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1,473 results for “geographic distribution”
Figure 8 from: Averianov A (2014) Review of taxonomy, geographic distribution, and paleoenvironments of Azhdarchidae (Pterosauria). ZooKeys 432: 1-107. https://doi.org/10.3897/zookeys.432.7913
Figure 8 - Number of azhdarchid and possible outgroup taxa localities plotted on the paleoenvironments.
Figure 7 from: Averianov A (2014) Review of taxonomy, geographic distribution, and paleoenvironments of Azhdarchidae (Pterosauria). ZooKeys 432: 1-107. https://doi.org/10.3897/zookeys.432.7913
Figure 7 - Paleogeographic map of middle North America for late Campanian (left) and early Maastrichtian (right) showing localities of azhdarchids. The numbers of localities correspond to the list in the text. The maps are modified from http://energy.cr.usgs.gov/coal_poster/cretcoals
Figure 6 from: Averianov A (2014) Review of taxonomy, geographic distribution, and paleoenvironments of Azhdarchidae (Pterosauria). ZooKeys 432: 1-107. https://doi.org/10.3897/zookeys.432.7913
Figure 6 - Paleogeographic map of the latest Cretaceous (65 Ma) showing Campanian-Maastrichtian-age localities of azhdarchids. The numbers of localities correspond to the list in the text. The map is modified from http://jan.ucc.nau.edu/rcb7/65moll.jpg
Figure 5 from: Averianov A (2014) Review of taxonomy, geographic distribution, and paleoenvironments of Azhdarchidae (Pterosauria). ZooKeys 432: 1-107. https://doi.org/10.3897/zookeys.432.7913
Figure 5 - Paleogeographic map of Mongolia for the Santonian showing the Bayshin Tsav (11) and Burkhant (12) azhdarchid localities. a, lakes and lacustrine-alluvial plain; b, alluvial-proluvial plain; c, denudation area. The map was modified from Martinson (1982: fig. 6).
Figure 3 from: Averianov A (2014) Review of taxonomy, geographic distribution, and paleoenvironments of Azhdarchidae (Pterosauria). ZooKeys 432: 1-107. https://doi.org/10.3897/zookeys.432.7913
Figure 3 - Paleogeographic map of the early Late Cretaceous (105 Ma) showing Cenomanian-age localities of azhdarchids. The numbers of localities correspond to the list in the text. The map is modified from http://jan.ucc.nau.edu/rcb7/105moll.jpg
Figure 2 from: Averianov A (2014) Review of taxonomy, geographic distribution, and paleoenvironments of Azhdarchidae (Pterosauria). ZooKeys 432: 1-107. https://doi.org/10.3897/zookeys.432.7913
Figure 2 - Paleogeographic map of the Early Cretaceous (120 Ma) showing Aptian-age localities of azhdarchids. The numbers of localities correspond to the list in the text. The map is modified from http://jan.ucc.nau.edu/rcb7/120moll.jpg
Figure 1 from: Averianov A (2014) Review of taxonomy, geographic distribution, and paleoenvironments of Azhdarchidae (Pterosauria). ZooKeys 432: 1-107. https://doi.org/10.3897/zookeys.432.7913
Figure 1 - Ontogenetic interpretation of the known jaw fragments of Alanqa saharica (all drawn at the same magnification; specimen numbers are shown on the figure; reversed images are marked by asterisk). A–D rostrum fragments, in lateral and ventral views E, F fragments of mandibular symphysis, in dorsal and lateral views. Figures are modified from Wellnhofer and Buffetaut 1999 (A, D, E), Kellner et al. 2007 (B), Rodrigues et al. 2011 (C), and Ibrahim et al. 2010 (F). The arrow indicates the beginning of the sagittal crest on the cross sections of the rostra. Abbreviations: naof – nasoantorbital fenestra; sc – sagittal crest.
Figure 4 from: Averianov A (2014) Review of taxonomy, geographic distribution, and paleoenvironments of Azhdarchidae (Pterosauria). ZooKeys 432: 1-107. https://doi.org/10.3897/zookeys.432.7913
Figure 4 - Paleogeographic map of the Late Cretaceous (90 Ma) showing Turonian-to-Santonian-age localities of azhdarchids. The numbers of localities correspond to the list in the text. The map is modified from http://jan.ucc.nau.edu/rcb7/90moll.jpg
Figures 18-25 from: Lopes S, Oliveira Cardoso da Silva L (2014) A new species of Litopeltis Hebard, 1920 from Rio de Janeiro, Brazil (Blattodea, Blaberidae, Epilamprinae) with a key to males and geographical distribution of the remaining species of the genus. ZooKeys 420: 41-49. https://doi.org/10.3897/zookeys.420.7555
Figures 18-25 - Litopeltis ribeiropretano Lopes & Oliveira, 2010, male. 18 habitus (dorsal view) 19 head (ventral view) 20 pronotum (dorsal view) 21 supra-anal plate (dorsal view) 22 subgenital plate (ventral view) 23 left phallomere (dorsal view) 24 median sclerite (dorsal view) 25 right phallomere (dorsal view)
Figures 2-9 from: Lopes S, Oliveira Cardoso da Silva L (2014) A new species of Litopeltis Hebard, 1920 from Rio de Janeiro, Brazil (Blattodea, Blaberidae, Epilamprinae) with a key to males and geographical distribution of the remaining species of the genus. ZooKeys 420: 41-49. https://doi.org/10.3897/zookeys.420.7555
Figures 2-9 - Litopeltis teresopolitensis sp. n., male 2 habitus (dorsal view) 3 head (ventral view) 4 pronotum (dorsal view) 5 supra-anal plate (dorsal view) 6 subgenital plate (ventral view) 7 left phallomere (dorsal view) 8 median sclerite (dorsal view) 9 right phallomere (dorsal view).
Figures 10-17 from: Lopes S, Oliveira Cardoso da Silva L (2014) A new species of Litopeltis Hebard, 1920 from Rio de Janeiro, Brazil (Blattodea, Blaberidae, Epilamprinae) with a key to males and geographical distribution of the remaining species of the genus. ZooKeys 420: 41-49. https://doi.org/10.3897/zookeys.420.7555
Figures 10-17 - Litopeltis paineirensis Lopes & Oliveira, 2010, male. 10 habitus (dorsal view) 11 head (ventral view) 12 Pronotum (dorsal view) 13 supra-anal plate (dorsal view) 14 subgenital plate (ventral view) 15 left phallomere (dorsal view) 16 median sclerite (dorsal view) 17 right phallomere (dorsal view)
Figure 1 from: Vásquez-Ordóñez A, Parsa S (2014) A geographic distribution database of Mononychellus mites (Acari, Tetranychidae) on cassava (Manihot esculenta). ZooKeys 407: 1-8. https://doi.org/10.3897/zookeys.407.7564
Figure 1 - Native geographic distribution of records of the CIATARC Mononychellus dataset in the American continent.
Figure 3 from: Just A, Gourvil J, Millet J, Boullet V, Milon T, Mandon I, Dutrève B (2015) SIFlore, a dataset of geographical distribution of vascular plants covering five centuries of knowledge in France: Results of a collaborative project coordinated by the Federation of the National Botanical Conservatories. PhytoKeys 56: 47-60. https://doi.org/10.3897/phytokeys.56.5723
Figure 3 - Density of cells by richness of observed species: looking at the distribution within the dataset, it appears that cells with less than 250 distinct species recorded are over-represented.
Figure 4 from: Just A, Gourvil J, Millet J, Boullet V, Milon T, Mandon I, Dutrève B (2015) SIFlore, a dataset of geographical distribution of vascular plants covering five centuries of knowledge in France: Results of a collaborative project coordinated by the Federation of the National Botanical Conservatories. PhytoKeys 56: 47-60. https://doi.org/10.3897/phytokeys.56.5723
Figure 4 - Dataset completeness for Metropolitan France according to the Jackknife 1 estimator (data from 1990 to 2013). The number of records in each cell was used as an estimator of the sampling effort. The ratio between the observed and estimated richness of species measures the completeness of inventory in each surveyed cell (Vallet et al. 2012).
Figure 3 from: Minoli I, Morando M, Avila LJ (2015) Reptiles of Chubut province, Argentina: richness, diversity, conservation status and geographic distribution maps. ZooKeys 498: 103-126. https://doi.org/10.3897/zookeys.498.7476
Figure 3 - Imagery source: Blue Marble Next Generation (true-color), Web Map Service (WMS) layer from CREAF MAP SERVER (open-gis), EPSG: 4326. A Records of Cheloniidae, Dipsadidae and Viperidae. Green dot: Chelonia mydas; light blue dot: Erythrolamprus sagittifer sagittifer; magenta dot: Phalotris bilineatus; red dots: Bothrops ammodytoides; orange dots: Oxyrhopus rhombifer; black dots: Pseudotomodon trigonatus; blue dots: Philodryas patagoniensis; yellow dots: Philodryas trilineata; grey dots: Tachymenis chilensis B Records of lizards. Black dots: Amphisbaena plumbea; light blue dot: Amphisbaena kingii; red dot: Aurivela longicauda; magenta dots: Diplolaemus bibronii; blue dots: Diplolaemus darwinii; orange dots: Diplolaemus sexcinctus; yellow dots: Leiosaurus bellii; green dots: Pristidactylus nigroiugulus C Records of Homonota darwinii D Records of some Liolaemus species. Blue dots: Liolaemus bibronii; red dots: Liolaemus boulengeri E Records of some Liolaemus species. Magenta dots: Liolaemus camarones; black dots: Liolaemus canqueli; green dots: Liolaemus chehuachekenk; orange dots: Liolaemus darwinii; light blue dots: Liolaemus elongatus; yellow dots: Liolaemus fitzingerii; blue dots: Liolaemus gracilis; white dots: Liolaemus shehuen F Records of some Liolaemus species. Light blue dots: Liolaemus kingii; red dot: Liolaemus kriegi; yellow dots: Liolaemus lineomaculatus; green dots: Liolaemus melanops; magenta dots: Liolaemus morandae; blue dots: Liolaemus petrophilus G Records of some Liolaemus species. Magenta dots: Liolaemus pictus argentinus; orange dots: Liolaemus rothi; green dots: Liolaemus senguer; yellow dot: Liolaemus somuncurae; light blue dots: Liolaemus telsen; blue dots: Liolaemus uptoni; red dots: Liolaemus xanthoviridis H Records of Phymaturus species. Red dots: Phymaturus calcogaster; white dot: Phymaturus camilae; green dot: Phymaturus castillensis; blue dot: Phymaturus felixi; yellow dots: Phymaturus indistinctus; light blue dots: Phymaturus patagonicus; orange dots: Phymaturus somuncurensis; magenta dot: Phymaturus videlai.
Figure 1 from: Minoli I, Morando M, Avila LJ (2015) Reptiles of Chubut province, Argentina: richness, diversity, conservation status and geographic distribution maps. ZooKeys 498: 103-126. https://doi.org/10.3897/zookeys.498.7476
Figure 1 - A Presence of reptiles recorded for central Patagonia, based on a spatial grid. Blue gradient grid: representing the number of localities sampled within each cell; brown lines: roads from a vector line shapefile; department's names and main geographic references are presented B Species richness of reptiles recorded for central Patagonia, analyzed based on a spatial grid. Green gradient grid: representing the richness within each cell C Species richness of reptile recorded for central Patagonia, analyzed based on phytogeographic provinces. White circles: representing the richness within each phytogeographic province polygon; map legend: total species per phytogeographic province. References: magenta dots: localities with accurate location information.
Figure 3 from: Guzmán-Cornejo C, Robbins RG, Guglielmone AA, Montiel-Parra G, Rivas G, Pérez TM (2016) The Dermacentor (Acari, Ixodida, Ixodidae) of Mexico: hosts, geographical distribution and new records. ZooKeys 569: 1-22. https://doi.org/10.3897/zookeys.569.7221
Figure 3 - Distribution map of Dermacentor species in Mexico. Due to the lack of specific locality data for the states of Guanajuato, Michoacán, Querétaro, Tlaxcala and Zacatecas, all species symbols in those states are solely indicators of occurrence there.
Figure 2 from: Guzmán-Cornejo C, Robbins RG, Guglielmone AA, Montiel-Parra G, Rivas G, Pérez TM (2016) The Dermacentor (Acari, Ixodida, Ixodidae) of Mexico: hosts, geographical distribution and new records. ZooKeys 569: 1-22. https://doi.org/10.3897/zookeys.569.7221
Figure 2 - Males. A Dermacentor albipictus B Dermacentor dissimilis C Dermacentor hunteri D Dermacentor imitans E Dermacentor nitens F Dermacentor parumapertus G Dermacentor variabilis.
Figure 1 from: Guzmán-Cornejo C, Robbins RG, Guglielmone AA, Montiel-Parra G, Rivas G, Pérez TM (2016) The Dermacentor (Acari, Ixodida, Ixodidae) of Mexico: hosts, geographical distribution and new records. ZooKeys 569: 1-22. https://doi.org/10.3897/zookeys.569.7221
Figure 1 - Females. A Dermacentor albipictus B Dermacentor dissimilis, C Dermacentor halli D Dermacentor hunteri E Dermacentor imitans F Dermacentor nitens G Dermacentor parumapertus H Dermacentor variabilis.
Figure 2 from: Vásquez-Ordóñez AA, Hazzi NA, Escobar-Prieto JD, Paz-Jojoa D, Parsa S (2015) A geographic distribution database of the Neotropical cassava whitefly complex (Hemiptera, Aleyrodidae) and their associated parasitoids and hyperparasitoids (Hymenoptera). ZooKeys 545: 75-87. https://doi.org/10.3897/zookeys.545.6193
Figure 2 - Geographic distributions of Neotropical cassava whitefly species (maps on the left) and their associated parasitoid species (maps on the right) in the CIAT's Arthropod Reference Collection database.
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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)
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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.