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736 results for “habitat distribution”
FIGURE 35 in Holoparasitic Orobanchaceae (Cistanche, Diphelypaea, Orobanche, Phelipanche) in Armenia: distribution, habitats, host range and taxonomic problems
FIGURE 35. Distribution of Orobanche cernua (circle) and O. cumana (triangle) in Armenia.
FIGURE 42 in Holoparasitic Orobanchaceae (Cistanche, Diphelypaea, Orobanche, Phelipanche) in Armenia: distribution, habitats, host range and taxonomic problems
FIGURE 42. Distribution of Orobanche schelkovnikovii in Armenia, triangle—locus classicus.
FIGURE 6 in Saharo-Sindian endemic flora of Egypt: critical checklist, floristic analysis, habitats, and phytogeographic distribution
FIGURE 6. Number of Egyptian Saharo-Sindian endemics in relation to their flowering activity.
FIGURE 3 in Saharo-Sindian endemic flora of Egypt: critical checklist, floristic analysis, habitats, and phytogeographic distribution
FIGURE 3. Photos of some Saharo-Sindian endemic plant species in Egypt.
FIGURE 5 in Saharo-Sindian endemic flora of Egypt: critical checklist, floristic analysis, habitats, and phytogeographic distribution
FIGURE 5. Life forms of Egyptian Saharo-Sindian endemic taxa.
FIGURE 4 in Saharo-Sindian endemic flora of Egypt: critical checklist, floristic analysis, habitats, and phytogeographic distribution
FIGURE 4. Families that having more than three (>3) Egyptian Saharo-Sindian endemic taxa.
FIGURE 7 in Saharo-Sindian endemic flora of Egypt: critical checklist, floristic analysis, habitats, and phytogeographic distribution
FIGURE 7. Dispersal type spectrum of the Egyptian Saharo-Sindian endemic taxa.
FIGURE 2 in Saharo-Sindian endemic flora of Egypt: critical checklist, floristic analysis, habitats, and phytogeographic distribution
FIGURE 2. Distribution of the sampled stands in the study area.
FIGURE 4 in An assessment of the local endemism of flowering plants in the northern Western Ghats and Konkan regions of India: checklist, habitat characteristics, distribution, and conservation
FIGURE 4. Map showing type localities of local endemic species of NWGK
FIGURE 2 in An assessment of the local endemism of flowering plants in the northern Western Ghats and Konkan regions of India: checklist, habitat characteristics, distribution, and conservation
FIGURE 2. The occurrence of life forms across the habitats
FIGURE 3 in An assessment of the local endemism of flowering plants in the northern Western Ghats and Konkan regions of India: checklist, habitat characteristics, distribution, and conservation
FIGURE 3. The proportion of total endemics and exclusive (local) endemic species per grid in NWGK
Table 1 in An updated distribution of the Andean swamp rat Neotomys ebriosus along the Peruvian Andes with notes on habitat use and taxonomy
<p><b>Table 1:</b> <i>Neotomys ebriosus</i> collection localities in Peru.</p><table><tbody><tr><th></th><th>Museum</th><th>Voucher #</th><th>Sex</th><th>Region</th><th>Elev</th><th>D Lat</th><th>D Long</th><th>Collection date</th></tr></tbody><tbody><tr><th><b>1</b></th><td>MUSM</td><td>23226</td><td>M</td><td>Ancash</td><td>4410</td><td>−8.1973°</td><td>−77.7866°</td><td>29 August 2004</td></tr><tr><th><b>2</b></th><td>MUSM</td><td>40068 −069</td><td>F M</td><td>Ancash</td><td>4240</td><td>−8.2595°</td><td>−77.7467°</td><td>06 May 2012</td></tr><tr><th><b>3</b></th><td>MUSM</td><td>45264</td><td>–</td><td>Ancash</td><td>4105</td><td>−9.4807°</td><td>−77.5972°</td><td>10 August 2012</td></tr><tr><th><b>4</b></th><td>MVZ</td><td>150167</td><td>−</td><td>Ancash</td><td>4230</td><td>−9.5433°</td><td>−77.6236°</td><td>07 August 1968</td></tr><tr><th><b>40</b></th><td>CORBIDI</td><td>466</td><td>M</td><td>Cusco</td><td>4110</td><td>−14.5068°</td><td>−71.7833°</td><td>11 August 2012</td></tr><tr><th><b>41</b></th><td>KUM</td><td>135132−135134</td><td>2F M</td><td>Cusco</td><td>4280</td><td>−14.478°</td><td>−71.007°</td><td>04 February 1975</td></tr><tr><th><b>42</b></th><td>MUSA</td><td>14014−14017</td><td>3M −</td><td>Arequipa</td><td>3770</td><td>−15.2802°</td><td>−72.3385°</td><td>24−26 September 2012</td></tr><tr><th><b>43</b></th><td>MUSA</td><td>18251, 18258</td><td>F M</td><td>Arequipa</td><td>3770</td><td>−15.2809°</td><td>−72.341°</td><td>03 February 2013</td></tr><tr><th><b>44</b></th><td>MUSA</td><td>17793, 17794</td><td>F M</td><td>Puno</td><td>4550</td><td>−14.2315°</td><td>−70.3115°</td><td>4−5 March 2014</td></tr><tr><th><b>45</b></th><td>MVZ</td><td>139591</td><td>F</td><td>Puno</td><td>3630</td><td>−14.1611°</td><td>−69.6946°</td><td>13 J uly 1970</td></tr><tr><th><b>46</b></th><td>MVZ</td><td>116196, 116197</td><td>2F</td><td>Puno</td><td>3500</td><td>−14.1622°</td><td>−69.6917°</td><td>10 August & 23 October 1951</td></tr><tr><th><b>47</b></th><td>MVZ</td><td>116198, 116199</td><td>F M</td><td>Puno</td><td>4110</td><td>−14.211°</td><td>−69.7303°</td><td>31 J uly and 01 August 1951</td></tr><tr><th><b>48</b></th><td>MVZ</td><td>114751−756; 116200−202</td><td>2F 7M</td><td>Puno</td><td>4350</td><td>−14.2546°</td><td>−69.7381°</td><td>08 J une−12 September 1951</td></tr><tr><th><b>49</b></th><td>MVZ</td><td>139590</td><td>M</td><td>Puno</td><td>4710</td><td>−14.2832°</td><td>−69.7694°</td><td>15 J uly 1970</td></tr><tr><th><b>50</b></th><td>MUSA</td><td>4184</td><td>F</td><td>Arequipa</td><td>4400</td><td>−15.822°</td><td>−71.4939°</td><td>26 February 2003</td></tr><tr><th><b>51</b></th><td>MVZ</td><td>174043</td><td>F</td><td>Arequipa</td><td>4250</td><td>−15.9825°</td><td>−71.3845°</td><td>08 J uly 1987</td></tr><tr><th><b>52</b></th><td>MUSA</td><td>1149</td><td>M</td><td>Arequipa</td><td>4580</td><td>−16.231°</td><td>−71.4896°</td><td>20 J anuary 2000</td></tr><tr><th><b>53</b></th><td>MUSA</td><td>7114</td><td>F</td><td>Arequipa</td><td>4200</td><td>−16.1827°</td><td>−71.0625°</td><td>07 March 2009</td></tr><tr><th><b>54</b></th><td>MVZ</td><td>115942−946</td><td>5M</td><td>Puno</td><td>4260</td><td>−15.8432°</td><td>−70.7997°</td><td>25 February−13 March 1952</td></tr><tr><th><b>55</b></th><td>MVZ</td><td>115947</td><td>M</td><td>Puno</td><td>3965</td><td>−15.8042°</td><td>−70.368°</td><td>19 February 1952</td></tr><tr><th><b>56</b></th><td>FMNH</td><td>49708</td><td>M</td><td>Puno</td><td>3910</td><td>−15.9561°</td><td>−69.99°</td><td>13 September 1939</td></tr><tr><th><b>57</b></th><td>MCZ</td><td>42865; 42868</td><td>M −</td><td>Puno</td><td>3960</td><td>−16.0667°</td><td>−69.5167°</td><td>15 and 21 J uly 1946</td></tr><tr><th><b>58</b></th><td>FMNH</td><td>51261−263</td><td>3F</td><td>Puno</td><td>3860</td><td>−16.3221°</td><td>−69.0399°</td><td>02 May 1940</td></tr><tr><th><b>59</b></th><td>FMNH</td><td>107842</td><td>M</td><td>Puno</td><td>3900</td><td>−16.4135°</td><td>−69.6628°</td><td>29 April 1976</td></tr><tr><th><b>60</b></th><td>MVZ</td><td>114747−750</td><td>2F 2M</td><td>Puno</td><td>3930</td><td>−16.431°</td><td>−69.665°</td><td>16 April 1951</td></tr><tr><th><b>61</b></th><td>MVZ</td><td>141616</td><td>M</td><td>Puno</td><td>3935</td><td>−16.4978°</td><td>−69.6471°</td><td>01 November 1971</td></tr><tr><th><b>62</b></th><td>MCZ</td><td>42866−867</td><td>F M</td><td>Puno</td><td>4760</td><td>−16.6191°</td><td>−70.0457°</td><td>13 August 1946</td></tr><tr><th><b>63</b></th><td>MUSM</td><td>49028</td><td>M</td><td>Moquegua</td><td>4500</td><td>−16.7393°</td><td>−70.3737°</td><td>08 October 2018</td></tr><tr><th><b>64</b></th><td>MCZ</td><td>42869</td><td>M</td><td>Puno</td><td>4180</td><td>−16.7632°</td><td>−69.8695°</td><td>28 J uly 1946</td></tr></tbody></table><p><b>Table 1:</b> (continued)</p><p>Color codes as shown in the distribution map. –, sex undetermined; †, 26 numbers inside the series; ††, 4 numbers inside the series; *, remains not deposited in museums until now. Museum acronyms: AMNH, American Museum of Natural History, New York; CORBIDI, Colección de Vertebrados del Centro de Ornitología y Biodiversidad, Lima; FMNH, Field Museum of Natural History, Chicago, Illinois; KUM, Kansas University Natural History Museum, Kansas; MCZ, Museum of Comparative Zoology, Harvard University, Massachusetts; MNHN, <b>Mus´eum National</b> d’ Histoire Naturelle, Paris, France; MUSA, Museo de Historia Natural,Universidad Nacional San Agustín,Arequipa;MUSM,Museo de Historia Natural,Universidad Nacional Mayor San Marcos,Lima; MVZ, Museum of Vertebrate Zoology, University of California; UMMZ, University of Michigan Museum of Zoology, Michigan.</p>
Figure 2 in Habitat factors determining the distribution of the Caucasian Agama, Laudakia caucasia, (Squamata: Agamidae) in the Sorkh-e-Hesar National Park, Tehran province, Iran
Figure 2. Schematic view of a cell and four linear transects.
Figure 4 in Introduction, distribution and habitats of the invasive spider Badumna longinqua (L. Koch, 1867) (Araneae: Desidae) in Uruguay, with notes on its world dispersion
Figure 4. Frequency of individuals of Badumna longinqua in sites where species occurred.
Fig. 1 in The Saproxylic Beetle Corticaria bella Redtenbacher, 1847 (Coleoptera: Cucujoidea: Latridiidae) in Europe: Distribution and Habitats
Fig. 1. Corticaria bella, habitus. Body length:
Fig. 2. Corticaria bella, aedeagus. A in The Saproxylic Beetle Corticaria bella Redtenbacher, 1847 (Coleoptera: Cucujoidea: Latridiidae) in Europe: Distribution and Habitats
Fig. 2. Corticaria bella, aedeagus. A) Ventral view, B) Lateral view. Drawing by W. H. Rücker.
Figure 4 from: Antonova V, Marinov MP (2021) Red wood ants in Bulgaria: distribution and density related to habitat characteristics. Journal of Hymenoptera Research 85: 135-159. https://doi.org/10.3897/jhr.85.61431
Figure 4 Distribution of RWA by studied variables in percentage by species (F. pratensis: N = 35, F. rufa: N = 91, F. lugubris: N = 100) A elevation B slope C ecological groups of plants D stone cover E grass cover F canopy cover G dominant tree H forest age (transects with unknown values are excluded). For underlined species the impact is statistically significant.
Figure 1 from: Antonova V, Marinov MP (2021) Red wood ants in Bulgaria: distribution and density related to habitat characteristics. Journal of Hymenoptera Research 85: 135-159. https://doi.org/10.3897/jhr.85.61431
Figure 1 The eleven sampling monitoring sites (mountains): 1 Western Stara Planina, 2 Central Stara Planina, 3 Eastern Stara Planina, 4 Vitosha, 5 Osogovo, 6 Belasitsa, 7 Rila, 8 Pirin, 9 Western Rhodopes, 10 Eastern Rhodopes, 11 Strandza.
Figure 2 from: Antonova V, Marinov MP (2021) Red wood ants in Bulgaria: distribution and density related to habitat characteristics. Journal of Hymenoptera Research 85: 135-159. https://doi.org/10.3897/jhr.85.61431
Figure 2 Potential habitats of RWA in Bulgaria. Localities (transects) recorded in the course of the present study are designated (red dots), previous literature data (squares) AFormica pratensisBFormica rufaCFormica lugubris.
Supplementary material 2 from: Antonova V, Marinov MP (2021) Red wood ants in Bulgaria: distribution and density related to habitat characteristics. Journal of Hymenoptera Research 85: 135-159. https://doi.org/10.3897/jhr.85.61431
Table S1
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
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.