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4,243 results for “seasonality”
Figure 6 in First observation and seasonal dynamics of the new invasive planktonic copepod Oithona davisae Ferrari and Orsi, 1984 along the southern Black Sea (Anatolian Coast)
Figure 6. Major shipping lanes in the Black Sea http://www.marinevesseltraffic.com/2013/06/black-sea-marine-traffic.html. © Marine Vessel Traffic. Reproduced by permission of Marine Vessel Traffic. Permission to reuse must be obtained from the rightsholder.
Figure 1 in First observation and seasonal dynamics of the new invasive planktonic copepod Oithona davisae Ferrari and Orsi, 1984 along the southern Black Sea (Anatolian Coast)
Figure 1. (●) Previous report sites of Oithona davisae (Altukhov et al. 2014), (▲) Time series stations and (+) sampling locations.
Fig. 6 in Two new seasonal killifishes of the Austrolebias adloffi group from the Lagoa dos Patos basin, southern Brazil (Cyprinodontiformes: Aplocheilidae)
Fig. 6. Austrolebias nigrofasciatus, topotype, male, not preserved (photograph by Matheus V. Volcan).
Fig. 1 in Two new seasonal killifishes of the Austrolebias adloffi group from the Lagoa dos Patos basin, southern Brazil (Cyprinodontiformes: Aplocheilidae)
Fig. 1. Maximum likelihood tree of relationships among species of the Austrolebias adloffi group. Outgroups not represented. Single numbers after terminal species names are voucher numbers as in Genbank for material used in GARCÍA et al. (2004); numbers preceded by UFRJ abbreviation after terminal species names indicate catalog numbers of specimens sequenced in the present paper. Numbers above and below branches are bootstrap values above 50 % for the Maximum Likelihood and Maximum Parsimony analyses, respectively.
Fig. 2 in Two new seasonal killifishes of the Austrolebias adloffi group from the Lagoa dos Patos basin, southern Brazil (Cyprinodontiformes: Aplocheilidae)
Fig. 2. Austrolebias pelotapes: UFRJ 8601, holotype, male, 31.0 mm SL; Brazil: Rio Grande do Sul: Pelotas.
Fig. 4 in Two new seasonal killifishes of the Austrolebias adloffi group from the Lagoa dos Patos basin, southern Brazil (Cyprinodontiformes: Aplocheilidae)
Fig. 4. Geographical distribution of species of the Austrolebias adloffi group in the region of confluence of the Canal de São Gonçalo with Lagoa dos Patos. White dots, A. pelotapes; yellow, A. pongondo; black, A. nigrofasciatus; red, A. minuano.
FIGURE 2 in Lonchocarpus verticillatus (Leguminosae-Papilionoideae): A new species from Seasonally Dry Tropical Forest in Colombia
FIGURE 2. Lankester Composite Digital Plate (LCDP) Lonchocarpus verticillatus. A. Terminal branch with the arrangement of leaves and infructescence. B. Shapes and sizes of leaflets. C. Pre-anthesis flowers. D. Flower at anthesis (lateral view). E. Standard petal in frontal view; wing petal and keel petal in lateral view. F. Calyx, staminal tube, and gynoecium. G. Fruits. A, G based on C. Rivera et al 1370; B–F based on W. Ariza-C. et al. 9523. Photographs by Cristiam Rivera.
FIGURE 1 in Lonchocarpus verticillatus (Leguminosae-Papilionoideae): A new species from Seasonally Dry Tropical Forest in Colombia
FIGURE 1. Illustration of Lonchocarpus verticillatus A. Terminal branch with the arrangement of leaves and inflorescence. B. Branch showing the whorled arrangement of the leaves. C. Lenticels on branches. D. Detail of the venation in the intercostal space in abaxial view. E. Detail of pseudoracemose inflorescence with a pair of pedicellate flowers at the end of a short peduncle or brachyblast which form a "Y". F. Ventral view of flower at anthesis. G. Dorsal view of flower. H. Lateral view of flower with standard petal reflexed. I. Detail of bracteoles in the subapical segment of the pedicel. J. Calyx open adaxial surface. K. Standard. L. keel petals partially attached. M. wings. N. Staminal tube with callosities at the base (left) and tube open view inner surface (right). O. Anthers dorsal (left) and ventral (right) views. P. Gynoecium with stigma detail, Q. Infructescence. R. Fruits. A–P based on C. Rivera et al 1370; Q–R based on W. Ariza-C. et al. 9523. Illustration by Omar Bernal.
FIGURE 3 in Lonchocarpus verticillatus (Leguminosae-Papilionoideae): A new species from Seasonally Dry Tropical Forest in Colombia
FIGURE 3. Habitat and vegetative morphology of Lonchocarpus verticillatus A. Habitat in the Cauca River Canyon. B. Isolated tree in a pasture. C. Branch with whorled leaves and discolorous leaflets. D. Node of the branch and stipules (red arrows). E. Lenticellate trunk and yellowish inner bark. Photographs A–E: William Ariza.
Supplement material to the study: Towards understanding the influence of seasons on low groundwater periods based on explainable machine learning
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Characteristics of Respiratory Syncytial Virus infections in children in the Post-COVID seasons: a Northern Italy Hospital experience.
<p>Background: Public health measures for COVID-19 mitigation influenced the circulation of Respiratory Syncytial Virus (RSV) during the 2020-2021 winter season. In the following autumn, an unprecedented resurgence of RSV occurred. In our study we monitored RSV pediatric infections, one and two years after the relaxation of containment measures for COVID-19 pandemics. Methods: we analyzed diagnostic molecular data for SARS-CoV-2, Flu and RSV infections and clinical data from children with respiratory symptoms referring to our hospital during 2021-2022 and 2022-2023 seasons. Results: In 2021-22 season, the number of RSV affected children was very high, especially for babies <1 year. The outbreak appeared in a shorter interval of time, with a high clinical severity. In the 2022-23 season, a reduced number of infected pediatric patients were detected, with a similar hospitalization rate (46% vs 40%) and RSV accounted for 12% of the infections. Coinfections were observed in age <2 years. In RSV patients, symptoms were similar across the two seasons. Conclusions: clinical presentation of RSV in the two post-COVID seasons suggests that the pathophysiology of the virus did not change across these two years. Further studies are needed to continuously monitor RSV, for supporting an effective prevention strategy.</p>
Supplementary Material for "How do seasonal and technical factors affect generation efficiency of photovoltaic power plants?"
<p>Supplementary material for the paper "How do seasonal and technical factors affect generation efficiency of photovoltaic power plants?".</p><p>This supplementary information provides:</p><ul><li>Table S1. Monthly solar irradiation for each plants</li><li>Table S2. Summary of input and output factors, and efficiency scores</li><li>Table S3. Rainy season of the northern Kyushu region</li><li>Table S4. Summary of parameters for the regression model</li><li>Table S5. Average monthly solar irradiation for three cities</li><li>Figure S1. Regression line for each of the PV power plants</li></ul>
Seasonal Standardized Precipitation Index (SPI) Data 2005-2020
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Seasonal Gross Primary Productivity (GPP) Imagery 2005-2020
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Seasonal Enhanced Vegetation Index (EVI) Imagery for Cimarron County, Oklahoma 2005-2020
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Data from: Snowmobile noise alters bird vocalization patterns during winter and pre-breeding season
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Sperm competition drives variation in testis size within and between breeding seasons in the gracile mouse opossum
<p>Data set on <i>Gracilinanus agilis</i> (Didelphimorphia: Didelphidae) with a reproducible script.</p><p> </p>
FIGURE 14. Hypsolebias antenori, UFPB 14900 in Molecular delimitation of the seasonal killifishes of the Hypsolebias antenori species group (Cyprinodontiformes, Rivulidae), with description of two new species from the Caatinga coastal basins, northeastern Brazil
FIGURE 14. Hypsolebias antenori, UFPB 14900, topotype, male, 34.7 mm SL: Brazil, Ceará, Limoeiro do Norte, rio Jaguaribe basin.
FIGURE 10. Bayesian inference phylogenetic reconstruction using the mitochondrial gene cox1 in Molecular delimitation of the seasonal killifishes of the Hypsolebias antenori species group (Cyprinodontiformes, Rivulidae), with description of two new species from the Caatinga coastal basins, northeastern Brazil
FIGURE 10. Bayesian inference phylogenetic reconstruction using the mitochondrial gene cox1 of the Hypsolebias antenori species-group. Vertical bars represent species complexes. Numbers next to nodes represent posterior probability values for the relevant nodes; values <0.5 are not shown.
FIGURE 6. Hypsolebias bonita new species, MZUSP 129608 in Molecular delimitation of the seasonal killifishes of the Hypsolebias antenori species group (Cyprinodontiformes, Rivulidae), with description of two new species from the Caatinga coastal basins, northeastern Brazil
FIGURE 6. Hypsolebias bonita new species, MZUSP 129608, female, paratype, 30.8 mm SL: Brazil, Rio Grande do Norte, Baraúna, Furna Feia National Park.
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.