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8,119 results for “species distribution”
Fig. 2 in Phylogeography and potential glacial refugia of terrestrial gastropod Faustina faustina (Rossmässler, 1835) (Gastropoda: Eupulmonata: Helicidae) inferred from molecular data and species distribution models
Fig. 2 Haplotype distribution for nuclear markers: ITS-2 (left) and 28S rRNA (right)
Neotropical leaf-litter beetle genus Motonerus (Coleoptera: Hydrophilidae): new species, distribution data and description of third instar larva
<p>Numerous new material of the genus <em>Motonerus </em>Hansen, 1989 (Coleoptera: Hydrophilidae: Sphaeridiinae) was examined over the past decade, resulting in the discovery of several undescribed species as well as new distributional records for most of the previously described species. Three species are here described as new: <em>Motonerus explanatus </em>sp. nov. (Panama), <em>M. inca </em>sp. nov. (Venezuela, Ecuador, Peru, Bolivia) and <em>M. sofiae </em>sp. nov. (Peru). New country records are provided for <em>M. depressus </em>Fikáček & Short (new for Venezuela, Ecuador, Peru and Bolivia), <em>M. hanseni </em>Fikáček & Short (new for Panama) and <em>M. problematicus </em>Fikáček & Short (new for Panama). An updated identification key and distributional maps are provided for all species, along with complete occurrence data in a DarwinCore formatted file. Potential distribution of the genus is modelled using the maximum entropy approach. Wing morphology is examined in detail, which revealed most species are macropterous, with <em>M. andersoni </em>Fikáček & Short being brachypterous, and <em>M. apterus </em>Fikáček & Short, <em>M. oosternoides </em>Fikáček & Short and <em>M. explanatus </em>sp. nov. micropterous. The third instar of the putative larva of <em>M. obscurus </em>Hansen is briefly described based on larvae collected in association with adults.</p>
Datasets associated with: Comparing temperature data sources for use in species distribution models: From in-situ logging to remote sensing. Global Ecology and Biogeography
<p>Data associated with the paper 'Comparing temperature data sources for use in species distribution models: From in-situ logging to remote sensing. Global Ecology and Biogeography' by Lembrechts JJ et al., published in Global Ecology and Biogeography.</p> <p>Contains a dataset containing all extracted and measured temperature variables for all 106 measurement plots (climatedata), as well as the climate and species data used in the Species Distribution Models (SDMs). </p> <p>For details on the content of the table, see the readme-file, for details on methodology, see the original paper. </p>
РИС. 10. Относительная ваЖность предикторов для моделей распространения Brephulopsis.cylindrica. in Land snails Brephulopsis cylindrica and Xeropicta derbentina (Gastropoda: Stylommatophora): case study of invasive species distribution modelling
РИС. 10. Относительная ваЖность предикторов для моделей распространения Brephulopsis.cylindrica.
РИС. 7. Пригодность местообитаний для Xeropicta derbentina согласно ансамблевой модели. in Land snails Brephulopsis cylindrica and Xeropicta derbentina (Gastropoda: Stylommatophora): case study of invasive species distribution modelling
РИС. 7. Пригодность местообитаний для Xeropicta derbentina согласно ансамблевой модели.
Figure 1 in New distributional record of a tetraodontid fish, Canthigaster petersii (Bianconi, 1854), from Tamil Nadu coast, India with a note on Canthigaster species recorded from Indian waters
Figure 1. Canthigaster petersii collected from Thoothukudi, Tamil Nadu, India.
Figure 1 in Distribution and diversity of intertidal marine faunal species along with Maharashtra and Goa coast, India
Figure 1. Map showing sampling locations along the Maharashtra and Goa.
Text-fig. 3. Distribution of examined species. in Some Finds Of Charophytes From East-Africa (Zambia, Tanzania, Kenya And Somalia)
Text-fig. 3. Distribution of examined species.
Text-fig. 8. Distribution of examined species. in Some Finds Of Charophytes From East-Africa (Zambia, Tanzania, Kenya And Somalia)
Text-fig. 8. Distribution of examined species.
Figure 2 in Distribution of hard tick species in Ankara, Turkey
Figure 2. Temperature and humidity of Ankara during the period of study.
Figure 1 in Distribution of hard tick species in Ankara, Turkey
Figure 1. The locations of tick sampling districts within Ankara Province, Turkey.
Figure 1 in Spatiotemporal distribution, abundance, and species-environment relationships of Scyphozoa (Cnidaria) species in Hisarönü, Marmaris, and Fethiye bays (Muğla, Turkey
Figure 1. Sampling stations on the coast of Muğla.
Sequencing data from: Divergent lineages in a young species: the case of Datilillo (Yucca valida), a broadly distributed plant from the Baja California Peninsula
<div> <div> <p><strong>Premise: </strong>Globally, barriers triggered by climatic changes have caused habitat fragmentation and population allopatric divergence. Across North America, oscillations during the Quaternary have played important roles in the distribution of wildlife. Notably, diverse plant species from the Baja California Peninsula in western North America, isolated during the Pleistocene glacial–interglacial cycles, exhibit strong genetic structure and highly concordant divergent lineages across their ranges. A representative plant genus of the peninsula is <em>Yucca</em>, with <em>Y. valida</em> having the widest range. Although a dominant species, it has an extensive distribution discontinuity between 26° N and 27° N, suggesting restricted gene flow. Moreover, historical distribution models indicate the absence of an area with suitable conditions for the species during the Last Interglacial, making it an interesting model for studying genetic divergence.<br>Methods: We assembled 4411 SNPs from 147 plants of <em>Y. valida</em> throughout its range to examine its phylogeography to identify the number of genetic lineages, quantify their genetic differentiation, reconstruct their demographic history and estimate the age of the species.<br>Results: Three allopatric lineages were identified based on the SNPs. Our analyses support that genetic drift is the driver of genetic differentiation among these lineages. We estimated an age of less than 1 million years for the common ancestor of <em>Y. valida</em> and its sister species.<br>Conclusions: Habitat fragmentation caused by climatic changes, low dispersal, and an extensive geographical range gap acted as cumulative mechanisms leading to allopatric divergence in <em>Y. valida</em>.</p> </div> </div>
Figure 1 in Spatial distribution of the epigeic species of earthworms Dendrobaena octaedra and D. attemsi (Oligochaeta: Lumbricidae) in the forest belt of the northwestern Caucasus
Figure 1. Locations of the earthworms of northwestern Caucasus.
Figure 93 in Review of the genus Neomardara Hering, 1926 with descriptions of two new species and updated information on the distribution of the genus (Lepidoptera: Erebidae: Lymantriinae)
Figure 93. Distribution of the genus Neomardara.
Figure 8 in Paracossulus thrips (Hübner, 1818) (Cossidae) and Lignyoptera fumidaria (Hübner, 1825) (Geometridae) - two Lepidoptera genera new for Serbia with a review of the distribution of these two Habitats Directive species in the Balkan Peninsula
Figure 8. Habitat of Lignyoptera fumidaria at Vidlič Mt., above Krupac Village, 525 m.
Figure 3 in Paracossulus thrips (Hübner, 1818) (Cossidae) and Lignyoptera fumidaria (Hübner, 1825) (Geometridae) - two Lepidoptera genera new for Serbia with a review of the distribution of these two Habitats Directive species in the Balkan Peninsula
Figure 3. Habitat of Paracossulus thrips at Chepan Hill, below Petrovski Krust Summit, 1167 m.
Figure 2 in Paracossulus thrips (Hübner, 1818) (Cossidae) and Lignyoptera fumidaria (Hübner, 1825) (Geometridae) - two Lepidoptera genera new for Serbia with a review of the distribution of these two Habitats Directive species in the Balkan Peninsula
Figure 2. Paracossulus thrips male, between Ponor and Bezden Villages, 912 m.
Figure 1 in Paracossulus thrips (Hübner, 1818) (Cossidae) and Lignyoptera fumidaria (Hübner, 1825) (Geometridae) - two Lepidoptera genera new for Serbia with a review of the distribution of these two Habitats Directive species in the Balkan Peninsula
Figure 1. Habitat of Paracossulus thrips between Ponor and Bezden Villages, 912 m.
Figure 5 in Paracossulus thrips (Hübner, 1818) (Cossidae) and Lignyoptera fumidaria (Hübner, 1825) (Geometridae) - two Lepidoptera genera new for Serbia with a review of the distribution of these two Habitats Directive species in the Balkan Peninsula
Figure 5. Habitat of Paracossulus thrips at Vidlič Mt., above Gulenovci Village, 967 m.
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.