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.
266
datasets available to search
ShareScore release 0.9.0
Dataset results
266 results for “North Europe”
Figures 85–91. Necremnus rhaecus. 85–89 in An integrative study of Necremnus Thomson (Hymenoptera: Eulophidae) associated with invasive pests in Europe and North America: taxonomic and ecological implications
Figures 85–91. Necremnus rhaecus. 85–89, ♀ lectotype: 85, dorsal habitus; 86, antennae; 87, dorsal mesosoma; 88; fore wing; 89, fore wing base. 90, ♀ scutellum and metanotum (2013-75); 91, ♀ scutellum-propodeum (2013-77).
Figures 26–31 in An integrative study of Necremnus Thomson (Hymenoptera: Eulophidae) associated with invasive pests in Europe and North America: taxonomic and ecological implications
Figures 26–31. Necremnus metalarus, ♀ lectotype. 26, dorsal habitus; 27, lateral habitus; 28, tegula (arrow); 29, fore wing; 30; head and antenna; 31, metanotum and propodeum.
Figures 17–25 in An integrative study of Necremnus Thomson (Hymenoptera: Eulophidae) associated with invasive pests in Europe and North America: taxonomic and ecological implications
Figures 17–25. Necremnus cosmopterix sp. nov. 17–19, habitus: ♀ lateral (2012-7); 18, ♂ lateral (2013-68); 19, ♀ dorsal (2012-7). 20–23, ♀ (2012-7): 20, fore wing; 21, dorsal mesosoma; 22, antennae; 23, metanotum and propodeum. 24, ♂ pedicel and scape. 25, ♂ antenna (2013-67).
Figures 157–164. Necremnus tidius. 157–160 in An integrative study of Necremnus Thomson (Hymenoptera: Eulophidae) associated with invasive pests in Europe and North America: taxonomic and ecological implications
Figures 157–164. Necremnus tidius. 157–160, Eulophus metanira, ♀ lectotype: 157, dorsal habitus; 158, dorsal mesosoma; 159, scutellum-propodeum; 160, fore wing base. 161–164, Eulophus mamurius, ♂ lectotype: 161, dorsal habitus; 162, left antenna (arrow points to multiporous plate sensilla); 163, fore wing base; 164, dorsal mesosoma.
Figures 8–16. Necremnus artynes. 8–10 in An integrative study of Necremnus Thomson (Hymenoptera: Eulophidae) associated with invasive pests in Europe and North America: taxonomic and ecological implications
Figures 8–16. Necremnus artynes. 8–10, habitus: 8, ♀ lateral; 9, ♂ lateral; 10, ♀ dorsal. 11, ♀ dorsal mesosoma (2012- 5). 12, ♀ fore wing. 13, ♀ metanotum and propodeum (2012-5). 14, ♀ antenna. 15, ♂ pedicel and scape. 16, ♂ antenna.
Figures 2–7. Necremnus artynes. 2–6 in An integrative study of Necremnus Thomson (Hymenoptera: Eulophidae) associated with invasive pests in Europe and North America: taxonomic and ecological implications
Figures 2–7. Necremnus artynes. 2–6, lectotype ♀: 2, dorsal habitus; 3, lateral habitus; 4, head and antenna; 5, dorsal mesosoma; 6, metanotum and propodeum. 7, paralectotype ♀: metanotum and propodeum.
Figures 32–39. Necremnus metalarus. 32–34 in An integrative study of Necremnus Thomson (Hymenoptera: Eulophidae) associated with invasive pests in Europe and North America: taxonomic and ecological implications
Figures 32–39. Necremnus metalarus. 32–34, habitus: 32, ♀ lateral (2012-9); 33, ♂ lateral (2012-12); 34, ♀ dorsal (2012- 8). 35, ♀ dorsal mesosoma (2012-8). 36, ♀ fore wings (2012-9). 37, ♀ metanotum and propodeum (2012-8). 38, ♀ antenna (2012-9). 39, ♂ antenna (2012-10).
Figure 1 in An integrative study of Necremnus Thomson (Hymenoptera: Eulophidae) associated with invasive pests in Europe and North America: taxonomic and ecological implications
Figure 1. Bayesian majority rule consensus tree based on the concatenated data set. Posterior probabilities> 0.95 above branches.
Figures 139–144 in An integrative study of Necremnus Thomson (Hymenoptera: Eulophidae) associated with invasive pests in Europe and North America: taxonomic and ecological implications
Figures 139–144. Necremnus leucarthros (Eulophus anaxippus, ♀ lectotype). 139, head and antennae; 140, dorsal habitus; 141, dorsal mesosoma; 142, tegula (arrow); 143, scutellum-propodeum; 144, fore wing base.
Figures 176–179 in An integrative study of Necremnus Thomson (Hymenoptera: Eulophidae) associated with invasive pests in Europe and North America: taxonomic and ecological implications
Figures 176–179. Pnigalio tyrrhenus, ♂ lectotype. 176, lateral habitus without head; 177, head and antennae; 178, dorsal mesosoma; 179, propodeum.
Figures 145–150. Necremnus leucarthros. 145 in An integrative study of Necremnus Thomson (Hymenoptera: Eulophidae) associated with invasive pests in Europe and North America: taxonomic and ecological implications
Figures 145–150. Necremnus leucarthros. 145, ♀ dorsal habitus (2013-72); 146, ♀ lateral habitus (2012-2); 147, ♀ scutellumpropodeum (2012-72); 148, ♀ fore wing base (2013-73) (arrow points to subcubital setal line); 149, ♀ head and antennae (2012-2); 150, ♂ head and antenna (2012-3).
Appendices of basal Anseriformes from the early Paleogene of North America and Europe
<p class="MDPI17abstract">We describe nearly complete skeletons of basal Anseriformes from the Latest Paleocene to the early Eocene of North America and Europe. Collectively, these birds appear to be representative of anseriforms near the divergence of Anhimae and Anseres, but their exact positions relative to these clades remains uncertain. A new family, Anachronornithidae nov. fam., is erected on the basis of one of these, <em>Anachronornis anhimops</em> nov. gen., nov. gen. et sp., to which the others cannot be confidently assigned. The new fossils augment a growing collection of early Pan-Anseriformes, which in their diversity do not paint an unambiguous picture of phylogeny or character state evolution on the path to or within crown-Anseriformes. <em>Anachronornis</em> nov. gen. is similar in some aspects of both cranial and postcranial anatomy to other well-represented early Paleogene Anseriformes and members of Anseres, such as <em>Presbyornis</em> Wetmore, 1926. However, it exhibits a more landfowl-like bill, like that of Anhimae and unlike the spatulate bill of Anseres. Additional specimens of similar basal Anseriformes of uncertain affinities from the early Eocene of North America and Europe further complicate interpretation of character state polarity due to the mosaicism of primitive and derived characters they exhibit.</p>
Data from: Spatial genetic analyses reveal cryptic population structure and migration patterns in a continuously harvested grey wolf (Canis lupus) population in north-eastern Europe
Open the record for dataset details and reuse information.
Data from: With Ellenberg indicator values towards the north: does the indicative power decrease with distance from Central Europe?
Open the record for dataset details and reuse information.
Data from: Colour lightness of dragonfly assemblages across North America and Europe
Open the record for dataset details and reuse information.
Appendices of basal Anseriformes from the early Paleogene of North America and Europe
Open the record for dataset details and reuse information.
Current climate overrides historical effects on species richness and range size of freshwater plants in Europe and North America
Open the record for dataset details and reuse information.
Figure 5 from: Sabbatini Peverieri G, Mitroiu M-D, Bon M-C, Balusu R, Benvenuto L, Bernardinelli I, Fadamiro H, Falagiarda M, Fusu L, Grove E, Haye T, Hoelmer K, Lemke E, Malossini G, Marianelli L, Moore MR, Pozzebon A, Roversi P-F, Scaccini D, Shrewsbury P, Tillman G, Tirello P, Waterworth R, Talamas EJ (2019) Surveys of stink bug egg parasitism in Asia, Europe and North America, morphological taxonomy, and molecular analysis reveal the Holarctic distribution of Acroclisoides sinicus (Huang & Liao) (Hymenoptera, Pteromalidae). Journal of Hymenoptera Research 74: 123-151. https://doi.org/10.3897/jhr.74.46701
Figure 5 Boxplot of pair-wise molecular distances between (left) the Acroclisoides haplotypes evidenced in this study, (center) conspecific individuals in the Pteromalinae, (right) individuals from different species of the same genus in the Pteromalinae.
Figure 4 from: Sabbatini Peverieri G, Mitroiu M-D, Bon M-C, Balusu R, Benvenuto L, Bernardinelli I, Fadamiro H, Falagiarda M, Fusu L, Grove E, Haye T, Hoelmer K, Lemke E, Malossini G, Marianelli L, Moore MR, Pozzebon A, Roversi P-F, Scaccini D, Shrewsbury P, Tillman G, Tirello P, Waterworth R, Talamas EJ (2019) Surveys of stink bug egg parasitism in Asia, Europe and North America, morphological taxonomy, and molecular analysis reveal the Holarctic distribution of Acroclisoides sinicus (Huang & Liao) (Hymenoptera, Pteromalidae). Journal of Hymenoptera Research 74: 123-151. https://doi.org/10.3897/jhr.74.46701
Figure 4 Haplotype network of the 49 Acroclisoides sinicus barcodes analyzed in this study. Each circle corresponds to one haplotype; circle size gives the proportion of individuals belonging to the haplotype. The color of the circles represents the geographical origin. Numbers correspond to the haplotype numbers. Hash marks symbolize the number of mutations between haplotypes.
Figure 1 from: Sabbatini Peverieri G, Mitroiu M-D, Bon M-C, Balusu R, Benvenuto L, Bernardinelli I, Fadamiro H, Falagiarda M, Fusu L, Grove E, Haye T, Hoelmer K, Lemke E, Malossini G, Marianelli L, Moore MR, Pozzebon A, Roversi P-F, Scaccini D, Shrewsbury P, Tillman G, Tirello P, Waterworth R, Talamas EJ (2019) Surveys of stink bug egg parasitism in Asia, Europe and North America, morphological taxonomy, and molecular analysis reveal the Holarctic distribution of Acroclisoides sinicus (Huang & Liao) (Hymenoptera, Pteromalidae). Journal of Hymenoptera Research 74: 123-151. https://doi.org/10.3897/jhr.74.46701
Figure 1 Typical shapes of exit holes produced by egg parasitoids of Halyomorpha halys in Europe: Anastatus bifasciatus male (A) and female (B) (NE-Italy); Acroclisoides sinicus (C, D) (NE-Italy); Trissolcus mitsukurii (E) (NE-Italy) and Trissolcus japonicus (F) (Switzerland).
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.