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1,723 results for “Alpine”
Simulated length of 71 Alpine glaciers over the last millennium using OGGM
<p>This dataset contains the simulated length of 71 Alpine glaciers over the last millennium using the <a href="https://github.com/OGGM/oggm">version 1.0 of the Open Global Glacier Model</a> (OGGM) forced by global climate models (GCM) simulation outputs. For a description of the experimental design, see the associated publication:<br> <br> <a href="https://www.clim-past-discuss.net/cp-2018-48/">Goosse, H., Barriat, P.-Y., Dalaiden, Q., Klein, F., Marzeion, B., Maussion, F., Pelucchi, P. and Vlug, A.: Testing the consistency between changes in simulated climate and Alpine glacier length over the past millennium, Climate of the Past, 2018.</a><br> <br> Each NetCDF file corresponds to OGGM driven by one climate model over the period 1000-2004 CE. The file names are based on the acronyms given in the Table 1 of the associated publication. The variables included in the NetCDF files are:<br> <br> - g_length: Annual mean length of the glaciers, in meters<br> <br> - ID_glacier: an identifier for each glacier, allowing to make the link to the names of the glaciers given in glacier_names.txt.<br> <br> - time_year: the time in years CE<br> <br> In order to remove high frequency variability associated with the presence of snow that may remain in summer at altitudes lower than the glacier front, a filter with a 5-year window has been applied on the OGGM outputs to obtain the results stored in g_length.</p> <p>Please contact <a href="mailto:hugues.goosse@uclouvain.be">Hugues Goosse</a> for more information.</p>
Datasets for the publication "Simulation of snow management in Alpine ski resorts using three different snow models"
<p>Snow model simulation results used for the paper "Simulation of snow management in Alpine ski resorts using three different snow models".</p> <p>The following results are available for each of the nine ski resorts:</p> <ul> <li><em><resort></em>_swe_<em><date></em>.tif or <em><resort></em>_swe.geojson: Spatially distributed SWE outputs for 2016-12-24 and 2017-12-24 in GeoJSON (for the two French resorts) or GeoTIFF (for all other resorts) format. Unit: kg m<sup>-2</sup></li> <li><em><resort></em>_point_depth.csv, <em><resort></em>_point_swe.csv: Time series of snow depth (in m) and SWE (in kg m<sup>-2</sup>) for the respective points of interest. The column names correspond to the snow management configurations as shown in Fig. 5 of the paper.</li> </ul>
Fig. 3 in Gastrointestinal parasite infestation in the alpine mountain hare (Lepus timidus varronis): Are abiotic environmental factors such as elevation, temperature and precipitation affecting prevalence of parasite species?
Fig. 3. Parasite infestation in faeces and ambient temperature. Correlation between parasite infestation in Alpine mountain hare faeces (n = 52) and average, minimal, and maximal temperature found in Vorarlberg (Austria) during the years 2014 and 2015. Count visualises the number of faecal samples. See text for details on statistics.
Fig. 2 in Gastrointestinal parasite infestation in the alpine mountain hare (Lepus timidus varronis): Are abiotic environmental factors such as elevation, temperature and precipitation affecting prevalence of parasite species?
Fig. 2. Number of parasite types per faeces and severity of parasitic infestation. Correlation between number of parasite types per Alpine mountain hare faeces and severity of parasitic infestation (n = 28) found in Vorarlberg (Austria) during the years 2014 and 2015. Count visualises the number of faecal samples. The severity of infestation is indicated by scattered ((+)), low (+), intermediate (++), and high (+++) infestation. See text for details on statistics.
Figure 2 in The first record of alpine long-eared bat Plecotus macrobullaris in Serbia
Figure 2. External characters used for species identification: face and ears with tragus (A) and penis shape (B).
Figure 1 in The first record of alpine long-eared bat Plecotus macrobullaris in Serbia
Figure 1. Locality of the Plecotus macrobullaris record (black dot). Shaded parts of the map represent its distribution after the IUCN (Hutson et al. 2008). *This designation is without prejudice to positions on status, and is in line with UNSCR 1244/1999 and the International Court of Justice advisory opinion on Kosovo's declaration of independence.
Figure 2 in A new species of the sharpshooter genus Balacha from an alpine field in southeastern Brazil (Insecta: Hemiptera: Cicadellidae: Cicadellini)
Figure 2 Balacha caledonia sp. nov.Female terminalia: (a) sternite VII, ventral view; (b) "internal" sternite VIII, dorsal view; (c) pygofer, lateral view (scale bar = 1mm); (d) valvifer I, lateral view; (e) valvula I, lateral view; (f) apical portion of ramus and dorsal sculptured area of valvula I, lateral view; (g) valvula II, lateral view; (h) teeth, denticles, and ducts of valvulae II, lateral view (sections of two blades shown in photograph).
Figure 4 in A new species of the sharpshooter genus Balacha from an alpine field in southeastern Brazil (Insecta: Hemiptera: Cicadellidae: Cicadellini)
Figure 4 Cicadellinae from the municipality of Nova Friburgo, southeastern Brazil. Three species so far known only from the Pico do Caledônia area (a-c) and three species with widespread distribution in the Atlantic Forest (d-f). (a) Paratubana auromarginata Côrte, Pecly, Quintas, Ferreira, Cavichioli & Mejdalani, 2021; (b) Cavichiana caelivittata Mejdalani, Quintas, Pecly, Froza, Carvalho & Silva, 2023; (c) Macugonalia semiguttata (Signoret, 1853); (d) Amblyscartidia albofasciata (Walker, 1851); (e) Neodayoungia xanthonota (Signoret, 1854); (f) Laneola rubricauda (Signoret, 1854). Photos taken by André Almeida Alves.
Figure 1 in A new species of the sharpshooter genus Balacha from an alpine field in southeastern Brazil (Insecta: Hemiptera: Cicadellidae: Cicadellini)
Figure 1 Balacha caledonia sp. nov. (a) Female, dorsal habitus (scale bar = 4mm); (b) female, lateral habitus; (c) female, face. (d-i) Male terminalia: (d) pygofer, lateral view (scale bar = 1mm); (e) pygofer, ventral view; (f) valve and subgenital plate, ventral view; (g) connective and style, dorsal view; (h) ejaculatory bulb and aedeagus, lateral view; (i) paraphyses, dorsal view.
Figure 3 in A new species of the sharpshooter genus Balacha from an alpine field in southeastern Brazil (Insecta: Hemiptera: Cicadellidae: Cicadellini)
Figure 3 Balacha caledonia sp. nov. photographed at the type locality, an alpine field in Nova Friburgo, state of Rio de Janeiro, southeastern Brazil, on its host plant (Eryngium sp., Apiaceae). (a) Dorsal view; (b) lateral view. Photos taken by André Almeida Alves.
Figure 4 in Vegetation of alpine screes on Bjelašnica Mt. - syntaxonomy and ecology
Figure 4. Association Pseudofumarietum leiospermae on western slopes of Bjelašnica Mt. (Photo: D. Kulijer).
Figure 3 in Vegetation of alpine screes on Bjelašnica Mt. - syntaxonomy and ecology
Figure 3. Cluster dendrogram of columns (associations) in the synoptic table. A. Drypidi—Silenetum; B. Drypido spinosae—Seslerietum wettsteinii; C. Drypidi—Heracleetum orsinii; D. Drypetum linneanae; E. Pseudofumarietum leiospermae; F. Pseudofumarietum leiospermae helictochloetosum; G. Dryopteridetum villarii; H. Festuco xanthinae—Valerianetum montanae; I. Cerastietum dinaricae.
Figure 1. A in Vegetation of alpine screes on Bjelašnica Mt. - syntaxonomy and ecology
Figure 1. A. Position of Bjelašnica Mt. in B&H (W. Balkan); B. Northern slopes of Bjelašnica Mt. with Observatory peak (2067 m) in the background; C. Treeline on western slopes of Bjelašnica Mt. (1800 m) (Photos: D. Kulijer)
Figure 2 in Vegetation of alpine screes on Bjelašnica Mt. - syntaxonomy and ecology
Figure 2. Cluster dendrogram of the raw data matrix (species x plot). A. Drypidi—Silenetum; B. Drypido spinosae— Seslerietum wettsteinii; C. Drypidi—Heracleetum orsinii; D. Drypetum linneanae; E. Pseudofumarietum leiospermae; F. Pseudofumarietum leiospermae helictochloetosum; G. Dryopteridetum villarii; H. Festuco xanthinae—Valerianetum montanae; I. Cerastietum dinaricae.
Fig. 1 in Short Communication Alpine chamois Rupicapra rupicapra (L. 1758) and European roe deer Capreolus capreolus (L. 1758) close together at a salt lick
Fig. 1 - The positions of the three chamois (C), two roe deer (R), and two observers (O) at the first full sighting of the animals, when the shortest distance between chamois and roe deer was four metres, 27 metres the longest. / Le posizioni dei tre camosci (C), dei due caprioli (R) e dei due osservatori (O) nel momento del primo avvistamento completo degli animali, quando tra camosci e caprioli la minima distanza era 4 metri, la massima 27 metri.
Fig. 2 in Short Communication Alpine chamois Rupicapra rupicapra (L. 1758) and European roe deer Capreolus capreolus (L. 1758) close together at a salt lick
Fig. 2 - The roe deer and two chamois at the shortest interspecific distance (see Fig. 1) and the trampled and ravaged ground around their rock, suggesting the salt lick. / Il capriolo e i due camosci alla minima distanza interspecifica (vedi Fig. 1) e il terreno calpestato e rivoltato intorno alla loro roccia, indicativo di una salina.
Fig. 1. A. A in Comparison of exposure ages and spectral properties of rock surfaces in steep, high alpine rock walls of Aiguille du Midi, France
Fig. 1. A. A slab from Maysville, KY (CMC IP50706) with a drilled specimen of the stylophoran mitrate Enoploura popei Caster, 1952. The hole indicated by an arrow. B. Close up of the drilled specimen. C. Detail of the borehole.
Fig. 2 in Comparison of exposure ages and spectral properties of rock surfaces in steep, high alpine rock walls of Aiguille du Midi, France
Fig. 2. Horizontal boring on the slab from Maysville, KY (CMC IP50706). A. Overlapping burrows in the shell of the brachiopod Rafinesquina. B. Burrows in a bryozoan. Scale bars 10 mm.
Рис. 24–25. Местообитания виÃов роÃа Carabus Linnaeus, 1758. 24 – C. (Ophiocarabus) ernsti ulastaiensis subsp. n., аΛьпийские Λуга на воÃоразÃеΛе рек Капчик и Зекку; 25 – C. (Alipaster) semenoviellus semenoviellus Breuning, 1934, Λес из еΛи Шренка в горах ТагымбеΛь. Figs 24–25. Habitats of species of the genus Carabus Linnaeus, 1758. 24 – C. (Ophiocarabus) ernsti ulastaiensis subsp. n., alpine meadows on the ridge between Kaptshik and Zekku rivers; 25 – C. (Alipaster) semenoviellus semenoviellus Breuning, 1934, Picea schrenkiana forest in the Tagymbel Mountains. in New data on the taxonomy of the genus Carabus Linnaeus, 1758 (Coleoptera: Carabidae) from the Ili River basin (China)
Рис. 24–25. Местообитания виÃов роÃа Carabus Linnaeus, 1758. 24 – C. (Ophiocarabus) ernsti ulastaiensis subsp. n., аΛьпийские Λуга на воÃоразÃеΛе рек Капчик и Зекку; 25 – C. (Alipaster) semenoviellus semenoviellus Breuning, 1934, Λес из еΛи Шренка в горах ТагымбеΛь. Figs 24–25. Habitats of species of the genus Carabus Linnaeus, 1758. 24 – C. (Ophiocarabus) ernsti ulastaiensis subsp. n., alpine meadows on the ridge between Kaptshik and Zekku rivers; 25 – C. (Alipaster) semenoviellus semenoviellus Breuning, 1934, Picea schrenkiana forest in the Tagymbel Mountains.
Fig. 2 in Anticoccidial activity of the secondary metabolites in alpine plants frequently ingested by wild Japanese rock ptarmigans
Fig. 2. The efficacy of the natural components against E. tenella sporozoites. The viability of sporozoites was determined at various concentrations of the compounds that showed effectiveness at 100 μM. The half maximal inhibitory concentration (IC50) value was determined from the approximate curves obtained from these results. SPZ: sporozoite.
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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.