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332 results for “environmental conditions”
Figure 10 from: Borisov RR, Chertoprud ES, Palatov DM, Novichkova AA (2021) Variability in macrozoobenthic assemblages along a gradient of environmental conditions in the stream water of karst caves (Lower Shakuranskaya Cave, western Caucasus). Subterranean Biology 39: 107-127. https://doi.org/10.3897/subtbiol.39.65733
Figure 10 The CCA ordination of hydrobionts species from Nizhnyaya Shakuranskaya Cave. Black points – stygobionts, blue points – stygophiles, green points – stygoxenes. Abbreviations: A gut – A. guttatus, B gem – B. gemellus, C hor – C. horatieformis, C schak – C. schakuranica, C shad – C. shadini, C sp – Caucasopsis sp., Ch abch – C. abchazica, Cn sp – Cnetha sp., E sp – Elmis sp., D sub – D. submaculata, D tau – D. taurocaucasica, Dend sp – Dendrocoelum sp., E ljov – E. cf. ljovuschkini, Es sp – Eisenia sp., E palp – E. palpatus, E zimm – E. zimmermanni, G kom – G. cf. komareki, H gor – H. gordioides, H sang – H. sanguisuga, L col – L. colchicus, L inc – L. incanus, L sp – Leuctra sp., M sp – Macropelopia sp., N abl – N. cf. ablaskiri, N iner – N. inermis, N magn – N. magnus, N mart – N. martynovia, O sp – Odeles sp., P birst – P. birsteini, P lat – P. latissima, Par sp – Parametriocnemus sp., P wern – P. werneri, R som – R. somcheticus, Rh sp – Rhynchelmis sp., S cach – S. cachetica, S clav – S. clavatus, Sty sp – Stylodrilus sp., T cauc – T. caucasica, T valv – T. valvatus, X falc – X. falcirostris, X ost – X. osterloffi, Z yak – Z. yakovi.
Figure 9 from: Borisov RR, Chertoprud ES, Palatov DM, Novichkova AA (2021) Variability in macrozoobenthic assemblages along a gradient of environmental conditions in the stream water of karst caves (Lower Shakuranskaya Cave, western Caucasus). Subterranean Biology 39: 107-127. https://doi.org/10.3897/subtbiol.39.65733
Figure 9 The two-dimensional nMDS ordination of the investigated cave sites, based on Bray–Curtis similarities (stress = 0.09) and factored with luminosity: 0 – 0 lx, 1 – 0.07–2.7 lx, 2 – 13.17 lx, 3 – 555 lx. Dots are labeled: first number – season/year of research: 1 – winter 2018, 2 – spring 2018, 3 – autumn 2019; second number – no of sampling station.
Figure 2 in Amphipod diversity at three Tunisian lagoon complexes in relation to environmental conditions
Figure 2. Sampling method in the supralittoral zone of different stations; (1, 2, 3, 4: quadrats).
Figure 1 in Relationship between environmental conditions and hostseeking activity of Ochlerotatus albifasciatus (Diptera: Culicidae) in an agroecosystem and in an urban area in Chubut, Central Patagonia, Argentina
Figure 1. Absolute frequencies of Ochlerotatus albifasciatus for the catches in Sarmiento Valley.
Historic and recent trends of cyanobacterial harmful algal blooms and environmental conditions in Clear Lake, California: a 70-year perspective
<p><span>Clear Lake is the largest, natural lake in northern California, USA with many beneficial uses but also substantive environmental issues. The lake has a long history of water quality problems including mercury contamination, pesticide usage, invasive species, and high rates of primary production. In recent years, an increase in cyanobacterial harmful algal blooms (cyanoHABs) have been documented in the lake, adding to the environmental issues faced by aquatic species present in the lake, and the local community. Extensive observations of various physical, chemical, and biological parameters in Clear Lake began in the mid-1900s. The most pertinent of these datasets and findings have been reviewed and analyzed with the intent of improving our understanding of the causes and drivers of cyanoHABs, toxin production, and identifying data gaps. The findings are published in Smith et al. (2023) at DOI: </span><a href="https://doi.org/10.1525/elementa.2022.00115"><span>https://doi.org/10.1525/elementa.2022.00115</span></a><span> </span><span>Funding for this work, including data acquisition, database assembly and manuscript preparation was provided by the Big Valley Band of Pomo Indians Environmental Protection Agency and the Elem Indian Colony Environmental Protection Agency.</span></p> <p><span>The dataset assembled as a part of Smith et al. (2023) is posted here. It is the master database of 50 lake and climatological parameters (~217,000 individual data points) from the period of 1920 to mid-2020 of environmental parameters within and surrounding the lake. This database and analysis builds upon the efforts of the Big Valley Band of Pomo Indians Environmental Protection Agency to identify the Clear Lake monitoring entities and assemble the available water quality data. More information about this effort, as well as data visualizations can be found here: </span><a href="https://www.bvrancheria.com/water-quality-dashboard"><span>https://www.bvrancheria.com/water-quality-dashboard</span></a><span> </span></p> <p><span>In 2014, two Tribal Nations, the Big Valley Band of Pomo Indians, and the Elem Indian Colony, developed the Clear Lake Cyanobacteria Monitoring Program (</span><a href="https://www.bvrancheria.com/clearlakecyanotoxins"><span>https://www.bvrancheria.com/clearlakecyanotoxins</span></a><span>) which includes water quality parameters along with cyanobacterial-specific parameters such as cyanotoxins, phycocyanin, and cyanobacterial genera identifications via microscopy. The vast majority of available cyanotoxin data, which are presented in this database, resulted from these efforts.</span></p> <p><span>Basic climatological and hydrologic data have been collected near and around Clear Lake as early as the 1910s by the U.S. Geological Survey (USGS) and National Oceanic and Atmospheric Administration (NOAA). Multiple agencies have conducted both routine and intermittent monitoring of chemical and physical parameters on Clear Lake since the 1950s, although routine and consistent collection of biological monitoring data began more recently within the last two decades. The California Department of Water Resources, the California State Water Resource Control Board, and Lake County Vector Control District have monitored several water quality parameters beginning in the 1950s. </span></p>
Environmental conditions and vehicle disturbance influence stress behaviours in a working Harris's hawk (Parabuteo unicinctus)
<p>Data set - Environmental conditions and vehicle disturbance influence stress behaviours in a working Harris’s hawk (<em>Parabuteo unicinctus</em>)</p>
FIGURE 4 in First record of Amorphinopsis atlantica (Porifera: Demospongiae: Halicondriidae) in the Paraguaçu River estuary: Is its presence an invasion or an adaptation to changing environmental conditions?
FIGURE 4. Skeleton architecture thick section of Amorphinopsis atlantica.
FIGURE 3 in First record of Amorphinopsis atlantica (Porifera: Demospongiae: Halicondriidae) in the Paraguaçu River estuary: Is its presence an invasion or an adaptation to changing environmental conditions?
FIGURE 3. Specimen of Amorphinopsis atlantica from Iguape Bay. White scale bar = 5 cm.
Data from: The impact of reproductive investment and early-life environmental conditions on senescence: support for the disposable soma hypothesis
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Data from: Estimating fish abundance and biomass from eDNA concentrations: variability among capture methods and environmental conditions
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Data from: Predation selects for smaller eye size in a vertebrate: effects of environmental conditions and sex
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Data from: Multimodal cues improve prey localization under complex environmental conditions
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Data from: Thermal biology of flight in a butterfly: genotype, flight metabolism, and environmental conditions
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Data from: Environmental conditions affect spatial genetic structures and dispersal patterns in a solitary rodent
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Data from: Sex differences in adult mortality rate mediated by early-life environmental conditions
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Environmental conditions but not nest composition affect reproductive success in an urban bird
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Data from: The potential for fungal biopesticides to reduce malaria transmission under diverse environmental conditions
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Influence of biological and environmental conditions on winter mortality risk of a northern ungulate: evidence for a late-winter survival bottleneck
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Data from: Do glucocorticoids predict fitness? Linking environmental conditions, corticosterone and reproductive success in the blue tit, Cyanistes caeruleus
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Data for: Larval environmental conditions influence plasticity in resource use by adults in the burying beetle, Nicrophorus vespilloides
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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.