower without sepals. i. Ventral view of anther. j. Disk of male flower. k. Longitudinal section of the disk of the male flower, showing the central conical projection. l. Female flower without a sepal. m. Opened ovary showing the ovules and transverse section of the ovary. n. Fruit. o. Opened fruit showing the seeds. p. Seed. [a–p, Klaine 551, 690, 1034, 1278 (many specimens, see list of studied material).] Details c–h share the scale of 3 mm placed in d. Details j and k share the scale of 2 mm placed in j. details l and m the scale of 3 mm placed in m. Illustration by E. Delpy, modified for its publication in Flore du Gabon (Harris et al. 2021).
Fig. 1 in Notes on cauliflory, sexual dimorphism and biogeography in Drypetes (Putranjivaceae, Malpighiales) and a taxonomic treatment for D. gabonensis and two new cauliflorous threatened species from Central Africa, D. aphanes sp. nov. and D. cauta sp. nov.
Fig. 1. Different placements of the inflorescences in some African species of Drypetes Vahl: a–b. D. gilgiana (Pax) Pax & K.Hoffm. (categories IV and III, respectively). c. D. preussii (Pax) Hutch. (category I). d. D. stipularis (Müll.Arg.) Hutch. (category I). e. D. polyantha Pax & K.Hoffm. (category II). f. D.verrucosa Pierre ex Hutch. (category I). g. D.laciniata (Pax) Hutch. (category III) (a. E. Bidault 5644. b. E. Bidault 4844. c. A.H. Paradis 332. d. E. Bidault 2258. e. D.J. Harris 9761. f. E. Bidault 1861. g. E. Bidault 2245.) Photographs taken by the collectors.
eHealth policies in Africa
<p>Information about eHealth policies and in African countries, including strategies, frameworks, guideslines and standards. Also policy documents in related fields such as healthcare, ICT, privacy, and finance. From the BETTEReHEALTH registry: <a href="https://registry.betterehealth.eu/ehealth-policies">https://registry.betterehealth.eu/ehealth-policies</a></p>
TEXT-FIGURE I. Leptomydas omeri sp. n. (A) Third segment and terminal club of left antenna. (B) Lateral view of hypopygium. in A New Mydaid Fly from South Africa (Diptera : Mydaidre)
TEXT-FIGURE I. Leptomydas omeri sp. n. (A) Third segment and terminal club of left antenna. (B) Lateral view of hypopygium.
Pre-Aksumite Plant Husbandry in the Horn of Africa - Datasets
<p>This repository contains the results datasets of the article <strong>Pre-Aksumite Plant Husbandry in the Horn of Africa</strong> published by the journal <strong>Vegetation History and Archaeobotany</strong>.</p>
Fig. 1 in The earliest record of terrestrial animals in Gondwana: A scorpion from the Famennian (Late Devonian) Witpoort Formation of South Africa
Fig. 1. Gondwanan reconstruction with position of the South Pole (star), main latitudes reconstructed for Late Devonian/Early Carboniferous (modified after Scotese & Barrett 1990), and the position of the Waterloo Farm (WF).
Fig. 5 in Aquatic invertebrate communities of perennial pans in Mpumalanga, South Africa: a diversity and functional approach
Fig. 5. RDA tri-plot illustrating the similarities between the various sites (and surveys) and the physicochemical variables. The tri-plot describes 45.3 % of the variation, with 22.3 % being described on the first axis and 23 % on the second axis. Only the taxa of which more than 10 % is explained by the model and the 15 most significant environmental variables are visualised.
Fig. 2 in Aquatic invertebrate communities of perennial pans in Mpumalanga, South Africa: a diversity and functional approach
Fig. 2. MDS ordination of the invertebrate communities (diversity) of the selected pans with similarities based on agglomerative cluster analysis overlain. Numbers 1–9 represent the different pans, while repeated numbers represent the various sampling occasions.
Fig. 4 in Aquatic invertebrate communities of perennial pans in Mpumalanga, South Africa: a diversity and functional approach
Fig. 4. Mean and standard deviation of the Shannon diversity index, Simpson's index, Margalef's species richness index, and Pielou's evenness index for each of the pans. The mean was obtained from the results of the various sampling surveys and as a result, the standard deviation indicates seasonal variation.
Fig. 1 in Aquatic invertebrate communities of perennial pans in Mpumalanga, South Africa: a diversity and functional approach
Fig. 1. Location of the various pans included in the study. Pans 1, 2 and 8 are influenced by mining activities, pan 3 by agricultural activities, and pans 4–7 and 9 are located in an area with few anthropogenic activities.
Fig. 3 in Aquatic invertebrate communities of perennial pans in Mpumalanga, South Africa: a diversity and functional approach
Fig. 3. MDS ordination of the community traits of the selected pans with similarities based on agglomerative cluster analysis overlain. Numbers 1–9 represent the different pans, while repeated numbers represent the various sampling occasions.
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.