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230 results for “biogeographic patterns”
Fig. 3 in Big trees of small baskets: phylogeny of the Australian genus Spyridium (Rhamnaceae: Pomaderreae), focusing on biogeographic patterns and species circumscriptions
Fig. 3. (Caption on next page)
Fig. 2 in Big trees of small baskets: phylogeny of the Australian genus Spyridium (Rhamnaceae: Pomaderreae), focusing on biogeographic patterns and species circumscriptions
Fig. 2. (Caption on next page)
Fig. 5 in Big trees of small baskets: phylogeny of the Australian genus Spyridium (Rhamnaceae: Pomaderreae), focusing on biogeographic patterns and species circumscriptions
Fig. 5. (Caption on next page)
Figure 2 in Filling Linnean shortfalls increases endemicity patterns: conservation and biogeographical implications for the extreme case of Liolaemus (Liolaemidae, Squamata) species
Figure 2. Histogram showing the extent of species distribution for each studied period.
Supplementary material 2 from: Trytsman M, Westfall RH, Breytenbach PJJ, Calitz FJ, Van Wyk AE (2016) Diversity and biogeographical patterns of legumes (Leguminosae) indigenous to southern Africa. PhytoKeys 70: 53-96. https://doi.org/10.3897/phytokeys.70.9147
Species recorded in each leguminochorion (A1–E) of southern Africa. :
Figure 9 from: Sroka P, Godunko RJ, Rutschmann S, Angeli KB, Salles FF, Gattolliat J-L (2019) A new species of Bungona in Turkey (Ephemeroptera, Baetidae): an unexpected biogeographic pattern within a pantropical complex of mayflies. Zoosystematics and Evolution 95(1): 1-13. https://doi.org/10.3897/zse.95.29487
Figure 9 Molecular reconstruction including representative set of taxa of the Cloeodes-complex (comprising Bungona (Chopralla) pontica sp. n.) and additional taxa of other lineages. Bayesian inference was used to reconstruct the tree based on the mitochondrial DNA barcoding gene cytochrome c oxidase subunit 1. Bayesian posterior probabilities > 0.8 are indicated. Scale bar represents substitutions per site. Geographic origins of the specimens are indicated. Colours: green = Bungona (Bungona); blue = Bungona (Chopralla); purple = Bungona (Centroptella); yellow = Cloeodes; white = other genera.
Figure 8 from: Sroka P, Godunko RJ, Rutschmann S, Angeli KB, Salles FF, Gattolliat J-L (2019) A new species of Bungona in Turkey (Ephemeroptera, Baetidae): an unexpected biogeographic pattern within a pantropical complex of mayflies. Zoosystematics and Evolution 95(1): 1-13. https://doi.org/10.3897/zse.95.29487
Figure 8 Distribution of Bungona (Chopralla) spp. Marked occurrence in Turkey encompass the position of both known localities of Bungona (Chopralla) pontica sp. n.
Figure 7 from: Sroka P, Godunko RJ, Rutschmann S, Angeli KB, Salles FF, Gattolliat J-L (2019) A new species of Bungona in Turkey (Ephemeroptera, Baetidae): an unexpected biogeographic pattern within a pantropical complex of mayflies. Zoosystematics and Evolution 95(1): 1-13. https://doi.org/10.3897/zse.95.29487
Figure 7 A Type locality of Bungona (Chopralla) pontica sp. n. (Dipsiz Önü stream near Gemicıler village). B Valley of Dipsiz Önü stream approximately 400 m downstream from the type locality.
Figure 6 from: Sroka P, Godunko RJ, Rutschmann S, Angeli KB, Salles FF, Gattolliat J-L (2019) A new species of Bungona in Turkey (Ephemeroptera, Baetidae): an unexpected biogeographic pattern within a pantropical complex of mayflies. Zoosystematics and Evolution 95(1): 1-13. https://doi.org/10.3897/zse.95.29487
Figure 6 Difference in the arrangement of the posterior margin of pronotum between Bungona (Chopralla) pontica sp. n. (A) and Bungona (Chopralla) liebenauae (B).
Figure 5 from: Sroka P, Godunko RJ, Rutschmann S, Angeli KB, Salles FF, Gattolliat J-L (2019) A new species of Bungona in Turkey (Ephemeroptera, Baetidae): an unexpected biogeographic pattern within a pantropical complex of mayflies. Zoosystematics and Evolution 95(1): 1-13. https://doi.org/10.3897/zse.95.29487
Figure 5 Bungona (Chopralla) pontica sp. n., thorax and abdomen. A Setae on abdominal sterna IV, V and VI. B Part of metathorax with vestigial hind wing pad. C Surface and posterior margin of abdominal terga II, V and VIII. D Paraproct. E Abdominal tergum X. F Gills.
Figure 4 from: Sroka P, Godunko RJ, Rutschmann S, Angeli KB, Salles FF, Gattolliat J-L (2019) A new species of Bungona in Turkey (Ephemeroptera, Baetidae): an unexpected biogeographic pattern within a pantropical complex of mayflies. Zoosystematics and Evolution 95(1): 1-13. https://doi.org/10.3897/zse.95.29487
Figure 4 Bungona (Chopralla) pontica sp. n., legs. A Scales on surface of legs. B Foretibia (dorsal). C Middle tibia (dorsal). D Hind tibia (dorsal). E Claw. F Detail of claw apex. Abbreviations: s–scale, ss–scale socket, pts–patella-tibial suture.
Figure 3 from: Sroka P, Godunko RJ, Rutschmann S, Angeli KB, Salles FF, Gattolliat J-L (2019) A new species of Bungona in Turkey (Ephemeroptera, Baetidae): an unexpected biogeographic pattern within a pantropical complex of mayflies. Zoosystematics and Evolution 95(1): 1-13. https://doi.org/10.3897/zse.95.29487
Figure 3 Bungona (Chopralla) pontica sp. n., legs. A Foreleg (dorsal, same scale bar for A, C, E). B Basal part of fore tibia (dorsal, same scale bar for B, D, F). C Middle leg (dorsal). D Basal part of middle tibia (dorsal). E Hind leg (dorsal). F Basal part of hind tibia (dorsal). Abbreviations: pts–patella-tibial suture.
Figure 2 from: Sroka P, Godunko RJ, Rutschmann S, Angeli KB, Salles FF, Gattolliat J-L (2019) A new species of Bungona in Turkey (Ephemeroptera, Baetidae): an unexpected biogeographic pattern within a pantropical complex of mayflies. Zoosystematics and Evolution 95(1): 1-13. https://doi.org/10.3897/zse.95.29487
Figure 2 Bungona (Chopralla) pontica sp. n., mouthparts. A Labrum (right side dorsal, left side ventral). B Incisors of left mandible (dorsal, same scale bar for B and C). C Incisors of right mandible (dorsal). D Glossa and paraglossa (dorsal, same scale bar for D–G). E Labial palp (dorsal). F Glossa and paraglossa (ventral). G Labial palp (ventral). H Maxilla. Abbreviations: oig–outer incisor group, iig–inner incisor group, prs–prostheca, sI–submedial seta, sII–apicolateral arc of setae.
FIGURE 3 in Phylogenetic placement of Mimosa pabstiana reinforces a biogeographic pattern of the Pleistocene Arc Theory in Mimosa (Leguminosae, Caesalpinoideae)
FIGURE 3. Distribution map of Mimosa pabstiana.
Figure 1 from: Stocchino G, Sluys R, Deri P, Manconi R (2013) Integrative taxonomy of a new species of planarian from the Lake Ohrid basin, including an analysis of biogeographical patterns in freshwater triclads from the Ohrid region (Platyhelminthes, Tricladida, Dugesiidae). ZooKeys 313: 25-43. https://doi.org/10.3897/zookeys.313.5363
Figure 1 - Geographic distribution of Dugesia superioris (indicated by an asterisk) and Dugesia sp. NMNH 55294 (indicated by black diamond) in the Lake Ohrid region.
Figure 4 from: Stocchino G, Sluys R, Deri P, Manconi R (2013) Integrative taxonomy of a new species of planarian from the Lake Ohrid basin, including an analysis of biogeographical patterns in freshwater triclads from the Ohrid region (Platyhelminthes, Tricladida, Dugesiidae). ZooKeys 313: 25-43. https://doi.org/10.3897/zookeys.313.5363
Figure 4 - Dugesia superioris. Photomicrographs of the copulatory apparatus. A Holotype ZMA V.Pl. 7153.1, sagittal section showing the penis bulb and the penis papilla with the ejaculatory duct B Paratype CGAS Pla 6. 3, transverse section of the penis papilla and the ejaculatory duct surrounded by numerous glands C Paratype CGAS Pla 6. 3, transverse section of the bursal canal.
Figure 3 from: Stocchino G, Sluys R, Deri P, Manconi R (2013) Integrative taxonomy of a new species of planarian from the Lake Ohrid basin, including an analysis of biogeographical patterns in freshwater triclads from the Ohrid region (Platyhelminthes, Tricladida, Dugesiidae). ZooKeys 313: 25-43. https://doi.org/10.3897/zookeys.313.5363
Figure 3 - Dugesia superioris. Holotype ZMA V.Pl. 7153.1, sagittal reconstruction of the copulatory apparatus (anterior to the left).
Figure 3 from: Chiapella JO, Demaio PH (2015) Plant endemism in the Sierras of Córdoba and San Luis (Argentina): understanding links between phylogeny and regional biogeographical patterns. PhytoKeys 47: 59-96. https://doi.org/10.3897/phytokeys.47.8347
Figure 3 - Representative endemic taxa of the Sierras CSL. (Clockwise) Aa achalensis, Poa stuckertii, Acanthocalycium spiniflorum, Gymnocalycium monvillei, Gymnocalycium andreae, Valeriana ferax, Escallonia cordobensis, Siphocampylus foliosus var. glabratus.
Figure 2 from: Trytsman M, Westfall RH, Breytenbach PJJ, Calitz FJ, Van Wyk AE (2016) Diversity and biogeographical patterns of legumes (Leguminosae) indigenous to southern Africa. PhytoKeys 70: 53-96. https://doi.org/10.3897/phytokeys.70.9147
Figure 2 - Bioregions of South Africa, Lesotho and Swaziland (Rutherford et al. 2006). The vegetation map shows the 35 bioregions where a bioregion is defined as a composite special terrestrial unit based on similar biotic (vegetation and floristic) and physical features (landscapes and rock types) and processes at the regional scale (Rutherford et al. 2006). The legend should be referred to when comparing the areas covered by leguminochoria.
Figure 8 from: Trytsman M, Westfall RH, Breytenbach PJJ, Calitz FJ, Van Wyk AE (2016) Diversity and biogeographical patterns of legumes (Leguminosae) indigenous to southern Africa. PhytoKeys 70: 53-96. https://doi.org/10.3897/phytokeys.70.9147
Figure 8 - Discriminant analysis for legume assemblages of southern Africa. Only the centroids and not all observations are shown. Confidence ellipses around the centroids and drivers for Factor 1 (soil pH and minimum temperatures) and Factor 2 (soil phosphorus) are shown. The legume assemblages are 1 Arid Western Region, Lower-rainfall Cape Floristic Region, Higher-rainfall Cape Floristic Region 2 Central Arid Region, Generalist Group, Kalahari Bushveld Region 3 Albany Centre 4 Northern & Northeastern Savannah Region, Central Bushveld Region, Subtropical Lowveld & Mopane Region 5 Northern Highveld Region, Drakensberg Alpine Centre, Summer Rainfall Region and 6 Southern Afromontane, Coastal Region, Northern Mistbelt.
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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.