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zenodo28/100

TABLE A 1 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

<p><b>TABLE A1.</b> Material examined in this study. Abbreviations are: Museum and Art Gallery of the Northern Territory (MAGNT), Australian Museum (AMS), South Australian museum (SAMA), Western Australian Museum (WAM), National Museum of Victoria (NMV). Holotypes are indicated by *H*. &ldquo;Type&rdquo; indicates the type of specimen (S= museum specimen; L= live animal; T= tissue sample). &ldquo;Data&rdquo; indicates the nature of the data extracted from each specimen used in this study, as follows: *DNA only, **morphology only, ***morphology and DNA.</p><table><tbody><tr><th><b>Specimen</b></th><th><b>Location</b></th><th><b>Latitude</b></th><th><b>Longitude</b></th><th><b>Tissue #</b></th><th><b>GenBank #</b></th><th><b>Type</b></th><th><b>Data</b></th></tr><tr><th><i>Liopholis aputja</i></th></tr><tr><th><b>sp. nov.</b></th></tr></tbody><tbody><tr><th>AMS R17271</th><td>Piltardi Rockhole, Mann</td><td>-26.116</td><td>130.283</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th></th><td>Ranges</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th>AMS R17456</th><td>Erliwunyawunya Rockhole,</td><td>-26.35833</td><td>131.72499</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th></th><td>Musgrave Ranges</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th>SAMA R51590</th><td>36.5 km ESE of Amata, OPP</td><td>-26.2558</td><td>131.4933</td><td>ABTC</td><td>AY520483</td><td>S, T</td><td>***</td></tr><tr><th></th><td></td><td></td><td></td><td>42404</td><td></td><td></td><td></td></tr><tr><th>SAMA R60802</th><td>Alalkanya Gorge, 13 km</td><td>-26.1633</td><td>132.1166</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th><b>*H*</b></th><td>N of Pukatja, Musgrave</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th></th><td>Ranges</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th>-</th><td>Alalkanya Gorge, 13 km</td><td>-26.163139</td><td>132.11734</td><td>(NMV)</td><td>PQ067254</td><td>L, T</td><td>***</td></tr><tr><th></th><td>N of Pukatja, Musgrave</td><td></td><td></td><td>Z79473</td><td></td><td></td><td></td></tr><tr><th></th><td>Ranges</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th>-</th><td>Aliwanyiwanyinya</td><td>-26.381896</td><td>131.693497</td><td>(NMV)</td><td>-</td><td>L, T</td><td>**</td></tr><tr><th></th><td>Rockhole</td><td></td><td></td><td>Z79474</td><td></td><td></td><td></td></tr><tr><th>-</th><td>Aliwanyiwanyinya</td><td>-26.381089</td><td>131.688177</td><td>(NMV)</td><td>-</td><td>L, T</td><td>**</td></tr><tr><th></th><td>Rockhole</td><td></td><td></td><td>Z79475</td><td></td><td></td><td></td></tr><tr><th>-</th><td>Aliwanyiwanyinya</td><td>-26.38133</td><td>131.701714</td><td>(NMV)</td><td>-</td><td>L, T</td><td>**</td></tr><tr><th></th><td>Rockhole</td><td></td><td></td><td>Z79476</td><td></td><td></td><td></td></tr><tr><th>-</th><td>Aliwanyiwanyinya</td><td>-26.381582</td><td>131.688737</td><td>-</td><td>-</td><td>L</td><td>**</td></tr><tr><th></th><td>Rockhole</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th>-</th><td>Aliwanyiwanyinya</td><td>-26.38133</td><td>131.6908</td><td>-</td><td>-</td><td>L</td><td>**</td></tr><tr><th></th><td>Rockhole</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th>-</th><td>Aliwanyiwanyinya</td><td>-26.381582</td><td>131.688737</td><td>-</td><td>-</td><td>L</td><td>**</td></tr><tr><th></th><td>Rockhole</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th>-</th><td>Apara Springs</td><td>-26.045784</td><td>131.031376</td><td>(NMV)</td><td>-</td><td>L, T</td><td>**</td></tr><tr><th></th><td></td><td></td><td></td><td>Z79477</td><td></td><td></td><td></td></tr><tr><th>-</th><td>Piltardi Rockhole, Mann</td><td>-26.134153</td><td>130.281016</td><td>(NMV)</td><td>-</td><td>L, T</td><td>**</td></tr><tr><th></th><td>Ranges</td><td></td><td></td><td>Z79478</td><td></td><td></td><td></td></tr><tr><th><i>Liopholis margaretae</i></th></tr><tr><th>-</th><td>Kings Creek Station</td><td>-24.43</td><td>131.82</td><td>ABTC</td><td>AY520486</td><td>T</td><td>*</td></tr><tr><th></th><td></td><td></td><td></td><td>12624</td><td></td><td></td><td></td></tr><tr><th>MAGNT R11107</th><td>Reedy Rockhole, George</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th></th><td>Gill Ranges, Central</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th></th><td>Australia</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th>MAGNT R11108</th><td>Reedy Rockhole, George</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th></th><td>Gill Ranges, Central</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th></th><td>Australia</td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th>MAGNT R11109</th><td>Reedy Rockhole, George Gill Ranges, Central Australia</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R11110</th><td>Reedy Rockhole, George Gill Ranges, Central Australia</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R11117</th><td>Reedy Rockhole, George Gill Ranges, Central Australia</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R14637</th><td>19 Mile Valley, Tempe Downs Station</td><td>-24.267</td><td>131.8</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R14865</th><td>Kyumpa Reserve</td><td>-23.8</td><td>133.767</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R15297</th><td>Glen Helen Station, Mt Sonder?</td><td>-23.583</td><td>132.567</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R15388</th><td>Chewings Ranges, Giles Yard Spring</td><td>-23.65</td><td>132.9</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R15423</th><td>Possum Creek, Narwietooma Station</td><td>-23.517</td><td>132.817</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R15472</th><td>SE Section of Nanga Range</td><td>-21.817</td><td>132.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R15513</th><td>Inturtupa Waterhole, Ellery Creek, Central Australia</td><td>-23.817</td><td>133.067</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R18194</th><td>Mount Riddock Station, Harts Range</td><td>-23.133</td><td>134.867</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R18202</th><td>Anna&rsquo;s Reservoir, Tanami Desert</td><td>-22.583</td><td>133.133</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R26792</th><td>Henbury Station, Henbury Station</td><td>-24.599</td><td>132.919</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>WAM R29129 <b>*H*</b></th><td>Palm Valley, Northern Territory</td><td>-24.05</td><td>132.7</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32774</th><td>Alice Springs, 45 Miles South</td><td>-23.983</td><td>133.883</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32775</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32776</th><td>Kathleen Creek</td><td>-24.33333</td><td>131.67917</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32777</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32778</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32779</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32780</th><td>Palm Valley</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32781</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32782</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32783</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32784</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32785</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32786</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32787</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr><tr><th>MAGNT R32788</th><td>Reedy Creek</td><td>-24.3</td><td>131.6</td><td>-</td><td>-</td><td>S</td><td>**</td></tr></tbody></table><p>......continued on the next page</p><p>......continued on the next page</p>

opennotspecifiedOct 2024View details →
zenodo28/100

TABLE A 3 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

<p><b>TABLE A3.</b> Summary statistics and loadings of the principal component analysis (PCA) of adjusted mensural characters. Character abbreviations are defined in materials and methods.</p><table><tbody><tr><th></th><th>PC1</th><th>PC2</th><th>PC3</th><th>PC4</th><th>PC5</th><th>PC6</th><th>PC7</th></tr></tbody><tbody><tr><th>Proportion of Variance</th><td>0.37</td><td>0.17</td><td>0.14</td><td>0.13</td><td>0.06</td><td>0.06</td><td>0.03</td></tr><tr><th>Cumulative Proportion</th><td>0.37</td><td>0.55</td><td>0.7</td><td>0.83</td><td>0.89</td><td>0.96</td><td>1</td></tr><tr><th>Eigenvalues</th><td>2.64</td><td>1.22</td><td>1.05</td><td>0.92</td><td>0.47</td><td>0.43</td><td>0.27</td></tr><tr><th>Loadings</th></tr><tr><th>HL</th><td>0.74</td><td>-0.21</td><td>-0.34</td><td>-0.19</td><td>-0.30</td><td>0.38</td><td>-0.15</td></tr><tr><th>HW</th><td>0.78</td><td>-0.45</td><td>-0.001</td><td>-0.19</td><td>0.03</td><td>-0.13</td><td>0.38</td></tr><tr><th>HD</th><td>0.76</td><td>-0.29</td><td>0.37</td><td>-0.13</td><td>0.22</td><td>-0.22</td><td>-0.31</td></tr><tr><th>AGL</th><td>0.31</td><td>0.41</td><td>0.81</td><td>-0.03</td><td>-0.09</td><td>0.26</td><td>0.09</td></tr><tr><th>BW</th><td>0.38</td><td>-0.22</td><td>0.00</td><td>0.89</td><td>0.09</td><td>0.12</td><td>0.02</td></tr><tr><th>FLL</th><td>0.62</td><td>0.57</td><td>-0.14</td><td>0.19</td><td>-0.34</td><td>-0.35</td><td>-0.02</td></tr><tr><th>HLL</th><td>0.54</td><td>0.60</td><td>-0.35</td><td>-0.10</td><td>0.44</td><td>0.13</td><td>0.04</td></tr></tbody></table>

opennotspecifiedOct 2024View details →
zenodo28/100

TABLE 1 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

<p><b>TABLE 1.</b> Summary statistics (mean &plusmn; SD, range in parentheses) of unadjusted mensural (millimetres) and meristic (count) characters for each species.</p><table><tbody><tr><th>Character</th><th><i>Liopholis margaretae</i></th><th><i>n</i></th><th><i>Liopholis aputja</i> <b>sp. nov.</b></th><th><i>n</i></th></tr></tbody><tbody><tr><th>Snout-vent length (SVL)</th><td>94.1 &plusmn; 13.2 (52.2&ndash;108.5)</td><td>49</td><td>101.1 &plusmn; 17 (60.2&ndash;135)</td><td>13</td></tr><tr><th>Head length (HL)</th><td>19.7 &plusmn; 2.4 (12.6&ndash;22.2)</td><td>49</td><td>19.2 &plusmn; 2.8 (14.2&ndash;20.9)</td><td>5</td></tr><tr><th>Head width (HW)</th><td>14.8 &plusmn; 2.2 (8.5&ndash;18.3)</td><td>49</td><td>14.2 &plusmn; 2 (10.7&ndash;15.4)</td><td>5</td></tr><tr><th>Head depth (HD)</th><td>10.5 &plusmn; 1.6 (6&ndash;13.5)</td><td>49</td><td>9.7 &plusmn; 1.4 (7.3&ndash;10.7)</td><td>5</td></tr><tr><th>Axilla-groin length (AGL)</th><td>48.4 &plusmn; 7.5 (25.1&ndash;58.4)</td><td>49</td><td>47.4 &plusmn; 11.3 (31&ndash;62.7)</td><td>5</td></tr><tr><th>Body width (BW)</th><td>18.5 &plusmn; 3.4 (10&ndash;24.2)</td><td>49</td><td>17.8 &plusmn; 2.7 (12.9&ndash;19.6)</td><td>5</td></tr><tr><th>Forelimb length (FLL)</th><td>24.9 &plusmn; 2.7 (16.6&ndash;28.8)</td><td>49</td><td>25.4 &plusmn; 4.4 (18.1&ndash;29.7)</td><td>5</td></tr><tr><th>Hindlimb length (HLL)</th><td>34.7 &plusmn; 4.6 (21.7&ndash;40.3)</td><td>49</td><td>34.1 &plusmn; 5.5 (25&ndash;39.8)</td><td>5</td></tr><tr><th>Tail length (TL)*</th><td>168.7 &plusmn; 11.5 (152&ndash;187.5)</td><td>10</td><td>150.6 &plusmn; 13.4 (130.5&ndash;158)</td><td>4</td></tr><tr><th>Midbody scale rows (MSR)</th><td>35.3 &plusmn; 1.2 (33&ndash;38)</td><td>47</td><td>36.9 &plusmn; 1.8 (32&ndash;39)</td><td>13</td></tr><tr><th>Subdigital lamellae (SubDig)</th><td>24 &plusmn; 1.6 (20&ndash;28)</td><td>47</td><td>24.7 &plusmn; 1.8 (22&ndash;28)</td><td>13</td></tr><tr><th>Supralabials (SupLab)</th><td>8.1 &plusmn; 0.4 (8&ndash;9)</td><td>49</td><td>8.8 &plusmn; 0.6 (8&ndash;10)</td><td>13</td></tr><tr><th>Supraciliaries (SupCil)</th><td>8 &plusmn; 0.5 (6&ndash;9)</td><td>48</td><td>6.2 &plusmn; 0.4 (6&ndash;7)</td><td>13</td></tr><tr><th>Ciliaries (Cil)</th><td>10.8 &plusmn; 0.9 (9&ndash;13)</td><td>49</td><td>11.7 &plusmn; 1 (10&ndash;13)</td><td>13</td></tr><tr><th>Ear lobules (Lob)</th><td>3.2 &plusmn; 0.4 (3&ndash;4)</td><td>49</td><td>4.3 &plusmn; 0.6 (3&ndash;5)</td><td>13</td></tr></tbody></table><p>*Only for adult specimens (SVL&gt; 75 mm) with original tails.</p>

opennotspecifiedOct 2024View details →
dryad28/100

Data from: Bioregions are predominantly climatic for fishes of northern lakes

<p><b>Aim:</b> Recurrent species assemblages integrate important biotic interactions and joint responses to environmental and spatial filters that enable local coexistence. Here, we applied a bipartite (site-species) network approach to develop a natural typology of lakes sharing distinct fish faunas and provide a detailed, hierarchical view of their bioregions. We then compared the roles of key biogeographic factors to evaluate alternative hypotheses about how fish communities are assembled from the regional species pool.</p> <p><b>Location:</b> Ontario, Canada and the Upper Midwest, USA.</p> <p><b>Time period:</b> 1957–2017.</p> <p><b>Major taxa studied:</b> Freshwater fishes.</p> <p><b>Methods:</b> Bipartite modularity analysis was performed on 90 taxa from 10,016 inland lakes in the Southwestern Hudson Bay, Mississippi River, and St. Lawrence River drainages, uncovering bioregionalization of North American fishes at a large, subcontinental scale. We then used a latent variable approach, pairing non-metric partial least-squares structural equation modelling with multiple logistic regression, to show differences in the biogeographic templates of each community type. Indicators of contemporary and historical connectivity, climate, and habitat constructs were estimated using a geographic information system.</p> <p><b>Results:</b> Fish assemblages reflected broad, overlapping patterns of postglacial colonization, climate, and geological setting, but community differentiation was most linked to temperature, precipitation, and, for certain groups, lake area and water quality. Bioregions were also marked by non-native species, showing broad-scale impacts of introductions to the Great Lakes and surrounding basins.</p> <p><b>Main conclusions:</b> The dominant effects of climate across broad spatial gradients indicate differing sensitivities of fish communities to rapidly accelerating climate change and opportunities for targeted conservation strategies. By assessing biological variation at the level of recurrent assemblages, we accounted for the non-stationarity of macroecological processes structuring different sets of species on the landscape, and thus offer novel inference on the assembly of inland fish communities.</p>

opencc-zeroNov 2022View details →
dryad28/100

Scavenging and social interaction of an apex avian scavenger is governed by bioregional and seasonal variation

Open the record for dataset details and reuse information.

publicJul 2024View details →
dryad28/100

Data from: Bioregions are predominantly climatic for fishes of northern lakes

Open the record for dataset details and reuse information.

publicNov 2022View details →
zenodo20/100

Distribution. NW & N Australia, in Western Australia (Pilbara and Kimberley bioregions), Northern Territory in the Top End, S of Gulf of Carpentaria, and Gulf Fall and Uplands bioregion, and Queensland E to N Mount Isa Inlier and W Gulf Plains bioregions; also on Hook I off coast of Queensland and several small offshore islands off coasts of Western Australia and Northern Territory. in Emballonuridae

Distribution. NW &amp; N Australia, in Western Australia (Pilbara and Kimberley bioregions), Northern Territory in the Top End, S of Gulf of Carpentaria, and Gulf Fall and Uplands bioregion, and Queensland E to N Mount Isa Inlier and W Gulf Plains bioregions; also on Hook I off coast of Queensland and several small offshore islands off coasts of Western Australia and Northern Territory.

opennotspecifiedOct 2019View details →
zenodo20/100

FIGURE 19. Antichiropus hystricosus Car, n in The millipede genus Antichiropus (Diplopoda: Polydesmida: Paradoxosomatidae), part 3: species of the Pilbara bioregion of Western Australia

FIGURE 19. Antichiropus hystricosus Car, n. sp., holotype male (WAM T124621): A–B, habitus: A, lateral view; B, dorsal view; C–F, left gonopod: C, posterior view; D, anterior view; E, medial view; F, lateral view. Abbreviations: C, coxa; F, femo- rite; MFP, main femoral process; PF, prefemur; S, solenomere; serr, serrations; sp1, solenomere process 1. Scale bars: A = 2 mm; B = 1 mm; C–F = 0. 5 mm.

opennotspecifiedJun 2019View details →
zenodo20/100

FIGURE 4 in A new species of rock skink (Scincidae: Liopholis) from the Central Ranges bioregion of arid Australia

FIGURE 4. Holotype of Liopholis aputja sp. nov. (SAMA R60802) from Alalkanya Gorge, South Australia. Photos: Jules Farquhar.

opennotspecifiedOct 2024View details →
zenodo16/100

FIGURE 2 in The millipede genus Antichiropus (Diplopoda: Polydesmida: Paradoxosomatidae), part 3: species of the Pilbara bioregion of Western Australia

FIGURE 2. Concatenated gene tree, showing registration numbers and new species (see Table 1).

opennotspecifiedJun 2019View details →
zenodo8/100

Multi-scale mapping of Australia's terrestrial and blue carbon stocks and their bioregional environmental drivers

<p>Soils in terrestrial and coastal blue carbon ecosystems are an important carbon sink. National carbon inventories require accurate assessments of soil carbon in these ecosystems to aid conservation and nature-based climate change mitigation strategies. Here we harmonise measurements from Australia&rsquo;s terrestrial and blue carbon ecosystems and apply a multiscale spatial machine learning model to estimate soil carbon stocks and drivers of variation. We find that climate and vegetation are the primary drivers of variation at the continental scale, with ecosystem type, terrain, clay content, mineralogy and nutrients drive subregional variations. We estimate that in the top 0&ndash;30cm soil layer, terrestrial ecosystems hold 27.6 Gt C (19.6&ndash;39.0 Gt C), and blue carbon ecosystems hold 0.35 GtC (0.20&ndash;0.62 GtC). Tall open eucalypt and mangrove forests have the largest soil carbon content by area, while eucalypt woodlands and hummock grasslands have the largest total carbon stock due to their large area. Our findings suggest these are important ecosystems for conservation and nature-based mitigation climate change strategies.</p>

restrictedApr 2023View details →

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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