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220 results for “Western Cape”
Figure 16 in Maratus personatus, a masked peacock spider from Cape Riche, Western Australia (Araneae: Salticidae: Euophryinae)
Figure 16. Second instar Maratus personatus. After their first moult, these spiderlings emerge from the egg-sac (nest) with well-developed eyes and footpads, and a covering of setae that suggests the appearance of an adult female. 12, The adult female (left) is about 4 times the length of a second instar (~1.6 mm).
Figure 15 in Maratus personatus, a masked peacock spider from Cape Riche, Western Australia (Araneae: Salticidae: Euophryinae)
Figure 15. Development of first instar Maratus personatus. When these first emerge from the egg (1-3), they are little more than naked embryos, with short legs and unpigmented eyes that continue to grow and develop prior to the first moult. Some authors call these prelarvae. As these grow, pigment of the retinae, dorsal carapace, and opisthosoma appears, and the legs develop to the point that the spiderlings can move about in the egg sac. Although development is continuous during most of the first instar, the more developed pre-first moult spiderlings are sometimes called larvae.
Figure 10 in Maratus personatus, a masked peacock spider from Cape Riche, Western Australia (Araneae: Salticidae: Euophryinae)
Figure 10. Views of three different living female Maratus personatus. 5, In some individuals four distinct chevrons at the rear of the dorsal opisthosoma can be seen. In other individuals these are indistinct.
Figure 1 in Maratus personatus, a masked peacock spider from Cape Riche, Western Australia (Araneae: Salticidae: Euophryinae)
Figure 1. Views of the living adult male holotype for Maratus personatus. 5, From the front, deep blue scales surround the blue anterior eyes, offset by white setae of the eye region, above, and the pedipalps, below. 12, Like other Maratus, M. personatus has a dorsal opisthosomal plate with a distinct edge (arrow), as well as a triangular tuft of white colular setae.
Figure 8 in Maratus personatus, a masked peacock spider from Cape Riche, Western Australia (Araneae: Salticidae: Euophryinae)
Figure 8. Views of three different living female Maratus personatus. From above, these are mostly dark brown to black, with tracts of off-white or ivory scales on the sides of the carapace and opisthosoma. Two or more pairs of spots (scale patches) may be seen on the dorsal opisthosoma.
Figure 21 in Maratus personatus, a masked peacock spider from Cape Riche, Western Australia (Araneae: Salticidae: Euophryinae)
Figure 21. Bilateral (1-3, 5-12) and unilateral (4, 13-14) display positions by six different male Maratus personatus. When stepping from side to side (13-14), males raise and wave the leading leg III. Bilateral display may be brief, when the male is not stepping to one side or the other.
Figure 7 in Maratus personatus, a masked peacock spider from Cape Riche, Western Australia (Araneae: Salticidae: Euophryinae)
Figure 7. Medial to lateral view of the left pedipalp of six different male Maratus personatus. Separation of the inner and outer apex of the embolus can be seen in lateral views (distinctly in 5, less distinctly in 2, 6, 9, 13 and 18). General features, including the shape and relative size of the embolus, the presence of medial tegular sclerotization proximal to the embolus, the pedipalp of the male M. personatus is much like those of other Maratus.
Figure 22 in Maratus personatus, a masked peacock spider from Cape Riche, Western Australia (Araneae: Salticidae: Euophryinae)
Figure 22. Sequential (1-24) video frames (25FPS, exposure 20 msec/frame) showing a male Maratus personatus stepping to the left and waving the leading leg LIII while facing a female. To enhance comparison of position, sequential frames are arranged in columns (as in Figures 23-25). 11-13, During a brief (~0.1 s) pause in lateral movement, one wave cycle was completed, accompanied by up and down movement of the pedipalps.
Figs 1, 2 in A remarkable new genus of robber flies, Akatiomyia gen. n., from the Western Cape Province of South Africa, and a new key to the genera of Afrotropical Stenopogoninae (Diptera: Asilidae)
Figs 1, 2. Akatiomyia eremnos gen. et sp. n., male: (1) entire holotype, (2) left wing of paratype.
Data from: Preventable trauma deaths in the Western Cape of South Africa: A consensus-based panel review
Open the record for dataset details and reuse information.
Distribution. Papua New Guinea (recorded only at the lower Strickland River in Western Province and Port Moresby in National Capital District) and NE coast of Australia from Cape York Peninsula to Keppel Bay, also on Moa, Possession, and Albany Is in Torres Strait (possibly also on other islands in this area) and Magnetic I and other coastal islands of Queensland. It might have a larger distribution along S coast ofNew Guinea. in Emballonuridae
Distribution. Papua New Guinea (recorded only at the lower Strickland River in Western Province and Port Moresby in National Capital District) and NE coast of Australia from Cape York Peninsula to Keppel Bay, also on Moa, Possession, and Albany Is in Torres Strait (possibly also on other islands in this area) and Magnetic I and other coastal islands of Queensland. It might have a larger distribution along S coast ofNew Guinea.
Distribution. South Africa in coastal Northern, Western, and Eastern Cape provinces. Possibly enters coastal SW Namibia, although this has yet to be confirmed; all other non-South African records are erroneous. in Rhinolophidae
Distribution. South Africa in coastal Northern, Western, and Eastern Cape provinces. Possibly enters coastal SW Namibia, although this has yet to be confirmed; all other non-South African records are erroneous.
Data from: Relationship between socioeconomic status and HIV infection: findings from a survey in the Free State and Western Cape Provinces of South Africa
Background Studies have shown a mixed association between socioeconomic status [SES] and prevalent HIV infection across and within settings in sub-Saharan Africa. In general, the relationship between years of formal education and HIV infection changed from a positive to a negative association with maturity of the HIV epidemic. Our objective was to determine the association between SES and HIV in women of reproductive age in the Free State [FSP] and Western Cape Provinces [WCP] of South Africa [SA]. Study design Cross sectional Setting South Africa Methods We conducted secondary analysis on 1906 women of reproductive age from a 2007-2008 survey that evaluated effectiveness of Prevention of Mother-to-Child HIV Transmission programs. SES was measured by household wealth quintiles, years of formal education and employment status. Our analysis principally utilized logistic regression for survey data. Results There was a significant negative trend between prevalent HIV infection and wealth quintile in WCP [p-value<0.001] and FSP [p-value=0.025]. In adjusted analysis, every additional year of formal education was associated with a 10% [adjusted Odds Ratio [aOR] 0.90 [95% Confidence Interval [CI]: 0.85-0.96] significant reduction in risk of prevalent HIV infection in WCP but no significant association was observed in FSP [aOR 0.99 CI: 0.89-1.11]. There was no significant association between employment and prevalent HIV in each province: [aOR 1.54 CI: 0.84-2.84] in WCP and [aOR 0.96 CI: 0.71-1.30] in FSP. Conclusion The association between HIV infection and SES differed by province and by measure of SES and underscores the disproportionately higher burden of prevalent HIV infection among poorer and lowly educated women. Our findings suggest the need for re-evaluation of whether current HIV prevention efforts meet needs of the least educated [in WCP] and the poorest women [both WCP and FSP], and point to the need to investigate additional or tailored strategies for these women.
FIGURES 15–23. P in Two new species of Parisotoma (Collembola: Isotomidae) from the Western Cape, South Africa
FIGURES 15–23. P. sexsetosa sp. nov.: 15, Ant. I; 16, Ant.IV microsensillum and organite; 17, sensilla of first antennal segment; 18, maxillary head; 19–21, postlabial chaetae variations (different specimens); 22, claw and empodial appendage; 23, chaetotaxy of Abd.IV. 1–6: accp-sensilla.
FIGURES 24–31. P in Two new species of Parisotoma (Collembola: Isotomidae) from the Western Cape, South Africa
FIGURES 24–31. P. obscurocellata sp. nov.: 24, sensillar chaetotaxy of the body; 25, ocelli; 26, postlabial and basomedian chaetae; 27, elements of chaetom: macrochaeta (Mac), sensillum (s), microsensillum (ms); 28, claw and empodial appendage; 29, dens, posterior; 30, maxillary head; 31, chaetotaxy of Abd. IV. 1–6: accp-sensilla.
FIGURES 7–14. P in Two new species of Parisotoma (Collembola: Isotomidae) from the Western Cape, South Africa
FIGURES 7–14. P. sexsetosa sp. nov.: 7, sensillar chaetotaxy of the body; 8, ocelli and PAO; 9, subcoxa of leg I; 10, elements of chaetom: macrochaeta (Mac), sensillum (s), microsensillum (ms); 11, dens, lateral view; 12, dens, posterior view; 13, manubrium, anterior view; 14, ventral tube.
FIGURES 3–6 in Two new species of Parisotoma (Collembola: Isotomidae) from the Western Cape, South Africa
FIGURES 3–6. Basic sensorial pattern of South African (3–4, P. obscurocellata sp. nov.) and North Asiatic (5–6, P. l on ga) species; 3, 5, Abd.II; 4, 6, Abd.IV.
FIGURE 5 in Two new Peripatopsis species (Onychophora: Peripatopsidae) from the Western Cape province, South Africa
FIGURE 5. Scanning electron micographs illustrating morphological variation in the genital area. a, P. overbergiensis sp. nov., genital area with posterior genital (pg) pads smaller (with fewer sensory spines) than anterior genital (ag) pads, b, genital area with posterior genital (pg) pads smaller (with fewer sensory spines) than anterior genital (ag) pads, c, genital area with the posterior genital (pg) pads similar in size (and with approximate number of sensory spines) as anterior genital (ag) pads.
FIGURE 4 in Two new Peripatopsis species (Onychophora: Peripatopsidae) from the Western Cape province, South Africa
FIGURE 4. Scanning electron micographs illustrating morphological variation in the primary dermal papillae. a, P. overbergiensis sp. nov., semicircular or dome-shaped primary dermal papillae with six scale ranks, b, P. l aw re nc e i sp. nov., conical or semicircular primary dermal papillae with five scale ranks, c, P. c a p e n s i s, semicircular or dome-shaped primary dermal papillae with nine scale ranks.
FIGURE 3 in Two new Peripatopsis species (Onychophora: Peripatopsidae) from the Western Cape province, South Africa
FIGURE 3. Scanning electron micographs illustrating the arrangement of the primary dermal papillae. a, P. overbergiensis sp. nov., widely spaced primary dermal papillae with two intermittent accessory papillae, b, P. lawrencei sp. nov., moderately spaced primary dermal papillae with 2–3 intermittent accessory papillae, c, P. c a p e n s i s, densely spaced primary dermal papillae with 3–5 intermittent accessory papillae.
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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.