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Fig. 4 in Nodularia vladivostokensis (Bivalvia: Unionidae) from Razdolnaya River (Primorye, Russia)

Fig. 4. Transverse sections of the mollusk's foot: А, Б – fibers of mesentery extending from the foot musles through gonad into the visceral mass; В – musles under the pedal integument, Г, Д – nerve. Scale bars 300 µm (А, В, Г), 100 µm (Д), 40 µm (Б). а – acini, м – mesentery, пг – cavities (sinuses) for hemolymph, эп – perineurium, ф – follicles.

opencc-by-4.0Dec 2018View details →
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Fig. 3 in Nodularia vladivostokensis (Bivalvia: Unionidae) from Razdolnaya River (Primorye, Russia)

Fig. 3. Transverse sections of the mussel's foot musculature: А – ventral tip of the foot with somatic musculature, Б – an irregular meshwork of muscle fibrous tissue, В – muscle fibers under pedal integument. Scale bar 200 µm (B) and 40 µm (Б). см – somatic muscles, г – granulocytes, смв – irregular mesh of muscle fibers, гм – horizontally oriented muscle fibers, вм – vertically oriented muscle fibers.

opencc-by-4.0Dec 2018View details →
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Рис. 2. Продольный (А–Д) и поперечный (Е–З) среЗы череЗ наружный покров ноги моллюска с раЗными типами складок: А, Б – Широкие складки в виде плато, В, Г – длинные иЗвилистые складки, Д, Е – складки с округлыми и бокаловидными клетками в субЭпителиальном слое, Ж, З – слабовыраженные складки с больШими полостЯми (синусами) длЯ гемолимфы под субЭпителиальным слоем. МасШтабные линейки 200 мкм (А, В, Ж, З) и 100 мкм (Б, Г–Е). вК – клетки с вакуолЯми, сэ – субЭпителиальный слой, БК – бокаловиднаЯ клетка, сг – синусы длЯ гемолимфы, ф – фолликулы, а – ацинусы. Fig. 2. Saggital (А–Д) and transverse (Е–З) sections of pedal integument with different types of plicae: А, Б – broad plateau-shaped plicae, В, Г – long, tortuous plicae, Д, Е – plicae with round and goblet cells in the subepithelial layer, Ж, З – mild plicae with large cavities (sinuses) for hemolymph under subepithelial layer. Scale bars 200 µm (А, В, Ж, З) and 100 µm (Б, Г–Е). вК – cells with vacuoles, сэ – subepithelial layer, БК – goblet cell, сг – sinuses for hemolymph, ф – follicles, а – acini. in Nodularia vladivostokensis (Bivalvia: Unionidae) from Razdolnaya River (Primorye, Russia)

Рис. 2. Продольный (А–Д) и поперечный (Е–З) среЗы череЗ наружный покров ноги моллюска с раЗными типами складок: А, Б – Широкие складки в виде плато, В, Г – длинные иЗвилистые складки, Д, Е – складки с округлыми и бокаловидными клетками в субЭпителиальном слое, Ж, З – слабовыраженные складки с больШими полостЯми (синусами) длЯ гемолимфы под субЭпителиальным слоем. МасШтабные линейки 200 мкм (А, В, Ж, З) и 100 мкм (Б, Г–Е). вК – клетки с вакуолЯми, сэ – субЭпителиальный слой, БК – бокаловиднаЯ клетка, сг – синусы длЯ гемолимфы, ф – фолликулы, а – ацинусы. Fig. 2. Saggital (А–Д) and transverse (Е–З) sections of pedal integument with different types of plicae: А, Б – broad plateau-shaped plicae, В, Г – long, tortuous plicae, Д, Е – plicae with round and goblet cells in the subepithelial layer, Ж, З – mild plicae with large cavities (sinuses) for hemolymph under subepithelial layer. Scale bars 200 µm (А, В, Ж, З) and 100 µm (Б, Г–Е). вК – cells with vacuoles, сэ – subepithelial layer, БК – goblet cell, сг – sinuses for hemolymph, ф – follicles, а – acini.

opencc-by-4.0Dec 2018View details →
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Рис. 6. Поперечные (А–Е, З, И) и продольный (Ж) среЗы череЗ органы пиЩеварительной системы моллюска: А – меШок кристаллического стебелька, Б, В – петли киШки, Г, Д – часть желудка с длинными складками на дорсальной части стенки, Е, З – петли киШки с тифлоЗолем, И – боковаЯ часть тифлоЗолЯ. МасШтабные линейки 300 мкм (Е, З, И), 200 мкм (А, В, Г, Д), 40 мкм (Б). мс – меШок кристаллического стебелька, Кс – кристаллический стебелек, Р – реснички, т – тифлоЗоль, lp – lamina propria, г – гемолимфа. Fig. 6. Transverse (А–Е, З, И) and saggital (Ж) sections of the digestive organs: А – crystalline style sac, Б, В – intestinal limbs, Г, Д – part of the stomach with long plicae on the dorsal wall, Е, З – intestinal limbs with typhlosole, И – lateral part of the typhlosole. Scale bars 300 µm (Е, З, И), 200 µm (А, В, Г, Д), 40 µm (B). мс – style sac, Кс – crystalline style, Р – cilia, т – typhlosole, lp – lamina propria, г – hemolymph. in Nodularia vladivostokensis (Bivalvia: Unionidae) from Razdolnaya River (Primorye, Russia)

Рис. 6. Поперечные (А–Е, З, И) и продольный (Ж) среЗы череЗ органы пиЩеварительной системы моллюска: А – меШок кристаллического стебелька, Б, В – петли киШки, Г, Д – часть желудка с длинными складками на дорсальной части стенки, Е, З – петли киШки с тифлоЗолем, И – боковаЯ часть тифлоЗолЯ. МасШтабные линейки 300 мкм (Е, З, И), 200 мкм (А, В, Г, Д), 40 мкм (Б). мс – меШок кристаллического стебелька, Кс – кристаллический стебелек, Р – реснички, т – тифлоЗоль, lp – lamina propria, г – гемолимфа. Fig. 6. Transverse (А–Е, З, И) and saggital (Ж) sections of the digestive organs: А – crystalline style sac, Б, В – intestinal limbs, Г, Д – part of the stomach with long plicae on the dorsal wall, Е, З – intestinal limbs with typhlosole, И – lateral part of the typhlosole. Scale bars 300 µm (Е, З, И), 200 µm (А, В, Г, Д), 40 µm (B). мс – style sac, Кс – crystalline style, Р – cilia, т – typhlosole, lp – lamina propria, г – hemolymph.

opencc-by-4.0Dec 2018View details →
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Fig. 7 in Nodularia vladivostokensis (Bivalvia: Unionidae) from Razdolnaya River (Primorye, Russia)

Fig. 7. Transverse sections of the hemolymph vessels: А, Б, Г, Д – potential arteries, В, Е – potential veins. Scale bars 300 µm (А), 200 µm (Б, В), 100 µm (Г–Е). К – intestine, ма – musculature of a potential artery, м – mesentery, ж – apidocytes, Р – cilia, а – acini, г – hemolymph.

opencc-by-4.0Dec 2018View details →
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Fig. 5 in Nodularia vladivostokensis (Bivalvia: Unionidae) from Razdolnaya River (Primorye, Russia)

Fig. 5. Transverse (А, Г) and saggital (Б, В) sections of the digestive diverticulum: А – part of the digestive diverticulum and gonad, Б, В – primary and secondary tubules with ciliated plicae inside, Г – secondary tubules. Scale bars 300 µm (A), 200 µm (В), 100 µm (Б), 40 µm (Г).

opencc-by-4.0Dec 2018View details →
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Рис. 8. СреЗы череЗ гонады моллюска: А – поперечный среЗ череЗ гонаду самки, Б–Д – фолликулы в гонадах самок (Б, В – Зрелые ооциты круглой формы, готовые к вымету; Г – ооциты в период активного гаметогенеЗа на стадии раннего трофоплаЗматического роста, Д – ооциты каплевидной формы в период преднерестовой стадии при ЗаверШении трофоплаЗматического роста), Е, Ж – поперечные среЗы череЗ гонаду самца, З, И – ацинусы в гонадах самцов (З – преднерестоваЯ стадиЯ, просветы в ацинусах практически отсутствуют, стенки ацинусов не раЗличимы, И – нерестоваЯ стадиЯ, имеютсЯ просветы в ацинусах). МасШтабные линейки 300 мкм (А), 200 мкм (Е), 100 мкм (Ж), 50 мкм (Б–Д, З, И). вя – вакуолиЗированное Ядро, сф – стенка фолликула, вм – вителлиноваЯ мембрана, РО – раЗвиваюЩиесЯ иЗ пелликулы ооциты, пг – ресничный проток гонады, с – сперматоциты, па – просветы в ацинусах. Fig. 8. Sections through the gonads of the mollusk: А – transverse section through the female gonad, Б–Д – ovarian acini, follicles (Б, В – mature round-shaped oocytes ready to be swept out; Г – oocytes in the period of active gametogenesis at the stage of early trophoplasmatic growth, Д – tear-shaped oocytes during the pre-spawning stage at the end of trophoplasmatic growth), Е, Ж – transverse sections through the male gonads, З, И – testicular acini (З – pre-spawning stage, with practically absent gaps in the acini and invisible the acini walls, И – spawning stage, with gaps in the acini). Scale bars 300 µm (A), 200 µm (E), 100 µm (Ж), 50 µm (Б–Д, З, И). вя – vacuolated nucleus, сф – follicle wall, вм – vitelline membrane, РО – developing oocytes arising from a pellicle, пг – ciliated gonadal duct, с – spermatocytes, па – gaps in acini. in Nodularia vladivostokensis (Bivalvia: Unionidae) from Razdolnaya River (Primorye, Russia)

Рис. 8. СреЗы череЗ гонады моллюска: А – поперечный среЗ череЗ гонаду самки, Б–Д – фолликулы в гонадах самок (Б, В – Зрелые ооциты круглой формы, готовые к вымету; Г – ооциты в период активного гаметогенеЗа на стадии раннего трофоплаЗматического роста, Д – ооциты каплевидной формы в период преднерестовой стадии при ЗаверШении трофоплаЗматического роста), Е, Ж – поперечные среЗы череЗ гонаду самца, З, И – ацинусы в гонадах самцов (З – преднерестоваЯ стадиЯ, просветы в ацинусах практически отсутствуют, стенки ацинусов не раЗличимы, И – нерестоваЯ стадиЯ, имеютсЯ просветы в ацинусах). МасШтабные линейки 300 мкм (А), 200 мкм (Е), 100 мкм (Ж), 50 мкм (Б–Д, З, И). вя – вакуолиЗированное Ядро, сф – стенка фолликула, вм – вителлиноваЯ мембрана, РО – раЗвиваюЩиесЯ иЗ пелликулы ооциты, пг – ресничный проток гонады, с – сперматоциты, па – просветы в ацинусах. Fig. 8. Sections through the gonads of the mollusk: А – transverse section through the female gonad, Б–Д – ovarian acini, follicles (Б, В – mature round-shaped oocytes ready to be swept out; Г – oocytes in the period of active gametogenesis at the stage of early trophoplasmatic growth, Д – tear-shaped oocytes during the pre-spawning stage at the end of trophoplasmatic growth), Е, Ж – transverse sections through the male gonads, З, И – testicular acini (З – pre-spawning stage, with practically absent gaps in the acini and invisible the acini walls, И – spawning stage, with gaps in the acini). Scale bars 300 µm (A), 200 µm (E), 100 µm (Ж), 50 µm (Б–Д, З, И). вя – vacuolated nucleus, сф – follicle wall, вм – vitelline membrane, РО – developing oocytes arising from a pellicle, пг – ciliated gonadal duct, с – spermatocytes, па – gaps in acini.

opencc-by-4.0Dec 2018View details →
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National Checklists: Russia Species List

Data from: GBIF.org (23 January 2025) GBIF Occurrence Download <a href="https://doi.org/10.15468/dl.vd2ajk" target="_blank" rel="noopener">https://doi.org/10.15468/dl.vd2ajk</a>

opencc-zeroAug 2024View details →
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Figure 4 in Oldest shrimp and associated phyllocarid from the Lower Devonian of northern Russia

Figure 4. Archangeliphausia spinosa sp. nov. A, holotype (PIN 3993/1a). B, specimen PIN 4983/1b. C, specimen with dorsoventrally compressed telson and uropods (PIN 4983/28). D, specimen PIN 4983/1c.

opencc-by-4.0Sep 2004View details →
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Database of digital media publications on maternal (family) capital in Russia in 2006-2019

<p><strong>Abstract</strong></p> <p>The database contains data from publications of digital Russian-language media of the Russian Federation on the topic of maternity capital in the period from May 10, 2006 to June 30, 2019. The database includes uploading general data on publications on maternity capital in .xls formats (UTF-8 encoding) . Full texts of publications are presented in .xml format.</p> <p>A specialized request was generated for the aggregator of publications of Russian-language digital mass media <a href="https://vk.com/away.php?to=http%3A%2F%2Fpublic.ru&amp;cc_key=">public.ru</a> . In total, the database consists of 457888 publications of 7665 publishing houses from 1251 settlements in Russia on the territory of 85 regions. The database includes information about the date, type, authors, publisher and place of publication (municipality, region of the publisher), as well as full texts of publications.</p> <p>&nbsp;</p> <p>Keywords: database, digital media, maternal (family) capital, central and municipal media, Russia</p> <p>JEL codes: J10, J13, Z18.</p> <p>&nbsp;</p> <p><strong>Data format and access:</strong></p> <p>The database consists of full-text publications of digital media on the topic of maternity capital. Materials in Russian have been published in federal, regional and local digital media. Publication period: May 10, 2006 to June 30, 2019.</p> <p>The database consists of 457888 publications of 7665 publishing houses from 1251 settlements in Russia on the territory of 85 regions. Presentation format&nbsp;.csv, .xml (full texts). The file &quot;Matkap_SMI_17_11_2021.csv&quot; contains processed information from the extended full-text sample by years (contained in the &quot;XML.rar&quot; archive).&nbsp;</p> <p>pubData - date of publication (format &quot;YYYY-MM-DD&quot;)</p> <p>text - text from &quot;description&quot; in xml-files after lemmatization (removal of punctuation, lowercase and remove punctuation, spaces, numbers)</p> <p>source - name of the electronic edition</p> <p>place - town or city in Russia</p> <p>type - type of electronic edition (newspaper, magazine, TV program, internet resource)</p> <p>period -&nbsp;frequency of publication</p> <p>positive -&nbsp;the number of unique positive words from the RuSentiLex2017 dictionary</p> <p>negative -&nbsp;the number of unique negative words from the RuSentiLex2017 dictionary</p> <p>neutral -&nbsp;the number of unique neutral words from the RuSentiLex2017 dictionary</p> <p><strong>Data collection methodology: </strong></p> <p>The aggregator of publications of Russian-language digital mass media <a href="https://vk.com/away.php?to=http%3A%2F%2Fpublic.ru&amp;cc_key=">public.ru was used</a>. The selection of publications was limited to the time period from May 10, 2006 (Russian President Vladimir Vladimirovich Putin first announced the maternity capital programme in his message to the Federal Assembly, as one of the mechanisms to stimulate fertility and overcome the demographic crisis) to June 30, 2019 (until this date, the programme allowed full uploading of media publications without losses during the period of uploading publications from 01.08.2021 to 15.08.2021).</p> <p>Key words used to select articles on maternity capital: &ldquo;maternal capital&rdquo;, &ldquo;maternity capital&rdquo;, &ldquo;family capital&rdquo;, &ldquo;paternal capital&rdquo;. The publication had to repeat at least two phrases from the request, while the distance between the phrases had to be no more than 4 sentences. This excluded publications in which the topic of maternity capital was mentioned incidentally, indirectly.</p> <p>Duplicate articles were removed from the database. Duplicates related to publications that included a full repetition of the text of the publication itself, the publishing house and the municipality (location) of the publishing house. Duplications (reprints) of articles in other publishing houses or in other regions were not excluded.&nbsp;</p> <p>After lemmatization of the text (as well as after reducing the text to lower case, removing unnecessary spaces, numbers and punctuation), according to the RuSentiLex2017 dictionary (Loukachevitch N., Levchik A. Creating a General Russian Sentiment Lexicon. In Proceedings of Language Resources and Evaluation Conference LREC-2016, 2016.)&nbsp;unique positive, negative and neutral words and phrases (variables) were counted.&nbsp;Repetitions of tonal words (stances) are <strong>not counted.</strong></p>

opencc-by-4.0Nov 2021View details →
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Conflict Event Knowledge Graph based on the ongoing Ukraine-Russia Conflict

<p><strong>Conflict Event Knowledge Graph</strong> is a <strong>Knowledge Graph</strong> that links the tweets and the current events&nbsp;of <strong>Russia-Ukraine Conflict</strong>&nbsp;portrayed in&nbsp;<strong>English Wikipedia</strong> from <strong>24th&nbsp;February 2022 to 4th March 2022</strong>.&nbsp;</p> <p><strong>Abstract</strong>: In the current situation of Russia-Ukraine Conflict, numerous contents are posted daily to engage in the discourse about different events in this conflict. The goal of this study is to provide a framework to enable analysis of these events and the Twitter data, utilizing entity linking. The relevant tweets and events are integrated into a Knowledge Graph <strong>ConflictEventKG</strong>, and the resources are made publicly available.</p> <p><strong>Homepage</strong>:&nbsp;<a href="https://siebeniris.github.io/ConflictEventKG/">https://siebeniris.github.io/ConflictEventKG/</a></p> <p><strong>Code</strong>:&nbsp;<a href="https://github.com/siebeniris/ConflictEventKG">https://github.com/siebeniris/ConflictEventKG</a></p> <p>&nbsp;</p>

opencc-by-4.0Mar 2022View details →
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Water quality dataset from stream water in the Khibiny massif, Kola Peninsula (Russia) in August 2017

<p>The dataset includes base chemistry, elemental concentrations, and sulfur isotope (&delta;34S_SO4) measurements from 11 stream water sampling locations.</p> <p>The measurements were taken in the Belaya and Vuonnemiok stream systems within the Khibiny massif (Kola Peninsula, Russia) during 25-30th of August 2017 and were analyzed at laboratories at Stockholm University, Sweden.</p> <p>The data was gathered to investigate potential pollution spreading in hydrological pathways from active apatite mining within the catchments, and it can be used for comparison with other mining-impacted sites in the Arctic.</p>

opencc-by-4.0Apr 2022View details →
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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).

opencc-by-4.0Dec 2020View details →
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Fig. 3 in Gastrointestinal Parasite Community In A New Population Of The Przewalski'S Horse (Equus Ferus Przewalskii) In The Orenburg State Reserve, Russia

Fig. 3. Distribution of strongylid species from the Przewalski's horses in Pre-Urals Steppe, Orenburg State Reserve, on ten prevalence classes.

opencc-by-4.0Jun 2017View details →
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Fig. 3 in Genetic Divergence Of The Species Of The Yellow Wagtails Group (Passeriformes, Motacillidae) In European Territory Of Russia

Fig. 3. Phylogenetic dendrogram of the species of the genus Motacilla built after alignment of sequences of the cytochrome oxidase I gene using JalView software (full version).

opencc-by-4.0May 2016View details →
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Fig. 2 in Divergence Of Populaitions Of Yellow Wagtail, Motacilla Flava, And Citrine Wagtail, Motacilla Citreola (Motacillidae, Passeriformes), In The Middle Volga Of Russia

Fig. 2. Clusters signs of coloration of feather and morphometry of Motacilla citreola, obtained by Ward method.

opencc-by-4.0Mar 2016View details →
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Fig. 1 in Divergence Of Populaitions Of Yellow Wagtail, Motacilla Flava, And Citrine Wagtail, Motacilla Citreola (Motacillidae, Passeriformes), In The Middle Volga Of Russia

Fig. 1. Clusters signs of coloration of feather and morphometry of Motacilla flava, obtained by Ward method.

opencc-by-4.0Mar 2016View details →
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Fig. 6 in Divergence Of Populaitions Of Yellow Wagtail, Motacilla Flava, And Citrine Wagtail, Motacilla Citreola (Motacillidae, Passeriformes), In The Middle Volga Of Russia

Fig. 6. Phylogenetic tree species Motacilla citreola, built on the basis of genetic analysis of the gene sequences of cytochrome c oxidase I in the program JalView, method Average Distance (weighted average).

opencc-by-4.0Mar 2016View details →
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Fig. 8 in A new species of Breviconia Conroy-Dalton & Huys, 2000 (Copepoda: Harpacticoida: Ancorabolidae Sars) from the Bering Sea, northern Pacific Ocean (Russia)

Fig. 8. Breviconia andrei sp. nov., ♂. A. Rostrum and A1. B. 2nd segment of A1. C. 3rd segment of A1. D. 4th segment of A1. E. P5.

opencc-by-4.0Apr 2022View details →
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Fig. 1 in A new species of Breviconia Conroy-Dalton & Huys, 2000 (Copepoda: Harpacticoida: Ancorabolidae Sars) from the Bering Sea, northern Pacific Ocean (Russia)

Fig. 1. Map of the Bering Sea (northern Pacific Ocean), showing the type locality at Khatyr Depression (red dot). The photo shows the sediment condition at the type locality. Map source: V. Morduchovich; photography: V. Morduchovich.

opencc-by-4.0Apr 2022View details →

ScienceDex guides

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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