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2,581 results for “amphibians”
FIGURE 2 in Amphibians and reptiles in North Sweden: distribution, habitat affinities, and abundance (Classes: Amphibia and Reptilia)
FIGURE 2. Distribution of Lissotriton vulgaris in North Sweden. Known continuous range is colored. Possibly disjunct occurrences are denoted by filled circles and offshore records by triangles.
FIGURE 6 in Amphibians and reptiles in North Sweden: distribution, habitat affinities, and abundance (Classes: Amphibia and Reptilia)
FIGURE 6. Distribution of Rana arvalis in North Sweden. Possibly disjunct records in Härjedalen and Lule lappmark are denoted by a filled circle. Question marks indicate areas where the shown range limit to the west and the north may be too conservative. There is not any documented recent occurrence on offshore islands in the Baltic.
FIGURE 1 in Amphibians and reptiles in North Sweden: distribution, habitat affinities, and abundance (Classes: Amphibia and Reptilia)
FIGURE 1. Faunistic provinces in North Sweden and their names. Dashed lines are borders between provinces and solid lines inland show the national borders with Norway (west) and Finland (east). Areas southeast of the dark green line are in the Southern Boreal biotic region. Areas between the dark green and light green lines are in the Middle Boreal biotic region. Areas between the light green and blue lines are in the Northern Boreal biotic region. Areas west and northwest of the blue line are in the Alpine biotic region, which is further subdivided into life zones based on altitude (see Methods). Map template by Nils Wallin, Kristianstad University. Inset map shows location and extent of North Sweden in Europe.
FIGURE 5 in Amphibians and reptiles in North Sweden: distribution, habitat affinities, and abundance (Classes: Amphibia and Reptilia)
FIGURE 5. Distribution of Rana temporaria in North Sweden. Although the entire Scandic Mountain range is colored, the species is absent from the High-Alpine zone in the Alpine region (see Figure 1 for outline of the latter). In other words, the species is missing from areas higher than 1400 m in Jämtland, decreasing to 1000 m in Torne lappmark. Colored parts of the Baltic are areas with widespread occurrence on offshore islands.
Data from: Individual contribution to niche expansion in amphibians: A test of the niche variation hypothesis
<p>The niche variation hypothesis (NVH) suggests that populations released from competition are able to expand their realized ecological niche (Van valen 1965; Bolnick et al. 2007). This increase in total niche width (TNW) can arise by i) increasing heterogeneity among individuals' niche through individual specialization, i.e. inter-individual variation in resource use, (IS – Bolnick et al., 2002; 2003) occurring when different individuals of a population use a subset of the population's resource pool, or ii) by expanding the niche of all individuals within the population (Bolnick et al. 2007). Although several morphological and phenotypical studies have confuted the NVH (e.g. Meiri et al. 2005), there is generally strong support for this hypothesis when behavioural or ecological traits are considered, and in particular when the trophic niche is measured at the individual level (Bolnick et al. 2007; Maldonado et al., 2017). In this study our primary aim is to corroborate the NVH, providing robust evidence for a significant and positive relationship between population TNW and IS in amphibian populations, at a global scale.</p>
Fungal infection alters the selection, dispersal, and drift processes structuring the amphibian skin microbiome
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Data from: Asynchrony, density dependence, and persistence in an amphibian
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Data from: Decision making for mitigating wildlife diseases: from theory to practice for an emerging fungal pathogen of amphibians
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Dispersal without drivers: Intrinsic and extrinsic variables have no impact on movement distances in a terrestrial amphibian
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Data from: Climate structuring of Batrachochytrium dendrobatidis infection in the threatened amphibians of the northern Western Ghats, India
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Data from: Rapid diversification and time explain amphibian richness at different scales in the Tropical Andes, Earth's most biodiverse hotspot
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Data from: Larval environment alters amphibian immune defenses differentially across life stages and populations
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Data from: Low-load pathogen spillover predicts shifts in skin microbiome and survival of a terrestrial-breeding amphibian
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Data from: Characterization of the first Batrachochytrium dendrobatidis isolate from the Colombian Andes, an amphibian biodiversity hotspot
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Data from: Microreserves are an important tool for amphibian conservation
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Data from: Fragile coexistence of a global chytrid pathogen with amphibian populations is mediated by environment and demography
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Data from: Carotenoids and amphibians: effects on life history and susceptibility to the infectious pathogen, Batrachochytrium dendrobatidis
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Data from: Globally invasive genotypes of the amphibian chytrid outcompete an enzootic lineage in coinfections
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Area of habitat maps for amphibians and reptiles of Italy
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Localized carry-over effects of pond drying on survival, growth, and pathogen defenses in amphibians
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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)
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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.