Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
6,170
datasets available to search
ShareScore release 0.9.0
Dataset results
6,170 results for “european”
European demonstration program on the effect-based and chemical identification and monitoring of organic pollutants in European surface waters - Supporting Material
<p>This data contains the supporting material of the publicaiton <a href="https://www.sciencedirect.com/science/article/pii/S0048969717314365">European demonstration program on the effect-based and chemical<br> identification and monitoring of organic pollutants in European surface waters.</a></p> <p> </p>
Supplementary material 5 from: Cabezas MP, Ros M, Santos AM, Martínez-Laiz G, Xavier R, Montelli L, Hoffman R, Fersi A, Dauvin JC, Guerra-García JM (2019) Unravelling the origin and introduction pattern of the tropical species Paracaprella pusilla Mayer, 1890 (Crustacea, Amphipoda, Caprellidae) in temperate European waters: first molecular insights from a spatial and temporal perspective. NeoBiota 47: 43-80. https://doi.org/10.3897/neobiota.47.32408
: Explanation note: A Phylogenetic tree of nuclear 28S rRNA. Unfortunately, this gene could not be amplified in P.tenuis species. In P.pusilla, only two haplotypes were detected, differing only by the presence of an indel. B Phylogenetic tree of nuclear ribosomal internal transcribed spacer (ITS). No variation was observed among P.pusilla sequences. Trees were rooted with Caprelladanilevskii and Caprellaliparotensis. Values at the nodes correspond to ML bootstrap support and Bayesian posterior probabilities, respectively.
FIGURE 5. Drapetis males. Left mid femur, SEM images showing modified cuticle. A. D in Co-existing species of Drapetis Meigen in Skåne (S Sweden) with description of a new species and a key to males of NW European species (Diptera: Hybotidae)
FIGURE 5. Drapetis males. Left mid femur, SEM images showing modified cuticle. A. D. completa Kovalev; B. D. exilis Meigen; C. D. infitialis Collin; D. D. exilis, detail of anterior cuticle; E. D. infitialis, detail of anterior cuticle. Scales: A = 1 μm, C = 10 μm.
FIGURE 6. Drapetis males. Left mid femur, SEM images showing modified cuticle. A. D in Co-existing species of Drapetis Meigen in Skåne (S Sweden) with description of a new species and a key to males of NW European species (Diptera: Hybotidae)
FIGURE 6. Drapetis males. Left mid femur, SEM images showing modified cuticle. A. D. parilis Collin; B. D. pusilla Loew; C. D. parilis, detail of anterior cuticle; D. D. pusilla, detail of antero-dorsal cuticle. Scales: C, D = 10 μm.
FIGURE 4 in Co-existing species of Drapetis Meigen in Skåne (S Sweden) with description of a new species and a key to males of NW European species (Diptera: Hybotidae)
FIGURE 4. Drapetis abrollensis sp. nov. Right midleg, SEM images showing modified cuticle. A. Femur and tibia; B. Subapical cuticle of femur; C. Ventral edge of tibia; D. Detail of C showing accumulations of brochosomes. Scales: A = 0.1 mm; C = 1 μm.
FIGURE 3. Drapetis males. Legs. A. D in Co-existing species of Drapetis Meigen in Skåne (S Sweden) with description of a new species and a key to males of NW European species (Diptera: Hybotidae)
FIGURE 3. Drapetis males. Legs. A. D. assimilis (Fallén), right hind femur; B. D. pusilla Loew, left fore femur; C. D. abrollensis sp. nov., right mid femur and tibia. Scale = 0.1 mm.
FIGURE 2. Drapetis males. Right wing. A. D in Co-existing species of Drapetis Meigen in Skåne (S Sweden) with description of a new species and a key to males of NW European species (Diptera: Hybotidae)
FIGURE 2. Drapetis males. Right wing. A. D. assimilis (Fallén); B. D. abrollensis sp. nov.; C. D. incompleta Collin. Scale = 0.1 mm.
FIGURE 1 in Co-existing species of Drapetis Meigen in Skåne (S Sweden) with description of a new species and a key to males of NW European species (Diptera: Hybotidae)
FIGURE 1. Drapetis abrollensis sp. nov. Male terminalia. A. Right epandrial lamella with projections on apical border, right lateral view; B. Epandrium with cerci, dorsal view; C. Left surstylus, left lateral view; D. Epandrium and hypandrium, ventral view. Abreviations: ej = ejaculatory apodeme; hy = hypandrium; lc = left cercus; lel = left epandrial lamellae; ls 1 = left surstylus 1; ls 2 = left surstylus 2; p1, p2 = projections of the right epandrial lamella; rc = right cercus; rel = right epandrial lamella. Scale = 0.1 mm.
Geographic distribution of 24 Mediterranean and European forest tree species
<p>The 24 distribution maps are a contribution to the regional project "Maximize the production of goods and services of Mediterranean forest ecosystems in the context of global changes" funded by the French Global Environmental Facility (FGEF) and coordinated by FAO-<em>Silva Mediterranea</em> and Plan Bleu. The maps are part of the activities of component 1 "Production of data and development of tools to support decision and management of vulnerable Mediterranean forest ecosystems affected by climate change and the ability of these forest ecosystems to adapt to global change". A total of 24 key forest tree species have been selected by the project partners for their importance for the biodiversity of the Mediterranean basin and for delivering ecosystem services to the Mediterranean forestry community. Data on the geographic distribution of the 24 species were compiled from different sources and make a distinction between locations of known distribution, presumed area of native distribution, and countries (or region within countries) of native distribution.</p> <p>Details on how the maps were produced are given in a published report: N. Wazen, B. Fady (2016) Geographic distribution of 24 major tree species in the Mediterranean and their genetic resources, FAO and Plan Bleu, ISBN 978-92-5-109469-3, http://www.fao.org/3/a-i6338e.pdf</p> <p>The 24 tree species are:</p> <ul> <li><em>Acer hyrcanum</em> subsp. <em>tauricolum</em> (Boiss. & Balansa) Yalt</li> <li><em>Arbutus unedo</em> L</li> <li><em>Cedrus atlantica</em> (Endl.) Manetti ex Carriere</li> <li><em>Cedrus libani</em> A. Rich</li> <li><em>Chamaerops humilis</em> L.</li> <li><em>Ilex aquifolium</em> L.</li> <li><em>Juniperus drupacea</em> Labill.</li> <li><em>Juniperus excelsa</em> M. Bieb.</li> <li><em>Juniperus oxycedrus</em> L.</li> <li><em>Juniperus phoenicea</em> L.</li> <li><em>Laurus nobilis</em> L.</li> <li><em>Pinus brutia</em> Ten.</li> <li><em>Pinus halepensis</em> Mill.</li> <li><em>Pinus nigra</em> J.F. Arnold</li> <li><em>Pinus pinea</em> L.</li> <li><em>Pistacia lentiscus</em> L.</li> <li><em>Platanus orientalis</em> L.</li> <li><em>Quercus canariensis</em> Willd.</li> <li><em>Quercus cerris</em> L.</li> <li><em>Quercus coccifera</em> L.</li> <li><em>Quercus ilex</em> L.</li> <li><em>Quercus suber</em> L.</li> <li><em>Taxus baccata</em> L.</li> <li><em>Tetraclinis articulata</em> (Vahl) Mast.</li> </ul> <p>Updates of the maps are published on the FAO GeoNetwork at http://www.fao.org/geonetwork/srv/en/metadata.show?id=56996</p> <p><strong>Changes in the successive versions</strong></p> <p><em>Version 5</em></p> <ul> <li>A shapefile was added showing a single distribution area for each species. This distribution area was obtained by merging the different distributions areas available from the different sources. Known distribution localities were converted into a distribution area using alpha-shapes and this area was merged with the others.</li> </ul> <p><em>Version 4</em></p> <ul> <li><em>Quercus suber</em>, map in Bohbot et al. (2005): the polygon corresponding to the Venetian Lagoon was removed.</li> </ul> <p><em>Version 3</em></p> <ul> <li><em>Pinus nigra</em>, map of Bolos & Vigo (1984): polygons indicating presence in the eastern part of Corsica and the Balearic Islands were removed. Polygons indicating presence in the coastal zone of Croatia and some Greek islands were added.</li> <li><em>Quercus cerris</em>, map of the Atlas Florae Europeae: points of occurrence corresponding to coastal tiles with a center that falls in the sea were displaced to the closest land locations.</li> <li><em>Arbutus unedo</em>, map 39 in Quézel & Santa (1962): three small polygons corresponding to the southernmost part of the distribution were added. </li> <li><em>Pinus halepensis</em>, map 2 in Quézel & Santa (1962): the polygon corresponding to the zone K2 of the map was added.</li> <li><em>Pinus halepensis</em>, map 3 in Quézel & Santa (1962): the polygons corresponding to the former georeferencing were removed. A small polygon in the southern and westernmost part of the distribution was added.</li> </ul> <p><em>Version 2</em></p> <ul> <li>The “Source_Dat” field was harmonized using the “author_date_title” format for published references.</li> <li>All polygons were snapped together vertices within a small distance threshold to fix small coordinate misalignment in adjacent polygons. In addition, polygons were clipped with sea and administrative boundaries. </li> <li><em>Pinus halepensis</em>, map 3 in Quézel & Santa (1962): a new georeferencing using the Algerian chotts as additional georeferencing points was made. However, by mistake, the polygons from the old referencing were kept in the shapefile. This mistake was corrected in the subsequent version.</li> </ul>
Reintroduction of the European Bison (Bison bonasus) in Central-Eastern Europe: A case study
<p>Raw vector and raster data depicting land cover, bison herds, roads, elevation, and land protection status and map algebra syntax codes used in the suitability analysis of reintroduction of European bison into central-eastern Europe.</p>
FIGURE 2 in High genetic variation within mitochondrial CO1 in Middle European Thanasimus formicarius (Linné, 1758) (Coleoptera: Cleridae)
FIGURE 2. Distribution of all Thanasimus clades in Europe. The light green areas are based on GBIF distributional data [https://www.gbif.org/] of both species.
A complete time-calibrated multi-gene phylogeny of the European butterflies - data
<p>The datasets used for the article on phylogenetic relationships of European butterflies, including the treefile for all European species, as well as the posterior distributions of ages of each node.</p>
Data used in "Persistent multi-scale fluctuations shift European hydroclimate to its millennial boundaries"
<p>Data used for evaluation of "Persistent multi-scale fluctuations shift European hydroclimate to its millennial boundaries"</p>
Fig. 2 in A vanishing hotspot-the impact of molecular insights on the diversity of Central European Bythiospeum Bourguignat, 1882 (Mollusca: Gastropoda: Truncatelloidea)
Fig. 2 Representative shells of Bythiospeum populations investigated (for type localities respective taxon given in brackets). Clade II, Schwerte (B. husmanni) (A). Clade IV, Source du Suran (B). Clade V, La Balme d'Epy (C). D, Clade I: Isar-Hirschau (B. acicula) (a). Wendlingen (B. pellucidum) (b). Wernau (B. pellucidum) (c). Falkensteiner Höhle (B. quenstedti) (d). Kohlberg (B. putei) (e). Haugensteiner Mühle (B. suevicum) (f). Degenfeld (B. gonostoma) (g). Mühlheim (Mörnsheim) (B. senefelderi) (h). Klingenberg (B. nolli) (i).
Fig. 5 in A vanishing hotspot-the impact of molecular insights on the diversity of Central European Bythiospeum Bourguignat, 1882 (Mollusca: Gastropoda: Truncatelloidea)
Fig. 5 Anterior part of the body of both sexes for representatives of all five Bythiospeum clades expect for clade II, renopericardial duct not shown, operculum in most specimens removed, mantle in males sometimes trimmed or pushed away to expose penis. Clade I, Degenfeld (A–C). Female, SMNS-ZI0098574-1 (A). Males, SMNS-ZI0098574-2/-4 (B, C). Clade III, Dossenbach (D–G). Female, SMNS-ZI0059270, pallial oviduct (D). Same specimen, stomach and intestine with oviduct (seen through the body wall) (E). Males, SMNS-ZI0059269/ 59268 (F, G). Clade V, La Balme d'Epy (H–J). Female, SMNSZI0079848 (H). Males, SMNSZI0079845/79844 (I, J). Clade IV, Source du Suran (K–M). Female, SMNS-ZI0079862 (K). Males, SMNS-ZI0079863/79864 (L, M). Scale bar: 0.5 mm
Fig. 1 in A vanishing hotspot-the impact of molecular insights on the diversity of Central European Bythiospeum Bourguignat, 1882 (Mollusca: Gastropoda: Truncatelloidea)
Fig. 1 Map of sampling sites of Bythiospeum in western and southern Germany, Switzerland and eastern France. Stars, type localities; circles, clade I; triangle pointing up, clade II; square, clade III; triangle pointing down, clade IV; rhomb, clade V (background map based on www. ginkgomaps.com)
Fig. 4 in A vanishing hotspot-the impact of molecular insights on the diversity of Central European Bythiospeum Bourguignat, 1882 (Mollusca: Gastropoda: Truncatelloidea)
Fig. 4 Network of haplotypes of the Bythiospeum clades connected applying the 95 % threshold, subclades with high support in light grey squares; circle size is proportional to the number of haplotypes
Fig. 9 in A vanishing hotspot-the impact of molecular insights on the diversity of Central European Bythiospeum Bourguignat, 1882 (Mollusca: Gastropoda: Truncatelloidea)
Fig. 9 Bythiospeum Balpinum^, Interlaken—part of the oviduct assumed to be diagnostic by Bernasconi (1988). A SMNSZI0098583-29. B, C Modified drawings of Bernasconi (1988: 788, Fig. 2e). D, E SMNSZI00583-29/-09. Abbreviations: bc, bursa copulatrix; gpd, gonopericardial duct; ov, oviduct; rs, receptaculum seminis. Scale bar: 0.5 mm
Fig. 31 in Faunistic and taxonomic remarks on European Allotrichoma Becker, 1896 (Diptera: Ephydridae) with the description of a new species from Georgia
Fig. 31. Records of Allotrichoma trispinum Becker, 1896 (based only on the data presented in this paper). Рис. 31. Распространение Allotrichoma trispinum Becker, 1896 (по данным представленной статьи).
Fig. 32 in Faunistic and taxonomic remarks on European Allotrichoma Becker, 1896 (Diptera: Ephydridae) with the description of a new species from Georgia
Fig. 32. Records of Allotrichoma tskarishdidae sp.n. Рис. 32. Распространение Allotrichoma tskarishdidae sp.n.
ScienceDex guides
Understand access before you commit
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.