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Figure 8 in Three new species and new records of Pediculaster (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 8 Pediculaster tjumeniensis sp. nov., larva: A – left leg I, dorsal aspect, B – left leg II, dorsal aspect, C – left leg III, dorsal aspect.
Figure 6 in Three new species and new records of Pediculaster (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 6 Pediculaster tjumeniensis sp. nov., non-phoretic female: A – left leg III, dorsal aspect, B – left leg IV, dorsal aspect.
Figure 5 in Three new species and new records of Pediculaster (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 5 Pediculaster tjumeniensis sp. nov., non-phoretic female: A – left leg I, dorsal aspect, B – left leg II, dorsal aspect.
Figure 4 in Three new species and new records of Pediculaster (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 4 Pediculaster tjumeniensis sp. nov., non-phoretic female: A – dorsum of the body, B – venter of the body. Legs omitted.
Figure 3 in Three new species and new records of Pediculaster (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 3 Pediculaster tjumeniensis sp. nov., phoretic female: A – left leg III, dorsal aspect, B – left leg IV, dorsal aspect.
Figure 1 in Three new species and new records of Pediculaster (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 1 Pediculaster tjumeniensis sp. nov., phoretic female: A – dorsum of the body, B – venter of the body. Legs omitted.
Figure 2 in Three new species and new records of Pediculaster (Acari: Pygmephoridae) from Western Siberia, Russia
Figure 2 Pediculaster tjumeniensis sp. nov., phoretic female: A – left leg I, dorsal aspect, B – left leg II, dorsal aspect.
Fig.1 in The spider family Liocranidae in Siberia and Far East (Aranei)
Fig.1.Agroecabrunnea(A-C),A.maculata(D,E)andA.proxima(F.).A,B-malepalpC,D,F-epigyne;E-vulva.Scale0.1mm
Fig.2 in The spider family Liocranidae in Siberia and Far East (Aranei)
Fig.2.Agroecaproxima(A,B),Phrurolithusfestivus(C-F)andPh.hamdeokensis(G):A,B,C,D-malepalp;E,G-epigyne; -vulvaScale0.1mm.
Fig.3 in The spider family Liocranidae in Siberia and Far East (Aranei)
Fig.3.Phrurolithushamdeokensis(A-C),Ph.pargongensis(D)andPh.pennatus(E,F):A-vulva;B,C,E,F-malepalp;D- epigyne.Scale0.1mm.
Figs 8–11 in THREE NEW SPECIES OF THE GENUS CASIGNETELLA STRAND, 1928 (LEPIDOPTERA: COLEOPHORIDAE) FROM SOUTHERN SIBERIA
Figs 8–11. Casignetella sibirolinosyris sp. n., holotype. 8 – imago; 9 – spiny plates on abdominal tergites; 10 – male genitalia, pallotheca remuved; 11 – phallotheca.
Figs 5–7 in THREE NEW SPECIES OF THE GENUS CASIGNETELLA STRAND, 1928 (LEPIDOPTERA: COLEOPHORIDAE) FROM SOUTHERN SIBERIA
Figs 5–7. Casignetella pseudoheihensis sp. n., holotype. 5 – imago; 6 – spiny plates on abdominal tergites; 6 – genitalia.
Figs 1–4 in THREE NEW SPECIES OF THE GENUS CASIGNETELLA STRAND, 1928 (LEPIDOPTERA: COLEOPHORIDAE) FROM SOUTHERN SIBERIA
Figs 1–4. Casignetella pseudohelgada sp. n., holotype. 1 – imago; 2 – spine plates on abdominal tergites; 3 – male genitalia, pallotheca remuved; 4 – phallotheca.
Fig. 1 in A relict stem salamander: evidence from the Early Cretaceous of Siberia
Fig. 1. Fragmentary trunk vertebral centrum (LMCCE 1/4) of stem salamander Caudata, gen. et sp. indet. from the Shestakovo locality, Lower Cretaceous Aptian–Albian), Ilek Formation, Western Siberia, Russia; in right lateral (A), left lateral (B), ventral (C, anterior towards top), posterior (D), anterior (E), and dorsal (F, anterior towards top) views. Photographs (A1–C1, D–F) and interpretive drawings (A2–C2).
Fig. 2 in A relict stem salamander: evidence from the Early Cretaceous of Siberia
Fig. 2. Simplified relationships and temporal ranges of stem- and crowngroup salamanders. Stem salamanders are represented only by Karauridae (i.e., Kokartus + Karaurus). A, stratigraphic placement (Bathonian) of the stem salamander Kokartus (note that the stem salamanders Marmorerpeton, "Kirtlington salamander A", Urupia, and "Berezovsk salamander A" have the same stratigraphic placements). B, stratigraphic placement (Kimmeridgian) of Karaurus (note that salamanders "cf. Marmorerpeton" from Portugal and the possible "stem salamander" from the USA have approximately the same stratigraphic placements). C, stratigraphic placement (Aptian–Albian) of the stem salamander Caudata, Gen. et sp. indet. reported here from the Shestakovo locality and possible stem salamanders from the Cloverly Formation of USA.
FIG. 1 in The finding of Unio pictorum (Linnaeus, 1758) (Bivalvia: Unionidae) in the Om' River, Western Siberia
FIG. 1. The shell valves of Unio pictorum from the Om' River (Omsk City, around the railway bridge, collected on 12.09.2023). Scale bar – 10 mm. РИС. 1. Створки раковин U. pictorum иЗ р. Омь в г. Омске в районе желеЗнодорожного моста (дата сбора 12.09.2023). МасШтабнаЯ линейка – 10 мм.
Fig. 1 in Dynamics Of Mouse-Like Rodent Communities In Anthropogenically Disturbed Territories Of The Southeast Of Western Siberia (Kemerovo Region, Russia)
Fig. 1. The dynamics of similarity of small mammal populations in deforested zones compared to the initial population in taiga (using the Czekanowsky-SØrensen coefficient calculated for species' percentage in the community).
Fig. 10 in Revision of the genus Canthocamptus (Copepoda: Harpacticoida) with a description of a new species from the Lena River Delta (North-eastern Siberia)
Fig. 10. Canthocamptus waldemarschneideri sp. nov., ♂, Yuzshnoe Lake (KFU). A. P2 endopod, anterior view. B. P2 endopod, outer side. C. P3 endopod, anterior view. D. P3 endopod, inner side.
Fig. 11. A in Revision of the genus Canthocamptus (Copepoda: Harpacticoida) with a description of a new species from the Lena River Delta (North-eastern Siberia)
Fig. 11. A. Quartet puzzling tree of the genus Canthocamptus Westwood, 1836, constructed by the parsimony method based on the matrix from Supp. file 1. Dots mark the main changes in character states in studied branches. Changes in the characters are marked under the dot. B. Attheyella nordenskioldii (Lilljeborg, 1902), ♂, P2 endopod. Generic abbreviations: A. = Attheyella; B. = Bryocamptus; C. = Camptocamptus; E. = Elaphoidella; H. = Heteropsyllus; K. = Kikuchicamptus gen. nov.; M. = Mesochra.
Fig. 8 in Revision of the genus Canthocamptus (Copepoda: Harpacticoida) with a description of a new species from the Lena River Delta (North-eastern Siberia)
Fig. 8. Canthocamptus waldemarschneideri sp. nov., allotype, ♂ (KFU BP 544/2). A. Antennule, dorsal view. B. Antennule, anterior view. C. P5.
ScienceDex guides
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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.