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FIGURE 3. 3D in Description of contents of unopened bamboo corsets and crates from Quarry Ig/WJ of the Tendaguru locality (Late Jurassic, Tanzania, East Africa) as revealed by medical CT data and the potential of this data under paleontological and historical aspects
FIGURE 3. 3D visualization images of containers, showing different content types, link to corresponding movies. A) "Ig88", clay jackets and bones; B) "Ig_2011_5", crate with an accumulation of vertebrae and some other bones. Scale bars in A) and B) are 50 mm. "Ig_NN6", tin cans and small bones in bamboo corset, 3D MIP videos, C) with bamboo corset and surface visualized, D) with content of tin cans visualized. Scale bars in C) and D) are 100 mm. Abbreviations: bc, 3D visualized bamboo corset; bf, bone fragment; clvc, cluster of vertebral centra; clj, clay jacket; tc, tin can; vc, vertebral corpus. Videos of A), B), C) and D) available at the PE You Tube channel (https://www.youtube.com/channel/UCF6IBDiGbut- DrVada60Izyg).
FIGURE 2 in Description of contents of unopened bamboo corsets and crates from Quarry Ig/WJ of the Tendaguru locality (Late Jurassic, Tanzania, East Africa) as revealed by medical CT data and the potential of this data under paleontological and historical aspects
FIGURE 2. Photographs of packing and transport of bamboo corsets on the Tendaguru hill, A) MfN HBSB PM_B_IV_0072, and B) MfN HBSB PM_B_V_156, local workers producing and filling bamboo corsets, C) MfN HBSB PM_B_V_160, workers have gathered to start their march to Lindi with the bamboo corsets, D) MfN HBSB PM_B_V_168, long column of carriers following the small foot path to Lindi with bamboo corsets either between them or carried on the head. E) Aquilion CX CT scanner at the IZW, this machine was used to scan all 40 bamboo corsets, F) wooden crates from Quarry Ig/WJ on their way through the Toshiba Aquilion One CT scanner at the Charité, photograph by Oliver Wings.
FIGURE 7 in Description of contents of unopened bamboo corsets and crates from Quarry Ig/WJ of the Tendaguru locality (Late Jurassic, Tanzania, East Africa) as revealed by medical CT data and the potential of this data under paleontological and historical aspects
FIGURE 7. Examples of bone elements from Kentrosaurus aethiopicus as found in the bamboo corsets link to corresponding movies. A) "Ig88", bamboo corset with two caudal vertebral centra (one of them with separate neural arch), a haemapophysis, a distal part of humerus, femur and ilium and ischium fragments of Kentrosaurus, and vertebral centra of Dysalotosaurus; B) "Ig 277, 279, 284", remains of one right scapula and humerus and proximal part of left scapula, and tibia of Dysalotosaurus; C) Crate "Ig_2011_1", ulna of Kentrosaurus, and several long bones and bone fragments of Dysalotosaurus. Scale bar is 100 mm. Abbreviations: bf, bone fragment; dife, distal femur; dihu, distal humerus; haem, haemapophysis; hu, humerus; ili, ilium; isc, ischium; scap, scapula; uln, ulna; vc, vertebral centrum. Videos of A) to C) available at the PE You Tube channel (https://www.youtube.com/channel/UCF6IBDiGbut- DrVada60Izyg)
FIGURE 1. A in Description of contents of unopened bamboo corsets and crates from Quarry Ig/WJ of the Tendaguru locality (Late Jurassic, Tanzania, East Africa) as revealed by medical CT data and the potential of this data under paleontological and historical aspects
FIGURE 1. A) Entries in field catalogue of Janensch (1909-1911) for Quarry Ig/WJ page 73 and page 143. Photographs of original packed items from Quarry Ig/WJ.B) clay jacket Ig294, C) tin can filled with small bones from Quarry Ig/WJ and padded with pieces of cotton, scale bar for B) and C) is 50 mm. D) baobab fruit capsule filled with small bones and vertebrae from Quarry Ig/WJ, padded with a bundle of savanna grass, not to scale, E) opened bamboo corset from Quarry Ig/WJ containing four clay jackets (one partially with plaster of paris) on a thick layer of savanna grass (this photograph is also used in Heinrich and Schultka, 2007: Abb. 32), F) Close-up of one of the studied bamboo corsets in the collection of the MfN with original ink labelling and paper label visible, scale bar for E) and F) is 80 mm. G) Section of several bamboo corsets as stored at the collection of the MfN, not to scale. Photographs B) to E) by Carola Radke, and photographs F) and G) by Hwa Ja Götz, both MfN.
Data from: Climate change could fuel urinary schistosomiasis transmission in Africa and Europe
<p>This dataset contains primary, intermediate, and output data for "Climate change could fuel urinary schistosomiasis transmission in Africa and Europe". In this paper, we use mechanistic and correlative modelling to predict the distribution of schistosomiasis intermediate host snail <em>Bulinus truncatus.</em> Model projections suggest the suitable habitat for <em>B. truncatus</em> will increase by 17%, with new suitable habitat in Southern Europe and Central Africa, and a reduction in suitable habitat in the Sahel region.</p>
Map 2 in New records of Staphylinidae (Coleoptera) from São Tomé and Príncipe (Western Africa).
Map 2.– Map of São Tomé and Príncipe (from http://www.saotome.st), modified by the author to show Districts and locations.
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.
FIG. 3 in New discoveries of plants from Republic of Guinea, W. Africa, including Gymnosiphon fonensis Cheek, sp. nov. (Burmanniaceae), a new Critically Endangered species from Simandou
FIG. 3. — Gymnosiphon fonensis Cheek, sp. nov.: map of the global distribution. Adapted from Xander van der Burgt, map data Open Street Map.
FIG. 2 in New discoveries of plants from Republic of Guinea, W. Africa, including Gymnosiphon fonensis Cheek, sp. nov. (Burmanniaceae), a new Critically Endangered species from Simandou
FIG. 2. —Gymnosiphon fonensis Cheek, sp. nov.: A, habit, whole plant; B, habit, base of plant showing: rhizome (dotted) with roots and two stem (peduncle) bases; C, flower and rhachis; D, distal part of open flower; E, corolla tube opened (distal portion) to show inner tepals in relation to style head (with stamens attached) and stigmas; F, lobing of corolla lobes (from one flower); G, stigmatic-style head, with stigmas above, anther cells below, side view; H, as G but dorsal view; I, as G but ventral view (style in transverse section); J, ovary opened with a longitudinal cut, to show the three placental masses with ovules, and (black) pairs of nectar glands; A-I, from Cheek 19334; J, from van der Burgt 1274. All drawn by Andrew Brown. Scale bars: A, 1 cm; B, C, 5 mm; D-F, 5 mm; G-I, 1 mm; J, 2 mm.
Figs. 1-4 in A new species of the genus Anthrenus Geoffroy, 1762 (Coleoptera¡ Dermestidae) from South Africa.
Figs. 1-4.- Anthrenus (Nathrenus) cylindricornis sp. nov. (holotype, male). 1.- Habitus, dorsal aspect. 2.- Antenna. 3.- Abdominal segments, ventral aspect. 4.- Genitalia, ventral aspect.
Figure 2 in A floristic assessment of grassland diversity loss in South Africa
Figure 2: Non-Metric Multidimensional Scaling (NMDS) ordination for: A, transformed and untransformed grasslands; B, within land-use type transformation. Squares, transformed grasslands; circles, untransformed grasslands; Empty symbols, urban sites; filled symbols, agricultural sites.
Figure 6 in New records of alien and potentially invasive grass (Poaceae) species for southern Africa
Figure 6. Jarava plumosa global distribution map, with country- or regional-level shading, taken and modified from POWO (2020).
Figure 2 in New records of alien and potentially invasive grass (Poaceae) species for southern Africa
Figure 2. Agrostis capillaris global distribution map, with country- or regional-level shading, taken and modified from POWO (2020).
Figure 2. Otholobium outrampsii. A in Otholobium outrampsii (Psoraleeae, Fabaceae) - a new species from the Western Cape, South Africa
Figure 2. Otholobium outrampsii. A, flower front view; B, flower side view; C, flower ventral view; D, seasonal leaf adaxial surface; E, whole plant in habitat; F, flowering shoot. Photographs: B. du Preez.
Figure 2 in Impact of poaching on the population structure and insect associates of the Endangered Encephalartos eugene-maraisii from South Africa
Figure 2. Insects associated with Encephalartos eugene-maraisii in Entabeni: A, B, Amorphocerus cf. setosus; C, D, Apinotropis verdoornae; E, F, Zerenopsis lepida. Photographs: P.D. Janse van Rensburg.
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.