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Fig. 5 in A review of the mud crab genus Pseudohelice Sakai, Türkay & Yang, 2006 (Crustacea: Brachyura: Varunidae), with redescription of Cyclograpsus latreillii H. Milne Edwards, 1837, from the western Indian Ocean

Fig. 5. Bayesian inference (BI) tree for Pseudohelice subquadrata and P. latreillii, and the outgroups, based on the cytochrome c oxidase subunit I (COI) gene. Probability values at the nodes represent support values for BI and maximum likelihood (ML). For haplotype names, see Table 1.

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Fig. 2 in A review of the mud crab genus Pseudohelice Sakai, Türkay & Yang, 2006 (Crustacea: Brachyura: Varunidae), with redescription of Cyclograpsus latreillii H. Milne Edwards, 1837, from the western Indian Ocean

Fig. 2. Pseudohelice subquadrata (Dana, 1851), colour in life. A, dorsal view, male (15.6 × 13.1 mm, NCHUZOOL 16176, Dongsha I.); B, ventral view, male (15.6 × 13.1 mm, NCHUZOOL 16176, Dongsha I.); C, male (NCHUZOOL 16704, Dongsha I.); D, male (NCHUZOOL 16720, Dongsha I.); E, female (17.4 × 15.2 mm, NCHUZOOL 15727, Bali); F, male (18.0 × 14.7 mm, NCHUZOOL 16704, Dongsha I.); G, burrows of P. subquadrata (Hsinchu County: Sinfeng); H, habitat of P. subquadrata (Hsinchu County: Sinfeng).

opencc-by-4.0Mar 2022View details →
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Fig. 1 in A review of the mud crab genus Pseudohelice Sakai, Türkay & Yang, 2006 (Crustacea: Brachyura: Varunidae), with redescription of Cyclograpsus latreillii H. Milne Edwards, 1837, from the western Indian Ocean

Fig. 1. Pseudohelice subquadrata (Dana, 1851). A, B, E, G–J, male (19.2 × 17.1 mm, QM W19922); C, D, F, K, female (20.9 × 18.3 mm, QM W19922); A–D in preservative. A, dorsal view of male; B, ventral view of male; C, dorsal view of female; D, ventral view of female; E, left male infraorbital ridge; F, left female infraorbital ridge; G, I, dorsal view of left G1 (horizontally flipped); H, J, ventral view of left G1 (horizontally flipped for comparison with the right G1s of other specimens); K, right vulva.

opencc-by-4.0Mar 2022View details →
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Fig. 3 in A review of reptile research in Malaysia in the 21st century

Fig. 3. Bar plots grouped by category. Numbers above bars represent the total number of papers published in each category (A); number of papers published in the systematics category, grouped by data type (B).

opencc-by-4.0Sep 2021View details →
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Fig. 2 in A review of reptile research in Malaysia in the 21st century

Fig. 2. Percentage of papers published by category (A); number of papers published in each category according to taxonomic group (B).

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Fig. 1 in A review of reptile research in Malaysia in the 21st century

Fig. 1. Scatter plot showing the number of reptile research papers published by year from 2000–2020. The blue line represents the regression line obtained using a local polynomial regression fitting method.

opencc-by-4.0Sep 2021View details →
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Figure 3 in Designation of a Neotype for the Dwarf Sea Hare Aplysia concava G. B. Sowerby I, 1833, and a Review of the Status of Aplysia norfolkensis G. B. Sowerby II, 1869 (Mollusca: Heterobranchia)

Figure 3. Light microscope image of Aplysia norfolkensis shell, (a) dorsal view, (b) ventral view, specimen AMS C.55733, collected by Brazier, J., 25 June 1892, Bradleys Head, Port Jackson, Sydney, NSW, Australia. Photograph: M. Nimbs.

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Figure 2 in Designation of a Neotype for the Dwarf Sea Hare Aplysia concava G. B. Sowerby I, 1833, and a Review of the Status of Aplysia norfolkensis G. B. Sowerby II, 1869 (Mollusca: Heterobranchia)

Figure 2. Original descriptions and figure illustrations of shells for Aplysia concava G. B. Sowerby I, 1833: vol. 2, p. 243, pl. 235, figs 24a,b; and Aplysia norfolkensis G. B. Sowerby II, 1869: vol. 17, p. 216, pl. 10, figs 42a,b. Sourced from Biodiversity Heritage Library, (see Sowerby I, 1833; Sowerby II, 1869).

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Figure 1 in Designation of a Neotype for the Dwarf Sea Hare Aplysia concava G. B. Sowerby I, 1833, and a Review of the Status of Aplysia norfolkensis G. B. Sowerby II, 1869 (Mollusca: Heterobranchia)

Figure 1. Photograph of living neotype of Aplysia concava, specimen AMS C.574820, Newcastle, NSW, Australia, collected 14 December 2016, by Stephen D. A. Smith. Photograph: M. Nimbs.

opencc-by-4.0Nov 2021View details →
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Terrestrial Parasite Tracker indexed biotic interactions and review summary

<p>PLEASE CONTACT AUTHORS IF YOU CONTRIBUTED AND WOULD LIKE TO BE LISTED AS A CO-AUTHOR.</p> <p>Terrestrial Parasite Tracker indexed biotic interactions and review summary.</p> <p>The Terrestrial Parasite Tracker (TPT) project began in 2019 and is funded by the National Science foundation to mobilize data from vector and ectoparasite collections to data aggregators (e.g., iDigBio, GBIF) to help build a comprehensive picture of arthropod host-association evolution, distributions, and the ecological interactions of disease vectors which will assist scientists, educators, land managers, and policy makers. Arthropod parasites often are important to human and wildlife health and safety as vectors of pathogens, and it is critical to digitize these specimens so that they, and their biotic interaction data, will be available to help understand and predict the spread of human and wildlife disease.</p> <p>This data publication contains versioned TPT associated datasets and related data products that were tracked, reviewed and indexed by Global Biotic Interactions (GloBI) and associated tools. GloBI provides open access to finding species interaction data (e.g., predator-prey, pollinator-plant, pathogen-host, parasite-host) by combining existing open datasets using open source software.</p> <p>If you have questions or comments about this publication, please open an issue at https://github.com/ParasiteTracker/tpt-reporting or contact the authors by email.</p> <p>Funding:<br> The creation of this archive was made possible by the National Science Foundation award &quot;Collaborative Research: Digitization TCN: Digitizing collections to trace parasite-host associations and predict the spread of vector-borne disease,&quot; Award numbers DBI:1901932 and DBI:1901926</p> <p>References:<br> Jorrit H. Poelen, James D. Simons and Chris J. Mungall. (2014). Global Biotic Interactions: An open infrastructure to share and analyze species-interaction datasets. Ecological Informatics. https://doi.org/10.1016/j.ecoinf.2014.08.005.</p> <p>GloBI Data Review Report</p> <p>Datasets under review:<br> &nbsp;- University of Michigan Museum of Zoology Insect Division. Full Database Export 2020-11-20 provided by Erika Tucker and Barry Oconner. accessed via https://github.com/EMTuckerLabUMMZ/ummzi/archive/6731357a377e9c2748fc931faa2ff3dc0ce3ea7a.zip on 2022-10-12T18:43:37.491Z<br> &nbsp;- Academy of Natural Sciences Entomology Collection for the Parasite Tracker Project accessed via https://github.com/globalbioticinteractions/ansp-para/archive/5e6592ad09ec89ba7958266ad71ec9d5d21d1a44.zip on 2022-10-12T18:45:13.893Z<br> &nbsp;- Bernice Pauahi Bishop Museum, J. Linsley Gressitt Center for Research in Entomology accessed via https://github.com/globalbioticinteractions/bpbm-ent/archive/c085398dddd36f8a1169b9cf57de2a572229341b.zip on 2022-10-12T18:47:33.370Z<br> &nbsp;- Texas A&amp;M University, Biodiversity Teaching and Research Collections accessed via https://github.com/globalbioticinteractions/brtc-para/archive/f0a718145b05ed484c4d88947ff712d5f6395446.zip on 2022-10-12T18:49:42.688Z<br> &nbsp;- Brigham Young University Arthropod Museum accessed via https://github.com/globalbioticinteractions/byu-byuc/archive/4a609ac6a9a03425e2720b6cdebca6438488f029.zip on 2022-10-12T18:50:01.049Z<br> &nbsp;- California Academy of Sciences Entomology accessed via https://github.com/globalbioticinteractions/cas-ent/archive/562aea232ec74ab615f771239451e57b057dc7c0.zip on 2022-10-12T18:50:25.480Z<br> &nbsp;- Clemson University Arthropod Collection accessed via https://github.com/globalbioticinteractions/cu-cuac/archive/6cdcbbaa4f7cec8e1eac705be3a999bc5259e00f.zip on 2022-10-12T18:50:53.662Z<br> &nbsp;- Denver Museum of Nature and Science (DMNS) Parasite specimens (DMNS:Para) accessed via https://github.com/globalbioticinteractions/dmns-para/archive/2a15f657d5e2d7a6ee6359ee30e630bde8fea2ee.zip on 2022-10-12T18:52:36.684Z<br> &nbsp;- Field Museum of Natural History IPT accessed via https://github.com/globalbioticinteractions/fmnh/archive/6bfc1b7e46140e93f5561c4e837826204adb3c2f.zip on 2022-10-12T19:19:24.919Z<br> &nbsp;- Illinois Natural History Survey Insect Collection accessed via https://github.com/globalbioticinteractions/inhs-insects/archive/38692496f590577074c7cecf8ea37f85d0594ae1.zip on 2022-10-12T19:21:30.100Z<br> &nbsp;- UMSP / University of Minnesota / University of Minnesota Insect Collection accessed via https://github.com/globalbioticinteractions/min-umsp/archive/3f1b9d32f947dcb80b9aaab50523e097f0e8776e.zip on 2022-10-12T19:22:18.235Z<br> &nbsp;- Milwaukee Public Museum Biological Collections Data Portal accessed via https://github.com/globalbioticinteractions/mpm/archive/9f44e99c49ec5aba3f8592cfced07c38d3223dcd.zip on 2022-10-12T19:22:42.835Z<br> &nbsp;- Museum for Southwestern Biology (MSB) Parasite Collection accessed via https://github.com/globalbioticinteractions/msb-para/archive/f13bfa0d5493057198639d566f744379c05179f3.zip on 2022-10-12T20:46:06.063Z<br> &nbsp;- The Albert J. Cook Arthropod Research Collection accessed via https://github.com/globalbioticinteractions/msu-msuc/archive/38960906380443bd8108c9e44aeff4590d8d0b50.zip on 2022-10-12T21:02:26.320Z<br> &nbsp;- Ohio State University Acarology Laboratory accessed via https://github.com/globalbioticinteractions/osal-ar/archive/876269d66a6a94175dbb6b9a604897f8032b93dd.zip on 2022-10-12T21:02:46.553Z<br> &nbsp;- Frost Entomological Museum, Pennsylvania State University accessed via https://github.com/globalbioticinteractions/psuc-ento/archive/30b1f96619a6e9f10da18b42fb93ff22cc4f72e2.zip on 2022-10-12T21:02:57.714Z<br> &nbsp;- Purdue Entomological Research Collection accessed via https://github.com/globalbioticinteractions/pu-perc/archive/e0909a7ca0a8df5effccb288ba64b28141e388ba.zip on 2022-10-12T21:03:17.696Z<br> &nbsp;- Texas A&amp;M University Insect Collection accessed via https://github.com/globalbioticinteractions/tamuic-ent/archive/f261a8c192021408da67c39626a4aac56e3bac41.zip on 2022-10-12T21:03:56.509Z<br> &nbsp;- University of California Santa Barbara Invertebrate Zoology Collection accessed via https://github.com/globalbioticinteractions/ucsb-izc/archive/4d997dbe8e86398f9f7f4d7851013e788073ae9c.zip on 2022-10-12T21:05:27.222Z<br> &nbsp;- University of Hawaii Insect Museum accessed via https://github.com/globalbioticinteractions/uhim/archive/53fa790309e48f25685e41ded78ce6a51bafde76.zip on 2022-10-12T21:05:40.778Z<br> &nbsp;- University of New Hampshire Collection of Insects and other Arthropods UNHC-UNHC accessed via https://github.com/globalbioticinteractions/unhc/archive/f72575a72edda8a4e6126de79b4681b25593d434.zip on 2022-10-12T21:05:59.319Z<br> &nbsp;- Scott L. Gardner and Gabor R. Racz (2021). University of Nebraska State Museum - Parasitology. Harold W. Manter Laboratory of Parasitology. University of Nebraska State Museum. accessed via https://github.com/globalbioticinteractions/unl-nsm/archive/6bcd8aec22e4309b7f4e8be1afe8191d391e73c6.zip on 2022-10-12T21:06:07.054Z<br> &nbsp;- Data were obtained from specimens belonging to the United States National Museum of Natural History (USNM), Smithsonian Institution, Washington DC and digitized by the Walter Reed Biosystematics Unit (WRBU). accessed via https://github.com/globalbioticinteractions/usnmentflea/archive/ce5cb1ed2bbc13ee10062b6f75a158fd465ce9bb.zip on 2022-10-12T21:06:43.102Z<br> &nbsp;- US National Museum of Natural History Ixodes Records accessed via https://github.com/globalbioticinteractions/usnm-ixodes/archive/c5fcd5f34ce412002783544afb628a33db7f47a6.zip on 2022-10-12T21:06:51.935Z<br> &nbsp;- Price Institute of Parasite Research, School of Biological Sciences, University of Utah accessed via https://github.com/globalbioticinteractions/utah-piper/archive/43da8db550b5776c1e3d17803831c696fe9b8285.zip on 2022-10-12T21:07:03.317Z<br> &nbsp;- University of Wisconsin Stevens Point, Stephen J. Taft Parasitological Collection accessed via https://github.com/globalbioticinteractions/uwsp-para/archive/f9d0d52cd671731c7f002325e84187979bca4a5b.zip on 2022-10-12T21:07:14.513Z<br> &nbsp;- Giraldo-Calder&oacute;n, G. I., Emrich, S. J., MacCallum, R. M., Maslen, G., Dialynas, E., Topalis, P., &hellip; Lawson, D. (2015). VectorBase: an updated bioinformatics resource for invertebrate vectors and other organisms related with human diseases. Nucleic acids research, 43(Database issue), D707&ndash;D713. doi:10.1093/nar/gku1117. accessed via https://github.com/globalbioticinteractions/vectorbase/archive/00d6285cd4e9f4edd18cb2778624ab31b34b23b8.zip on 2022-10-12T21:07:22.543Z<br> &nbsp;- WIRC / University of Wisconsin Madison WIS-IH / Wisconsin Insect Research Collection accessed via https://github.com/globalbioticinteractions/wis-ih-wirc/archive/34162b86c0ade4b493471543231ae017cc84816e.zip on 2022-10-12T21:07:52.105Z<br> &nbsp;- Yale University Peabody Museum Collections Data Portal accessed via https://github.com/globalbioticinteractions/yale-peabody/archive/43be869f17749d71d26fc820c8bd931d6149fe8e.zip on 2022-10-12T21:16:57.226Z</p> <p>Generated on:<br> 2022-10-12</p> <p>by:<br> GloBI&#39;s Elton 0.12.4&nbsp;<br> (see https://github.com/globalbioticinteractions/elton).</p> <p>Note that all files ending with .tsv are files formatted&nbsp;<br> as UTF8 encoded tab-separated values files.</p> <p>https://www.iana.org/assignments/media-types/text/tab-separated-values</p> <p><br> Included in this review archive are:</p> <p>README:<br> &nbsp; This file.</p> <p>review_summary.tsv:<br> &nbsp; Summary across all reviewed collections of total number of distinct review comments.</p> <p>review_summary_by_collection.tsv:<br> &nbsp; Summary by reviewed collection of total number of distinct review comments.</p> <p>indexed_interactions_by_collection.tsv:&nbsp;<br> &nbsp; Summary of number of indexed interaction records by institutionCode and collectionCode.</p> <p>review_comments.tsv.gz:<br> &nbsp; All review comments by collection.</p> <p>indexed_interactions_full.tsv.gz:<br> &nbsp; All indexed interactions for all reviewed collections.</p> <p>indexed_interactions_simple.tsv.gz:<br> &nbsp; All indexed interactions for all reviewed collections selecting only sourceInstitutionCode, sourceCollectionCode, sourceCatalogNumber, sourceTaxonName, interactionTypeName and targetTaxonName.</p> <p>datasets_under_review.tsv:<br> &nbsp; Details on the datasets under review.</p> <p>elton.jar:&nbsp;<br> &nbsp; Program used to update datasets and generate the review reports and associated indexed interactions.</p> <p>datasets.zip:<br> &nbsp; Source datasets used by elton.jar in process of executing the generate_report.sh script.</p> <p>generate_report.sh:<br> &nbsp; Program used to generate the report</p> <p>generate_report.log:<br> &nbsp; Log file generated as part of running the generate_report.sh script</p>

opencc-by-4.0Jun 2022View details →
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Hybrid Life-Cycle Assessment Literature Review Data

<p>Results from a literature review of hybrid life-cycle assessment. Details the underestimation of purely process-based life-cycle assessment and the diversity in terminology used by authors.</p>

opencc-by-4.0Oct 2022View details →
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Dataset for Code Review Guidelines for GUI-based Testing Artifacts

<p>The Excel file contains meta-data about collected white and gray literature, applied inclusion/exclusion criteria, the code system, and a list of identified guidelines.</p>

opencc-by-4.0Oct 2022View details →
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Supplementary material 1 from: Spafford R, Lortie C, Butterfield B (2013) A systematic review of arthropod community diversity in association with invasive plants. NeoBiota 16: 81-102. https://doi.org/10.3897/neobiota.16.4190

Supplementary material 1 from: Spafford R, Lortie C, Butterfield B (2013) A systematic review of arthropod community diversity in association with invasive plants. NeoBiota 16: 81-102. https://doi.org/10.3897/neobiota.16.4190

opencc-by-4.0Apr 2013View details →
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Supplementary material 2 from: Spafford R, Lortie C, Butterfield B (2013) A systematic review of arthropod community diversity in association with invasive plants. NeoBiota 16: 81-102. https://doi.org/10.3897/neobiota.16.4190

Supplementary material 2 from: Spafford R, Lortie C, Butterfield B (2013) A systematic review of arthropod community diversity in association with invasive plants. NeoBiota 16: 81-102. https://doi.org/10.3897/neobiota.16.4190

opencc-by-4.0Apr 2013View details →
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R code and associated data for: A review of riverine ecosystem service quantification: research gaps and recommendations

<p>This publication contains the R code and associated data used in the Journal of Applied Ecology publication entitled "A review of riverine ecosystem service quantification: research gaps and recommendations". </p>

opencc-by-4.0Oct 2017View details →
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Data from: Andriollo T., Ruedi M. (2018). Novel molecular tools to identify Plecotus bats in sympatry and a review of their distribution in Switzerland. Revue suisse de Zoologie 125(1)

<p><strong>Supporting data for:</strong> Andriollo T., Ruedi M. (2018). Novel molecular tools to identify <em>Plecotus</em> bats in sympatry. Revue suisse de Zoologie 125(1): 61-72. https://doi.org/10.5281/zenodo.1196013</p>

opencc-by-sa-4.0Feb 2018View details →
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Fig. 3 in A review of the powderpost beetle genus, Xylopertha Guérin-Méneville, 1845, with a new species and new synonymy (Coleoptera: Bostrichidae: Bostrichinae: Xyloperthini)

Fig. 3. Declivity of the females of species of Xylopertha Guérin-Méneville, 1845. A. Xylopertha retusa (Olivier, 1790). B. X. praeusta (Germar, 1817). C. X. elegans sp. nov. D. X. reflexicauda (Lesne, 1937). Scale bar = 1 mm.

opencc-by-4.0Dec 2017View details →
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Fig. 1 in A review of the powderpost beetle genus, Xylopertha Guérin-Méneville, 1845, with a new species and new synonymy (Coleoptera: Bostrichidae: Bostrichinae: Xyloperthini)

Fig. 1. Dorsal view of species of Xylopertha Guérin-Méneville, 1845. A. Xylopertha elegans sp. nov., ♂. B. X. elegans sp. nov., ♀. C. X. retusa (Olivier, 1790), ♂. D. X. retusa (Olivier, 1790), ♀. E. X. praeusta (Germar, 1817), ♂. F. X. praeusta (Germar, 1817), ♀. G. X. reflexicauda (Lesne, 1937), ♂. H. X. reflexicauda (Lesne, 1937), ♀. Scale bar = 1 mm.

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Fig. 5. Male 8 in A review of the powderpost beetle genus, Xylopertha Guérin-Méneville, 1845, with a new species and new synonymy (Coleoptera: Bostrichidae: Bostrichinae: Xyloperthini)

Fig. 5. Male 8th tergite, 5th ventrite and aedeagus of species of Xylopertha Guérin-Méneville, 1845. A. Xylopertha retusa (Olivier, 1790), 8th tergite. B. X. retusa (Olivier, 1790), 5th ventrite and aedeagus. C. X. praeusta (Germar, 1817), 8th tergite. D. X. praeusta (Germar, 1817), 5th ventrite and aedeagus. E. X. elegans sp. nov., 8th tergite. Figure F. X. elegans sp. nov., 5th ventrite and aedeagus. G. X. reflexicauda (Lesne, 1937), 8th tergite. H. X. reflexicauda (Lesne, 1937), 5th ventrite and aedeagus. Scale bar = 1 mm.

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Fig. 4. Last 3 in A review of the powderpost beetle genus, Xylopertha Guérin-Méneville, 1845, with a new species and new synonymy (Coleoptera: Bostrichidae: Bostrichinae: Xyloperthini)

Fig. 4. Last 3 or 4 visible abdominal ventrites of females of species of Xylopertha Guérin-Méneville, 1845. A. Xylopertha retusa (Olivier, 1790). B. X. elegans sp. nov. C. X. praeusta (Germar, 1817). D. X. reflexicauda (Lesne, 1937). Scale bar = 1 mm.

opencc-by-4.0Dec 2017View details →

ScienceDex guides

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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

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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