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.
168
datasets available to search
ShareScore release 0.9.0
Dataset results
168 results for “biodiversity taxonomy”
TABLE 1 in Systematics, revisionary taxonomy, and biodiversity of Afrotropical Lithocolletinae (Lepidoptera: Gracillariidae)
<p><b>TABLE 1.</b> Notable historical publications of Lithocolletinae.</p><table><tbody><tr><th>1758</th><th>C. Linnaeus officially described the first Lithocolletinae species: <i>Phyllonorycter rajella.</i></th></tr></tbody><tbody><tr><th>1781</th><td>J. C. Fabricius studied seven European lithocolletine species.</td></tr><tr><th>1796–1838</th><td>J. Hübner’s illustrations and descriptions of European Lithocolletinae is published.</td></tr><tr><th>1839–1877</th><td>P. C. Zeller publishes seven robust papers on European Lithocolletinae.</td></tr><tr><th>1848–1867</th><td>H. T.Stainton’s works on natural history of Lithocolletinae are published.</td></tr><tr><th>1880–1939</th><td>E. Meyrick’s described 55 exotic Lithocolletinae species of which 36 are still valid and his monumental systematic books on microlepidoptera are published</td></tr><tr><th>1908–1929</th><td>A. Braun differentiated genera within Lithocolletinae and revised North American Lithocolletinae.</td></tr><tr><th>1951</th><td>A. M. Hering’s study on biology of Lithocolletinae is published.</td></tr><tr><th>1958–1998</th><td>T. Kumata’s work on oriental Lithocolletinae and the character sets of generic and higher taxa.</td></tr><tr><th>1961–2002</th><td>L. Vári’s studies of the Afrotropical Lithocolletinae, including “South African Lepidoptera. Vol. I. Lithocolletidae ” his monumental work on African Lithocolletinae</td></tr><tr><th>1965–2001</th><td>G. Deschka published seventeen descriptions of new lithocolletine species.</td></tr><tr><th>1981–2004</th><td>V. I. Kuznetzov revised North East European and North Asian Lithocolletinae.</td></tr><tr><th>1978–2011</th><td>D. R. Davis published numerous papers on Nearctic Lithocolletinae and the systematics of the subfamily.</td></tr><tr><th>1979</th><td>J. Klimesch published his study on the lithocolletine moths from Canary islands.</td></tr><tr><th>1980–2000</th><td>A. M. Emmet and collaborators revised Lithocolletinae of Great Britain and Ireland.</td></tr><tr><th>2005</th><td>W. De Prins & J. De Prins catalogued all Lithocolletinae species of the world.</td></tr><tr><th>2011</th><td>B. Å. Bengtsson & R. Johansson revised Lithocolletinae of North Europe (Denmark, Iceland, Finland, Norway and Sweden).</td></tr></tbody></table>
TABLE 3 in Systematics, revisionary taxonomy, and biodiversity of Afrotropical Lithocolletinae (Lepidoptera: Gracillariidae)
<p><b>TABLE 3.</b> Host plant families utilized as hosts of Lithcolletinae genera.</p><table><tbody><tr><th><b>Plant family</b></th><th><i>Cameraria</i></th><th><i>Chrysaster</i></th><th><i>Cremastobombycia</i></th><th><i>Hyloconis</i></th><th><i>Leucanthiza</i></th><th><i>Macrosaccus</i></th><th><i>Neolithocolleti s</i></th><th><i>Phyllonorycte r</i></th><th><i>Porphyrosela</i></th><th><i>Protolithocolletis</i></th><th><b>Total</b></th></tr></tbody><tbody><tr><th><b>Fagaceae</b></th><td>34</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>72</td><td>-</td><td>-</td><td>106</td></tr><tr><th><b>Fabaceae</b></th><td>11</td><td>2</td><td>-</td><td>5</td><td>1</td><td>5</td><td>3</td><td>54</td><td>10</td><td>1</td><td>92</td></tr><tr><th><b>Betulaceae</b></th><td>4</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>47</td><td>-</td><td>-</td><td>51</td></tr><tr><th><b>Rosaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>47</td><td>-</td><td>-</td><td>47</td></tr><tr><th><b>Salicaceae</b></th><td>2</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>35</td><td>-</td><td>-</td><td>37</td></tr><tr><th><b>Aceraceae</b></th><td>6</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>19</td><td>-</td><td>-</td><td>25</td></tr><tr><th><b>Ulmaceae</b></th><td>1</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>21</td><td>-</td><td>-</td><td>22</td></tr><tr><th><b>Malvaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>22</td><td>-</td><td>-</td><td>22</td></tr><tr><th><b>Caprifoliaceae</b></th><td>2</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>15</td><td>-</td><td>-</td><td>17</td></tr><tr><th><b>Ericaceae</b></th><td>3</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>12</td><td>-</td><td>-</td><td>15</td></tr><tr><th><b>Juglandaceae</b></th><td>2</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>10</td><td>-</td><td>-</td><td>12</td></tr><tr><th><b>Asteraceae</b></th><td>-</td><td>-</td><td>5</td><td>-</td><td>-</td><td>-</td><td>-</td><td>4</td><td>-</td><td>-</td><td>9</td></tr><tr><th><b>Myricaceae</b></th><td>2</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>4</td><td>-</td><td>-</td><td>6</td></tr><tr><th><b>Anacardiaceae</b></th><td>1</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>2</td></tr><tr><th><b>Dipsacaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>2</td><td>-</td><td>-</td><td>2</td></tr><tr><th><b>Hamamelidaceae</b></th><td>1</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>2</td></tr><tr><th><b>Hippocastanaceae</b></th><td>2</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>2</td></tr><tr><th><b>Platanaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>2</td><td>-</td><td>-</td><td>2</td></tr><tr><th><b>Rhamnaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>2</td><td>-</td><td>-</td><td>2</td></tr><tr><th><b>Saxifragaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>2</td><td>-</td><td>-</td><td>2</td></tr><tr><th><b>Solanaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>2</td><td>-</td><td>-</td><td>2</td></tr><tr><th><b>Verbenaceae</b></th><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>2</td></tr><tr><th><b>Acanthaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Annonaceae</b></th><td>1</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Aquifoliaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Cistaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Convolvulaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Elaeagnaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Lauraceae</b></th><td>1</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Malpighiaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Menispermaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Polygonaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Primulaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Rutaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Styracaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>1</td></tr><tr><th><b>Theaceae</b></th><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td><td>-</td><td>-</td><td>-</td><td>-</td><td>-</td><td>1</td></tr></tbody></table>
TABLE 6 in Systematics, revisionary taxonomy, and biodiversity of Afrotropical Lithocolletinae (Lepidoptera: Gracillariidae)
<p><b>TABLE 6.</b> Comparison of external morphological characters of <i>Porphyrosela</i> species feeding on <i>Desmodium</i>.</p><table><tbody><tr><th>Character</th><th>Species</th><th></th><th></th><th></th><th></th></tr></tbody><tbody><tr><th></th><td><i>aglaozona</i></td><td><i>alternata</i></td><td><i>desmodiella</i></td><td><i>desmodivora</i></td><td><i>neodoxa</i></td></tr><tr><th>white markings on forewing</th><td>four costal and three dorsal strigulae</td><td>three costal and three dorsal strigulae</td><td>two tranverse fasciae, two costal and one dorsal strigulae</td><td>three costal and three dorsal strigulae</td><td>three costal and two dorsal strigulae</td></tr><tr><th>ground colour of forewing</th><td>shining ochreous orange</td><td>orange brownish with a metallic lustre</td><td>ferruginous brown, ruby tinted</td><td>speckled with brownish, dark grey, scales</td><td>shining coppery orange</td></tr><tr><th>base of costa of forewing</th><td>base of forewing conspicuously black</td><td>triangular black spot present</td><td>black spot absent</td><td>black spot absent</td><td>black spot absent</td></tr></tbody></table>
Figure 2 from: Assmann T (2021) Terry Erwin's legacy: from taxonomy and natural history to biodiversity research and conservation biology. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 23-39. https://doi.org/10.3897/zookeys.1044.68650
Figure 2 Example of Terry Erwin's diverse illustrations: habitus, male genitalia (median lobe of aedeagus, with parameres) in dorsal, ventral, and lateral view with enlarged details of the internal sac and female genitalia from Lachnophorus species. From Erwin and Zamorano (2014: figs 15–18).
Figure 4 from: Assmann T (2021) Terry Erwin's legacy: from taxonomy and natural history to biodiversity research and conservation biology. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 23-39. https://doi.org/10.3897/zookeys.1044.68650
Figure 4 Bombardier beetles of the genus Pheropsophus, habitat of Pheropsophus africanus, and a Gryllotalpa specimen from the given habitat AP. (s. str.) aequinoctionalis (Linnaeus, 1763) BP. (Stenaptinus) jessoensis A. Morawitz, 1862 CP. (Stenaptinus) hispanus (Dejean, 1824) DP. (Stenaptinus) africanus (Dejean, 1825) E habitat of P. africanus (Jordan, northeast of Dead Sea) FGryllotalpa spec.
Figure 1 from: Assmann T (2021) Terry Erwin's legacy: from taxonomy and natural history to biodiversity research and conservation biology. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 23-39. https://doi.org/10.3897/zookeys.1044.68650
Figure 1 Example of Terry Erwin's line drawings: dorsal aspects of three Halocoryza species and the median lobe of aedeagus of two Halocoryza species. From Erwin (2011: figs 4–8).
Figure 3 from: Assmann T (2021) Terry Erwin's legacy: from taxonomy and natural history to biodiversity research and conservation biology. In: Spence J, Casale A, Assmann T, Liebherr JК, Penev L (Eds) Systematic Zoology and Biodiversity Science: A tribute to Terry Erwin (1940-2020). ZooKeys 1044: 23-39. https://doi.org/10.3897/zookeys.1044.68650
Figure 3 Example of Terry Erwin's habitus illustrations: habitus of four Straneotia species. From Erwin and Aldebron (2018: fig. 14).
Figure 1 from: Magoga G, Sassi D, Daccordi M, Leonardi C, Mirzaei M, Regalin R, Lozzia G, Montagna M (2016) Barcoding Chrysomelidae: a resource for taxonomy and biodiversity conservation in the Mediterranean Region. In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 6. ZooKeys 597: 27–38. https://doi.org/10.3897/zookeys.597.7241
Figure 1 - Area investigated by the Chrysomelidae Barcoding project. The countries in which were performed the collecting campaigns are reported in dark grey. The percentage of the total processed specimens is reported for each country.
Supplementary material 1 from: Agosti D, Benichou L, Addink W, Arvanitidis C, Catapano T, Cochrane G, Dillen M, Döring M, Georgiev T, Gérard I, Groom Q, Kishor P, Kroh A, Kvaček J, Mergen P, Mietchen D, Pauperio J, Sautter G, Penev L (2022) Recommendations for use of annotations and persistent identifiers in taxonomy and biodiversity publishing. Research Ideas and Outcomes 8: e97374. https://doi.org/10.3897/rio.8.e97374
Overview table of recommendations
Supplementary material 2 from: Neal L, Abrahams E, Wiklund H, Rabone M, Bribiesca-Contreras G, Stewart ECD, Dahlgren TG, Glover AG (2023) Taxonomy, phylogeny, and biodiversity of Lumbrineridae (Annelida, Polychaeta) from the Central Pacific Clarion-Clipperton Zone. ZooKeys 1172: 61-100. https://doi.org/10.3897/zookeys.1172.100483
DarwinCore database containing taxonomic designation and collection details
Supplementary material 1 from: Neal L, Abrahams E, Wiklund H, Rabone M, Bribiesca-Contreras G, Stewart ECD, Dahlgren TG, Glover AG (2023) Taxonomy, phylogeny, and biodiversity of Lumbrineridae (Annelida, Polychaeta) from the Central Pacific Clarion-Clipperton Zone. ZooKeys 1172: 61-100. https://doi.org/10.3897/zookeys.1172.100483
GenBank sequences
Figure 3 from: Proćków J, Faltyn-Parzymska A, Jarzembowski P, Proćków M, Jakubska-Busse A (2020) How many type specimens can be stored in old lesser-known herbaria with turbulent histories? – A Juncus case study reveals their importance in taxonomy and biodiversity research. PhytoKeys 153: 85-110. https://doi.org/10.3897/phytokeys.153.50735
Figure 3 Collectors' names. Y-axis: number of herbarium labels analysed.
TABLE 2 in Systematics, revisionary taxonomy, and biodiversity of Afrotropical Lithocolletinae (Lepidoptera: Gracillariidae)
<p><b>TABLE 2.</b> Wing venation characters of Lithocolletinae genera.</p><table><tbody><tr><th><b>Taxon</b></th><th><b>Character</b></th></tr></tbody><tbody><tr><th></th><td>Eighth abdominal sternite of male unmodified, not extended</td></tr><tr><th><i>Protolithocolletis lathyri</i> Braun, 1929</th></tr><tr><th><i>Leucanthiza amphicarpeaefoliella</i> Clemens, 1859</th></tr><tr><th><i>Macrosaccus robiniella</i> (Clemens, 1859)</th></tr><tr><th><i>Chrysaster hagicola</i> Kumata, 1961</th></tr></tbody></table>
FIGURE 29 in <p class="HeadingRunIn" align="left"><strong><em>Cradoscrupocellaria</em>, a new bryozoan genus for <em>Scrupocellaria bertholletii</em> (Audouin) and related species (Cheilostomata, Candidae): taxonomy, biodiversity and distribution</strong></p>
FIGURE 29. Cradoscrupocellaria hirsuta (Jullien & Calvet, 1903) n. comb. A–F, NHMUK 1911.10.1.386, Madeira. A, Frontal surface of colony. B, Frontal surface of branch; note the presence of distolateral avicularia and very long distal spines. C, Lateral view of branch bifurcation. D, Close-up of two autozooids; note the small aquiline frontal avicularia. E, Abfrontal surface of colony. F, Abfrontal surface of branch bifurcation; note the smooth rhizoids.
FIGURE 9. Cradoscrupocellaria floridana n in <p class="HeadingRunIn" align="left"><strong><em>Cradoscrupocellaria</em>, a new bryozoan genus for <em>Scrupocellaria bertholletii</em> (Audouin) and related species (Cheilostomata, Candidae): taxonomy, biodiversity and distribution</strong></p>
FIGURE 9. Cradoscrupocellaria floridana n. sp. A–F, NHMUK 2010.12.6.2, holotype, Florida. A, Frontal surface of colony. B, Frontal surface of branches with ovicelled zooids. C, Close-up of a branch; note the dimorphic frontal avicularia and the ooecia with pores having raised edges. D, Close-up of ovicelled zooid and one frontal avicularium; note the forked scutum with forked, acute tips. E, Abfrontal surface of colony. F, Abfrontal surface of branch bifurcation.
FIGURE 12. Cradoscrupocellaria hastingsae n in <p class="HeadingRunIn" align="left"><strong><em>Cradoscrupocellaria</em>, a new bryozoan genus for <em>Scrupocellaria bertholletii</em> (Audouin) and related species (Cheilostomata, Candidae): taxonomy, biodiversity and distribution</strong></p>
FIGURE 12. Cradoscrupocellaria hastingsae n. sp. A–F, NHMUK 2010.12.6.8, holotype, Galapagos. A, Frontal surface of colony. B, Frontal surface of branch bifurcation; note the joints passing across opesia in outer zooids at bifurcation. C, Close-up of a branch; note one zooid without scutum and three distalmost zooids with forked scutum. D, Close-up of zooid; note the absence of a scutum and the gigantic frontal avicularium. E, Abfrontal surface of colony. F, Abfrontal surface of branch bifurcation.
FIGURE 2 in <p class="HeadingRunIn" align="left"><strong><em>Cradoscrupocellaria</em>, a new bryozoan genus for <em>Scrupocellaria bertholletii</em> (Audouin) and related species (Cheilostomata, Candidae): taxonomy, biodiversity and distribution</strong></p>
FIGURE 2. Cradoscrupocellaria bertholletii (Audouin, 1826) n. comb. A–C, NHMUK 1926.9.6.58, neotype, Suez Canal; D– F, NHMUK 1899.7.1.736, Mediterranean. A, Frontal surface of branches and two bifurcations. B, Frontal surface of a branch; note zooids with and without scuta. C, Close-up of an abfrontal vibraculum. D, Frontal surface of a branch bifurcation; note the presence of dimorphic frontal avicularia (gigantic on axial zooid) and two zooids with scutum. E, Close-up of an ovicelled zooid with scutum; note the small lateral avicularium. F, Abfrontal surface of branch; note the smooth surface of rhizoids.
FIGURE 13. Cradoscrupocellaria insularis n in <p class="HeadingRunIn" align="left"><strong><em>Cradoscrupocellaria</em>, a new bryozoan genus for <em>Scrupocellaria bertholletii</em> (Audouin) and related species (Cheilostomata, Candidae): taxonomy, biodiversity and distribution</strong></p>
FIGURE 13. Cradoscrupocellaria insularis n. sp. A–B, E–F, NHMUK 2010.12.6.16, holotype, Cape Verde. C–D, NHMUK 1899.7.1.837, paratype, Cape Verde. A, Frontal surface of colony. B, Frontal surface of branch with ovicelled zooids. C, Closeup of a branch; note the small distolateral avicularium and the scutum occupying less than half the opesial length. D, Close-up of small frontal avicularium. E, Abfrontal surface of colony. F, Abfrontal surface of branch bifurcation.
FIGURE 5 in <p class="HeadingRunIn" align="left"><strong><em>Cradoscrupocellaria</em>, a new bryozoan genus for <em>Scrupocellaria bertholletii</em> (Audouin) and related species (Cheilostomata, Candidae): taxonomy, biodiversity and distribution</strong></p>
FIGURE 5. Cradoscrupocellaria curacaoensis (Fransen, 1986) n. comb. A–B, USNM 559183, Porto Rico. C–D, SBMNH 96400, Aruba Island. A, Frontal surface of branch with two ovicells. B, Abfrontal surface of branch bifurcation. C, Frontal surface of branch; note one zooid with trifurcated scutum and two zooids with forked scutum. D, Abfrontal surface of branch; note the joints passing across the opesia in outer zooids at the bifurcation.
FIGURE 20 in <p class="HeadingRunIn" align="left"><strong><em>Cradoscrupocellaria</em>, a new bryozoan genus for <em>Scrupocellaria bertholletii</em> (Audouin) and related species (Cheilostomata, Candidae): taxonomy, biodiversity and distribution</strong></p>
FIGURE 20. Cradoscrupocellaria ellisi (Vieira & Spencer Jones, 2012) n. comb. A–B, NHMUK 1911.10.1.353, holotype, U.K. A, Frontal surface of branch. B, Abfrontal surface of branch bifurcation.
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.