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”
Figs. 25-32 – female antennae. 25 in Revision of Central European species of the Aclista scutellaris complex (Hymenoptera: Diapriidae)
Figs. 25-32 – female antennae. 25 – Aclista angusta (Kieffer, 1909); 26 – A. bitensis (Kieffer, 1909); 27 – A. crassistilus (Kieffer, 1909); 28 – A. szelenyii (Móczár, 1938); 29 – A. pseudobitensis sp. nov.; 30 – A. pseudosoror sp. nov.; 31 – A. neglecta (Kieffer, 1907); 32 – A. scutellaris (Thomson, 1859). Scale bar = 1.0 mm.
Figs. 1-11. 1-8 – metasoma. 1 in Revision of Central European species of the Aclista scutellaris complex (Hymenoptera: Diapriidae)
Figs. 1-11. 1-8 – metasoma. 1 – Aclista angusta (Kieffer, 1909); 2 – A. bitensis (Kieffer, 1909); 3 – A. crassistilus (Kieffer, 1909); 4 – A. neglecta (Kieffer, 1907); 5 – A. pseudobitensis sp. nov.; 6 – A. pseudosoror sp. nov.; 7 – A. scutellaris (Thomson, 1859); 8 – A. szelenyii (Móczár, 1938). 9-10 – head, frontal view. 9 – A. angusta; 10 – A. bitensis; 11 – A. crassistilus. Scale bars: 2.0 mm (Figs. 1-8) and 0.5 mm (Figs. 9-10).
Figs. 21-25. Male genitalia. 21 in Revision of the European species of Scorpioteleia (Hymenoptera: Diapriidae)
Figs. 21-25. Male genitalia. 21 – Scorpioteleia longepetiolata (Thomson, 1859); 22 – S. nixoni sp. nov.; 23 – S. compressa (Kieffer, 1910); 24 – S. cebes Nixon, 1954; 25 – S. luteipes Kieffer, 1910. Scale = 0.35 mm
Figs. 16-20 in Revision of the European species of Scorpioteleia (Hymenoptera: Diapriidae)
Figs. 16-20. Wing venation (costal region of fore wing). 16 – Scorpioteleia longepetiolata (Thomson, 1859); 17 – S. nixoni sp. nov.; 18 – S. compressa (Kieffer, 1910); 19 – S. cebes Nixon, 1954; 20 – S. luteipes Kieffer, 1910. Scale = 0.8 mm.
Figs. 1-5 in Revision of the European species of Scorpioteleia (Hymenoptera: Diapriidae)
Figs. 1-5. Habitus, dorsal view, females. 1 – Scorpioteleia longepetiolata (Thomson, 1859); 2 – S. nixoni sp. nov.; 3 – S. compressa (Kieffer, 1910); 4 – S. luteipes Kieffer, 1910; 5 – S. cebes (Nixon, 1957). Scale = 3.5 mm
Figs. 8–12. Strongylogaster Dahlbom, 1835 in Taxonomy, distribution and biology of selected European Dinax, Strongylogaster and Taxonus species (Hymenoptera: Symphyta)
Figs. 8–12. Strongylogaster Dahlbom, 1835, larvae: 8 – S. xanthocera (Stephens, 1835): a – immature instar (dorsal view); b – last instar (lateral view); c – last instar (laterodorsal view). 9 – S. multifasciata (Geoffroy, 1785): a – last instar (laterodorsal view); b – last instar (dorsal view). 10 – S. macula (Klug, 1817): last instar (laterodorsal view). 11 – S. baikalensis Naito, 1990: last instar (laterodorsal view). 12 – S. mixta (Klug, 1817): a – immature instar (laterodorsal view); b – last instar (lateral view); c – last instar (lateral view). Scale for last instar larva: 10 mm.
Figs. 18–20 in Taxonomy, distribution and biology of selected European Dinax, Strongylogaster and Taxonus species (Hymenoptera: Symphyta)
Figs. 18–20, Taxonus Hartig, 1837, last instar larvae: 18 – Taxonus agrorum Fallén, 1808: a – bare larva (lateral view); b – bare larva (dorsal view); c – pruinose larva (lateral view). 19 – T. sticticus (Klug, 1817): a – laterodorsal view; b – dorsal view. 20 – T. alboscutellatus Niezabitowski, 1899: a – dorsal view (plain form); b – laterodorsal view (plain form); c – dorsal view (patterned form). Scale: 10 mm.
Figs. 2–7. Strongylogaster Dahlbom, 1835 in Taxonomy, distribution and biology of selected European Dinax, Strongylogaster and Taxonus species (Hymenoptera: Symphyta)
Figs. 2–7. Strongylogaster Dahlbom, 1835, adults: 2 – S. macula (Klug, 1817); 3 – S. baikalensis Naito, 1990; 4 – S. mixta (Klug, 1817); 5 – S. filicis (Klug, 1817); 6 – S. multifasciata (Geoffroy, 1785); 7 – S. xanthocera (Stephens, 1835). Scale: 10 mm.
Fig. 1 in Taxonomy, distribution and biology of selected European Dinax, Strongylogaster and Taxonus species (Hymenoptera: Symphyta)
Fig. 1. Dinax ermak (Zhelochovtsev, 1968): a – female (dorsal view); b – male (dorsal view); c – female (lateral view); d – last instar larva (dorsal view); e – last instar larva (laterodorsal view); f – eonymph (dorsal view); g – eonymph (laterodorsal view). Scale: 5 mm.
Figs.15–17. Taxonus Hartig, 1837 in Taxonomy, distribution and biology of selected European Dinax, Strongylogaster and Taxonus species (Hymenoptera: Symphyta)
Figs.15–17. Taxonus Hartig, 1837, adults: 15 – T. agrorum Fallén, 1808; 16 – T. sticticus (Klug, 1817); 17 – T. alboscutellatus Niezabitowski, 1899. Scale: 10 mm.
Figs. 13–14. Strongylogaster Dahlbom, 1835 in Taxonomy, distribution and biology of selected European Dinax, Strongylogaster and Taxonus species (Hymenoptera: Symphyta)
Figs. 13–14. Strongylogaster Dahlbom, 1835, penis valve, lateral view: 13 – S. baikalensis Naito, 1990; 14 – S. macula (Klug, 1817). Scale: 0.5 mm.
MCMC samples from an analysis reported in a paper titled "A Song of Neither Ice nor Fire: Temperature extremes had no impact on violent conflict among European societies during the 2nd millennium"
<p>These data are posterior samples from an MCMC used to estimate parameters for a Bayesian state-space time-series regression model. They are products of an analysis reported in "A Song of Neither Ice nor Fire: Temperature extremes had no impact on violent conflict among European societies during the 2nd millennium", an academic paper that has recently been submitted for peer review. We have archived the MCMC samples here in order to facilitate peer review, replication, and open science.</p> <p>The samples are stored in .RData format (matrices when loaded into an R environment) and the R code used to produce them is provided in a GitHub repo (https://github.com/wccarleton/extreme-conflict). Each .RData file contains a matrix called "samples". The columns of the matrix are each an MCMC chain for a given (column name) model parameter monitored during the MCMC simulation. See the aforementioned GitHub repo for more details.<br> <br> </p>
Text-fig. 10. The chronostratigraphic position of the sites of Erkertshofen 1, Erkertshofen 2 and Petersbuch 2 and the biochronology of some European Neogene bats in Central Europe (species distribution after Revilliod 1920, Zapfe 1950, Rachl 1983, Ziegler 1993, 1994, 1998, 2000, 2003, Horáček 2001, Mörs 2002, Ginsburg and Mein 2012, Rosina and Rummel 2012, 2017, Rasser et al. 2013, Rosina et al. 2019). Miocene time scale after Steininger 1999, MN zones modified after Jones 1999, Rögl 1999. in The Early Miocene Bats (Chiroptera, Mammalia) From The Karstic Sites Of Erkertshofen And Petersbuch 2 (Southern Germany)
Text-fig. 10. The chronostratigraphic position of the sites of Erkertshofen 1, Erkertshofen 2 and Petersbuch 2 and the biochronology of some European Neogene bats in Central Europe (species distribution after Revilliod 1920, Zapfe 1950, Rachl 1983, Ziegler 1993, 1994, 1998, 2000, 2003, Horáček 2001, Mörs 2002, Ginsburg and Mein 2012, Rosina and Rummel 2012, 2017, Rasser et al. 2013, Rosina et al. 2019). Miocene time scale after Steininger 1999, MN zones modified after Jones 1999, Rögl 1999.
Text-fig. 13. Scatter diagram of m1 length vs SDQ for pre-Eemian (time slice 5) Arvicola samples from different geographical provenances compared with M. savini-A. mosbachensis and Arvicola sapidus. Empty dotted ovals indicate the range of extant Arvicola ex gr. amphibius samples from Italy (cyan) and from the other European locations (green) Abbreviations: FR – France, GE – Germany, IT – Italy, SP – Spain. in Independent Water Vole (Mimomys Savini, Arvicola: Rodentia, Mammalia) Lineages In Italy And Central Europe
Text-fig. 13. Scatter diagram of m1 length vs SDQ for pre-Eemian (time slice 5) Arvicola samples from different geographical provenances compared with M. savini-A. mosbachensis and Arvicola sapidus. Empty dotted ovals indicate the range of extant Arvicola ex gr. amphibius samples from Italy (cyan) and from the other European locations (green) Abbreviations: FR – France, GE – Germany, IT – Italy, SP – Spain.
Text-fig. 11. Scatter diagram of m1 length vs SDQ for Würmian/Weichselian (time slice 3) Arvicola samples from different geographical provenances compared with M. savini-A. mosbachensis and extant Arvicola sapidus. Empty dotted ovals indicate the range of extant Arvicola ex gr. amphibius samples from Italy (cyan) and from the other European locations (green) Abbreviations: FR – France, GE – Germany, IT – Italy, SP – Spain. in Independent Water Vole (Mimomys Savini, Arvicola: Rodentia, Mammalia) Lineages In Italy And Central Europe
Text-fig. 11. Scatter diagram of m1 length vs SDQ for Würmian/Weichselian (time slice 3) Arvicola samples from different geographical provenances compared with M. savini-A. mosbachensis and extant Arvicola sapidus. Empty dotted ovals indicate the range of extant Arvicola ex gr. amphibius samples from Italy (cyan) and from the other European locations (green) Abbreviations: FR – France, GE – Germany, IT – Italy, SP – Spain.
Text-fig. 12. Scatter diagram of m1 length vs SDQ for Eemian (time slice 4) Arvicola samples from different geographical provenances compared with M. savini-A. mosbachensis and Arvicola sapidus. Empty dotted ovals indicate the range of extant Arvicola ex gr. amphibius samples from Italy (cyan) and from the other European locations (green) Abbreviations: FR – France, GE – Germany, IT – Italy, SP – Spain. in Independent Water Vole (Mimomys Savini, Arvicola: Rodentia, Mammalia) Lineages In Italy And Central Europe
Text-fig. 12. Scatter diagram of m1 length vs SDQ for Eemian (time slice 4) Arvicola samples from different geographical provenances compared with M. savini-A. mosbachensis and Arvicola sapidus. Empty dotted ovals indicate the range of extant Arvicola ex gr. amphibius samples from Italy (cyan) and from the other European locations (green) Abbreviations: FR – France, GE – Germany, IT – Italy, SP – Spain.
Text-fig. 2. Phylogeography based on mitochondrial phylogeny showing several evolutionary lineages of Arvicola and the separation of the Italian lineage of Arvicola, currently A. italicus (lineage A1), from European and Euro-Asiatic groups. From Wust-Saucy (1998: fig. 27), modified. in Independent Water Vole (Mimomys Savini, Arvicola: Rodentia, Mammalia) Lineages In Italy And Central Europe
Text-fig. 2. Phylogeography based on mitochondrial phylogeny showing several evolutionary lineages of Arvicola and the separation of the Italian lineage of Arvicola, currently A. italicus (lineage A1), from European and Euro-Asiatic groups. From Wust-Saucy (1998: fig. 27), modified.
FIG. 5 in The oldest known European Neogene girdled lizard fauna (Squamata, Cordylidae), with comments on Early Miocene immigration of African taxa
FIG. 5. — aff. Palaeocordylus bohemicus Roček, 1984; detail of the 6th-12th tooth in posterolingual view. Scale bar: 500 µm.
FIG. 4 in The oldest known European Neogene girdled lizard fauna (Squamata, Cordylidae), with comments on Early Miocene immigration of African taxa
FIG. 4. — aff. Palaeocordylus bohemicus Roček, 1984; detail of the tooth from the medial region of the dentary tooth row in lingual view (terms after Richter 1994). Scale bar: 200 µm.
FIG. 3 in The oldest known European Neogene girdled lizard fauna (Squamata, Cordylidae), with comments on Early Miocene immigration of African taxa
FIG. 3. — aff. Palaeocordylus bohemicus Roček, 1984; detail of the region with intramandibular septum. Scale bar: 2 mm.
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.