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4,243 results for “seasonality”
FIG. 1 in Plasma Vitellogenin and Testosterone in Diamond-backed Terrapins (Malaclemys terrapin) during the Nesting Season in Coastal New Jersey
FIG. 1. Mean plastron length (6 SEM) of Diamond-backed Terrapins captured during early (June), middle (early July), and late (late July– early August) nesting season. Dashed lines within each box indicate mean of data, while solid lines inside the boxes indicate the median. Varying letters indicate significant differences (P, 0.05) between sampling periods. Mean and median overlap in some categories, and both lines may not be visible.
FIG. 2 in Plasma Vitellogenin and Testosterone in Diamond-backed Terrapins (Malaclemys terrapin) during the Nesting Season in Coastal New Jersey
FIG. 2. Mean circulating plasma (A) testosterone concentration (6 SEM) and (B) vitellogenin concentration (6 SEM) of Diamond-backed Terrapins captured during early (June), middle (early July), and late (late July–early August) nesting season. Dashed lines within each box indicate mean of data, while solid lines inside the boxes indicate the median. Varying letters indicate significant differences (P, 0.05) between sampling periods. Mean and median overlap in some categories, and both lines may not be visible.
Fig. 3 in Seasonality, Distribution, and Diversity of Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae, Aphodiinae and Geotrupidae: Geotrupinae) in Great Smoky Mountains National Park, USA
Fig. 3. Seasonality and abundance of all dung beetles trapped at either high- (> 1,200 m, black line) or low-elevation (<600 m, gray line) sites in Great Smoky Mountains National Park during 2017. Note that the high-elevation pattern is driven by one species, Aphodius fimetarius.
Fig. 2 in Seasonality, Distribution, and Diversity of Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae, Aphodiinae and Geotrupidae: Geotrupinae) in Great Smoky Mountains National Park, USA
Fig. 2. Seasonality and abundance for nine dung beetle species trapped in Great Smoky Mountains National Park during mid-April to late September 2017. Species varied in their seasonality and length of active period. The number of individuals trapped per species varies; for some species, very few individuals were recovered throughout the study so their observed seasonal distribution is likely to be less representative of the species' true active period than the species with increased sample size.
Data and script for "Characterizing Wet Season Precipitation in the Central Amazon Using a Mesoscale Convective System Tracking Algorithm"
<p>This is a placeholder for Data and script for "<strong>Characterizing Wet Season Precipitation in the Central Amazon Using a Mesoscale Convective System Tracking Algorithm</strong>" submitted to JGR-atmosphere.</p>
Fig. 2 in Seasonal Variations in the Assembly of Dung Beetles (Coleoptera: Geotrupidae and Scarabaeidae) Attracted to Macaque Feces in Temperate Forests in Japan
Fig. 2. Monthly capture rates (number of traps in which dung beetles were captured/total number of trap nights) of dung beetles on Kinkazan and Yakushima Islands, Japan. No sampling was done during June and September on Kinkazan, and during May on Yakushima. Numbers above the bars are the number of trap nights.
FIGURE 5 in Geographical And Seasonal Distributions Of The Seedeaters Sporophila Bouvreuil And Sporophila Pileata (Aves: Emberizidae)
FIGURE 5: Distribution map showing the specimen locations for Sporophila pileata during reproductive season (red circle) and overwinter season (yellow triangle). Green triangles are records with uncertain dates. Principal Biomes: Green: Atlantic Forest; Light yellow: Cerrado; Brown: Caatinga; Light gray: Amazon Forest.
FIGURE 1 in Geographical And Seasonal Distributions Of The Seedeaters Sporophila Bouvreuil And Sporophila Pileata (Aves: Emberizidae)
FIGURE 1: Distribution map showing the sighting or collection locations of Sporophila bouvreuil (yellow triangles) and S. pileata (blue circules).
FIGURE 3 in Geographical And Seasonal Distributions Of The Seedeaters Sporophila Bouvreuil And Sporophila Pileata (Aves: Emberizidae)
FIGURE 3: Distribution map showing the specimen locations for Sporophila bouvreuil during both, reproductive season (red circle) and overwinter season (yellow triangle). Principal Biomes: Green: Atlantic Forest; Light yellow: Cerrado; Brown: Caatinga; Light gray: Amazon Forest.
FIGURE 4 in Geographical And Seasonal Distributions Of The Seedeaters Sporophila Bouvreuil And Sporophila Pileata (Aves: Emberizidae)
FIGURE 4: Monthly distribution map for the records of Sporophila pileata by Biomes: dark gray: Atlantic Forest; light gray: Cerrado and Caatinga.
FIGURE 2 in Geographical And Seasonal Distributions Of The Seedeaters Sporophila Bouvreuil And Sporophila Pileata (Aves: Emberizidae)
FIGURE 2: Monthly distribution of records of Sporophila bouvreuil by the main Brazilian Biomes. Dark gray: Amazonia; light gray: Cerrado and Caatinga; medium gray: Atlantic Forest and southern grasslands.
Datasets and scripts for: flexible reproductive seasonality in African-dwelling papionins
<p>Please read the readme file before looking at scripts and datasets. </p>
JAR_Onion Chicken Chicken Soup Seasoning
<p>This datasheet presents the consumer preferences against onion chicken soup seasoning towards the top four brands in Indonesia evaluated using 3 scales JAR method.</p>
Pictures of the Typha stands during the 2020 field season
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Dataset: Meltwater discharge, suspended sediment and bedload flux, air temperature and precipitation at the Otemma Glacier terminus (2022 melt season)
<p>This dataset extends existing timeseries from the Otemma Glacier terminus on meltwater discharge (Müller and Miesen, 2022), suspended sediment and bedload flux (Mancini et al., 2023a), and air temperature and precipitation (Müller, 2022) into the 2022 melt season. The methodologies used for data collection were consistent with those used in previous years (see included technical report). Water and sediment flux measurements were performed at gauging station GS1 (aka Station 1) located in the main proglacial river, approx. 0.35 downstream of the glacier terminus (Müller and Miesen, 2022; Mancini et al., 2023a). Air temperature and precipitation data were collected at the "Glacier snout station" adjacent to GS1 (Müller, 2022). Data collection specifics for the 2022 melt season are provided in the <code>report2022.pdf</code> file.</p> <p><strong>DATA:</strong><br><code>river.csv</code> - water and sediment flux timeseries from GS1 with columns:<br>year: yyyy<br>frac_day: fractional day of the year<br>dt: measurement interval [mins]<br>Qw: meltwater discharge [m3/s]<br>Qss: suspended sediment flux [kg/s]<br>Qb: bedload flux [kg/s]<br>Q<em>xx</em>_lo or Q<em>xx</em>_hi: the lower and upper uncertainty bounds for Qw, Qss, Qb [kg/s]<br><em>Extended data for 2020 and 2021 melt seasons also included*</em></p> <p><code>weather.csv</code> - air temperature and precipitation timeseries spanning 18 Nov 2021 to 16 Aug 2022 from 'Glacier snout station' with columns:<br>datetime: local time (UTC+01 with DST) [yyyy-mm-dd hh:mm:ss] <br>temperature: air temperature [°C]<br>precipitation: liquid or solid precipitation [mm w.eq.]</p> <p><em>*Extended flux datasets are also provided for 2020 and 2021 given the difference in scope between Mancini et al. (2023b) and Jenkin et al. (2024, submitted for review). The datasets in Mancini et al. (2023b) have been post-processed for comparative analysis between two different gauging stations (upstream and downstream), while in this work, the most temporally complete timeseries of subglacial sediment export at the upstream gauging station was required. Therefore, the data provided here for 2020 and 2021 include: (i) a short extension of the timeseries, (ii) the removal of a suspended sediment clipping threshold, and (iii) filling of gaps in the 2020 suspended sediment timeseries with real measured data.</em></p>
FIGURE 1 in A new species of Anthurium Schott (Araceae) in a seasonal semideciduous forest in Espírito Santo State, Brazil
FIGURE 1. Anthurium cachoeirense Theófilo & Sakur. sp. nov. (A) habit, (B) proximal petiole in cross section, (C) mid petiole in cross section, (D) distal petiole in cross section, (E) proximal midrib in cross section, (F) mid midrib in cross section, (G) distal midrib in cross section, (H) inflorescence, (I) lateral tepal in front view, (J) anterior tepal in front view, (K) stamen in front view.
FIGURE 2 in A new species of Anthurium Schott (Araceae) in a seasonal semideciduous forest in Espírito Santo State, Brazil
FIGURE 2. Anthurium cachoeirense Theófilo & Sakur. sp. nov. (A) Habit, (B) Detail of the petiole and peduncule, (C) inflorescence.
Sequential migrations of diverse fish community provide seasonally prolonged and stable nutrient inputs to a river
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Dataset supporting "Predictable Patterns of Seasonal Atmospheric River Variability Over North America During Winter"
<p>A dataset containing selected outputs from real time forecasts and hindcasts produced by the Seamless System for Prediction and Earth System Research (SPEAR). Variables in the dataset include atmospheric river frequency, surface temperature, 500 hPa geopotential height and precipitation. The period covers 1991 through 2023 averaged seasonally in the months December through February. Forecasts initialized in a given month "MM" are stored in subdirectories and files with the indicator "iMM," where MM varies from 03 to 12 (March through December). A pair of python scripts demonstrating average predictability time analysis are also included. This data is associated with the study "Predictable Patterns of Seasonal Atmospheric River Variability over North America during Winter," by Clark et al. </p>
FIGURE 3 in Biogeographical identity of the Mesoamerican dominion with emphasis on seasonally dry tropical forests
FIGURE 3. Biogeographical regionalization and area relationships for the Mesoamerican dominion based Cluster analysis (Sorensen dissimilarity coefficient) of species of the seasonally dry tropical forests, on a grid of 0.5° × 0.5° grid-cells. Colours in the dendrogram correspond to those on the map and node labels correspond to the distance (dissimilarity) between clusters. (a) Caribbean sub-region, (b) Mesoamerican tropical rain forests, (c) Mesoamerican tropical dry forests.
ScienceDex guides
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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.