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Fig. 3. X in A New Pufferfish, Torquigener heemstrai from South Africa (Acanthopterygii, Tetraodontiformes, Tetraodontidae)
Fig. 3. X-ray CT scanning photographs showing the two-rooted spinules of the holotype of Torquigener heemstrai n. sp. Top, lateral view; bottom, dorsal view.
Fig. 9 in Redescriptions Of Little Known Jumping Spider Genera (Araneae: Salticidae) From West Africa
Fig. 9. Habitus of male S. cristatus. A = lateral view, B = dorsal view, C = fronto-lateral view; D = palp, ventral view
Fig. 8 in Redescriptions Of Little Known Jumping Spider Genera (Araneae: Salticidae) From West Africa
Fig. 8. Automontage images of SIMON's species. Stenaelurillus nigricauda. A = male holotype, B = female in the same vial; Stenaelurillus nigritarsis. C = male holotype, D = female in the same vial
Fig. 7. Stenaleurillus species. Stenaelurillus nigricaudus A in Redescriptions Of Little Known Jumping Spider Genera (Araneae: Salticidae) From West Africa
Fig. 7. Stenaleurillus species. Stenaelurillus nigricaudus A = palp, ventral view, B = same, retrolateral view. C = habitus, dorsal view; S. cristatus D = palp, ventral view, E = same, retrolateral view. Scales 0.1 mm for palps
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
Fig. 1 in Shell Availability And Use By The Hermit Crab Clibanarius Virescens Along The Eastern Cape Coast, South Africa
Fig. 1. Species of gastropods and percentage of shells occupied by C. virescens at three different study sites: Dwesa (n = 235), Nqabara (n= 347) and Mendwana (n = 273) based on 20 quadrat sam-
Data for "Africa's Climate Response to Marine Cloud Brightening Strategies is Highly Sensitive to Deployment Region"
<p>Community Earth System Model 2 simulation data with marine cloud brightening perturbations used to compute climate impact metrics in "Africa's Climate Response to Marine Cloud Brightening Strategies is Highly Sensitive to Deployment Region" by Romaric C. Odoulami, Haruki Hirasawa, Kouakou Kouadio, Trisha D. Patel, Kwesi A. Quagraine, Izidine Pinto, Temitope S. Egbebiyi, Babatunde J. Abiodun, Christopher Lennard, and Mark G. New. Simulation descriptions can be found in Hirasawa et al., 2023 <em>Geophysical Research Letters</em> doi.org/10.1029/2023GL104314.</p>
Figs 4 A and B in Trichodina diaptomi (Ciliophora: Peritrichia) from Two Calanoid Copepods from Botswana and South Africa, with Notes on its Life History
Figs 4 A and B. Diagrammatic drawings of the denticles of two different specimens of Trichodina diaptomi Šrámek-Hušek, 1953 from the carapace of Metadiaptomus transvaalensis from the Nata River, Botswana to illustrate variation in denticle shape.
Figs 3 A–E in Trichodina diaptomi (Ciliophora: Peritrichia) from Two Calanoid Copepods from Botswana and South Africa, with Notes on its Life History
Figs 3 A–E. Micrographs of Metadiaptomus transvaalensis with Trichodina diaptomi Šrámek-Hušek, 1953 on the carapace collected from the Nata River, Botswana in August 2012. Whole specimen of M. transvaalenis with several trichodinids visible on dorsal surface of body (A), M. transvaalensis with several trichodinids visible on dorsal surface opposite locomotory appendages of copepod (C) and close-up views of dorsal carapace of M. transvaalensis with trichodinids clearly visible on surface of copepod (B, D, E) with two detached trichodinids visible in D.
Figs 2 A–F in Trichodina diaptomi (Ciliophora: Peritrichia) from Two Calanoid Copepods from Botswana and South Africa, with Notes on its Life History
Figs 2 A–F. Micrographs of silver impregnated adhesive discs (A, B, E and F) and haematoxylin stained specimens (C and D), showing the nuclear apparatus (C) and adoral spiral (D) of Trichodina diaptomi Šrámek-Hušek, 1953 from the Nata River (A–D) and Rustfontein Dam (E and F).
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 8 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 8. Examples of bone elements from sauropod dinosaurs found in the bamboo corsets, link to corresponding movies. A) "Ig 230", cervical rib of Giraffatitan brancai, and cluster of vertebrae and bone fragments of Dysalotosaurus; B) "Ig 281", presumable dorsal vertebral fragments and pneumatic transverse process of a sauropod (this bamboo corset contains also a dentary remain of Dysalotosaurus); C) "Ig 310, 311, 312, 313, 314", pneumatic transverse process of dorsal vertebra; D) "Ig 498", neural arch with clearly visible hyposphene and broken neural spine of titanosauriform sauropod. Close-up of visualization of isolated MtII of Giraffatitan, E) in dorsal view F) in plantar view. Scale bar in A-D is 100 mm, in E-F it is 50 mm. Abbreviations: bf, bone fragment; ccost, corpus of cervical rib (of Giraffatitan); df, dentary fragment (of Dysalotosaurus); hypo, hyposphene; mt, metatarsal; na, neural arch; nsp, neural spine; prcost, caudal process of cervical rib (of Giraffatitan); postzyg, postzygapophysis; prtrans, transverse process of vertebra; tib,tibia; vc, vertebral centrum; vf, vertebral fragment. Videos of A) to D) available at the PE You Tube channel (https://www.youtube.com/channel/UCF6IBDiGbut- DrVada60Izyg)
FIGURE 6 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 6. Examples of bone elements from Dysalotosaurus lettowvorbecki as found in the bamboo corsets, link to corresponding movies. A) "Ig 189, 211, 213", bamboo corset with dentary fragments, dorsal rib shaft, tibia remains, a proximal fibula and some other bone fragments; B) "Ig 401, 415, 416, 417, 472, 475", bamboo corset with well-preserved ilium, proximal fibula, at least two metatarsals and other long bone fragments, as well as a presumed MtII of Giraffatitan brancai in 2 parts; C) "Ig 343, 346, 354, 359, 366, 383", bamboo corset with femur in 3 parts, fragments of ilium and some bone fragments; D) "Ig 335, 336, 338, 368", bamboo corset with 1 humerus, 1 femur, tibia and fibula as proximal parts and other bone fragments; E) "Ig 537, 540, 547, 549, 562", bamboo corset with vertebral centra, 2 isolated neural arches, a coracoid, a distal femur, a metatarsal and other bone fragments; F) "Ig 522, 527, 528, 539, 543, 544", bamboo corset with tibia and fibula, ulna and other bone fragments. Scale bar is 50 mm. Abbreviations: cor, coracoid; df, dentary fragment; dori, dorsal rib; fe, femur; fib, fibula; hu, humerus; ili, ilium; isc, ischium; MtII, second metatarsal of Giraffatitan; mt, metatarsal (of Dysalotosaurus); nar, neural arch; tib, tibia; uln, ulna; vc, vertebral centrum. Videos of A) to F) available at the PE You Tube channel (https://www.youtube.com/channel/UCF6IBDiGbut- DrVada60Izyg)
FIGURE 5. Diagrams showing 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 5. Diagrams showing A) the distribution of clay jackets, unprepared bones and tin cans in the bamboo corsets and crates, B) Frequency of different bone elements of Dysalotosaurus lettowvorbecki in the bamboo corsets and crates. The unidentified bone fragments of Dysalotosaurus are not incorporated in this count. Isolated vertebral centra have been counted without determination of their corresponding body region (i.e., cervical, dorsal, sacral, or caudal).
FIGURE 4 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 4. Packing types of fossil specimens as visible in the CT images A) "Ig 420, 439, 453, 512", longitudinal section (MIP mode and CT-pulmonary filters set) showing wrapping of specimens in savanna grass, B) "Ig88" cross-section showing wrapping of fossils in savanna grass and tight stuffing of bamboo corsets, C) "Ig291, 291", longitudinal section of the typical clay jackets, showing a femur of Dysalotosaurus in pieces with protection cover of clay, D) "Ig281", partial longitudinal section showing clay jackets and single bone fragments with and without sediment, E) "Ig 122, 124, 266, 267, 269, 270, 272, 276", longitudinal section showing clusters of vertebrae and bone fragments in the bamboo corset, F) "Ig_2011_4", crate with two large sediment slabs with fossil bones, G) "Ig_2011_1", crate with bamboo stalks filled with fossil bones and bones wrapped in savanna grass, H) "Ig_NN6", bamboo corset in longitudinal section (MIP mode) showing tin cans and bone cluster in between (see also Figure 4C-D), I) "Ig 330, 339, 347, 349 350, 351, 352, 356, 360, 346, 366", bamboo corset in longitudinal section (MIP mode) showing several tin cans and some additional loose bones. Scale bar is 50 mm. Abbreviations: bb, bamboo stalk; bf, bone fragment; cl, clay cover of bone; clj, clay jacket; df, dentary fragment; dife, distal femur; sed, sediment; sgb, savanna grass bundle; vc, vertebral centrum.
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.