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Fig. 7 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus

Fig. 7. Mesobiotus vulpinus sp. nov., total view. A. Paratype, ♀ (SPbU 420(1)). Dorso-ventral view, PhC. B. Paratype (SPbU Tar_65). Ventro-lateral view in SEM. Scale bars = 50 µm.

opencc-by-4.0Jul 2024View details →
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Fig. 4 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus

Fig. 4. Mesobiotus efa sp. nov., claws. A–B, E. Holotype (SPbU 275(72)). C. Paratype (SPbU 275(197)). D. Paratype (SPbU Tar_33). A. Claws of leg I, black arrowhead indicates bar-like cuticular thickening, PhC. B. Claws of leg II, black arrowhead indicates bar-like cuticular thickening, PhC. C. Claws of leg IV, white arrowhead indicates cuticular sculpture around the claw base, PhC. D. Claws of leg IV, white arrowhead indicates cuticular sculpture around the claw base, SEM. E. Claws of leg IV, black arrowhead indicates horseshoe-like structure, PhC. Scale bars: A–C, E = 10 µm; D = 5 µm.

opencc-by-4.0Jul 2024View details →
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Fig. 3 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus

Fig. 3. Mesobiotus efa sp. nov., bucco-pharyngeal apparatus.A. Holotype (SPbU 275(72)).B–G. Paratype (SPbU 275(197)). A. Total dorso-ventral view of the bucco-pharyngeal apparatus, black arrowheads indicate eyes, PhC. B–C. Placoids, PhC (B) and DIC (C). D–G. Oral cavity armature (D–E = dorsal view, F–G = ventral view), PhC (D, F), DIC (E, G). Scale bars: A = 10 µm; B–G = 5 µm.

opencc-by-4.0Jul 2024View details →
zenodo40/100

Fig. 2 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus

Fig. 2. Mesobiotus efa sp. nov., cuticular sculpture. A–B, D. Paratype (SPbU Tar_33). C. Paratype (SPbU 275(197)). A. High magnification of the sculpture of the dorsal body surface, SEM. B. Dot-like sculpture on the external surface of leg III, SEM. C. Dot-like sculpture on the external surface of leg III, PhC, black arrowhead indicates dots. D. Dot-like sculpture on the dorsal side of hind legs, SEM. Scale bars: A–B, D = 2 µm; C = 5 µm.

opencc-by-4.0Jul 2024View details →
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Fig. 1 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus

Fig. 1. Mesobiotus efa sp. nov., total view. A. Holotype, ♀ (SPbU 275(72)). Dorso-ventral view, black arrowheads indicate eyes, PhC. B. Paratype (SPbU Tar_33). Ventral view in SEM. Scale bars = 50 µm.

opencc-by-4.0Jul 2024View details →
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Fig. 6 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus

Fig. 6. Mesobiotus efa sp. nov., paratype (SPbU Tar_33), eggs. A. Total view of the egg, SEM. B–C. Details of the egg surface, black arrowheads indicate pores on the egg processes, black arrow indicates wrinkles on the egg surface, SEM. D. Egg process, black arrowheads indicate pores, white arrowhead indicates terminal filaments, SEM. Scale bars: A = 20 µm; B = 5 µm; C–D = 2 µm.

opencc-by-4.0Jul 2024View details →
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Fig. 5 in Integrative description of two new species of the genus Mesobiotus (Eutardigrada, Macrobiotoidea) from Russia, with an updated phylogeny of the genus

Fig. 5. Mesobiotus efa sp. nov., eggs. A–E, H–I. Paratype (SPbU 275(210)). F–G. Paratype (SPbU 275(180)). A. Total view of the optical section of the embryonated egg, PhC. B. Total view of the egg surface, PhC. C. Total view of the egg surface, DIC. D. Details of the egg surface, PhC. E–H. Egg processes, PhC. I. Optical section of the egg process, DIC. Black arrowheads indicate bifurcated tips, white arrowheads indicate terminal and subterminal filaments, black arrow indicates a pore. Scale bars: A–C = 20 µm; D–I = 10 µm.

opencc-by-4.0Jul 2024View details →
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Gridded runoff reanalysis datasets for Northwest Russia

<p>Developed gridded runoff reanalysis datasets -- GR4J-GRDC and GR4J-GRDC-R5 -- are the part of the manuscript &quot;When barriers are gone: On the importance of making runoff observations openly available to increase the efficiency of regional hydrological models&quot; by G. Ayzel, L. Kurochkina, and S. Zhuravlev which was submitted in the Special Issue on &ldquo;Hydrological Data: Opportunities and Barriers&rdquo; of the Hydrological Sciences Journal (http://explore.tandfonline.com/cfp/est/hydrological-science-data).</p>

opencc-by-4.0Mar 2019View details →
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Museums of Russia

<p>List of russian museums and galleries, registered in Russian&nbsp;Ministry of Culture&#39;s information system and statistical information of these museums</p>

opencc-by-4.0Jun 2019View details →
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Fig. 3 in Two new nematode species of the genus Tobrilus Andrássy, 1959 (Nematoda, Triplonchida) from Lake Baikal, Russia

Fig. 3. Tobrilus juliae sp. nov. A. Male anterior end. B. Female vulva region. C. Male pharyngeal region. D. Female posterior body end. E. Male posterior body end. Scale bars: A = 15 µm; B = 50 µm; C = 100 µm; D = 40 µm; E = 30 µm.

opencc-by-4.0Nov 2019View details →
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Fig. 1 in Two new nematode species of the genus Tobrilus Andrássy, 1959 (Nematoda, Triplonchida) from Lake Baikal, Russia

Fig. 1. Tobrilus elginus sp. nov. A. Male anterior end. B. Male pharyngeal region. C. Female posterior body end. D. Male posterior body end. E. Female vulva region. Scale bars: A = 20 µm; B, E = 100 µm; C–D = 50 µm.

opencc-by-4.0Nov 2019View details →
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Fig. 2 in Two new nematode species of the genus Tobrilus Andrássy, 1959 (Nematoda, Triplonchida) from Lake Baikal, Russia

Fig. 2. Tobrilus elginus sp. nov., light micrographs. A. Entire male. B. Entire female. C. Male pharyngeal region. D. Male anterior end. E. Female anterior end. F. Female vulva region. G, I. Male posterior body end. H. Male supplement region. J. Female posterior body end. Scale bars: A–B = 500 µm; C, F = 100 µm; D–E, H = 10 µm; G = 20 µm; I–J = 50 µm.

opencc-by-4.0Nov 2019View details →
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Fig. 1 in Quantitative And Qualitative Composition Of Diet Of The Ural Owl, Strix Uralensi (Strigidae, Strigiformes), In The Central Part Of European Russia (The Example Of The Republic Of Mordovia)

Fig. 1. The maximum number of different elements of the skeleton of rodents in pellets Ural Owl in Mordovia (n = 146 pellets)

opencc-by-4.0Oct 2017View details →
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Fig.9 in A new species of Todites (Pteridophyta) with in situ spores from the Upper Permian of Pechora Cis-Urals (Russia)

Fig.9.Spores of Osmundacidites type, extracted from the matrix containing the holotype of Todites lobulatus sp.nov.,GIN 4846/102. A–C.Different indi − vidual spores, × 1500. D–F. Granulate sculpture of spore surface, × 3000.

opencc-by-4.0Dec 2002View details →
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Fig.6 in A new species of Todites (Pteridophyta) with in situ spores from the Upper Permian of Pechora Cis-Urals (Russia)

Fig.6. Todites lobulatus sp.nov.Intinskian Formation, Ufimian, Upper Permian.Macromorphology and in situ spores, based on holotype GIN 4846/102. A, B.Fertile pinnule reconstruction, upper (adaxial, A) and lower (abaxial, B) view, numerous sporangia attached to lower side of the pinnule surface (B). C.Individual sporangium with thick−walled cells on the top area. D.Granulate microstructure of the spore surface. E.General view on the isolated spore. F, G.Spore mass extracted from the sporangia, note different sizes (relatively small spores 1 and 2 and big spores 3 and 4 of F) and different outlines of the spores (round spores 2 and ovoid 1, 3 and 4 of F; round spore 1, rounded subtriangular spore 2 and ovoid spore 3 of G).Scale bars: A, B, 5 mm; C, 0.1 mm; E, F, G, 50 µm; D, 5 µm.

opencc-by-4.0Dec 2002View details →
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Fig.3 in A new species of Todites (Pteridophyta) with in situ spores from the Upper Permian of Pechora Cis-Urals (Russia)

Fig.3. Todites lobulatus sp.nov.Intinskian Formation, Ufimian, Upper Permian.Holotype GIN 4846/102. A, B.General morphology of fertile pinna, bef − ore (A) and after (B) preparation; A, × 1; B, × 4. C.Two prepared sporangia; left sporangium shows a group of thick−walled cells near the stomium (dark de − pression); × 18. D. The spore of Osmundacidites type, preserved in situ, under SEM, × 800.

opencc-by-4.0Dec 2002View details →
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Fig.8 in A new species of Todites (Pteridophyta) with in situ spores from the Upper Permian of Pechora Cis-Urals (Russia)

Fig.8.Spores of Osmundacidites type, extracted from the matrix containing the holotype of Todites lobulatus sp.nov.,GIN 4846/102. A, B, D, E.Different individual spores; A, B, D, × 1500; E, × 750. C, F. Granulate sculpture of spore surface, × 3000.

opencc-by-4.0Dec 2002View details →
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Fig.7 in A new species of Todites (Pteridophyta) with in situ spores from the Upper Permian of Pechora Cis-Urals (Russia)

Fig.7. Todites lobulatus sp.nov.Intinskian Formation, Ufimian, Upper Permian. In situ spores extracted from the holotype GIN 4846/102. A.Spore mass repeating the initial round form of sporangium, × 50. B.Several spores of different size and form, × 200. C.Spore with clearly seen laesura (left part of the photograph), × 200. D. Spore mass of ovoid form from relatively elongated sporangium, × 50. E. Spore mass in detail, × 200. F. Detail of D, × 100.

opencc-by-4.0Dec 2002View details →
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Figure 3 in The northernmost European record of Parasetodes respersellus Trichoptera: Leptoceridae) from the Courish Spit (Russia) with notes on its distribution and imaginal morphology

Figure 3. Parasetodes respersellus, male genitalia, A: dorsal view; B: ventral view; C: phallus, lateral view.

opencc-by-4.0Jul 2014View details →
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Text-fig. 19. Geological position of the flora of Roudníky in the cores Ru 43 and Ru 60 and radiometric dating (from Bellon et al. 1998, adapted). 1 – xenolites intercalated with claystone, 2 – claystone, 3 – pyroclastite, 4 – tuffaceous claystone, 5 – olivine basalt, 6 – Quaternary cover. in Mid-Latitude Palaeogene Floras Of Eurasia Bound To Volcanic Settings And Palaeoclimatic Events - Experience Obtained From The Far East Of Russia (Sikhote-Alin') And Central Europe (Bohemian Massif)

Text-fig. 19. Geological position of the flora of Roudníky in the cores Ru 43 and Ru 60 and radiometric dating (from Bellon et al. 1998, adapted). 1 – xenolites intercalated with claystone, 2 – claystone, 3 – pyroclastite, 4 – tuffaceous claystone, 5 – olivine basalt, 6 – Quaternary cover.

opencc-by-4.0Nov 2009View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record