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.
112
datasets available to search
ShareScore release 0.9.0
Dataset results
112 results for “Scandinavia”
Figure 14 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 14. Liljeborgia fissicornis (M. Sars, 1858), female, Barents Sea, cruise Barentshavet 02, sta. 382, TSZCr 12392. (A) Head and cephalic appendages in lateral view; (B) rostrum and cephalic appendages in dorsal view; (C) lower lip; (D) left Md; (E) right Md; (F) lacinia mobilis of left Md; (G) lacinia mobilis of right Md; (H) left Mx1; (I) left Mx2.
Figure 13 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 13. Liljeborgia fissicornis (M. Sars, 1858), male, Barents Sea, cruise Barentshavet 02, sta. 425, TSZCr 12424, habitus.
Figure 12 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 12. Liljeborgia charybdis sp. nov., female, holotype, Norwegian Sea, R/V Ak. Mstislav Keldysh, cruise 33, sta. 3318, TSZCr 10180. (A) Pleon in lateral view; (B) left U1; (C) peduncle of right U1; (D) left U2; (E) right U3.
Figure 8 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 8. Liljeborgia charybdis sp. nov., female, holotype, Norwegian Sea, R/V Ak. Mstislav Keldysh, cruise 33, sta. 3318, TSZCr 10180. (A) Mxp; (B) right outer plate of Mxp; (C) inner plate.
Figure 11 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 11. Liljeborgia charybdis sp. nov., female, holotype, Norwegian Sea, R/V Ak. Mstislav Keldysh, cruise 33, sta. 3318, TSZCr 10180. (A) Left P5; (B) distal part of basis of left P5; (C) articles 6 and 7 of left P5; (D) left P6; (E) distal part of basis of left P6; (F) articles 6 and 7 of left P6; (G) right P7; (H) distal part of basis of right P7; (I) articles 5–7 of left P7; (J) telson.
Figure 7 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 7. Liljeborgia charybdis sp. nov., female, holotype, Norwegian Sea, R/V Ak. Mstislav Keldysh, cruise 33, sta. 3318, TSZCr 10180. (A) Head, antennae and anterior part of thorax; (B) anterior part of head and epistome; (C) lower lip; (D) left Md; (E) tip of left Md; (F) tip of right Md; (G) left Mx1; (H) left Mx2.
Figure 5 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 5. Liljeborgia caliginis sp. nov., female, holotype, Svalbard, R/V Jan Mayen sta. 807–97, TSZCr 10408. (A) Left P5; (B) distal part of basis of left P5; (C) left P6; (D) distal part of basis of left P6; (E) left P7; (F) distal part of basis of left P7; (G) telson.
Figure 10 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 10. Liljeborgia charybdis sp. nov., female, holotype, Norwegian Sea, R/V Ak. Mstislav Keldysh, cruise 33, sta. 3318, TSZCr 10180. (A) Right P3; (B) articles 5–7 of right P3; (C) right P4; (D) articles 5–7 of right P4.
Figure 1 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 1. Liljeborgia caliginis sp. nov., female, holotype, Svalbard, R/V Jan Mayen sta. 807– 97, TSZCr 10408. (A) Head and cephalic appendages; (B) lower lip; (C) left Md; (D) tip of left Md; (E) tip of right Md; (F) right Mx1; (G) right Mx2.
Figure 3 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 3. Liljeborgia caliginis sp. nov., Svalbard, R/V Jan Mayen sta. 807–97, TSZCr 10408; A–F, female, holotype; G, male, paratype. (A) Left Gn1; (B) dactylus of left Gn1; (C) left coxa 1; (D) left coxa 2; (E) dactylus of left Gn2; (F) left coxa 2; (G) right Gn2.
Figure 6 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 6. Liljeborgia caliginis sp. nov., Svalbard, R/V Jan Mayen sta. 807–97, TSZCr 10408; A,B, D–G, female, holotype; C, male, paratype. (A) Pleon in lateral view; (B, C) posterior bor- der of Ep3; (D) urosomite 3, right side; (E) right U1; (F) right U2; (G) left U3.
Figure 2 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 2. Liljeborgia caliginis sp. nov., female, holotype, Svalbard, R/V Jan Mayen sta. 807– 97, TSZCr 10408. (A) Mxp; (B) left outer plate; (C) right outer plate; (D) right inner plate.
Figure 9 in On Liljeborgia fissicornis (M. Sars, 1858) and three related new species from Scandinavia, with a hypothesis on the origin of the group fissicornis
Figure 9. Liljeborgia charybdis sp. nov., Norwegian Sea, R/V Ak. Mstislav Keldysh, cruise 33, sta. 3318, TSZCr 10180. A–D, female, holotype; E, F, male, paratype. (A) Right Gn1; (B) palm of right Gn1; (C) left Gn2; (D) palm of right Gn2; (E) chela of left Gn2 (outer view); (F) chela of right Gn2 (medial view).
Scavenger community structure along an environmental gradient from boreal forest to alpine tundra in Scandinavia
<p>Scavengers can have strong impacts on food webs, and awareness of their role in ecosystems have increased during the last decades. In our study, we used baited camera traps to quantify the structure of the winter scavenger community in central Scandinavia across a forest-alpine continuum and assess how climatic conditions affected spatial patterns of species occurrences. Canonical correspondence analysis revealed that the main habitat type (forest or alpine tundra) and snow depth were main determinants of community structure. According to hierarchical modelling of the species community, species richness was higher in forest than in alpine habitat but was only weakly associated with temperature and snow depth. However, we observed stronger and more diverse impacts of these covariates on individual species. Occurrence at baits of habitat generalists (red fox, golden eagle and common raven) typically increased at low temperatures and high snow depth, probably due to increased energetic demands and lower live prey availability in harsh winter conditions. On the contrary, occurrence of forest specialists (e.g. Eurasian jay) tended to decrease in deep snow, which is possibly a consequence of reduced bait detectability and accessibility. In general, the influence of environmental covariates on species richness and occurrence was lower in alpine tundra than in forests, and habitat generalists dominated the scavenger communities in both habitat types. Following forecasted climate change, altered environmental conditions is likely to cause range expansion of boreal species and range contraction of typical alpine species such as the arctic fox. Our results suggest that altered snow conditions will be a main driver of change.</p>
High Intensity Training in de Novo Heart Transplant Recipients in Scandinavia
ClinicalTrials.gov study NCT01796379. IPD Sharing: Not stated. Countries: 3. Publications: 8.
Probiotic Supplementation in Extremely Preterm Infants in Scandinavia
ClinicalTrials.gov study NCT05604846. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Data from: Molecular and pollen-based vegetation analysis in lake sediments from central Scandinavia
Open the record for dataset details and reuse information.
Scavenger community structure along an environmental gradient from boreal forest to alpine tundra in Scandinavia
Open the record for dataset details and reuse information.
Data from: Ancient DNA from mastics solidifies connection between material culture and genetics of Mesolithic hunter-gatherers in Scandinavia
Open the record for dataset details and reuse information.
Data from: Failure to coordinate management in transboundary populations hinders the achievement of national management goals: the case of wolverines in Scandinavia
Open the record for dataset details and reuse information.
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.