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.
3,853
datasets available to search
ShareScore release 0.7.1
Dataset results
3,853 results for “russia”
Fig. 1 in Scarabaeoidea (Insecta: Coleoptera) Of The Kaliningrad Region (Russia): The Commented Actual Checklist, Assessment Of Rarity And Notes To Regional Protection
Fig. 1. Schematic map of the administrative division of the Kaliningrad Region into districts: Bagr. – Bagrationovsky, Chern. – Cherniakhovsky, Gur. – Gur'evsky, Gus. – Gusevsky, Gvard. – Gvardeysky, Krasn. – Krasnoznamensky, Nem. – Nemansky, Nest. – Nesterovsky, Oz. – Ozersky, Pol. – Polessky, Pravd. – Pravdinsky, Slav. – Slavsky, Zel. – Zelenogradsky.
Fig. 34–39. 34 – A in Scarabaeoidea (Insecta: Coleoptera) Of The Kaliningrad Region (Russia): The Commented Actual Checklist, Assessment Of Rarity And Notes To Regional Protection
Fig. 34–39. 34 – A. haemorrhoidalis (11 September 2018); 35 – A. sticticus (10 September 2018); 36 – Rhyssemus puncticollis (29 May 2017); 37 – Onthophagus gibbulus, male, forma major (11 September 2018); 38 – O. nuchicornis, male (18 June 2018); 39 – Serica brunnea (04 July 2018).
Fig. 22–27 in Scarabaeoidea (Insecta: Coleoptera) Of The Kaliningrad Region (Russia): The Commented Actual Checklist, Assessment Of Rarity And Notes To Regional Protection
Fig. 22–27. The images of the living regional Scarabaeoidea specimens in nature: 22 – Anoplotrupes stercorosus (15 May 2013); 23 – Trypocopris vernalis (19 July 2015); 24 – Aegialia arenaria (07 May 2018); 25 – Oxyomus sylvestris (10 April 2018); 26 – Aphodius fimetarius 16 Oktober 2018); 27 – A. distinctus (25 September 2018).
Fig. 16–21 in Scarabaeoidea (Insecta: Coleoptera) Of The Kaliningrad Region (Russia): The Commented Actual Checklist, Assessment Of Rarity And Notes To Regional Protection
Fig. 16–21. The images of the living regional Scarabaeoidea specimens in nature: 16 – Platycerus caprea (30 April 2018); 17 – P. caraboides (16 May 2010); 18 – Sinodendron cylindricum, male (23 July 2012); 19 – Sinodendron cylindricum, female (31 May 2010); 20 – Dorcus parallelepipedus, male (16 July 2015); 21 – Geotrupes spiniger (11 September 2018).
Fig. 1 in Feeding convergence among ray-finned fishes: Teeth of the herbivorous actinopterygians from the latest Permian of East European Platform, Russia
Fig. 1. Location of the fish-bearing site and details of the exposed section. A. Map of the Eastern Europe with position of Vyazniki (BY, Belarus, LV, Latvia; EST, Estonia; LT, Lithuania). B. The area around the town of Vyazniki with position of Sokovka site (star). C. Photograph of the Sokovka section from 2013 and exposure of the fish-bearing deposits. D. The simplified section from Sokovka site showing the fish-bearing layers. Modified from Newell et al. 2010, Owocki et al. 2012, and Bajdek et al. 2017.
Fig. 3 in Testate Amoeba Communities of Epilithic Mosses and Lichens: New Data from Russia, Switzerland and Italy
Fig. 3. Taxon richness (A) and test concentration (B) against moisture content expressed as a proportion.
Fig. 2 in Testate Amoeba Communities of Epilithic Mosses and Lichens: New Data from Russia, Switzerland and Italy
Fig. 2. Taxon richness (A), Simpson diversity (B) and test concentration (C) by region. Bars show mean and error bars the standard deviation. Letters denote significant differences (P <0.05) where the global test is significant, see text for details.
Fig. 5 in Testate Amoeba Communities of Epilithic Mosses and Lichens: New Data from Russia, Switzerland and Italy
Fig. 5. Taxon richness (A), Simpson diversity (B) and test concentration (C) for epilithic and epiphytic samples from the Karelia regions. Bars show mean and error bars the standard deviation. Letters denote significant differences (P <0.05), see text for details.
Fig. 4 in Testate Amoeba Communities of Epilithic Mosses and Lichens: New Data from Russia, Switzerland and Italy
Fig. 4. NMDS ordination of testate amoeba relative abundance data from epilithic and epiphytic vegetation of the Karelia region (BrayCurtis dissimilarity).
Fig. 1 in Testate Amoeba Communities of Epilithic Mosses and Lichens: New Data from Russia, Switzerland and Italy
Fig. 1. NMDS ordination of testate amoeba relative abundance data from epilithic mosses and lichens (Bray-Curtis dissimilarity).
Figs 13–19 in Review of the genus Opazon Haliday, 1857 (Hymenoptera: Diapriidae: Belytinae) in the fauna of Russia
Figs 13–19. Opazon spp.: 13–14 — O. frigidum; 15, 18 — O. incrassatum; 16, 19 — O. parvulum; 17 — O. apertum; 13–15, 17, 19 — lateral habitus; 16, 18 — head in dorsal view. Scale bars: 0.2 mm (16, 18), 1.0 mm (13–15, 17, 19). Рис. 13–19. Opazon spp.: 13–14 — O. frigidum; 15, 18 — O. incrassatum; 16, 19 — O. parvulum; 17 — O. apertum; 13–15, 17, 19 — габитус сбоку; 16, 18 — голова сверху. МасШтаб: 0,2 мм (16, 18), 1,0 мм (13–15, 17, 19).
РИС. 2. Скульптура постЭмбриональных оборотов раковины крымских Clausiliidae. A. Cochlodina laminata. B. Mentissa canalifera. C. Balea perversa. D. Mentissa gracilicosta. E. Macrogastra plicatula. F–I. Устье и ЗатылочнаЯ область раковины Balea perversa с г. Демерджи (Крым, РоссиЯ). Все иЗображениЯ приблиЗительно в одном масШтабе. FIG. 2. Sculpture of postembryonic whorls of the Crimean Clausiliidae shells. A. Cochlodina laminata. B. Mentissa canalifera. C. Balea perversa. D. Mentissa gracilicosta. E. Macrogastra plicatula. F–I. Mouth and cervical area of the Balea perversa shell from Demerdzhi mountain (Crimea, Russia). All images are approximately at the same scale. in О достоверности находок Balea perversa (Gastropoda: Pulmonata: Clausiliidae) в Крыму
РИС. 2. Скульптура постЭмбриональных оборотов раковины крымских Clausiliidae. A. Cochlodina laminata. B. Mentissa canalifera. C. Balea perversa. D. Mentissa gracilicosta. E. Macrogastra plicatula. F–I. Устье и ЗатылочнаЯ область раковины Balea perversa с г. Демерджи (Крым, РоссиЯ). Все иЗображениЯ приблиЗительно в одном масШтабе. FIG. 2. Sculpture of postembryonic whorls of the Crimean Clausiliidae shells. A. Cochlodina laminata. B. Mentissa canalifera. C. Balea perversa. D. Mentissa gracilicosta. E. Macrogastra plicatula. F–I. Mouth and cervical area of the Balea perversa shell from Demerdzhi mountain (Crimea, Russia). All images are approximately at the same scale.
РИС. 1. Раковины ювенильных крымских клауЗиллид (A–C). A. Mentissa gracilicosta, г. КоШка, СимеиЗ, coll. В. Н. Попов, det. С. В. Леонов. B. Mentissa canalifera, окрестности с. Краснолесье, 23.08.2002, сoll.&det. С. В. Леонов. C. Cochlodina laminata, Артек «Дубрава», 27.05.1999, coll.?, det. С.В. Леонов. Раковины половоЗрелых Balea perversa (D–G). D. Между Виклебю и Ресмо, остров Эланд, ШвециЯ, 07.1958 (фото F. Welter-Shultes). Е. Девичий Замок, Палава, ЮжнаЯ МоравиЯ, ЧехиЯ, 26.09.1998 (фото M. Horsák). F. РаЗвалины Замка РейнграфенШтайн блиЗ Бад-Мюнстер-ам-Штайн, Рейнланд-Пфальц, ГерманиЯ (фото А. В. Сысоев). G. Яйла Южной Демерджи, АлуШта, Республика Крым, РоссиЯ, 14.11.2002, сoll. Н. М. Ковблюк, det. С. В. Леонов. Все иЗображениЯ в одном масШтабе. FIG. 1. Shells of juvenile Crimean clausillids (A–C). A. Mentissa gracilicosta, Koshka mountain, Simeiz, coll. V. N. Popov, det. S. V. Leonov. B. Mentissa canalifera, near Krasnolesye village, 23.08.2002, coll.&det. S. V. Leonov. C. Cochlodina laminata, Artek "Dubrava", 27.05.1999, coll.?, det. S.V. Leonov. Adult Balea perversa shells (D–G). D. Sweden, Öland, between Vickleby and Resmo, 07.1958 (photo F. Welter-Shultes). E. Dívčí hrad, South Moravia, Czech Republic, 26.09.1998 (photo by M. Horsák). F. Ruins of the Rheingrafenstein Castle near Bad Munster am Stein, Rheineland-Pfalz, Germany (photo by A.V. Sysoev). G. Yayla Yuzhnaya Demerdzhi, Alushta, Republic of Crimea, Russia, 14.11.2002, coll. N. M. Kovblyuk, det. S. V. Leonov. All images are at the same scale. in О достоверности находок Balea perversa (Gastropoda: Pulmonata: Clausiliidae) в Крыму
РИС. 1. Раковины ювенильных крымских клауЗиллид (A–C). A. Mentissa gracilicosta, г. КоШка, СимеиЗ, coll. В. Н. Попов, det. С. В. Леонов. B. Mentissa canalifera, окрестности с. Краснолесье, 23.08.2002, сoll.&det. С. В. Леонов. C. Cochlodina laminata, Артек «Дубрава», 27.05.1999, coll.?, det. С.В. Леонов. Раковины половоЗрелых Balea perversa (D–G). D. Между Виклебю и Ресмо, остров Эланд, ШвециЯ, 07.1958 (фото F. Welter-Shultes). Е. Девичий Замок, Палава, ЮжнаЯ МоравиЯ, ЧехиЯ, 26.09.1998 (фото M. Horsák). F. РаЗвалины Замка РейнграфенШтайн блиЗ Бад-Мюнстер-ам-Штайн, Рейнланд-Пфальц, ГерманиЯ (фото А. В. Сысоев). G. Яйла Южной Демерджи, АлуШта, Республика Крым, РоссиЯ, 14.11.2002, сoll. Н. М. Ковблюк, det. С. В. Леонов. Все иЗображениЯ в одном масШтабе. FIG. 1. Shells of juvenile Crimean clausillids (A–C). A. Mentissa gracilicosta, Koshka mountain, Simeiz, coll. V. N. Popov, det. S. V. Leonov. B. Mentissa canalifera, near Krasnolesye village, 23.08.2002, coll.&det. S. V. Leonov. C. Cochlodina laminata, Artek "Dubrava", 27.05.1999, coll.?, det. S.V. Leonov. Adult Balea perversa shells (D–G). D. Sweden, Öland, between Vickleby and Resmo, 07.1958 (photo F. Welter-Shultes). E. Dívčí hrad, South Moravia, Czech Republic, 26.09.1998 (photo by M. Horsák). F. Ruins of the Rheingrafenstein Castle near Bad Munster am Stein, Rheineland-Pfalz, Germany (photo by A.V. Sysoev). G. Yayla Yuzhnaya Demerdzhi, Alushta, Republic of Crimea, Russia, 14.11.2002, coll. N. M. Kovblyuk, det. S. V. Leonov. All images are at the same scale.
FIG. 5 in The first molecular confirmation of the presence of the genus Ladislavella (Gastropoda: Lymnaeidae) in the European part of Russia
FIG. 5. Maximum likelihood phylogeny of Ladislavella species based on the COI barcode sequence dataset. The red color indicates our sequence from Penza City. Black numbers near nodes are bootstrap support values. Scale bar indicates the branch length. РИС. 5. Молекулярная филогения с испольЗованием метода максимального правдоподобия на основе нуклеотидных последовательностей фрагмента митохондриального гена COI. Красным цветом обоЗначен наш сиквенс для обраЗца иЗ ПенЗы. Черные числа в уЗлах – Значения индексов бутстреп-поддерЖки. Масштабная линейка укаЗывает длину ветвей.
FIG. 1 in The first molecular confirmation of the presence of the genus Ladislavella (Gastropoda: Lymnaeidae) in the European part of Russia
FIG. 1. View of the studied biotope in different seasons of the year. Photos taken on 15.04.2022 (A), 05.06.2022 (B), 20.07.2022 (C). РИС. 1. Вид исследованного биотопа в раЗные сеЗоны года. Фотографии сделаны 15.04.2022 (А), 05.06.2022 (В), 20.07.2022 (С).
FIG. 7 in The first molecular confirmation of the presence of the genus Ladislavella (Gastropoda: Lymnaeidae) in the European part of Russia
FIG. 7. Some stages of embryonic development of Ladislavella cf. terebra. in the lab culture. The successive photo images were made on: 06.05.2022 (A), 14.05.2022 (B, C), 17.05.2022 (D). Scale bars: 0.2 mm (C), 0.25 mm (D). РИС. 7. Некоторые стадии Эмбрионального раЗвития Ladislavella cf. terebra в лабораторной культуре. Фото были сделаны: 06.05.2022 (A), 14.05.2022 (B, C), 17.05.2022 (D). Масштабная линейка: 0.2 мм (C), 0.25 мм (D).
FIG. 6 in The first molecular confirmation of the presence of the genus Ladislavella (Gastropoda: Lymnaeidae) in the European part of Russia
FIG. 6. The ciliate Epistylis sp. on surface of the shell of Ladislavella cf. terebra. РИС. 6. Колонии инфуЗорий Epistylis sp. на поверхности раковины прудовика Ladislavella cf. terebra.
FIG. 2 in The first molecular confirmation of the presence of the genus Ladislavella (Gastropoda: Lymnaeidae) in the European part of Russia
FIG. 2. Shell variability in Ladislavella cf. terebra from Penza City. Shells collected in August 2022. Scale bar: 10 mm. РИС. 2. ИЗменчивость раковины Ladislavella cf. terebra иЗ ПенЗы. Раковины собраны в августе 2022 г. Масштабная линейка: 10 мм.
FIG. 3 in The first molecular confirmation of the presence of the genus Ladislavella (Gastropoda: Lymnaeidae) in the European part of Russia
FIG. 3. The copulatory apparatus of Ladislavella cf. terebra from Penza City (A) and from Siberia, Tyumen Region, Labytnangi Town (B). Scale bar: 5 mm. A – original photo; B – photo by Dmitry Palatov. РИС. 3. Копулятивный аппарат Ladislavella cf. terebra иЗ ПенЗы (A) и Сибири, Тюменская обл., г. Лабытнанги (B). Масштабная линейка: 5 mm. A – ориг.; B – фото Дмитрия Палатова.
FIG. 4 in The first molecular confirmation of the presence of the genus Ladislavella (Gastropoda: Lymnaeidae) in the European part of Russia
FIG. 4. Abnormally large individual of Ladislavella cf. terebra with trematode parthenitae in the hepatopancreas and mantle cavity. A. Shell. B. The copulatory apparatus. C. Soft body. Scale bars: 2 mm (B, C), 5 mm (A). РИС. 4. Аномально крупная особь Ladislavella cf. terebra с партенитами трематод в гепатопанкреасе и мантийной полости. A. Раковина. B. Копулятивный аппарат. C. Мягкое тело. Масштабная линейка: 2 мм (В, C), 5 мм (А).
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.