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Text-fig.10. Taimyria triassica NAUGOLNYKH et MOGUTCHEVA gen. et sp. nov., holotype 4287/6. a–f: seeds extracted from seed-bearing capsule. Locality: Tsvetkov Cape; Lower Triassic, Induan; Keshin Formation. Scale bar 1 cm. in Taimyria Gen. Nov., A New Genus Of Evolutionary Advanced Gymnosperms From Triassic Of The Taimyr Peninsula, Siberia, Russia
Text-fig.10. Taimyria triassica NAUGOLNYKH et MOGUTCHEVA gen. et sp. nov., holotype 4287/6. a–f: seeds extracted from seed-bearing capsule. Locality: Tsvetkov Cape; Lower Triassic, Induan; Keshin Formation. Scale bar 1 cm.
Text-fig. 9. Taimyria triassica NAUGOLNYKH et MOGUTCHEVA gen. et sp. nov., holotype 4287/6. Structure of seed extracted from seed-bearing capsule. a: general morphology; b, c: detailed cellular structure. Locality: Tsvetkov Cape; Lower Triassic, Induan; Keshin Formation. Scale bar 1 mm (a), 100 µm (b, c). in Taimyria Gen. Nov., A New Genus Of Evolutionary Advanced Gymnosperms From Triassic Of The Taimyr Peninsula, Siberia, Russia
Text-fig. 9. Taimyria triassica NAUGOLNYKH et MOGUTCHEVA gen. et sp. nov., holotype 4287/6. Structure of seed extracted from seed-bearing capsule. a: general morphology; b, c: detailed cellular structure. Locality: Tsvetkov Cape; Lower Triassic, Induan; Keshin Formation. Scale bar 1 mm (a), 100 µm (b, c).
Text-fig. 4. Taimyria triassica NAUGOLNYKH et MOGUTCHEVA gen. et sp. nov., holotype 4287/6. a: line drawing explaining female cone morphology after holotype; b: suggested reconstruction showing arrangement and vascularization of seed-bearing discs (left), and section through seed-bearing discs exhibiting seed attachment and marginal limb structure (right); c: seed scar structure (after Textfig. 3c), 1 – subepidermal and epidermal tissues under the cuticle, 2 – coaly tissues of mesophyll. Oval form at seed scar center is possible exit of conducting strand. Locality: Tsvetkov Cape; Lower Triassic, Induan; Keshin Formation. Scale bar 1 cm (a, b), 100 µm (c). in Taimyria Gen. Nov., A New Genus Of Evolutionary Advanced Gymnosperms From Triassic Of The Taimyr Peninsula, Siberia, Russia
Text-fig. 4. Taimyria triassica NAUGOLNYKH et MOGUTCHEVA gen. et sp. nov., holotype 4287/6. a: line drawing explaining female cone morphology after holotype; b: suggested reconstruction showing arrangement and vascularization of seed-bearing discs (left), and section through seed-bearing discs exhibiting seed attachment and marginal limb structure (right); c: seed scar structure (after Textfig. 3c), 1 – subepidermal and epidermal tissues under the cuticle, 2 – coaly tissues of mesophyll. Oval form at seed scar center is possible exit of conducting strand. Locality: Tsvetkov Cape; Lower Triassic, Induan; Keshin Formation. Scale bar 1 cm (a, b), 100 µm (c).
Text-fig. 2. Taimyria triassica NAUGOLNYKH et MOGUTCHEVA gen. et sp. nov., a – holotype 4287/6. Lateral female cones marked by orange arrows; main axis bearing lateral cones marked "Ax". Scale bar 1 cm. in Taimyria Gen. Nov., A New Genus Of Evolutionary Advanced Gymnosperms From Triassic Of The Taimyr Peninsula, Siberia, Russia
Text-fig. 2. Taimyria triassica NAUGOLNYKH et MOGUTCHEVA gen. et sp. nov., a – holotype 4287/6. Lateral female cones marked by orange arrows; main axis bearing lateral cones marked "Ax". Scale bar 1 cm.
Text-fig. 11. Taimyria triassica NAUGOLNYKH et MOGUTCHEVA gen. et sp. nov. Suggested reconstruction of fertile shoot. Scale bar 1 cm. in Taimyria Gen. Nov., A New Genus Of Evolutionary Advanced Gymnosperms From Triassic Of The Taimyr Peninsula, Siberia, Russia
Text-fig. 11. Taimyria triassica NAUGOLNYKH et MOGUTCHEVA gen. et sp. nov. Suggested reconstruction of fertile shoot. Scale bar 1 cm.
Figs 2–7 in Two new species of Neuratelia Rondani (Diptera: Mycetophilidae) from Chukotka, North-East Russia
Figs 2–7. Neuratelia aculeata sp. n., male. 2 – terminalia, ventral view; 3 – terminalia, dorsal view; 4 – terminalia, lateral view; 5 – gonostylus, mesial view; 6 – aedeagal complex, lateral view; 7 – aedeagal complex, ventral view. Abbreviations: cerc – cercus; gst – gonostylus; dlg – dorsoapical lobe of gonocoxite; vlg – ventroapical lobe of gonocoxite; par – paramere; tg9 – tergite 9. Scale bar = 0.2 mm.
FIG. 3 in Trematodon laetevirens Hakelier & J.-P. Frahm and T. brevicollis Hornsch. (Bruchiaceae, Bryophyta) in Russia
FIG. 3. — Distribution of T. laetevirens Hakelier & J.-P. Frahm (1-3), T. brevicollis Hornsch. (4) and T. longicollis Michx. (5-8) in the Russian Federation (8 – open symbol – samples not examined)
FIG. 2. — Most likely phylogeny inferred from concatenated ITS2 in Trematodon laetevirens Hakelier & J.-P. Frahm and T. brevicollis Hornsch. (Bruchiaceae, Bryophyta) in Russia
FIG. 2. — Most likely phylogeny inferred from concatenated ITS2 and trnL-F data for species of Trematodon reported from Russia. Bootstrap support values of maximum parsimony and maximum likelihood analyses (MP/ML) higher than 50% are indicated. Scale: substitution per site.
FIG. 1 in Trematodon laetevirens Hakelier & J.-P. Frahm and T. brevicollis Hornsch. (Bruchiaceae, Bryophyta) in Russia
FIG. 1. — Localities of T. laetevirens Hakelier & J.-P. Frahm in the Khibiny Mountains (* and ▲): A, schemaric map of Murmansk Region and Khibiny Mts. location.
FIG. 3 in Morphological description and molecular phylogeny of two diatom clones from the genus Ulnaria (Kützing) Compère isolated from an ultraoligotrophic lake at the Pole of Cold in the Northern Hemisphere, Republic of Sakha (Yakutia), Russia
FIG. 3. — Cells in the culture Ulnaria pilum Kulikovskiy & Lange-Bertalot LAB55 attached to substrate: A, LM, mucilage strands are stained by Alcian blue in single cell; B, LM, cell aggregates; C, SEM, there are no traces of mucilage on the unattached ends of cells, tree closed girdle bands of each valve are pointed by arrowheads; D, SEM, attachment occurs with mucilage excreted through the pore field. Scale bars: A, B, 50 µm; C, 5 µm; D, 1 µm.
FIG. 2 in Morphological description and molecular phylogeny of two diatom clones from the genus Ulnaria (Kützing) Compère isolated from an ultraoligotrophic lake at the Pole of Cold in the Northern Hemisphere, Republic of Sakha (Yakutia), Russia
FIG. 2. — Ulnaria pilum Kulikovskiy & Lange-Bertalot LAB59: A, LM; B, SEM, external view and central area; C, internal view and central area; D, SEM, external view and the valve apex; E, internal view and the valve apex, rimoportula is located at an oblique angle relative to the central sternum; F, SEM, external view, two small spines at the apex. Scale bars: A, 50 µm; B-E, 5 µm; F, 1 µm.
Figure 4 SEM micrographs ofLinotetranus sibiriensis n in First record of Linotetranidae (Acari: Tetranychoidea) from Russia, with description of a new species
Figure 4 SEM micrographs ofLinotetranus sibiriensis n. sp., female: A – general view dorsally, B – prosoma, dorsal aspect, C – general view ventrally, D – hysterosoma, ventral aspect.
Figure 5 SEM micrographs ofLinotetranus sibiriensis n in First record of Linotetranidae (Acari: Tetranychoidea) from Russia, with description of a new species
Figure 5 SEM micrographs ofLinotetranus sibiriensis n. sp., female: A – ano-genital area, B – gnathosoma, ventral aspect, C – tibia and tarsus of right palp, ventrolateral aspect, D – right tarsus I, ventral aspect.
Figure 1 Linotetranus sibiriensis n in First record of Linotetranidae (Acari: Tetranychoidea) from Russia, with description of a new species
Figure 1 Linotetranus sibiriensis n. sp., female: A – dorsum of body, B – venter of body. Legs omitted.
Figure 2 Sphaerozetes parafirthensisErmilov n in New faunistical data on oribatid mites (Acari, Oribatida) from Altai, Russia, with description of a new species of Sphaerozetes (Ceratozetidae)
Figure 2 Sphaerozetes parafirthensisErmilov n. sp., adult: a – subcapitulum, ventral view; b – palp, right, antiaxial view; c – chelicera, left, paraxial view; d – leg I, right, antiaxial view; e – leg II, right, antiaxial view (tarsus omitted); f – leg III, right, antiaxial view (tarsus omitted); g – leg IV, left, antiaxial view. Scale bars 100 μm (a, c–g), 10 μm (b).
Figure 1 Sphaerozetes parafirthensisErmilov n in New faunistical data on oribatid mites (Acari, Oribatida) from Altai, Russia, with description of a new species of Sphaerozetes (Ceratozetidae)
Figure 1 Sphaerozetes parafirthensisErmilov n. sp., adult: a – dorsal view (legs omitted); b – medioanterior part of prodorsum, dorsoanterior view; c – ventral view (gnathosoma and legs omitted); d – right lateral view (gnathosoma and legs omitted); e – posterior view (right half omitted). Scale bars 100 μm (a, c–e), 50 μm (b).
Figures 11–12 in A new water mite species of the genus Hydryphantes Koch (Acari, Hydrachnidia, Hydryphantidae) from the Yaroslavl Province of Russia
Figures 11–12. Hydryphantes ildensis sp. n., larva: 11 – dorsal view; 22 – ventral view. Scale bar: 50 μm.
Figures 13–22 in A new water mite species of the genus Hydryphantes Koch (Acari, Hydrachnidia, Hydryphantidae) from the Yaroslavl Province of Russia
Figures 13–22. Hydryphantes ildensis sp. n., larva: 13–14 – excretory pore plate; 15 – basal segment of chelicera, dorsal view, 16 – chela, lateral view; 17 – pedipalp, lateral view; 18 – I–Leg-4–6; 19 – II–Leg–4–6; 20 – III–Leg–4–6; 21 – claws of leg I; 22 – claws of leg III. Simple setae on I–III–Leg-4–6 are not shown. Scale bars: 13–14, 16–17, 18– 22 = 20 μm, 15 = 50 μm.
Figure 5 in Barbronia borealis sp. nov., the first salifid leech discovered in Russia, with a global checklist of this genus
Figure 5. External morphological features of the holotype of Barbronia borealis sp. nov. (RMBH Hir_0405). (a-b) Arrangement of three pairs of eyespots: dorsal view (a) and lateral view from right side (b). (c) Ventral region of clitellum, with male (mg) and female (fg) gonopores, and male and female accessory copulatory pores (map and fap, respectively). Body somites are indicated by roman numerals; symbols b1, b2, a2, b5, c11, and c12 indicate the number of annulus. Scale bars = 0.5 mm (a-b) and 1.0 mm (c). Photos: Tatyana A. Eliseeva; graphics: Ivan N. Bolotov.
Figure 3 in Barbronia borealis sp. nov., the first salifid leech discovered in Russia, with a global checklist of this genus
Figure 3. Fragment of the BOLD TaxonID Tree with a taxonomic reappraisal of available COI sequences of Barbronia species (assessed on May 05, 2023). Titles of sequences from non-native populations are red; those from native populations are black.
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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.
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.