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.
1,449
datasets available to search
ShareScore release 0.9.0
Dataset results
1,449 results for “Siberia”
Figure 4 in Two new species of Caligonellidae (Acari: Raphignathoidea) from Western Siberia, Russia
Figure 4 Molothrognathus altaicusn. sp., male: A – idiosomal dorsum, B – idiosomal venter. Striation of soft cuticle not illustrated.
Figure 5 in Two new species of Caligonellidae (Acari: Raphignathoidea) from Western Siberia, Russia
Figure 5 Molothrognathus altaicusn. sp., deutonymph: A – idiosomal dorsum, B – idiosomal venter. Striation of soft cuticle not illustrated.
Text-fig. 3. Upper Cretaceous to Oligocene/Miocene Sciadopityspollenites taxa, all scale bars in LM and SEM overview images 10 µm, scale bars in SEM detailed images 2 µm. a–f: cf. Sciadopityspollenites serratus from Vilui basin (Siberia), a – LM image, equatorial view, b – SEM equatorial overview with leptoma, c – detail SEM of leptoma? and echinate verrucae, d – LM image equatorial view, e – SEM of distal polar view, f – SEM detailed view of verrucate, echinate perforate sexine sculpturing; g–i: Sciadopityspollenites serratus from Bayerhof Maar (Germany), g – LM image of proximal polar side, h – SEM overview of distal polar side, i – SEM detail of verrucate, echinate, perforate sculpturing. in The Occurrence Of Pollen Of Sciadopityaceae Luerss. Through Time
Text-fig. 3. Upper Cretaceous to Oligocene/Miocene Sciadopityspollenites taxa, all scale bars in LM and SEM overview images 10 µm, scale bars in SEM detailed images 2 µm. a–f: cf. Sciadopityspollenites serratus from Vilui basin (Siberia), a – LM image, equatorial view, b – SEM equatorial overview with leptoma, c – detail SEM of leptoma? and echinate verrucae, d – LM image equatorial view, e – SEM of distal polar view, f – SEM detailed view of verrucate, echinate perforate sexine sculpturing; g–i: Sciadopityspollenites serratus from Bayerhof Maar (Germany), g – LM image of proximal polar side, h – SEM overview of distal polar side, i – SEM detail of verrucate, echinate, perforate sculpturing.
Fig. 1. Female 12 in New data on lithobiomorph centipedes (Chilopoda, Lithobiomorpha) from anthropogenic habitats of Siberia
Fig. 1. Female 12th tibia with a distal spinose projection (indicated by arrow) of Lamyctes africanus (Porath, 1871) from the environs of Unga village, Kemerovskaya Oblast, Russia. Scale: 0.1 mm.
Fig. 2 in . Study of Nosema spp. in the Tomsk region, Siberia: co-infection is widespread in honeybee colonies
Fig. 2. Distribution of Nosema species in bee colonies (Apis mellifera) throughout the Tomsk region (dots A–I). Bee colonies not infected by Nosema are indicated in yellow; bee
Figure 4 in A new genus and species of Tydeidae (Acari: Prostigmata) from Western Siberia, Russia
Figure 4. Andrelorryia hajiqanbari gen. et sp. nov. (female) – A–D. Right legs I-IV, respectively, dorsal aspect.
Figure 7 in A new genus and species of Tydeidae (Acari: Prostigmata) from Western Siberia, Russia
Figure 7. DIC micrographs of Andrelorryia hajiqanbari gen. et sp. nov. (female) – A. Prodorsum; B. Metapodosomal dorsum; C. Opisthosomal dorsum; D. Metapodosomal venter.
Figure 3 in A new genus and species of Tydeidae (Acari: Prostigmata) from Western Siberia, Russia
Figure 3. Andrelorryia hajiqanbari gen. et sp. nov. (female) – A. Subcapitulum; B. Cheliceral stylet; C. Right palp, dorsal aspect.
Figures 17–20 in Gaeolaelaps hajiqanbari sp. nov. (Acari: Mesostigmata: Laelapidae) from Western Siberia, Russia
Figures 17–20. Gaeolaelaps hajiqanbari Joharchi & Nemati sp. nov. (female) – 17. Leg I (trochanter-tibia); 18. Leg II; 19. Leg III; 20. Leg IV.
Figure 5 in A new genus and species of Tydeidae (Acari: Prostigmata) from Western Siberia, Russia
Figure 5. Andrelorryia hajiqanbari gen. et sp. nov. (male) – A. Genital opening and genital setae; B. Eugenital setae.
Figure 6 in A new genus and species of Tydeidae (Acari: Prostigmata) from Western Siberia, Russia
Figure 6. Phase-contrast micrographs of Andrelorryia hajiqanbari gen. et sp. nov. (female) – A. General view dorsally; B. General view ventrally.
Figures 3–6 in Gaeolaelaps hajiqanbari sp. nov. (Acari: Mesostigmata: Laelapidae) from Western Siberia, Russia
Figures 3–6. Gaeolaelaps hajiqanbari Joharchi & Nemati sp. nov. (female) – 3. Subcapitulum; 4. Epistome; 5. Supralabral process; 6. Chelicera.
Figures 7–16 in Gaeolaelaps hajiqanbari sp. nov. (Acari: Mesostigmata: Laelapidae) from Western Siberia, Russia
Figures 7–16. DIC micrographs of Gaeolaelaps hajiqanbari Joharchi & Nemati sp. nov. (female) – 7. Idiosoma in dorsal view; 8. Idiosoma in ventral view; 9. Sternal shield; 10. Genital shield; 11. Anal shield and soft opisthogastric cuticle; 12. Subcapitulum; 13. Distal portion of palp, with a focus on apotele; 14. Chelicera; 15. Fe I; 16. Fe IV.
FIGURE 4 in Late Pleistocene insects from the Dubrovino site at Ob River (West Siberia, Russia) and their paleoenvironmental significance
FIGURE 4. Subfossil beetle fragments from the Dubrovino assemblage; elytra (1-2, 7, 11, 13, 17), pronotum (3-4, 6, 8, 15), head (5, 9, 14, 16), and rostrum (10, 12). 1, Otiorhynchus altaicus Stierlin, 1861; 2–3, O. obscurus Gyllenhal in Schoenherr, 1834; 4, O. pullus Gyllenhal in Schoenherr, 1834; 5-6, O. politus Gyllenhal in Schoenherr, 1834; 7, O. beatus Faust, 1890; 8, Stephanocleonus eruditus Faust, 1890; 9, S. isochromus Suvorov, 1912; 10, S. favens Faust, 1884; 11, Pissodes insignatus Boheman in Schoenherr, 1843; 12, Trichalophus biguttatus (Gebler, 1832); 13, Tychius albolineatus Motschulsky, 1860; 14, Phyllobius femoralis Boheman in Schoenherr, 1842; 15, Metadonus distinguendus (Boheman in Schoenherr, 1842); 16, Notaris aethiops (Paykull, 1792); 17, Tournotaris bimaculata (Fabricius, 1787). Scale bars are 1 mm increments.
FIGURE 3 in Late Pleistocene insects from the Dubrovino site at Ob River (West Siberia, Russia) and their paleoenvironmental significance
FIGURE 3. Subfossil beetle fragments from the Dubrovino assemblage; pronotum (1-4, 6, 10-12), head (5), and elytron (7-9, 13-15). 1, Elaphrus cf. riparius (Linnaeus, 1758); 2, Pogonus punctulatus Dejean, 1828; 3, Pterostichus cf. brevicornis (Kirby, 1837); 4, Cymindis cf. arctica Kryzhanovskij et Emetz, 1979; 5, Aphodius multiplex Reitter, 1867; 6, Cymbiodyta marginella (Fabricius, 1792); 7, Trechus cf. compactulus Belousov et Kabak, 1996; 8, Bembidion dauricum (Motschulsky, 1844); 9, Olisthopus sturmii (Duftschmid, 1812); 10, Pterostichus macer (Marsham, 1802); 11, P. mirus (Tschitschérine, 1894); 12, Amara aurichalcea Germar, 1823; 13, Porcinolus murinus (Fabricius, 1794); 14, Morychus ostasiaticus Tshernyshev, 1997; 15, Poecilus cf. ravus (Lutshnik, 1922). Scale bars are 1 mm increments. Figure parts 1–9 and 10–15 correspond to upper and the bottom scale bars, respectively.
FIGURE 1 in Late Pleistocene insects from the Dubrovino site at Ob River (West Siberia, Russia) and their paleoenvironmental significance
FIGURE 1. Locality map of Dubrovino site and similarage late Pleistocene deposits from the West Siberian Plain. 1, Dubrovino; 2, Tyurseda-Khadyta; 3, Kul'egan- 2247; 4, Bun'kovo; 5, Kalistratikha; 6, Novaya Surtaika.
Fig. 2 in Surviving at the edge of land: finding of the limnetic snail Sibirenauta sibirica (Gastropoda: Physidae) on the coast of the Laptev Sea (Eastern Siberia)
Fig. 2. Shell and anatomy of Sibirenauta sibirica, Tyulahk-Kuel Lake. A – shell, B – body extracted from the shell, C – copulatory apparatus, D, E – female reproductive system. A–D – organs of the same specimen. ag – albumen gland, bc – bursa copulatrix, с – caecum, o – oviduct, v – vagina. Scale bars: 5 mm (A–B), 2 mm (C–E).
Fig. 1 in Surviving at the edge of land: finding of the limnetic snail Sibirenauta sibirica (Gastropoda: Physidae) on the coast of the Laptev Sea (Eastern Siberia)
Fig. 1. Collecting sites of Sibirenauta sibiraca. A – Tyulahk-Kuel Lake, B – small pool on the coast of Tiksi Bay. Photographs by A. Nekhaeva.
Рис. 2. Биотопы: 6 — СамагаΛтай; 7 — Уюк; 8 — Эрзин. Имаго, фото в прироΔе: 9 — Selenia ononica, Эрзин; 10 — Semidesertobia ubinica, Эрзин; 11 — Orthosia ariuna, Эрзин Fig. 2. Biotopes: 6 — Samagaltai; 7 — Ujuk; 8 — Erzin. Imago in nature: 9 — Selenia ononica, Erzin; 10 — Semidesertobia ubinica, Erzin; 11 — Orthosia ariuna, Erzin in New Records Of Heterocera (Lepidoptera) From The Republic Of Tyva (Southern Siberia, Russia)
Рис. 2. Биотопы: 6 — СамагаΛтай; 7 — Уюк; 8 — Эрзин. Имаго, фото в прироΔе: 9 — Selenia ononica, Эрзин; 10 — Semidesertobia ubinica, Эрзин; 11 — Orthosia ariuna, Эрзин Fig. 2. Biotopes: 6 — Samagaltai; 7 — Ujuk; 8 — Erzin. Imago in nature: 9 — Selenia ononica, Erzin; 10 — Semidesertobia ubinica, Erzin; 11 — Orthosia ariuna, Erzin
Рис. 1. Вьюн НикоΛьского M. nikolskyi Vasil'eva, 2001 (пойменный воΔоем реки БурΛа, Панкрушихинский район АΛтайского края) in Vasil'Eva, 2001 A As New Specie In The Fish Fauna Of Altai Krai (West Siberia, The Russian Federation)
Рис. 1. Вьюн НикоΛьского M. nikolskyi Vasil'eva, 2001 (пойменный воΔоем реки БурΛа, Панкрушихинский район АΛтайского края)
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.