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.
3,205
datasets available to search
ShareScore release 0.9.0
Dataset results
3,205 results for “new tribe”
Fig. 1 in Description Of New Genera And Species In The Tribe Rhizoecini (Homoptera, Coccoidea, Pseudococcidae)
Fig. 1. Distribution of the studied genera and species
Fig. 13 in Description Of New Genera And Species In The Tribe Rhizoecini (Homoptera, Coccoidea, Pseudococcidae)
Fig. 13. Coccidella theobromae (HAMBLETON, 1946) (after WILLIAMS & GRANARA DE WILLINK 1992)
Fig. 4 in Description Of New Genera And Species In The Tribe Rhizoecini (Homoptera, Coccoidea, Pseudococcidae)
Fig. 4. Benedictycoccina ornata (HAMBLETON, 1946) (after WILLIAMS & GRANARA DE WILLINK 1992)
Fig. 6 in Description Of New Genera And Species In The Tribe Rhizoecini (Homoptera, Coccoidea, Pseudococcidae)
Fig. 6. Coccidella boliviana KONCZNÉ BENEDICTY et KOZÁR sp. n.
Fig. 10 in Description Of New Genera And Species In The Tribe Rhizoecini (Homoptera, Coccoidea, Pseudococcidae)
Fig. 10. Coccidella multipora KOZÁR et FOLDI sp. n.
Fig. 7 in Description Of New Genera And Species In The Tribe Rhizoecini (Homoptera, Coccoidea, Pseudococcidae)
Fig. 7. Coccidella ecuadorina KONCZNÉ BENEDICTY et FOLDI sp. n.
Fig. 9 in Description Of New Genera And Species In The Tribe Rhizoecini (Homoptera, Coccoidea, Pseudococcidae)
Fig. 9. Coccidella kissbalazsi KONCZNÉ BENEDICTY et KOZÁR sp. n.
Fig. 3 in Gastrallus Michalskii Sp. Nov., A New Species Of Tribe Gastrallini (Coleoptera: Ptinidae) From Eocene Baltic Amber
Fig. 3. Gastrallus zjantaru Zahradník & Háva, 2014 (holotype) - body, lateral aspect.
Data from: Molecular phylogenetics of Distephanus supports the recognition of a new tribe, Distephaneae (Asteraceae)
<p>The genus <em>Distephanus</em> Cass. comprises 43 distinctive species of shrubs and small trees that have been placed historically within the ironweed tribe, Vernonieae (Asteraceae). Utilizing the most expansive sampling of <em>Distephanus </em>to date, this study aims to test the monophyly of this genus and facilitate its classification. Molecular phylogenetic analyses were conducted using four molecular markers from the nuclear and plastid genomes. These data also supported divergence dating analyses that were performed to understand the timing of diversification events within <em>Distephanus</em> and other related genera. Results from this study indicate that as currently circumscribed, Vernonieae is not monophyletic and that <em>Distephanus </em>is actually sister to a clade that comprises Vernonieae and another tribe, Moquinieae, which only includes two species restricted to Brazil. Based on these findings, <em>Distephanus </em>is recognized in a new tribe that we describe here, Distephaneae. This new tribe comprises 41 species of <em>Disptehanus</em> that are easily distinguished from Moquinieae and Vernonieae based on the presence of florets with yellow corollas and trinervate leaves.</p>
Figure 48 in Contributions to scorpion systematics. II. Stahnkeini, a new tribe in scorpion family Vaejovidae (Scorpiones: Chactoidea)
Figure 48: Stahnkeus subtilimanus, male, dorsal view, Split Mountain, ABDSP, California, USA.
Figure 1 in A review of the tribe Pimplini Wesmael, 1845 (Hymenoptera, Ichneumonidae, Pimplinae) from the Carpathians, with new records for Romania and Ukraine
Figure 1. The Carpathian Pimplini distribution map.
Figure 3 in Otiorhynchus yakovlevi Legalov, a new species in the tribe Otiorhynchini (Coleoptera: Curculionidae: Entiminae) from Altai (Western Siberia)
Figure 3. Localities of Otiorhynchus yakovlevi sp. nov. in Altai (Western Siberia).
Table 1 in Review of the plant bug tribe Eccritotarsini (Hemiptera: Heteroptera: Miridae) of India and Sri Lanka with description of two new genera and six new species
<p><b>Table 1 (continued on next page).</b> Measurements (mm) of eccritotarsine specimens examined for this study. Abbreviations: Clyp/Cun = distance between apex of clypeus and apex of cuneus in dorsal view; InterOcDi = width of vertex between inner margins of eyes in dorsal view.</p><table><thead><tr><th></th><th></th><th colspan="11"><b>Length</b></th><th colspan="5"><b>Width</b></th></tr></thead><tbody><tr><th colspan="2"><b>Specimens</b></th><td><b>Body</b></td><td><b>Clyp/ Cun.</b></td><td><b>Head</b></td><td><b>Pron.</b></td><td colspan="2"><b>Scut. Cun.</b></td><td colspan="4"><b>Antennal segments I II III IV</b></td><td><b>Labium</b></td><td><b>Head</b></td><td><b>Pron.</b></td><td colspan="2"><b>Scut. InterOcDi</b></td><td><b>Body</b></td></tr><tr><th></th><td colspan="17"><b><i>Dioclerus bengalicus</i> Stonedahl, 1988</b></td></tr><tr><th>♀, <b>N=1</b></th><td></td><td>3.46</td><td>2.55</td><td>0.25</td><td>0.66</td><td>0.38</td><td>0.41</td><td>0.56</td><td>1.11</td><td>0.47</td><td>0.44</td><td>0.80</td><td>0.80</td><td>1.15</td><td>0.52</td><td>0.38</td><td>1.48</td></tr><tr><th></th><td colspan="17"><b><i>Dioclerus lutheri</i> Poppius, 1912</b></td></tr><tr><th>♂, <b>N=1</b></th><td></td><td>3.42</td><td>2.63</td><td>0.25</td><td>0.74</td><td>0.40</td><td>0.39</td><td>0.62</td><td>1.09</td><td>0.45</td><td>0.63</td><td>0.91</td><td>0.88</td><td>1.19</td><td>0.60</td><td>0.44</td><td>1.42</td></tr><tr><th></th><td colspan="17"><b><i>Ernestinus ramkeshariae</i> Yasunaga & Ishikawa, 2016</b></td></tr><tr><th rowspan="4">♂, N=3</th><td rowspan="4"><b>Max</b> <b>Min</b> <b>Mean</b> <b>SD</b></td><td>3.25</td><td>2.28</td><td>0.19</td><td>0.80</td><td>0.34</td><td>0.54</td><td>0.36</td><td>0.63</td><td>0.64</td><td>0.64</td><td>0.78</td><td>0.59</td><td>1.23</td><td>0.43</td><td>0.34</td><td>1.26</td></tr><tr><td>3.10</td><td>2.14</td><td>0.17</td><td>0.74</td><td>0.28</td><td>0.52</td><td>0.35</td><td>0.56</td><td>0.59</td><td>0.56</td><td>0.74</td><td>0.56</td><td>1.01</td><td>0.37</td><td>0.31</td><td>1.14</td></tr><tr><td>3.17</td><td>2.21</td><td>0.18</td><td>0.78</td><td>0.31</td><td>0.53</td><td>0.35</td><td>0.60</td><td>0.00</td><td>0.00</td><td>0.76</td><td>0.57</td><td>1.11</td><td>0.40</td><td>0.33</td><td>1.18</td></tr><tr><td>0.06</td><td>0.05</td><td>0.01</td><td>0.02</td><td>0.02</td><td>0.01</td><td>0.00</td><td>0.03</td><td>0.00</td><td>0.00</td><td>0.02</td><td>0.01</td><td>0.10</td><td>0.02</td><td>0.01</td><td>0.05</td></tr><tr><th rowspan="4">♀, <b>N=3</b></th><td rowspan="4"><b>Max</b> Min <b>Mean</b> <b>SD</b></td><td>3.55</td><td>2.43</td><td>0.15</td><td>0.82</td><td>0.29</td><td>0.56</td><td>0.33</td><td>0.56</td><td>0.57</td><td>0.66</td><td>1.00</td><td>0.58</td><td>1.10</td><td>0.46</td><td>0.34</td><td>1.38</td></tr><tr><td>3.40</td><td>2.34</td><td>0.14</td><td>0.78</td><td>0.27</td><td>0.50</td><td>0.32</td><td>0.55</td><td>0.52</td><td>0.61</td><td>0.79</td><td>0.55</td><td>1.00</td><td>0.41</td><td>0.30</td><td>1.20</td></tr><tr><td>3.47</td><td>2.39</td><td>0.15</td><td>0.79</td><td>0.28</td><td>0.52</td><td>0.32</td><td>0.55</td><td>0.56</td><td>0.63</td><td>0.90</td><td>0.56</td><td>1.03</td><td>0.43</td><td>0.32</td><td>1.29</td></tr><tr><td>0.06</td><td>0.04</td><td>0.00</td><td>0.02</td><td>0.01</td><td>0.03</td><td>0.01</td><td>0.00</td><td>0.02</td><td>0.02</td><td>0.08</td><td>0.01</td><td>0.05</td><td>0.02</td><td>0.02</td><td>0.07</td></tr><tr><th></th><td colspan="17"><b><i>Ernestinus mimicus</i> Distant, 1911</b></td></tr><tr><th rowspan="4">♂, <b>N=3</b></th><td rowspan="4"><b>Max</b> Min <b>Mean</b> <b>SD</b></td><td>3.11</td><td>2.06</td><td>0.18</td><td>0.70</td><td>0.26</td><td>0.50</td><td>0.35</td><td>0.78</td><td>0.59</td><td>0.44</td><td>1.00</td><td>0.60</td><td>0.97</td><td>0.42</td><td>0.35</td><td>1.12</td></tr><tr><td>2.74</td><td>1.96</td><td>0.13</td><td>0.62</td><td>0.24</td><td>0.48</td><td>0.32</td><td>0.77</td><td>0.55</td><td>0.43</td><td>0.90</td><td>0.58</td><td>0.97</td><td>0.40</td><td>0.34</td><td>1.01</td></tr><tr><td>2.87</td><td>2.00</td><td>0.15</td><td>0.66</td><td>0.25</td><td>0.49</td><td>0.33</td><td>0.77</td><td>0.57</td><td>0.44</td><td>0.96</td><td>0.59</td><td>0.97</td><td>0.40</td><td>0.35</td><td>1.06</td></tr><tr><td>0.14</td><td>0.04</td><td>0.02</td><td>0.04</td><td>0.01</td><td>0.01</td><td>0.01</td><td>0.00</td><td>0.01</td><td>0.01</td><td>0.04</td><td>0.01</td><td>0.00</td><td>0.01</td><td>0.00</td><td>0.05</td></tr><tr><th rowspan="4">♀, <b>N=3</b></th><td rowspan="4"><b>Max</b> Min <b>Mean</b> <b>SD</b></td><td>3.43</td><td>2.96</td><td>0.18</td><td>0.72</td><td>0.31</td><td>0.54</td><td>0.36</td><td>0.72</td><td>0.51</td><td>0.49</td><td>1.05</td><td>0.64</td><td>1.07</td><td>0.49</td><td>0.38</td><td>1.30</td></tr><tr><td>3.28</td><td>2.31</td><td>0.17</td><td>0.69</td><td>0.30</td><td>0.50</td><td>0.32</td><td>0.67</td><td>0.47</td><td>0.43</td><td>1.00</td><td>0.60</td><td>1.01</td><td>0.45</td><td>0.36</td><td>1.16</td></tr><tr><td>3.34</td><td>2.49</td><td>0.17</td><td>0.71</td><td>0.30</td><td>0.52</td><td>0.35</td><td>0.69</td><td>0.49</td><td>0.46</td><td>1.02</td><td>0.61</td><td>1.04</td><td>0.47</td><td>0.36</td><td>1.23</td></tr><tr><td>0.06</td><td>0.26</td><td>0.00</td><td>0.01</td><td>0.01</td><td>0.02</td><td>0.02</td><td>0.02</td><td>0.01</td><td>0.02</td><td>0.02</td><td>0.01</td><td>0.02</td><td>0.01</td><td>0.01</td><td>0.05</td></tr><tr><th></th><td colspan="17"><b><i>Harpedona sanguinipes</i> Distant, 1909</b></td></tr><tr><th rowspan="4">♂, <b>N=3</b></th><td rowspan="4"><b>Max</b> Min <b>Mean</b> <b>SD</b></td><td>3.82</td><td>2.75</td><td>0.41</td><td>0.71</td><td>0.47</td><td>0.58</td><td>0.37</td><td>0.85</td><td>0.43</td><td>0.39</td><td>1.40</td><td>0.77</td><td>1.09</td><td>0.59</td><td>0.74</td><td>1.10</td></tr><tr><td>3.56</td><td>2.52</td><td>0.35</td><td>0.62</td><td>0.44</td><td>0.53</td><td>0.32</td><td>0.75</td><td>0.42</td><td>0.32</td><td>1.20</td><td>0.72</td><td>1.00</td><td>0.49</td><td>0.47</td><td>1.03</td></tr><tr><td>3.67</td><td>2.64</td><td>0.39</td><td>0.68</td><td>0.45</td><td>0.55</td><td>0.35</td><td>0.81</td><td>0.00</td><td>0.00</td><td>1.30</td><td>0.75</td><td>1.06</td><td>0.53</td><td>0.56</td><td>1.06</td></tr><tr><td>0.13</td><td>0.12</td><td>0.03</td><td>0.05</td><td>0.02</td><td>0.02</td><td>0.02</td><td>0.05</td><td>0.00</td><td>0.00</td><td>0.10</td><td>0.03</td><td>0.05</td><td>0.05</td><td>0.15</td><td>0.04</td></tr><tr><th rowspan="4">♀, <b>N=3</b></th><td rowspan="4"><b>Max</b> Min <b>Mean</b> <b>SD</b></td><td>3.80</td><td>2.76</td><td>0.42</td><td>0.74</td><td>0.56</td><td>0.60</td><td>0.34</td><td>0.74</td><td>0.55</td><td>0.60</td><td>1.60</td><td>0.80</td><td>1.20</td><td>0.68</td><td>0.51</td><td>1.10</td></tr><tr><td>3.43</td><td>2.69</td><td>0.32</td><td>0.66</td><td>0.48</td><td>0.51</td><td>0.32</td><td>0.71</td><td>0.51</td><td>0.54</td><td>1.50</td><td>0.66</td><td>1.10</td><td>0.61</td><td>0.47</td><td>1.02</td></tr><tr><td>3.63</td><td>2.73</td><td>0.38</td><td>0.70</td><td>0.52</td><td>0.55</td><td>0.33</td><td>0.72</td><td>0.00</td><td>0.00</td><td>1.53</td><td>0.75</td><td>1.14</td><td>0.64</td><td>0.49</td><td>1.06</td></tr><tr><td>0.19</td><td>0.04</td><td>0.05</td><td>0.04</td><td>0.04</td><td>0.05</td><td>0.01</td><td>0.02</td><td>0.00</td><td>0.00</td><td>0.06</td><td>0.08</td><td>0.05</td><td>0.04</td><td>0.02</td><td>0.04</td></tr><tr><th></th><td colspan="17"><b><i>Harpedona vittlaensis</i> sp. nov.</b></td></tr><tr><th>♂, <b>N=1</b></th><td></td><td>3.12</td><td>2.28</td><td>0.26</td><td>0.65</td><td>0.39</td><td>0.46</td><td>0.37</td><td>0.89</td><td></td><td></td><td>1.40</td><td>0.77</td><td>1.07</td><td>0.61</td><td>0.42</td><td>1.10</td></tr><tr><th>♀, <b>N=1</b></th><td></td><td>3.21</td><td>2.28</td><td>0.25</td><td>0.62</td><td>0.35</td><td>0.45</td><td>0.34</td><td>0.68</td><td>0.46</td><td>0.39</td><td>1.23</td><td>0.74</td><td>1.10</td><td>0.50</td><td>0.40</td><td>1.11</td></tr><tr><th></th><td colspan="12"><b>Length</b></td><td colspan="5"><b>Width</b></td></tr><tr><th><b>Specimens</b></th><td></td><td><b>Body</b></td><td><b>Clyp./ Cun.</b></td><td><b>Head</b></td><td><b>Pron.</b></td><td colspan="2"><b>Scut. Cun.</b></td><td colspan="4"><b>Antennal segments I II III IV</b></td><td><b>Labium</b></td><td><b>Head</b></td><td><b>Pron.</b></td><td colspan="2"><b>Scut. InterOcDi</b></td><td><b>Body</b></td></tr><tr><th colspan="18"><b><i>Harpedona vittlaensis</i> sp. nov.</b></th></tr><tr><th>♂, <b>N=1</b></th><td></td><td>3.12</td><td>2.28</td><td>0.26</td><td>0.65</td><td>0.39</td><td>0.46</td><td>0.37</td><td>0.89</td><td></td><td></td><td>1.40</td><td>0.77</td><td>1.07</td><td>0.61</td><td>0.42</td><td>1.10</td></tr><tr><th>♀, <b>N=1</b></th><td></td><td>3.21</td><td>2.28</td><td>0.25</td><td>0.62</td><td>0.35</td><td>0.45</td><td>0.34</td><td>0.68</td><td>0.46</td><td>0.39</td><td>1.23</td><td>0.74</td><td>1.10</td><td>0.50</td><td>0.40</td><td>1.11</td></tr><tr><th colspan="18"><b><i>Lopidolon dandeliensis</i> sp. nov.</b></th></tr><tr><th rowspan="4">♂, N=3</th><td><b>Max</b></td><td>5.28</td><td>3.88</td><td>0.49</td><td>1.04</td><td>0.90</td><td>0.96</td><td>0.58</td><td>1.39</td><td>0.58</td><td>0.24</td><td>2.27</td><td>1.16</td><td>1.83</td><td>1.43</td><td>0.55</td><td>2.32</td></tr><tr><td><b>Min</b></td><td>4.91</td><td>3.57</td><td>0.42</td><td>0.95</td><td>0.82</td><td>0.93</td><td>0.50</td><td>1.32</td><td>0.48</td><td>0.24</td><td>2.12</td><td>1.09</td><td>1.83</td><td>1.38</td><td>0.52</td><td>2.19</td></tr><tr><td><b>Mean</b></td><td>5.12</td><td>3.74</td><td>0.44</td><td>0.99</td><td>0.86</td><td>0.94</td><td>0.54</td><td>1.35</td><td>0.53</td><td>0.24</td><td>2.19</td><td>1.12</td><td>1.83</td><td>1.40</td><td>0.53</td><td>2.24</td></tr><tr><td><b>SD</b></td><td>0.19</td><td>0.16</td><td>0.04</td><td>0.05</td><td>0.04</td><td>0.01</td><td>0.04</td><td>0.03</td><td>0.07</td><td>0.00</td><td>0.07</td><td>0.03</td><td>0.00</td><td>0.03</td><td>0.02</td><td>0.07</td></tr><tr><th rowspan="4"><b>♀, N=2</b></th><td><b>Max</b></td><td>5.12</td><td>3.83</td><td>0.50</td><td>0.82</td><td>0.81</td><td>0.92</td><td>0.55</td><td>1.08</td><td>0.53</td><td>0.39</td><td>2.23</td><td>1.10</td><td>1.68</td><td>1.26</td><td>0.61</td><td>2.10</td></tr><tr><td>Min</td><td>5.00</td><td>3.72</td><td>0.48</td><td>0.77</td><td>0.80</td><td>0.91</td><td>0.51</td><td>1.05</td><td>0.53</td><td>0.34</td><td>2.19</td><td>1.06</td><td>1.54</td><td>1.23</td><td>0.60</td><td>2.02</td></tr><tr><td><b>Mean</b></td><td>5.06</td><td>3.78</td><td>0.49</td><td>0.79</td><td>0.81</td><td>0.92</td><td>0.53</td><td>1.06</td><td>0.00</td><td>0.00</td><td>2.21</td><td>1.08</td><td>1.61</td><td>1.25</td><td>0.60</td><td>2.06</td></tr><tr><td><b>SD</b></td><td>0.08</td><td>0.08</td><td>0.01</td><td>0.04</td><td>0.01</td><td>0.01</td><td>0.03</td><td>0.03</td><td>0.00</td><td>0.00</td><td>0.03</td><td>0.03</td><td>0.10</td><td>0.02</td><td>0.01</td><td>0.06</td></tr><tr><th colspan="18"><b><i>Mertila rubrocephala</i> sp nov.</b></th></tr><tr><th rowspan="4"><b>♂, N=3</b></th><td><b>Max</b></td><td>5.54</td><td>3.86</td><td>0.53</td><td>1.10</td><td>0.72</td><td>0.97</td><td>0.66</td><td>1.20</td><td>0.00</td><td>0.00</td><td>2.53</td><td>1.26</td><td>2.10</td><td>1.29</td><td>0.55</td><td>2.52</td></tr><tr><td>Min</td><td>5.28</td><td>3.76</td><td>0.49</td><td>0.98</td><td>0.67</td><td>0.95</td><td>0.55</td><td>1.08</td><td>0.00</td><td>0.00</td><td>2.43</td><td>1.24</td><td>2.04</td><td>1.19</td><td>0.50</td><td>2.50</td></tr><tr><td><b>Mean</b></td><td>5.39</td><td>3.80</td><td>0.51</td><td>1.04</td><td>0.69</td><td>0.96</td><td>0.63</td><td>1.13</td><td>0.00</td><td>0.00</td><td>2.47</td><td>1.25</td><td>2.08</td><td>1.26</td><td>0.53</td><td>2.51</td></tr><tr><td><b>SD</b></td><td>0.12</td><td>0.05</td><td>0.02</td><td>0.05</td><td>0.02</td><td>0.01</td><td>0.06</td><td>0.05</td><td>0.00</td><td>0.00</td><td>0.05</td><td>0.01</td><td>0.03</td><td>0.04</td><td>0.02</td><td>0.01</td></tr><tr><th colspan="18"><b><i>Namyatovia castlerockensis</i> sp. nov</b></th></tr><tr><th rowspan="4">♂, N=3</th><td><b>Max</b></td><td>3.63</td><td>2.60</td><td>0.29</td><td>0.57</td><td>0.37</td><td>1.01</td><td>0.47</td><td>0.70</td><td>0.49</td><td>0.56</td><td>1.09</td><td>0.75</td><td>1.07</td><td>0.66</td><td>0.37</td><td>1.31</td></tr><tr><td><b>Min</b></td><td>3.27</td><td>2.41</td><td>0.26</td><td>0.47</td><td>0.32</td><td>0.92</td><td>0.39</td><td>0.62</td><td>0.46</td><td>0.53</td><td>0.96</td><td>0.70</td><td>0.96</td><td>0.58</td><td>0.37</td><td>1.12</td></tr><tr><td><b>Mean</b></td><td>3.42</td><td>2.49</td><td>0.28</td><td>0.52</td><td>0.35</td><td>0.97</td><td>0.42</td><td>0.66</td><td>0.47</td><td>0.55</td><td>1.01</td><td>0.72</td><td>1.01</td><td>0.60</td><td>0.37</td><td>1.23</td></tr><tr><td><b>SD</b></td><td>0.19</td><td>0.10</td><td>0.01</td><td>0.05</td><td>0.03</td><td>0.05</td><td>0.05</td><td>0.04</td><td>0.01</td><td>0.02</td><td>0.07</td><td>0.03</td><td>0.06</td><td>0.05</td><td>0.00</td><td>0.10</td></tr><tr><th colspan="18"><b><i>Namyatovia sirsiensis</i> sp. nov</b></th></tr><tr><th rowspan="4"><b>♂, N=3</b></th><td><b>Max</b></td><td>3.63</td><td>2.60</td><td>0.29</td><td>0.57</td><td>0.37</td><td>1.01</td><td>0.47</td><td>0.70</td><td>0.49</td><td>0.56</td><td>1.09</td><td>0.75</td><td>1.07</td><td>0.66</td><td>0.37</td><td>1.31</td></tr><tr><td>Min</td><td>3.27</td><td>2.41</td><td>0.26</td><td>0.47</td><td>0.32</td><td>0.92</td><td>0.39</td><td>0.62</td><td>0.46</td><td>0.53</td><td>0.96</td><td>0.70</td><td>0.96</td><td>0.58</td><td>0.37</td><td>1.12</td></tr><tr><td><b>Mean</b></td><td>3.42</td><td>2.49</td><td>0.28</td><td>0.52</td><td>0.35</td><td>0.97</td><td>0.42</td><td>0.66</td><td>0.47</td><td>0.55</td><td>1.01</td><td>0.72</td><td>1.01</td><td>0.60</td><td>0.37</td><td>1.23</td></tr><tr><td><b>SD</b></td><td>0.19</td><td>0.10</td><td>0.01</td><td>0.05</td><td>0.03</td><td>0.05</td><td>0.05</td><td>0.04</td><td>0.01</td><td>0.02</td><td>0.07</td><td>0.03</td><td>0.06</td><td>0.05</td><td>0.00</td><td>0.10</td></tr><tr><th colspan="18"><b><i>Stonedahlia mishmiensis</i> sp. nov.</b></th></tr><tr><th rowspan="4"><b>♂, N=3</b></th><td><b>Max</b></td><td>4.62</td><td>2.96</td><td>0.31</td><td>0.77</td><td>0.38</td><td>1.10</td><td>0.61</td><td>1.21</td><td>1.10</td><td>0.56</td><td>1.20</td><td>0.64</td><td>1.20</td><td>0.60</td><td>0.45</td><td>1.50</td></tr><tr><td>Min</td><td>4.42</td><td>2.80</td><td>0.26</td><td>0.68</td><td>0.31</td><td>1.00</td><td>0.52</td><td>1.10</td><td>0.97</td><td>0.50</td><td>1.10</td><td>0.60</td><td>1.00</td><td>0.53</td><td>0.34</td><td>1.39</td></tr><tr><td><b>Mean</b></td><td>4.50</td><td>2.88</td><td>0.29</td><td>0.73</td><td>0.36</td><td>1.06</td><td>0.56</td><td>1.16</td><td>1.01</td><td>0.52</td><td>1.16</td><td>0.62</td><td>1.10</td><td>0.55</td><td>0.37</td><td>1.44</td></tr><tr><td><b>SD</b></td><td>0.07</td><td>0.07</td><td>0.02</td><td>0.04</td><td>0.03</td><td>0.04</td><td>0.04</td><td>0.05</td><td>0.05</td><td>0.03</td><td>0.04</td><td>0.02</td><td>0.08</td><td>0.03</td><td>0.05</td><td>0.04</td></tr><tr><th rowspan="4">♀, N=33</th><td><b>Max</b></td><td>4.73</td><td>3.14</td><td>0.32</td><td>0.87</td><td>0.39</td><td>1.15</td><td>0.65</td><td>1.24</td><td>1.13</td><td>0.63</td><td>1.23</td><td>0.65</td><td>1.24</td><td>0.60</td><td>0.39</td><td>1.59</td></tr><tr><td><b>Min</b></td><td>4.43</td><td>3.00</td><td>0.29</td><td>0.78</td><td>0.35</td><td>1.00</td><td>0.60</td><td>1.16</td><td>0.95</td><td>0.50</td><td>1.12</td><td>0.60</td><td>1.16</td><td>0.45</td><td>0.36</td><td>1.51</td></tr><tr><td><b>Mean</b></td><td>4.54</td><td>3.07</td><td>0.30</td><td>0.83</td><td>0.37</td><td>1.08</td><td>0.63</td><td>1.20</td><td>1.03</td><td>0.57</td><td>1.18</td><td>0.63</td><td>1.20</td><td>0.52</td><td>0.37</td><td>1.54</td></tr><tr><td><b>SD</b></td><td>0.12</td><td>0.05</td><td>0.01</td><td>0.03</td><td>0.02</td><td>0.06</td><td>0.02</td><td>0.03</td><td>0.08</td><td>0.05</td><td>0.04</td><td>0.02</td><td>0.03</td><td>0.06</td><td>0.01</td><td>0.03</td></tr></tbody></table>
Figures 165–166. Species distribution maps. 165 in Synopsis of the tribe Platynini in New Zealand (Coleoptera: Carabidae)
Figures 165–166. Species distribution maps. 165) Tuiplatynus libitus. 166) T. sophronitis.
Figure 123 in Synopsis of the tribe Platynini in New Zealand (Coleoptera: Carabidae)
Figure 123. Map of New Zealand, outlying islands, areas and area codes.
Figure 23-24 in A new genus of telephanine Silvanidae (Coleoptera: Cucujoidea), with a diagnosis of the tribe and key to genera
Figure 23-24. Scutellum and base of elytra. 23) Euplatamus sp., Bolivia. 24) Aplatamus sp., Mexico.
Figure 16-17. Australophanus redtenbacheri. 16 in A new genus of telephanine Silvanidae (Coleoptera: Cucujoidea), with a diagnosis of the tribe and key to genera
Figure 16-17. Australophanus redtenbacheri. 16) Head, dorsal. 17) Scutellum and base of elytra.
Figure 111 in Synopsis of the tribe Zolini in New Zealand (Coleoptera: Carabidae)
Figure 111. Map of New Zealand, outlying islands, areas and area codes.
Figs 23–33. Howeius micropterus n.gen., n in Revision of the Tribe Microtrachelizini Zimmerman, 1994, from Australia: New Taxa and Records (Insecta: Coleoptera, Brentidae)
Figs 23–33. Howeius micropterus n.gen., n.sp. (23) Head and pronotum, dorsal
Fig. 5 in A new tribe in the Chironominae (Diptera: Chironomidae) validated by first immature stages of Xiaomyia Saether & Wang and a phylogenetic review
Fig. 5. Distribution of Xiaomyia spp. from this study.
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.