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FIGURE 2 in Oribatid mites (Acari, Oribatida) of plain area of the Southern European Russia
FIGURE 2. Distribution of species richness among different families of oribatid mites in the Southern European Russia (taxa are in systematic order).
Open and Reproducible Dataset of Bibliometric Indicators of Russia
<p>Version 1. Data collected on 03-04 November 2023.</p><p><i>by Ivan Sterligov, HSE University, </i><a href="mailto:ivan.sterligov@gmail.com"><i>ivan.sterligov@gmail.com</i></a></p><p>See readme.md for details</p><p>The dataset comes with python code that lets anyone collect and update all the data automatically, provided they set up a free access to Scopus API and conform to the rules of API usage set by Elsevier.</p><p>The dataset is a part of a broader academic project aimed at tracking dramatic changes in Russian publication output after 2022 and generally focuses on the period starting at 2018. This is an academic non-commercial research project and includes no Scopus metadata "as is", and no matadata on any particular paper, author or journal, only publication counts obtained using proprietary queries and journal lists constructed by its author. No citation metrics are used or published.</p><p>Dataset will be hopefully updated and new versions posted at Zotero. You can cite specific version DOI to be sure that you reference particular values. Also, the dataset as a whole has a common DOI which resolves to the newest version.</p>
Figure 12 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 12. Karpinskiosaurus secundus (Amalitzky, 1921): PIN 4617/201, partial parasphenoid; dashed line indicates imprint of anteriormost portion of cultriform process in matrix.
Figure 1 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 1. Karpinskiosaurus secundus (Amalitzky, 1921), PIN 2005/81 (holotype). Photographs of skull in dorsal (A), ventral (B), dorsolateral (C), and ventral (D) views.
Figure 5 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 5. Karpinskiosaurus secundus (Amalitzky, 1921), PIN 4617/158. A, photograph of anterolateral portion of skull in lateral view. B, outlines of several bones of the same specimen.
Figure 4 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 4. Karpinskiosaurus secundus (Amalitzky, 1921), PIN 4617/158. Photographs of partly disarticulated skull in dorsal (A) and lateral (B) views.
Figure 8 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 8. Karpinskiosaurus secundus (Amalitzky, 1921), PIN 4617/200. Photograph of skull (A) and outlines of its individual bones (B) in dorsal view. C, photograph of skull in ventral view. D, outline of pterygoid in dorsal view.
Figure 11 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 11. Karpinskiosaurus secundus (Amalitzky, 1921). A, PIN 104B/2032, disarticulated partial skull: right palatine in ventral view; left vomer in dorsal view; left lower jaw in internal view. B, PIN 104B/2008, partially disarticulated skull in dorsal view (right maxilla in internal view).
Figure 3 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 3. Karpinskiosaurus secundus (Amalitzky, 1921). Reconstructions of skull in dorsal (A), lateral (B), and ventral (C) views. D, schematic drawing of transverse section of palatal ramus of pterygoid at level a in (C).
Figure 14. Phylogenetic analysis. A, B in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 14. Phylogenetic analysis. A, B, two equally parsimonious trees recovered by PAUP* 4.0b10 from a heuristic search of 35 taxa and 155 characters. C, bootstrap percentages on a 50% majority-rule consensus tree.
Figure 13 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 13. Comparisons of skulls of Karpinskiosaurus secundus (Amalitzky, 1921) with similar sized skulls of Discosauriscus austriacus. Outline drawing of skulls in dorsal, lateral, and ventral views: A–C, Karpinskiosaurus secundus, based on PIN 4617/200 and PIN 4617/158. D–F, Discosauriscus austriacus (Makowsky, 1876), based on SNM Z 15529. G–I, Karpinskiosaurus secundus, based on PIN 2005/81 and PIN 2005/82. J–L, Discosauriscus austriacus (Makowsky, 1876), based on SNM Z 25744 and SNM Z 15568.
Figure 7 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 7. Karpinskiosaurus secundus (Amalitzky, 1921), SGU 104B/323. Right maxilla in external (A) and internal (B) views. C, reconstruction of maxilla tooth in mesiolingual view (on basis of SGU 104B/323).
Figure 6 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 6. Karpinskiosaurus secundus (Amalitzky, 1921), PIN 4617/158. A, photograph of palatine through right orbit in dorsal view. B, outline of palatine of the same specimen in dorsal view.
Figure 2 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 2. Karpinskiosaurus secundus (Amalitzky, 1921), PIN 2005/82. Photographs of skull in dorsal (A) and ventral (B) views. Partial lower jaw in external (C) and internal (D) views (anterior and posterior portions are missing).
Figure 10 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 10. Karpinskiosaurus secundus (Amalitzky, 1921), PIN 4617/188. Photographs of disarticulated specimen. A, maxilla and lacrimal in internal views, premaxillae in external view. B, squamosal in internal view. C, quadratojugal in external view. D, prearticular in internal view.
Figure 9 in The cranial anatomy, ontogeny, and relationships of Karpinskiosaurus secundus (Amalitzky) (Seymouriamorpha, Karpinskiosauridae) from the Upper Permian of European Russia
Figure 9. Karpinskiosaurus secundus (Amalitzky, 1921). Reconstructions of skull in dorsal (A), lateral (B), and ventral (C) views. Left lower jaw in external (D) and right lower jaw in internal (E) views.
FIGURE 4 in Contribution to the knowledge of genus Nalassus Mulsant, 1856 (Coleoptera Tenebrionidae) from the Eastern Caucasus, Russia
FIGURE 4. Nalassus spp., male genitalia and habitats. A–E = N. magomedrasuli sp. n.; F = N. kalashiani; A = aedeagus, B = inner sternite VIII; C = inner tergite IX; D = spiculum gastrale; E = limestone mountain phryganoid steppe, 1100 m (Levashi, Dagestan, Russia); F = alpine meadow, 2200 m (southern slope of Tsoreylam ridge, State Natural Reserve "Erzi", Ingushetia, Russia).
FIGURE 1 in Contribution to the knowledge of genus Nalassus Mulsant, 1856 (Coleoptera Tenebrionidae) from the Eastern Caucasus, Russia
FIGURE 1. Nalassus spp., habitus and details of structure. A = N. magomedrasuli sp. n., male (holotype), habitus dorsally; B = ditto (paratype), female; C = ditto, male habitus ventrally; D = N. kalashiani, male (holotype) habitus dorsally; E = ditto, female; F = N. magomedrasuli sp. n., male antennae; G = N. kalashiani, male.
FIGURE 3 in Contribution to the knowledge of genus Nalassus Mulsant, 1856 (Coleoptera Tenebrionidae) from the Eastern Caucasus, Russia
FIGURE 3. Nalassus spp., males, holotypes. A, C, D, E = N. magomedrasuli sp. n.; B, F, G, H = N. kalashiani; A, B = abdomen; C, G = protarsus; D, H = mesotarsus; E, F = middle of abdominal ventrites 1 and 2.
FIGURE 2 in Contribution to the knowledge of genus Nalassus Mulsant, 1856 (Coleoptera Tenebrionidae) from the Eastern Caucasus, Russia
FIGURE 2. Nalassus spp., details of structure. A = N. magomedrasuli sp. n., male (holotype), head and pronotum; B = ditto (paratype), female; C = ditto, male elytral intervals; D = N. kalashiani, male (holotype), head and pronotum; E = ditto, female; F = ditto, male elytral intervals.
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.