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4,243 results for “seasonality”
Data from: Thermal habitat fragmentation in stratified lakes induces resource waves that brook charr track across seasons
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Supporting data and code for: Phylogenetic identification of influenza virus candidates for seasonal vaccines
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Data from: Responses of a widespread pest insect to extreme high temperatures are stage-dependent and divergent among seasonal cohorts
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Seasonal activity and sexual selection in an urban dung beetle
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Data from: Seasonal assembly of nectar microbial communities across angiosperm plant species: Assessing contributions of climate and plant traits
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Data and code from: Fruit bat migration matches green wave in seasonal landscapes
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Seasonal roost selection of wild turkeys at their northern range edge
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Data from: Biomass yield, yield components and growing season phenotypic measurements of Miscanthus
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Fencing the flux: Seasonal trends, environmental drivers, and mitigation opportunities of methane emissions from farm dams
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Data from: Acoustic indices estimate breeding bird species richness with daily and seasonally variable effectiveness in lowland temperate Białowieża forest
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Effects of sampling seasons and locations on fish environmental DNA metabarcoding in dam reservoirs
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Data from: Seasonal acclimation of photosynthetic thermal tolerances in six woody tropical species along a thermal gradient
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Seasonality of floral resources in relation to bee activity in agroecosystems
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Data for: Fire season and time since fire determine AM fungal trait responses to fire management
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Clock-linked genes underlie seasonal migratory timing in a diurnal raptor
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Data from: Enriched East Asian oxygen isotope of precipitation indicates reduced summer seasonality in regional climate and westerlies
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Seasonally optimized calibrations improve low-cost sensor performance: Long-term field evaluation of PurpleAir sensors in urban and rural India
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Resprouting of 46 Florida scrub species in relation to fire intensities, burn season, and habitat
We measured responses in 46 species of resprouting plants of Florida scrub and related habitats at Archbold Biological Station following 15 single fires from 2006-2012. Resprouting species were grouped into seven species groups and four habitat types. Burns occurred during either the wet, dry or fire season as defined by Platt et al. 2015. Fire temperatures and residence times were recorded using HOBO data loggers at the base of each marked plant. Survival and growth measures were recorded pre- and for up to eight years post-fire. Fires had variable intensities with maximum temperatures ranging from 47-890 degrees C (mean 549 degrees C) and residence times ranging from 0-83 minutes (mean ten). Consumed plants experienced higher fire intensity than scorched plants, and residence times were higher during the fire season and with drier conditions. Across all species affected by fire, 86% of plants survived and resprouted post-fire. First year survival was unrelated to fire variables with high survival across all maximum temperatures and residence times. Burn season, habitat, and species group did not significantly affect survival. On average across all species, post-fire growth recovered to pre-fire heights within four years. RGR was significantly affected by species group and burn season. Herbs and palmettos recovered relatively rapidly. Recovery was slowest during the fire season, and fastest after burns conducted in the fire season. Resprouting perennial plants that dominate Florida scrub and surrounding habitats appear resilient to a wide range of fire intensities, as measured by maximum temperatures and residence times. Post-fire growth was rapid, with recovery of pre-fire heights in four years. Species groups varied in post-fire recovery rates. In these habitats, fire is critical to maintain the habitat structure for many animals and plants, including many rare species. The slower recovery of biomass for some species like oaks, results in the longer availability
Seasonal Foliar Respiration, Assimilation, Growth, Non-structural Carbohydrates and Water Potential data from Survival/Mortality (SUMO) Experiment, Piñon /Juniper Woodland, Los Alamos NM: 2013
These data were collected as part of an ecosystem temperature and precipitation manipulation experiment on mature piñon (Pinus edulis) and juniper (Juniperus monosperma) trees near Los Alamos, New Mexico, USA. The experiment used open-top chambers (OTCs) to manipulate temperature and under-canopy troughs to remove precipitation to test various hypotheses. The data presented herein contain measures of foliar carbon economy (respiration, assimilation, growth, non-structural carbohydrates) and water status (pre-dawn foliar water potential) in the growing season (April – October) of 2013.
Impacts of large-scale atmospheric-ocean variability on Alaskan fire season severity
Fire is the keystone disturbance in the Alaskan boreal forest and is highly influenced by summer weather patterns. Records from the last fifty-three years reveal high variability in the annual area burned in Alaska and corresponding high variability in weather occurring at multiple spatial and temporal scales. Here we use multiple linear regression (MLR) to systematically explore the relationships between weather variables and the annual area burned in Alaska. Variation in the seasonality of the atmospheric circulation-fire linkage is addressed through an evaluation of both the East Pacific teleconnection field and a Pacific Decadal Oscillation index keyed to an annual fire index. In the MLR, seven explanatory variables and an interaction term collectively explain 79% of the variability in the natural logarithm of the number of hectares burned annually by lightning-caused fires in Alaska from 1950-2003. Average June temperature alone explains one-third of the variability in the logarithm of annual area burned. The results of this work suggest that the Pacific Decadal Oscillation and the East Pacific teleconnection indices can be useful in determining a priori an estimate of the number of hectares that will burn in an upcoming season. This information also provides insight into the link between ocean-atmosphere interactions and the fire disturbance regime in Alaska.
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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.