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1,118 results for “CAPES”
Cape ground squirrel site comparison dataset
<p>Male mating strategies respond to female availability such that variation in resources that affect spatial distribution can also alter cost-benefit tradeoffs within a population. In arid-adapted species, rainfall alters reproduction, behavior, morphology, and population density such that populations differing in resource availability may also differ in successful reproductive strategies. Here we compare two populations of Cape ground squirrels (Xerus inauris), a sub-Saharan species with year-round breeding and intense mating competition. Unlike most mammals where males resort to aggressive interactions over females, male X. inauris are tolerant of one another, relying instead on other non-aggressive pre- and post-copulatory strategies to determine reproductive success. Our findings suggest that differences in resource availability affect female distribution which ultimately leads to intraspecific variation in male reproductive tactics and sexual morphology. Sperm competition, assessed by reproductive morphometrics, was more pronounced in our high resource site where females were distributed evenly across the landscape whereas dominance seemed to be an important determinant of success in our low resource site where females were more aggregated. Both sites had similar mating intensities, and most males did not sire any offspring. However, our low resource site had a higher variance in fertilization success with fewer males siring multiple offspring compared to our high resource site where more individuals were successful. Our results lend support to resource models where variations in female spatial distribution attributed to environmental resources ultimately impact male reproductive behaviors and morphology.</p>
3D locations of the radiators and the details of Coulomb stress about the Mw 7.3 East Cape earthquake
<p>This is part of the supplementary material of the paper " The 2021 Mw 7.3 East Cape earthquake: Triggered Rupture in Complex Faulting Revealed by Multi-Array Back-projections". The 3D locations of the radiators are in the file ‘S1.xlsx’. The details of Coulomb stress calculation are in the file ‘S2.xlsx to S9.xlsx’. </p>
Processed High Frequency Radar (HFR) Surface Current Data for the Processes Driving Exchange at Cape Hatteras (PEACH) Program
<p>These hourly surface current velocities are a combined product derived from 8 monostatic radars (4 CODAR and 4 WERA) operated as part of the PEACH program. Level 2 data have been quality-controlled and gridded to an hourly time-base. A detailed description of processing methods and analysis is provided by Seim, <em>et al. </em>(2022) and a brief outline in the documentation uploaded with this dataset.</p> <p>Seim, H., Savidge, D., Muglia, M., Haines, S., & Han, L. (2022). Surface current observations from a combined CODAR/WERA high-frequency radar array along the North Carolina coast during the Processes Driving Exchange at Cape Hatteras (PEACH) Project. <em>IEEE/MTS Proceedings Oceans 2022</em>.</p>
Fig. 2 in A new Copelatus with small eyes from the Eastern Cape Wild Coast, South Africa (Coleoptera: Dytiscidae)
Fig. 2. Copelatus mkambati sp. nov. dorsal sculpture. A – holotype male; B – paratype female.
Figure 4 in A new peacock spider from the Cape York Peninsula (Araneae: Salticidae: Euophryini: Maratus Karsch 1878)
Figure 4. Automontage images of the habitus of holotype. 1, Dorsal view. 2, Anterior view. 3, Ventral view. 4, Lateral view.
Figure 2 in A new peacock spider from the Cape York Peninsula (Araneae: Salticidae: Euophryini: Maratus Karsch 1878)
Figure 2. Automontage images of left pedipalp of preserved holotype Maratus sagittus sp. nov. 1, Retrolateral view showing finger-like retrolateral tibial apophysis (RTA) and retrolateral sperm duct loop (RSDL). 2, Ventral view showing embolic disc (ED) and tegular lobe (TL). 3, Prolateral view.
Figure 1 in A new peacock spider from the Cape York Peninsula (Araneae: Salticidae: Euophryini: Maratus Karsch 1878)
Figure 1. Habitus of living holotype male Maratus sagittus sp. nov. (Photos 1-6: Robert Whyte). 1, Note paler integument beneath white setae on carapace, glabrous surface beneath the bands of white setae on flanks of carapace. 2, Distinctive yellow arrow-shaped patch of setae on dorsal opisthosoma. 3, Note orange-brown tarsi and metatarsi. Longer leg III ornamented with white banded femur and tibia. 4, Iridescence of the short, squamous setae on opisthosomal plate visible here. 5, Note lack of ornamentation on left leg III due to regeneration. 6, Deep, plum coloured integument of the carapace shown here.
Microsatellite fragment sizing of South African Cape vulture (Gyps coprotheres)
<p>Microsatellite genoytping fragment sizing of <em>Gyps coprotheres</em> individuals collected in South Africa.</p>
Waste Characterization, Quantification, and Composting in Cape Maclear, Malawi
<p>This dataset contains information on waste characterization and quantification, current soil conditions, and agricultural practices of farmers from Cape Maclear, Malawi. </p>
Archival mitogenomes identify invasion by the Batrachochytrium dendrobatidis CAPE lineage caused an African amphibian extinction in the wild
<p>Outbreaks of emerging infectious diseases are influenced by local biotic and abiotic factors, with host declines occurring when conditions favour the pathogen. Deterioration in the population of the microendemic Tanzanian Kihansi spray toad (<em>Nectophrynoides asperginis</em>) occurred after the construction of a hydropower dam, implicating habitat modification in this species decline. Population recovery followed habitat augmentation, however a subsequent outbreak of chytridiomycosis caused by <em>Batrachochytrium dendrobatidis </em>(<em>Bd</em>) led to the spray toads extinction in the wild. We show using spatiotemporal surveillance and mitogenome assembly of <em>Bd </em>from archived toad mortalities that the outbreak was caused by invasion of the <em>Bd</em>CAPE lineage and not the panzootic lineage <em>Bd</em>GPL. Molecular dating reveals an emergence of <em>Bd</em>CAPE across Southern Africa overlapping with the timing of the spray toads extinction. That our post-outbreak surveillance of co-occurring amphibian species in the Udzungwa Mountains shows widespread infection by <em>Bd</em>CAPE yet no signs of ill-health or decline suggests these other species can tolerate <em>Bd</em> when environments are stable. We conclude that, despite transient success in mitigating the impact caused by dams' construction, invasion by <em>Bd</em>CAPE caused the ultimate die-off that led to the extinction of the Kihansi spray toad.</p>
Mundo Acadêmico interviews Prof. Marcio Pimenta, CAPES Deputy Coordinator for Administration.
<p><span>What are technical-technological products (TTPs)? How relevant are these products to the impact of academic, professional master's, and doctoral degrees in Brazil? How do the areas of Administration, Accounting and Tourism evaluate these products? To answer these and other questions related to TTPs, Mundo Acadêmico has the honor of interviewing the Deputy Coordinator at CAPES of the Professional Postgraduate Programs in the area of Public and Business Administration, Accounting Sciences, and Tourism, Prof. Dr. Márcio Pimenta. In the conversation, Professor Márcio also details the importance of TTPs in academic programs, giving tips on how to report such products in the quadrennial report, among other unmissable information for students, professors, and coordinators of PPGs linked to Administration, Accounting and Tourism. </span></p> <p>----</p> <p>Contact Prof. Dr. Marcio Pimenta</p> <p>E-mail: 27.admi@capes.gov.br</p> <p><span>----</span></p> <p><span>Documents cited in the interview: </span></p> <p><span>1) Area evaluation form: </span></p> <p><span>https://www.gov.br/capes/pt-br/centrais-de-conteudo/documentos/avaliacao/FICHA_ADMINISTRACAO_P_ATUALIZADA.pdf</span></p> <p><span> </span></p> <p><span>2) DAV Technical Reports and Working Groups: </span></p> <p><span>https://www.gov.br/capes/pt-br/acesso-a-informacao/acoes-e-programas/avaliacao/relatorios-tecnicos-e-grupos-de-trabalho</span></p> <p>----</p>
Figure 3 in Otholobium outrampsii (Psoraleeae, Fabaceae) - a new species from the Western Cape, South Africa
Figure 3. Known distribution of the endemic species Otholobium outrampsii in South Africa.
Fig. 1 in Ground beetles (Coleoptera: Carabidae) from the region of Cape Emine (central Bulgarian Black sea coast). Part II. Ecological parameters and community structure
Fig. 1. Dominance structure of the entire carabid complex (number of species).
Fig. 8 in Ground beetles (Coleoptera: Carabidae) from the region of Cape Emine (Central Bulgarian Black sea coast). Part I. Taxonomic and zoogeographic structure, life forms, habitat and humidity preferences
Fig. 8. Ecological groups of carabids in terms of humidity (number of specimens).
Fig. 6 in Ground beetles (Coleoptera: Carabidae) from the region of Cape Emine (Central Bulgarian Black sea coast). Part I. Taxonomic and zoogeographic structure, life forms, habitat and humidity preferences
Fig. 6. Proportions of the species according to the type of preferred habitat.
Fig. 7 in Ground beetles (Coleoptera: Carabidae) from the region of Cape Emine (Central Bulgarian Black sea coast). Part I. Taxonomic and zoogeographic structure, life forms, habitat and humidity preferences
Fig. 7. Ecological groups of carabids in terms of humidity (number of species).
Fig. 5 in Ground beetles (Coleoptera: Carabidae) from the region of Cape Emine (Central Bulgarian Black sea coast). Part I. Taxonomic and zoogeographic structure, life forms, habitat and humidity preferences
Fig. 5. Proportions of the species according to their habitat preferendum.
Fig. 3 in Ground beetles (Coleoptera: Carabidae) from the region of Cape Emine (Central Bulgarian Black sea coast). Part I. Taxonomic and zoogeographic structure, life forms, habitat and humidity preferences
Fig. 3. Proportions of the carabid species by zoogeographical complexes.
Fig. 2 in Ground beetles (Coleoptera: Carabidae) from the region of Cape Emine (Central Bulgarian Black sea coast). Part I. Taxonomic and zoogeographic structure, life forms, habitat and humidity preferences
Fig. 2. Proportions of the species among the tribes.
Fig. 1 in Ground beetles (Coleoptera: Carabidae) from the region of Cape Emine (Central Bulgarian Black sea coast). Part I. Taxonomic and zoogeographic structure, life forms, habitat and humidity preferences
Fig. 1. Proportions of the species among the tribes.
ScienceDex guides
Understand access before you commit
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.