Skip to main content
Powered by ShareScore

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.

285

datasets available to search

ShareScore release 0.9.0

Reset

Dataset results

285 results for “transition zone”

Learn how ShareScore rates datasets ↗
zenodo40/100

Fig. 3 in New and previously known ectoparasitic monogenoids (Platyhelminthes) on native and non-native fishes from tributaries of the Usumacinta River basin (southern Mexico), a Neotropical transition zone

Fig. 3. Haptoral and copulatory complex sclerites of Heteropriapulus heterotylioides n. sp. on Pterygoplichthys pardalis (Loricariidae) from the Usumacinta river basin (southern Mexico). A, B, and C – copulatory complexes (A and C in dorsal view; B in ventral view); D – ventral anchor; E – hook; F, G and H – dorsal anchors; I and J – ventral bars; K and L – dorsal bars; M – vaginal tube.

opencc-by-4.0Dec 2023View details →
zenodo40/100

Fig. 2. Heteropriapulus simplexioides n in New and previously known ectoparasitic monogenoids (Platyhelminthes) on native and non-native fishes from tributaries of the Usumacinta River basin (southern Mexico), a Neotropical transition zone

Fig. 2. Heteropriapulus simplexioides n. sp. on Pterygoplichthys pardalis (Loricariidae) from the Usumacinta river basin (southern Mexico). A – whole mount (composite, ventral view); B, C, and E – copulatory complexes; D – ventral anchor; F – dorsal anchor; G – hook; H – dorsal bar; I – ventral bar.

opencc-by-4.0Dec 2023View details →
zenodo40/100

Datasets associated with "Thermochemistry of the mantle transition zone beneath the western Pacific"

<p>Handpicked and automatically picked datasets of ScSScS seismic data with bounce points beneath the Australasian region, lists of event and station information, measurements of the 410 and 660 km discontinuities, and thermochemical models (see readme.txt for details).</p>

opencc-by-4.0Jun 2024View details →
zenodo40/100

Linked collectors and determiners for: Liogenys Guérin-Méneville, 1831 (Coleoptera: Scarabaeidae: Melolonthinae) from the southern South American Transition Zone and boundaries: taxonomic overview with four new species.

Natural history specimen data linked to collectors and determiners held within, "Liogenys Guérin-Méneville, 1831 (Coleoptera: Scarabaeidae: Melolonthinae) from the southern South American Transition Zone and boundaries: taxonomic overview with four new species". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/d7dbbc1f-416c-4365-a32b-a9618e6c1fe9">https://bionomia.net/dataset/d7dbbc1f-416c-4365-a32b-a9618e6c1fe9</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/d7dbbc1f-416c-4365-a32b-a9618e6c1fe9">https://gbif.org/dataset/d7dbbc1f-416c-4365-a32b-a9618e6c1fe9</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
zenodo40/100

Linked collectors and determiners for: A revision of the Maechidiini Burmeister, 1855 (Coleoptera: Scarabaeidae: Melolonthinae) from the Indo-Australian transition zone, and the first record of the tribe west of Wallace's Line.

Natural history specimen data linked to collectors and determiners held within, "A revision of the Maechidiini Burmeister, 1855 (Coleoptera: Scarabaeidae: Melolonthinae) from the Indo-Australian transition zone, and the first record of the tribe west of Wallace's Line". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/0cd61b23-1089-4c1b-bfc0-487887abad84">https://bionomia.net/dataset/0cd61b23-1089-4c1b-bfc0-487887abad84</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/0cd61b23-1089-4c1b-bfc0-487887abad84">https://gbif.org/dataset/0cd61b23-1089-4c1b-bfc0-487887abad84</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
zenodo40/100

Disk population synthesis data for the article: "Large gaps and high accretion rates in photoevaporative transition disks with a dead zone"

<p>We make available here the results of our gas evolution simulations for the article &quot;Large gaps and high accretion rates in photoevaporative transition disks with a dead zone&quot;.</p> <p>We include the result of our population synthesis study, consisting in 10 tables corresponding to 9 models including both dead zone and photoevaporation, and 1 control model including photoevaporation only. The results can be plotted using the &quot;Plotting-PopulationSynthesisModels.ipynb&quot; jupyter notebook.</p> <p>The tables including a dead zone are named as: Macc_Rhole_Pop_AD(X)_RD(Y).txt, where (X)*1.e-4 corresponds to the turbulence in the dead zone, and (Y)*AU corresponds to the dead zone radial extent.</p> <p>The tables include the following fields: Simulation ID, Time [Myr] at which the snapshot was taken, Gap size [AU] measured at the outer edge, Accretion rate log[Msun/yr], and Gas disk mass. We also include a table called &quot;LxRc_Distribution.txt&quot;, that indicates the X-ray luminosity log[erg/s] and initial disk characteristic radius [AU] used for the corresponding Simulation ID.</p> <p>&nbsp;</p> <p>We also include the gas surface density evolution of a Control simulation, with photoevaporation only (with Lx = 1.e30 erg/s), and a Dead Zone + Photoevaporation simulation (with dead zone turbulence 1.e-4, and dead zone radial extend 10 AU). These can be plotted using the &quot;Plotting-SingleGasEvolution.ipynb&quot; jupyter notebook.</p>

opencc-by-4.0Dec 2020View details →
zenodo40/100

Land Water Transition Zone Change Detection - Hydroperiod Maps - WQeMS raster products

<p>Within this dataset,&nbsp;Hydroperiod maps&nbsp;of the Polyphytos open surface water reservoir in&nbsp;Greece and Giaretta reservoir in Italy&nbsp;are available in GeoTIFF raster format. The maps provide&nbsp;information about the total number of days each pixel is inundated within a specific time period.They&nbsp;were generated by the Land Water Transition Zone Change Detection service of the WQeMS project.&nbsp;Each raster file in the dataset is named according to the water body and period during which the processing was performed. Copernicus Sentinel-2 data was&nbsp;utilized for&nbsp;the generation of the&nbsp;inundation maps which were provided as input&nbsp;for the&nbsp;production&nbsp;of the&nbsp;hydroperiod maps.</p>

opencc-by-4.0Jul 2023View details →
zenodo40/100

Land Water Transition Zone Change Detection - Transition Maps between two dates - WQeMS raster products

<p>Within this dataset, land water transition zone maps, which indicate&nbsp;the land-water&nbsp;transition between&nbsp;two instances in time, of the Polyphytos open surface water reservoir in&nbsp;Greece and Giaretta reservoir in Italy, are available in GeoTIFF raster format. The maps depict the transition zones by indicating&nbsp;the change of the pixel status from non-inundated to inundated and vice versa between two provided dates.&nbsp;They&nbsp;were generated by the Land Water Transition Zone Change Detection service of the WQeMS project.&nbsp;Each raster file in the dataset is named according to the water body and the two dates&nbsp;during&nbsp;which the processing was performed. Copernicus Sentinel-2 data was&nbsp;utilized for&nbsp;the generation of the&nbsp;inundation maps on the two dates.</p>

opencc-by-4.0Jul 2023View details →
zenodo40/100

FIGURE 1 in Coexistence of two newt species in a transition zone of range overlap

FIGURE 1 Land use map of the study area in the western part of the department Pas de Calais in the northwest of France (see insert), after Curado et al. (2011) and Arntzen et al. (2017). The small-bodied newt species Lissotriton helveticus and L. vulgaris are frequently syntopic (for data see table 1), but have different strongholds in and outside the 'Dunes de la Slack' and the bomb crater areas, respectively. The partial spatial separation is illustrated by dotted contour lines where L. vulgaris is at 60% (red dots), 50% (purple dots) or 40% (blue dots) of the Lissotriton total. Note the position of the study pond at the species transition.

opencc-by-4.0Mar 2022View details →
zenodo40/100

FIGURE 2 in Coexistence of two newt species in a transition zone of range overlap

FIGURE 2 Dynamics of the adult newt breeding populations in the study pond, with percentage values over the 1975–2021 period for Ichthyosaura alpestris (black), Lissotroton helveticus (blue) and L. vulgaris (red), with open dots for samples and solid dots for population size estimates (see also tables 2 and 3). Years without observations are marked by open rectangles. The asterisk indicates a hypothetical frequency, on the assumption that the L. helveticus cohort that in March 1986 fell prone to a late freezing event (details see text) would have made it to the breeding population.

opencc-by-4.0Mar 2022View details →
dryad40/100

Data for: Benthic drivers of structural complexity in coral reefs across a tropical-subtropical transition zone

Open the record for dataset details and reuse information.

publicMar 2025View details →
edi40/100

Discontinued Vegetation Line-Intercept Transects in Transition Zones at the Sevilleta National Wildlife Refuge, New Mexico (1989-1998)

The line-intercept transects included in this data set have been discontinued. These transects were installed to evaluate temporal and spatial dynamics in vegetation transition zones (e.g.black grama grassland/creosote shrubland) at one centimeter resolution. Each study site originally contained four 400 m transects, representing total coverage of 1 sq km. The transects were placed along a roughly north/south azimuth. The northwestern and southwestern transects were 100 meters from the western edge of the 1 sq km study area and the northeastern and southeastern transects were 100 m from the eastern edge, providing 800 meters between the eastern and western transects. The northeastern and northwestern transects began to the north and, after an interval of 200 meters, the southeastern and northeastern transects began, terminating at the southern edge of the study area. Ongoing line-intercept transect data for transect 1, which continues to be sampled at both Deep Well and Five Points, can be found in SEV004.

openOpenMar 2016View details →
zenodo36/100

TABLE 2 in Coexistence of two newt species in a transition zone of range overlap

<p>TABLE 2 Numbers of adult newts observed in the focal pond near Ambleteuse, Pas de Calais, France</p><table><tbody><tr><th><b>Year</b></th><th><b>Method</b></th><th><i>Ichthyosaura</i> <i>alpestris</i></th><th><i>Lissotriton</i> <i>helveticus</i></th><th><i>Lissotriton</i> <i>vulgaris</i></th></tr></tbody><tbody><tr><th>1975</th><td>Dipnet</td><td>3</td><td>31</td><td>10</td></tr><tr><th>1979</th><td>Dipnet</td><td>5</td><td>47</td><td>18</td></tr><tr><th>1980</th><td>Dipnet</td><td>4</td><td>68</td><td>38</td></tr><tr><th>1981</th><td>Dipnet</td><td>7</td><td>118</td><td>40</td></tr><tr><th>1982</th><td>Dipnet</td><td>2</td><td>15</td><td>13</td></tr><tr><th>1983 $</th><td>Dipnet</td><td>28</td><td>363</td><td>208</td></tr><tr><th>1984</th><td>Dipnet</td><td>13</td><td>172</td><td>82</td></tr><tr><th>1986 $</th><td>Dipnet</td><td>22</td><td>226</td><td>184</td></tr><tr><th>1986 #</th><td>Dipnet</td><td>23</td><td>731</td><td>192</td></tr><tr><th>1988 $</th><td>Dipnet</td><td>29</td><td>413</td><td>132</td></tr><tr><th>1989 $</th><td>Dipnet</td><td>100</td><td>396</td><td>228</td></tr><tr><th>1990 $</th><td>Dipnet</td><td>24</td><td>297</td><td>71</td></tr><tr><th>1991 $</th><td>Dipnet</td><td>71</td><td>251</td><td>115</td></tr><tr><th>1992 $</th><td>Dipnet</td><td>19</td><td>388</td><td>162</td></tr><tr><th>1993 $</th><td>Dipnet</td><td>44</td><td>193</td><td>111</td></tr><tr><th>1994 $</th><td>Dipnet</td><td>26</td><td>132</td><td>9</td></tr><tr><th>1995 $</th><td>Dipnet</td><td>91</td><td>570</td><td>52</td></tr><tr><th>2003 $</th><td>Dipnet</td><td>98</td><td>156</td><td>4</td></tr><tr><th>2012 $</th><td>Funnel trap</td><td>213</td><td>426</td><td>81</td></tr><tr><th>2021</th><td>Funnel trap</td><td>30</td><td>71</td><td>12</td></tr></tbody></table><p>$ = for population size estimates see table 3; # = including animals found dead.</p>

opencc-by-4.0Mar 2022View details →
zenodo36/100

TABLE 1 in Coexistence of two newt species in a transition zone of range overlap

<p>TABLE 1 Numbers of adult <i>Lissotriton</i> newts observed over 105 ponds in the western part of the department Pas de Calais in the 1974 to 2021 period. <i>F</i> v = Lv /(Lh + Lv)</p><table><tbody><tr><th>Pond</th><th>Coordinates</th><th>Sample size for species</th><th><i>F</i> v</th></tr><tr><th><b>number</b></th><th>Northern latitude</th><th>Eastern longitude</th><th>Lissotriton <i>helveticus</i> (N)</th><th><i>Lissotriton</i> <b><i>vulgaris</i> (N)</b></th></tr></tbody><tbody><tr><th>1</th><td>50.770</td><td>1.772</td><td>21</td><td>1</td><td>0.05</td></tr><tr><th>2</th><td>50.871</td><td>1.617</td><td>194</td><td>175</td><td>0.47</td></tr><tr><th>3</th><td>50.902</td><td>1.679</td><td>223</td><td>9</td><td>0.04</td></tr><tr><th>4</th><td>50.901</td><td>1.678</td><td>126</td><td>7</td><td>0.05</td></tr><tr><th>5</th><td>50.870</td><td>1.606</td><td>580</td><td>24</td><td>0.04</td></tr><tr><th>6</th><td>50.902</td><td>1.680</td><td>233</td><td>6</td><td>0.03</td></tr><tr><th>7</th><td>50.869</td><td>1.608</td><td>34</td><td>1</td><td>0.03</td></tr><tr><th>8</th><td>50.869</td><td>1.609</td><td>20</td><td>0</td><td>0.00</td></tr><tr><th>9</th><td>50.875</td><td>1.656</td><td>26</td><td>2</td><td>0.07</td></tr><tr><th>10</th><td>50.855</td><td>1.666</td><td>410</td><td>149</td><td>0.27</td></tr><tr><th>11</th><td>50.854</td><td>1.664</td><td>188</td><td>96</td><td>0.34</td></tr><tr><th>12</th><td>50.839</td><td>1.672</td><td>108</td><td>10</td><td>0.08</td></tr><tr><th>13</th><td>50.837</td><td>1.675</td><td>29</td><td>5</td><td>0.15</td></tr><tr><th>14</th><td>50.820</td><td>1.631</td><td>65</td><td>41</td><td>0.39</td></tr><tr><th>15</th><td>50.858</td><td>1.630</td><td>26</td><td>6</td><td>0.19</td></tr><tr><th>16</th><td>50.861</td><td>1.610</td><td>92</td><td>34</td><td>0.27</td></tr><tr><th>17</th><td>50.860</td><td>1.606</td><td>43</td><td>0</td><td>0.00</td></tr><tr><th>18</th><td>50.849</td><td>1.597</td><td>186</td><td>87</td><td>0.32</td></tr><tr><th>19</th><td>50.853</td><td>1.595</td><td>27</td><td>11</td><td>0.29</td></tr><tr><th>20</th><td>50.866</td><td>1.608</td><td>107</td><td>46</td><td>0.30</td></tr><tr><th>21</th><td>50.844</td><td>1.590</td><td>104</td><td>76</td><td>0.42</td></tr><tr><th>22</th><td>50.844</td><td>1.598</td><td>26</td><td>16</td><td>0.38</td></tr><tr><th>23</th><td>50.844</td><td>1.599</td><td>83</td><td>66</td><td>0.44</td></tr><tr><th>24</th><td>50.845</td><td>1.599</td><td>812</td><td>182</td><td>0.18</td></tr><tr><th>25</th><td>50.845</td><td>1.599</td><td>45</td><td>16</td><td>0.26</td></tr><tr><th>26</th><td>50.845</td><td>1.599</td><td>53</td><td>40</td><td>0.43</td></tr><tr><th>27</th><td>50.845</td><td>1.599</td><td>86</td><td>35</td><td>0.29</td></tr><tr><th>28</th><td>50.845</td><td>1.600</td><td>41</td><td>16</td><td>0.28</td></tr><tr><th>29</th><td>50.845</td><td>1.600</td><td>79</td><td>33</td><td>0.29</td></tr><tr><th>30</th><td>50.845</td><td>1.600</td><td>70</td><td>17</td><td>0.20</td></tr><tr><th>31</th><td>50.845</td><td>1.601</td><td>51</td><td>45</td><td>0.47</td></tr><tr><th>32</th><td>50.846</td><td>1.600</td><td>1712</td><td>450</td><td>0.21</td></tr><tr><th>33</th><td>50.845</td><td>1.600</td><td>576</td><td>152</td><td>0.21</td></tr><tr><th>34</th><td>50.846</td><td>1.603</td><td>10</td><td>10</td><td>0.50</td></tr><tr><th>35</th><td>50.849</td><td>1.598</td><td>4</td><td>6</td><td>0.60</td></tr><tr><th>36</th><td>50.861</td><td>1.591</td><td>31</td><td>61</td><td>0.66</td></tr><tr><th>37</th><td>50.860</td><td>1.586</td><td>113</td><td>244</td><td>0.68</td></tr><tr><th>38</th><td>50.860</td><td>1.583</td><td>72</td><td>347</td><td>0.83</td></tr><tr><th>39</th><td>50.857</td><td>1.664</td><td>36</td><td>2</td><td>0.05</td></tr><tr><th>40</th><td>50.864</td><td>1.616</td><td>18</td><td>4</td><td>0.18</td></tr><tr><th>41</th><td>50.865</td><td>1.602</td><td>82</td><td>24</td><td>0.23</td></tr><tr><th>42</th><td>50.855</td><td>1.664</td><td>112</td><td>35</td><td>0.24</td></tr><tr><th>43</th><td>50.832</td><td>1.626</td><td>19</td><td>12</td><td>0.39</td></tr><tr><th>44</th><td>50.844</td><td>1.593</td><td>19</td><td>12</td><td>0.39</td></tr><tr><th>45</th><td>50.850</td><td>1.582</td><td>1</td><td>10</td><td>0.91</td></tr><tr><th>46</th><td>50.819</td><td>1.611</td><td>17</td><td>4</td><td>0.19</td></tr><tr><th>47</th><td>50.818</td><td>1.608</td><td>35</td><td>35</td><td>0.50</td></tr><tr><th>48</th><td>50.822</td><td>1.600</td><td>11</td><td>3</td><td>0.21</td></tr><tr><th>49</th><td>50.823</td><td>1.602</td><td>618</td><td>159</td><td>0.20</td></tr><tr><th>50</th><td>50.821</td><td>1.619</td><td>14</td><td>10</td><td>0.42</td></tr><tr><th>51</th><td>50.823</td><td>1.623</td><td>25</td><td>10</td><td>0.29</td></tr><tr><th>52</th><td>50.819</td><td>1.617</td><td>45</td><td>7</td><td>0.13</td></tr><tr><th>53</th><td>50.820</td><td>1.598</td><td>32</td><td>15</td><td>0.32</td></tr><tr><th>54</th><td>50.821</td><td>1.599</td><td>31</td><td>10</td><td>0.24</td></tr><tr><th>55</th><td>50.797</td><td>1.626</td><td>24</td><td>68</td><td>0.74</td></tr><tr><th>56</th><td>50.795</td><td>1.627</td><td>3</td><td>11</td><td>0.79</td></tr><tr><th>57</th><td>50.800</td><td>1.623</td><td>14</td><td>27</td><td>0.66</td></tr><tr><th>58</th><td>50.799</td><td>1.622</td><td>0</td><td>11</td><td>1.00</td></tr><tr><th>59</th><td>50.784</td><td>1.617</td><td>16</td><td>33</td><td>0.67</td></tr><tr><th>60</th><td>50.797</td><td>1.619</td><td>4</td><td>66</td><td>0.94</td></tr><tr><th>61</th><td>50.797</td><td>1.621</td><td>3</td><td>34</td><td>0.92</td></tr><tr><th>62</th><td>50.798</td><td>1.613</td><td>17</td><td>295</td><td>0.95</td></tr><tr><th>63</th><td>50.791</td><td>1.621</td><td>21</td><td>110</td><td>0.84</td></tr><tr><th>64</th><td>50.799</td><td>1.615</td><td>5</td><td>12</td><td>0.71</td></tr><tr><th>65</th><td>50.797</td><td>1.616</td><td>0</td><td>12</td><td>1.00</td></tr><tr><th>66</th><td>50.799</td><td>1.618</td><td>0</td><td>131</td><td>1.00</td></tr><tr><th>67</th><td>50.797</td><td>1.624</td><td>1</td><td>15</td><td>0.94</td></tr><tr><th>68</th><td>50.799</td><td>1.628</td><td>2</td><td>18</td><td>0.90</td></tr><tr><th>69</th><td>50.793</td><td>1.625</td><td>7</td><td>6</td><td>0.46</td></tr><tr><th>70</th><td>50.791</td><td>1.624</td><td>9</td><td>3</td><td>0.25</td></tr><tr><th>71</th><td>50.808</td><td>1.667</td><td>8</td><td>14</td><td>0.64</td></tr><tr><th>72</th><td>50.826</td><td>1.668</td><td>19</td><td>4</td><td>0.17</td></tr><tr><th>73</th><td>50.851</td><td>1.723</td><td>148</td><td>2</td><td>0.01</td></tr><tr><th>74</th><td>50.855</td><td>1.700</td><td>68</td><td>1</td><td>0.01</td></tr><tr><th>75</th><td>50.863</td><td>1.692</td><td>405</td><td>1</td><td>0.00</td></tr><tr><th>76</th><td>50.823</td><td>1.722</td><td>118</td><td>27</td><td>0.19</td></tr><tr><th>77</th><td>50.822</td><td>1.722</td><td>302</td><td>302</td><td>0.50</td></tr><tr><th>78</th><td>50.822</td><td>1.721</td><td>91</td><td>78</td><td>0.46</td></tr><tr><th>79</th><td>50.851</td><td>1.759</td><td>36</td><td>4</td><td>0.10</td></tr><tr><th>80</th><td>50.850</td><td>1.758</td><td>66</td><td>10</td><td>0.13</td></tr><tr><th>81</th><td>50.854</td><td>1.701</td><td>22</td><td>0</td><td>0.00</td></tr><tr><th>82</th><td>50.819</td><td>1.718</td><td>302</td><td>218</td><td>0.42</td></tr><tr><th>83</th><td>50.805</td><td>1.699</td><td>77</td><td>0</td><td>0.00</td></tr><tr><th>84</th><td>50.805</td><td>1.700</td><td>28</td><td>0</td><td>0.00</td></tr><tr><th>85</th><td>50.831</td><td>1.821</td><td>20</td><td>0</td><td>0.00</td></tr><tr><th>86</th><td>50.844</td><td>1.783</td><td>42</td><td>27</td><td>0.39</td></tr><tr><th>87</th><td>50.833</td><td>1.775</td><td>50</td><td>14</td><td>0.22</td></tr><tr><th>88</th><td>50.833</td><td>1.778</td><td>558</td><td>46</td><td>0.08</td></tr><tr><th>89</th><td>50.832</td><td>1.776</td><td>13</td><td>3</td><td>0.19</td></tr><tr><th>90</th><td>50.832</td><td>1.774</td><td>42</td><td>8</td><td>0.16</td></tr><tr><th>91</th><td>50.832</td><td>1.776</td><td>47</td><td>4</td><td>0.08</td></tr><tr><th>92</th><td>50.830</td><td>1.775</td><td>20</td><td>2</td><td>0.09</td></tr><tr><th>93</th><td>50.831</td><td>1.773</td><td>20</td><td>12</td><td>0.38</td></tr><tr><th>94</th><td>50.837</td><td>1.800</td><td>7</td><td>5</td><td>0.42</td></tr><tr><th>95</th><td>50.800</td><td>1.689</td><td>13</td><td>14</td><td>0.52</td></tr><tr><th>96</th><td>50.789</td><td>1.691</td><td>1883</td><td>6</td><td>0.00</td></tr><tr><th>97</th><td>50.778</td><td>1.679</td><td>66</td><td>1</td><td>0.01</td></tr><tr><th>98</th><td>50.779</td><td>1.659</td><td>13</td><td>0</td><td>0.00</td></tr><tr><th>99</th><td>50.771</td><td>1.666</td><td>327</td><td>3</td><td>0.01</td></tr><tr><th>100</th><td>50.774</td><td>1.673</td><td>20</td><td>0</td><td>0.00</td></tr><tr><th>101</th><td>50.779</td><td>1.606</td><td>87</td><td>50</td><td>0.36</td></tr><tr><th>102</th><td>50.807</td><td>1.690</td><td>32</td><td>0</td><td>0.00</td></tr><tr><th>103</th><td>50.797</td><td>1.688</td><td>27</td><td>1</td><td>0.04</td></tr><tr><th>104</th><td>50.801</td><td>1.690</td><td>17</td><td>1</td><td>0.06</td></tr><tr><th>105</th><td>50.789</td><td>1.690</td><td>13</td><td>0</td><td>0.00</td></tr></tbody></table>

opencc-by-4.0Mar 2022View details →
zenodo36/100

TABLE 3 in Coexistence of two newt species in a transition zone of range overlap

<p>TABLE 3 Estimates on the total adult newt population size (N̂) composed of <i>Ichthyosaura alpestris</i>, <i>Lissotroton helveticus</i> and <i>L.vulgaris</i> in the focal pond near Ambleteuse, Pas de Calais, France, by a weighted mean capture-recapture method and a removal method (details see text)</p><table><tbody><tr><th><b>Year</b></th><th><b>Number</b> <b>of visits</b></th><th><b>Capture event</b></th><th><b>Weighted mean</b></th><th><b>Removal</b></th><th><b>Different</b> <b>individuals</b></th><th><b>Capture</b> <b>efficiency</b></th></tr><tr><th><b>First</b></th><th><b>Last</b></th><th>N̂</th><th><b>SE</b></th><th>N̂</th><th><b>SE</b></th><th><b>95% Confidence</b> <b>interval</b></th></tr><tr><th><b>Lower</b></th><th><b>Upper</b></th></tr></tbody><tbody><tr><th>1983</th><td>3</td><td>06-May</td><td>19-May</td><td>2828</td><td>459.0</td><td>840</td><td>29.0</td><td>789</td><td>902</td><td>560</td><td>0.67</td></tr><tr><th>1986</th><td>5</td><td>28-Mar</td><td>13-May</td><td>806</td><td>93.0</td><td>508</td><td>27.6</td><td>463</td><td>572</td><td>356</td><td>0.70</td></tr><tr><th>1986a</th><td>6</td><td>13-Mar</td><td>13-May</td><td>1320</td><td>93.0</td><td>1022</td><td>27.6</td><td>977</td><td>1086</td><td>870</td><td>0.85</td></tr><tr><th>1988</th><td>6</td><td>18-Mar</td><td>22-May</td><td>1051</td><td>110.1</td><td>834</td><td>32.5</td><td>776</td><td>903</td><td>482</td><td>0.58</td></tr><tr><th>1989</th><td>2</td><td>01-Apr</td><td>02-Apr</td><td>707</td><td>53.7</td><td>722</td><td>19.6</td><td>688</td><td>764</td><td>530</td><td>0.73</td></tr><tr><th>1990</th><td>2</td><td>05-May</td><td>06-May</td><td>426</td><td>45.4</td><td>420</td><td>15.3</td><td>394</td><td>454</td><td>303</td><td>0.72</td></tr><tr><th>1991</th><td>3</td><td>10-May</td><td>19-May</td><td>493</td><td>46.1</td><td>404</td><td>22.7</td><td>455</td><td>544</td><td>322</td><td>0.80</td></tr><tr><th>1992</th><td>7</td><td>21-Mar</td><td>10-May</td><td>477</td><td>33.9</td><td>406</td><td>12,0</td><td>390</td><td>438</td><td>370</td><td>0.91</td></tr><tr><th>1993</th><td>4</td><td>28-Apr</td><td>05-May</td><td>464</td><td>38.9</td><td>436</td><td>21.6</td><td>401</td><td>486</td><td>319</td><td>0.73</td></tr><tr><th>1994</th><td>4</td><td>07-Apr</td><td>10-Apr</td><td>370</td><td>75.6</td><td>217</td><td>17.3</td><td>190</td><td>259</td><td>142</td><td>0.65</td></tr><tr><th>1995</th><td>4</td><td>27-Apr</td><td>06-May</td><td>950</td><td>72.7</td><td>667</td><td>22.4</td><td>631</td><td>719</td><td>541</td><td>0.81</td></tr><tr><th>2003</th><td>4</td><td>13-Apr</td><td>26-May</td><td>255</td><td>47.4</td><td>154</td><td>9.8</td><td>142</td><td>181</td><td>130</td><td>0.84</td></tr><tr><th>2012</th><td>4</td><td>09-Mar</td><td>13-Apr</td><td>990</td><td>75.9</td><td>909</td><td>37.9</td><td>842</td><td>991</td><td>549</td><td>0.60</td></tr></tbody></table><p><sup>a</sup> Including animals found dead.</p>

opencc-by-4.0Mar 2022View details →
zenodo36/100

Seismic Anisotropy in the Lower Mantle Transition Zone Induced by Lattice Preferred Orientation of Akimotoite-Dataset

<p>The dataset includes the lattice preferred orientation data of akimotoite aggregates obtained through EBSD and transmitted two-dimensional (2D) X-ray diffraction method at BL04B1 of synchrotron facility of SPring-8, Hyogo, Japan. The employed conditions of 2D X-ray diffraction measurements are also available.</p>

opencc-by-4.0Nov 2021View details →
zenodo36/100

Models and simulation results of "A relatively dry mantle transition zone revealed by geomagnetic diurnal variations"

<p>Data and models&nbsp;used in Zhang&nbsp;et al. 2022: A relatively dry mantle transition zone revealed by geomagnetic diurnal variations. See ReadMe&nbsp;for more detailed description of file contents. Files includes:</p> <p>1. 3D Conductivity models (ascii)&nbsp; and corresponding&nbsp;perturbed magnetic field on the surface (Matalab Mat format):</p> <p>Global*Model, Secondary*Hs_1cpd.mat</p> <p>2. inhomogeneous surface conductance layer for&nbsp;thin-sheet modeling (Matlab Mat format):</p> <p>SurfaceCond1degx1deg.mat</p> <p>3. 1D inversion profiles to generate Figure 1 (Matalab Mat format)</p> <p>depth.mat, MultiMode*.mat</p> <p>4.&nbsp;&nbsp;PCA used for the data analysis&nbsp;(Matalab Mat format).&nbsp;</p> <p>Data_1-4cpd_Mode_1-5.mat</p> <p>5. Source estimates results used for the preferred conductivity model (Matalab Mat format).</p> <p>SphereCoeff_PerferedSource.mat</p> <p>&nbsp;</p>

opencc-by-4.0May 2022View details →
dryad36/100

Data from: Habitat change and its consequences on reef fish specialization in biogeographic transition zones

<p><strong><em>Aim</em></strong> <span>Reef fishes are commonly recognized as sentinels of the ongoing tropicalization in biogeographic transition zones between temperate and tropical areas. Despite the reliance of these marine </span><span>ectotherms</span><span> on the benthos, the importance of benthic habitat has rarely been considered as a factor constraining fish distribution. Therefore, our study aims at examining the</span><span> consequences of both temperature and benthic variations on the fish fauna and diagnosing potential sentinels of these environmental changes.</span> </p> <p><strong><em>Location</em></strong> <span>Taiwan, West Pacific. </span></p> <p><strong><em>Taxon</em></strong> Teleostei (184 species).</p> <p><strong><em>Methods</em></strong> <span>We examined how the partitioning of habitats can influence the specialization of fish fauna along a latitudinal gradient. We diagnosed 'specialist' and 'generalist' fishes in this partitioning. For each specialist, we further evaluated whether its distribution is constrained by temperature, benthic habitat, or both factors combined. The change in sea surface temperature over the last three decades was also monitored. </span></p> <p><strong><em>Results</em></strong> <span>Fish fauna showed the highest specialization when tropical and subtropical partitions of habitat were considered. Fifty-one tropical specialists, seven subtropical specialists, and 21 possible generalists were identified. Among specialists, </span><span>13 species were associated with temperature, 19 with habitat, and 26 with both factors. </span><span>Steady warming occurred across latitudes but was accentuated in the winter of subtropical habitat.</span> </p> <p><strong><em>Main conclusions</em></strong> <span>Our results suggested that the distribution of some specialist fishes was constrained only by temperature while the distribution of some others also depended on the availability of benthic habitats. Consequently, under global warming, the distribution of some specialists might shift in a manner that follows the movement of isotherms, while the distribution of others might also be conditioned by the poleward shifts of benthos. A temporal mismatch between the emergence of suitable thermal environments and the arrival of some specialists may exist. Therefore, the tropicalization of high-latitude areas may be characterized by different waves of colonization. </span></p>

opencc-zeroMay 2022View details →
zenodo36/100

Combined data file for Jokinen et al. "Depth and intensity of the sulfate-methane transition zone control sedimentary molybdenum and uranium sequestration in a eutrophic low-salinity setting", Applied Geochemistry 122, 2020

<p>The datafile contains all the new raw data presented in the figures in the publication.</p>

opencc-by-4.0May 2024View details →
zenodo36/100

Stacked multiband receiver function waveforms for global study of mantle transition zone discontinuities using dense arrays

<p>Please see the readme for a full explanation. This dataset includes the following 1) the nine preferred parameters and their uncertainties 2) the group and stacked observed and best modeled receiver function waveforms and 3) a list of the network codes and stations.&nbsp;</p>

opencc-by-4.0Jul 2024View details →

ScienceDex guides

Understand access before you commit

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

Compare curated 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.

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