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129 results for “Pyrenees”
Sedimentary ancient DNA (sedaDNA) from Tramacastilla Lake (Central Pyrenees, Spain)
<p>Here is the data used in Julián-Posada et al., 2024 for sedaDNA analysis in a Pyrenean lacustrine sequence (Tramacastilla lake, 1682 m a.s.l.)</p>
Giant Quartz Veins of the Pyrenees Database - Vein Width Dataset (MSEcxel Spreadsheet)
<p>The <strong>GIVEPY Database</strong> (GIant quartz VEins of the PYrenees) is an interactive tool that incorporates information of the geometry, distribution, statistics, and host rock types of 741 giant quartz veins that crop out in the fold and thrust belt of the Pyrenees. The GIVEPY Database follows the <strong>FAIR </strong>principles of data management (Findable, Accessible, Interoperable and Reusable) and is available at: <a href="https://givepy.info/">https://givepy.info/</a>.</p> <p>The Full Dataset consists of a ESRI Shapefile where the giant quartz veins of the Pyrenees are mapped following polygon superposition rules. The <em>.shp</em> file can be opened in any Geographic Information System (GIS) environment. We recommend the use of the <strong>QGIS</strong> software since it is open access and continuously updated.</p> <p>The original CRS is:</p> <p>EPSG: 32631 / WGS1984 - UTM Z31N</p> <p>Do not hesitate to contact Eloi González-Esvertit if you have any questions: e.gonzalez-esvertit@ub.edu</p>
Distribution. Pyrenees, Alps, Balkans, Greece, Anatolia, Caucasus, SE Syria, and W Iran; also Crete and Corsica. in Vespertilionidae
Distribution. Pyrenees, Alps, Balkans, Greece, Anatolia, Caucasus, SE Syria, and W Iran; also Crete and Corsica.
Distribution. Endemic to Iberian Peninsula where widespread in NW & W but absent in most of the E, Pyrenees, and Ebro Basin, also present on Cortegada (Galicia) tidal island. in Talpidae
Distribution. Endemic to Iberian Peninsula where widespread in NW & W but absent in most of the E, Pyrenees, and Ebro Basin, also present on Cortegada (Galicia) tidal island.
Distribution. France (W & S of Loire River) and N & NE Iberian Peninsula (E Cantabrian coast and Mts, N Iberian System Mts, N Ebro Basin, Pyrenees, and N Catalonia). in Talpidae
Distribution. France (W & S of Loire River) and N & NE Iberian Peninsula (E Cantabrian coast and Mts, N Iberian System Mts, N Ebro Basin, Pyrenees, and N Catalonia).
Distribution. France (roughly W of Massif Central and S of Loire River), Andorra, and N & NE Spain (from E Cantabria to E Pyrenees). in Cricetidae
Distribution. France (roughly W of Massif Central and S of Loire River), Andorra, and N & NE Spain (from E Cantabria to E Pyrenees).
Distribution. Northern Iberian Peninsula, discontinuously from Galicia and N Portugal (N of upper Mondego River) E to both sides of the Pyrenees, also in W Central System and N Iberian System Mts; two small isolated populations in Zézere River (Portugal) and Mayor River (Vizcaya, Spain). in Talpidae
Distribution. Northern Iberian Peninsula, discontinuously from Galicia and N Portugal (N of upper Mondego River) E to both sides of the Pyrenees, also in W Central System and N Iberian System Mts; two small isolated populations in Zézere River (Portugal) and Mayor River (Vizcaya, Spain).
Subspecies and Distribution. M. m. marmota Linnaeus, 1758 — Alps in Germany, Austria, Switzerland, France, and Italy. M. m. latirostris Kratochvil, 1961 — High Tatra Mts of Slovakia and Poland. Nominate subspecies reintroduced to Romania (Carpathian Mts) and Slovenia (Julian Alps), and introduced into the Black Forest (Germany), the Massif Central, Jura, and Vosgues (France), the Pyrenees (France, Spain, and Andorra), E Austria, Apennine Mts (Italy), N Serbia, Montenegro. in Sciuridae
Subspecies and Distribution. M. m. marmota Linnaeus, 1758 — Alps in Germany, Austria, Switzerland, France, and Italy. M. m. latirostris Kratochvil, 1961 — High Tatra Mts of Slovakia and Poland. Nominate subspecies reintroduced to Romania (Carpathian Mts) and Slovenia (Julian Alps), and introduced into the Black Forest (Germany), the Massif Central, Jura, and Vosgues (France), the Pyrenees (France, Spain, and Andorra), E Austria, Apennine Mts (Italy), N Serbia, Montenegro.
FIGURE 1 in Epibionts on Hydraena species (Coleoptera: Hydraenidae) from high mountain rivers of Pyrenees (Ordesa and Monte Perdido National Park), with the description of a new species
FIGURE 1. Study area. Location of Ordesa y Monte Perdido National Park (circle) in the Ebro basin (EB) and distribution of the sampling points in the Arazas, Bellós and Yaga rivers (see Table 1 for additional information).
FIGURES 5 in Epibionts on Hydraena species (Coleoptera: Hydraenidae) from high mountain rivers of Pyrenees (Ordesa and Monte Perdido National Park), with the description of a new species
FIGURES 5. Hydraena delia with two individuals of Discophrya ordesae sp. n. attached in the ventral sclerites (circle).
FIGURE 4 in Epibionts on Hydraena species (Coleoptera: Hydraenidae) from high mountain rivers of Pyrenees (Ordesa and Monte Perdido National Park), with the description of a new species
FIGURE 4. Several specimens of Tokophrya cf. stenostyla attached on Hydraena elitra. Nuclei, stalks and tentacles are observed.
FIGURE 3 in Epibionts on Hydraena species (Coleoptera: Hydraenidae) from high mountain rivers of Pyrenees (Ordesa and Monte Perdido National Park), with the description of a new species
FIGURE 3. Tokophrya cf. stenostyla. An individual showing the stalk and its junction with the body, and the tentacles.
FIGURE 6 in Epibionts on Hydraena species (Coleoptera: Hydraenidae) from high mountain rivers of Pyrenees (Ordesa and Monte Perdido National Park), with the description of a new species
FIGURE 6. Scheme of Discophrya ordesae sp. n.; ma: macronucleus, mi: micronucleus, s: stalk, t: tentacles.
FIGURE 11 in Epibionts on Hydraena species (Coleoptera: Hydraenidae) from high mountain rivers of Pyrenees (Ordesa and Monte Perdido National Park), with the description of a new species
FIGURE 11. Discophrya ordesae sp. n. Detail of the macronucleus and of the double edge of the anterior area of the body.
FIGURE 2 in Epibionts on Hydraena species (Coleoptera: Hydraenidae) from high mountain rivers of Pyrenees (Ordesa and Monte Perdido National Park), with the description of a new species
FIGURE 2. Scheme of Tokophrya cf. stenostyla, t: tentacles, ma: macronucleus, mi: micronucleus, s: stalk.
FIGURE 12 in Epibionts on Hydraena species (Coleoptera: Hydraenidae) from high mountain rivers of Pyrenees (Ordesa and Monte Perdido National Park), with the description of a new species
FIGURE 12. Discophrya ordesae sp. n. A ciliate showing the growth lines of the lorica, and inside the external morphology of the future swarmer and their kineties on the brood pouch. Square: detail of swarmer, c: cilia.
Vineyard and Apple Orchard Suitability Maps for Mountainous Areas (Southern Pyrenees and Pre-Pyrenees)
<p>The manuscript related to this dataset can be consulted trought:</p> <p>The layers available in this dataset are in EPSG: WGS84.</p> <ul> <li><strong>Indicators</strong> <ul> <li><strong>BBL.tif </strong>- Hydrothermic index of Branas, Bernon, Levadoux (ºC*mm)</li> <li><strong>CDls.tif </strong>- Cold Days late spring (days)</li> <li><strong>FRea.tif </strong>- Frost Risk early autumn (days)</li> <li><strong>FRls_vineyard.tif </strong>- Frost Risk late spring vineyard (days)</li> <li><strong>FRls_apple.tif </strong>- Frost Risk late spring apple orchard (days)</li> <li><strong>GDD.tif</strong> - Growing Degree Days (ºC)</li> <li><strong>GSP.tif </strong>- Growing Season Precipitation (mm)</li> <li><strong>GST.tif </strong>- Growing Season Temperature (ºC)</li> <li><strong>Ha</strong><strong>.tif </strong>- Hail (days)</li> <li><strong>HI</strong><strong>.tif </strong>- Heliothermal Index of Huglin (ºC)</li> <li><strong>NCIr</strong><strong>.tif </strong>- Night Cool Index ripenning (ºC)</li> <li><strong>NHN.tif</strong> - Need Hydric Needs (mm/year)</li> <li><strong>SHDr.tif </strong>- Stressful Hot Days ripening (days)</li> <li><strong>WI.tif </strong>- Winkler Index (ºC)</li> <li><strong>CaCO3.tif </strong>- Calcium Carbonates (%)</li> <li><strong>CEC.tif </strong>- Cation Exchange Capacity (cmol/kg)</li> <li><strong>pH.tif </strong>- pH</li> <li><strong>SD.tif </strong>- Soil Depth (cm)</li> <li><strong>TAW.tif</strong> - Total Available Water (mm)</li> <li><strong>Te.tif</strong> - Texture</li> <li><strong>TOC.tif </strong>- Topsoil Organic Carbon (%)</li> <li><strong>As.tif </strong>- Aspect</li> <li><strong>GSR.tif </strong>- Growing season Solar Radiation (kWh/m2)</li> <li><strong>Sl.tif </strong>- Slope (%)</li> </ul> </li> </ul> <ul> <li><strong>Indicators_Suitability</strong> <ul> <li><strong>BBL_suitability.tif </strong>- Hydrothermic index of Branas, Bernon, Levadoux (ºC*mm)</li> <li><strong>CDls_suitability.tif </strong>- Cold Days late spring (days)</li> <li><strong>FRea_suitability.tif </strong>- Frost Risk early autumn (days)</li> <li><strong>FRls_vineyard_suitability.tif </strong>- Frost Risk late spring vineyard (days)</li> <li><strong>FRls_apple_suitability.tif </strong>- Frost Risk late spring apple orchard (days)</li> <li><strong>GDD_suitability.tif</strong> - Growing Degree Days (ºC)</li> <li><strong>GSP_suitability.tif </strong>- Growing Season Precipitation (mm)</li> <li><strong>GST_suitability.tif </strong>- Growing Season Temperature (ºC)</li> <li><strong>Ha_suitability</strong><strong>.tif </strong>- Hail (days)</li> <li><strong>HI_suitability</strong><strong>.tif </strong>- Heliothermal Index of Huglin (ºC)</li> <li><strong>NCIr_suitability</strong><strong>.tif </strong>- Night Cool Index ripenning (ºC)</li> <li><strong>NHN_suitability.tif</strong> - Need Hydric Needs (mm/year)</li> <li><strong>SHDr_suitability.tif </strong>- Stressful Hot Days ripening (days)</li> <li><strong>WI_suitabilitytif</strong> - Winkler Index (ºC)</li> <li><strong>CaCO3_suitability.tif </strong>- Calcium Carbonates (%)</li> <li><strong>CEC_suitability.tif </strong>- Cation Exchange Capacity (cmol/kg)</li> <li><strong>pH_suitability.tif </strong>- pH</li> <li><strong>SD_suitability.tif </strong>- Soil Depth (cm)</li> <li><strong>TAW_suitability.tif</strong> - Total Available Water (mm)</li> <li><strong>Te_suitability.tif</strong> - Texture</li> <li><strong>TOC_suitability.tif </strong>- Topsoil Organic Carbon (%)</li> <li><strong>As_suitability.tif </strong>- Aspect</li> <li><strong>GSR_suitability.tif </strong>- Growing season Solar Radiation (kWh/m2)</li> <li><strong>Sl_suitability.tif </strong>- Slope (%)</li> </ul> </li> </ul> <ul> <li><strong>Suitability</strong> <ul> <li><strong>Vineyard_suitability.tif </strong>- Vineyard Suitability map (Minumum Suitability 0 - 100 Maximum Suitability)</li> <li><strong>Apple_orchard_suitability.tif </strong>- Apple Orchard Suitability map (Minumum Suitability 0 - 100 Maximum Suitability) </li> </ul> </li> </ul>
FIGURE 3. Androsace halleri subsp. nuria. a in Androsace halleri subsp. nuria Schönsw. & Schneew. (Primulaceae), a new taxon from the eastern Pyrenees (Spain, France)
FIGURE 3. Androsace halleri subsp. nuria. a, habit; b, bract; c, young capsule; d, flower; e, scape; f, leaf apex (upper side); g, hooked hairs on leaf margin; h, rosette leaves. Drawing by M. Magauer.
FIGURE 2 in Androsace halleri subsp. nuria Schönsw. & Schneew. (Primulaceae), a new taxon from the eastern Pyrenees (Spain, France)
FIGURE 2. Comparison of morphological variation between populations of Androsace halleri from Massif Central and Vosges (France) and populations from the Pyrenees. Boxes define 25 and 75 percentiles; horizontal lines indicate medians, whiskers are from 5 to 95 percentiles, and circles indicate extreme values. The groups are different at p <0.001 (T-test) for both characters. Left, ratio between leaf length and leaf width. Right, length of scapes during anthesis in mm.
FIGURE 1 in Androsace halleri subsp. nuria Schönsw. & Schneew. (Primulaceae), a new taxon from the eastern Pyrenees (Spain, France)
FIGURE 1. Phylogenetic relationships of A. halleri and its closest relatives. Shown is a neighbour joining analysis based on Nei-Li distances of the dataset presented in Dixon & al. (2008; the distantly related A. adfinis s. l. and A. cantabrica (Losa & P.Monts.) Kress (1981: 2) were excluded). The tree was rooted with A. hedraeantha Grisebach (1844: 3). A triangle's height reflects the intra-taxon genetic differentiation, a triangle's width is proportional to the number of individuals analysed.
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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
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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.