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338 results for “Geographic ranges”
FIGURE 1–5 in Pachyneuridae (Diptera): new data on the geographic range and designation of the lectotype of Pachyneura fasciata Zetterstedt, 1838
FIGURE 1–5. Larvae of Pachyneyra oculata (fig. 2,3) and P. fasciata (fig. 4,5) (from Krivosheina et Mamaev 1972). 1. Habitus, lateral view; 2,4. Cuticular structure of 8th abdominal segment; 3,5. Dorsal bristles of abdominal segments.
FIGURE 12. Pachyneura fasciata Zetterstedt, 1838 in Pachyneuridae (Diptera): new data on the geographic range and designation of the lectotype of Pachyneura fasciata Zetterstedt, 1838
FIGURE 12. Pachyneura fasciata Zetterstedt, 1838. Labels of lectotype: a The small black labels indicates that the material was collected Zetterstedt during an expedition to Lappland in 1832; b Hand-written label by Zetterstedt; c,d Modern labels with inside information of Entomological Museum of Lund University, Sweden. (Photo Rune Bygebjerg and Christoffer Fägerström).
FIGURE 6–10 in Pachyneuridae (Diptera): new data on the geographic range and designation of the lectotype of Pachyneura fasciata Zetterstedt, 1838
FIGURE 6–10. Pupae of Pachyneyra oculata (fig.7,8) and P. fasciata (fig. 9,10) (from Krivosheina et Mamaev 1972). 6. Habitus, dorsal view; 7,9. Dorsal protuberance of abdominal segments; 8,10. Sclerotized hooks of last segments.
FIGURE 11. Pachyneura fasciata Zetterstedt, 1838 in Pachyneuridae (Diptera): new data on the geographic range and designation of the lectotype of Pachyneura fasciata Zetterstedt, 1838
FIGURE 11. Pachyneura fasciata Zetterstedt, 1838. Lectotype female, habitus, lateral view. (Photo Rune Bygebjerg and Christoffer Fägerström). Scale bars 5 mm.
Figure 10. - Geographic range and distribution map of Orchispatens subssp. patens.
Figure 10. - Geographic range and distribution map of Orchispatens subssp. patens.
Figure 6. - Geographic range and distribution map of Ferulaarrigonii.
Figure 6. - Geographic range and distribution map of Ferulaarrigonii.
Figure 4. - Geographic range and distribution map of Alliumgarganicum.
Figure 4. - Geographic range and distribution map of Alliumgarganicum.
Figure 2. - Geographic range and distribution map of Linariatonzigii.
Figure 2. - Geographic range and distribution map of Linariatonzigii.
Figure 8. - Geographic range and distribution map of Armeriasaviana.
Figure 8. - Geographic range and distribution map of Armeriasaviana.
Fig. 3. Phylorate plot from a in Phylogenomics and Fossil Data Inform the Systematics and Geographic Range Evolution of a Diverse Neotropical Ant Lineage
Fig. 3. Phylorate plot from a diversification rate-shift analysis in BAMM. A single rate regime is inferred without any rate shifts detected. Diversification rate gradient legend is in units of species/million years.
Fig. 1 in Phylogenomics and Fossil Data Inform the Systematics and Geographic Range Evolution of a Diverse Neotropical Ant Lineage
Fig. 1. Cephalotes topology inferred with RAxML, with species groups inferred in this study annotated with reference to previous species group designations. Numbers along the phylogeny correspond to species groups listed in the inset. Black circles indicate nodes with bootstrap support <95%, with corresponding bootstrap values displayed. Species (and photo credit) imaged, from top: Cephalotes persimilis de Andrade, 1999 (Hymenoptera: Formicidae) (April Nobile), Cephalotes pellans de Andrade, 1999 (Hymenoptera: Formicidae) (April Nobile), Cephalotes pusillus (Klug, 1824) (Hymenoptera: Formicidae) (April Nobile), Cephalotes guayaki de Andrade, 1999 (Hymenoptera: Formicidae) (April Nobile), Cephalotes umbraculatus (Fabricius, 1804) (Hymenoptera: Formicidae) (Shannon Hartman), Cephalotes manni (Kempf, 1951) (Hymenoptera: Formicidae) (Will Ericson), Cephalotes depressus (Klug, 1824) (Hymenoptera: Formicidae) (Wade Lee), Cephalotes setulifer (Emery, 1894) (Hymenoptera: Formicidae) (Wade Lee),Cephalotes kukulcan (Ryan Perry),Cephalotes multispinosus (Norton, 1868) (Hymenoptera: Formicidae) (Wade Lee), Cephalotes rohweri (Wheeler, 1916) (Hymenoptera: Formicidae) (Wade Lee), Cephalotes complanatus (Guérin-Méneville, 1844) (Hymenoptera: Formicidae) (Wade Lee), Cephalotes clypeatus (Fabricius, 1804) (Hymenoptera: Formicidae) (April Nobile), Cephalotes unimaculatus (Smith, 1853) (Hymenoptera: Formicidae) (Wade Lee), Cephalotes opacus Santschi, 1920 (Hymenoptera: Formicidae) (Shannon Hartman). Images from antweb.org under a Creative Commons Attribution License. Accessed August 24, 2020.
Fig. 2 in Phylogenomics and Fossil Data Inform the Systematics and Geographic Range Evolution of a Diverse Neotropical Ant Lineage
Fig. 2. MCMCTree time-scaled phylogeny (RAxML topology pruned to one tip per species) with historical biogeographic range inferences from the four-node fossil-constrained BioGeoBEARS analysis mapped onto nodes. An asterisk (*) indicates the location of a fossil node calibration.The light purple shading spans the proposed start and end dates (35–32 Mya) of the GAARlandia land bridge linking South America to the Antilles.The light gold shading spans the potential early start date and the complete closure date of the Panamanian land bridge (10–3.5 Mya).Transitions with boxes outlined in red denote differences from the historical geographic range inference without fossil constraints (Supp Fig. S7 [online only]). A, Antilles; C, Central America; S, South America.
Figure 9 in Gorgocephalidae (Digenea: Lepocreadioidea) in the Indo-West Pacific: new species, life-cycle data and perspectives on species delineation over geographic range
Figure 9. Gorgocephalus kyphosi and Gorgocephalus yaaji, ex Kyphosus vaigiensis, Lizard Island, Queensland, Australia, scanning electron micrographs. A, B, oral suckers of adult Gorgocephalus kyphosi. C, tegument of adult Gorgocephalus kyphosi. D, E, oral suckers of adult Gorgocephalus yaaji. F, tegument of adult Gorgocephalus yaaji. Scale bars: A, B, D, E, 50 µm; C, F, 20 µm.
Figure 8. Gorgocephalus kyphosi, scanning electron micrographs. A in Gorgocephalidae (Digenea: Lepocreadioidea) in the Indo-West Pacific: new species, life-cycle data and perspectives on species delineation over geographic range
Figure 8. Gorgocephalus kyphosi, scanning electron micrographs. A, whole adult worm ex Kyphosus sydneyanus, Point Riley, Yorke Peninsula, South Australia. B, D, E, ventral sucker, oral sucker and tegument of A, respectively. C, oral sucker of adult worm ex Kyphosus cinerascens, Moreton Bay, Queensland, Australia. F, oral sucker of adult worm ex Kyphosus cinerascens, Rangiroa, Tuamotu Islands, French Polynesia. Scale bars: A, 400 µm; B, 30 µm; C, D, 50 µm; E, 10 µm; F, 40 µm.
Figure 7. Gorgocephalus kyphosi. A in Gorgocephalidae (Digenea: Lepocreadioidea) in the Indo-West Pacific: new species, life-cycle data and perspectives on species delineation over geographic range
Figure 7. Gorgocephalus kyphosi. A, adult voucher ex Kyphosus sydneyanus, Point Riley, Yorke Peninsula, South Australia; lateral perspective. B, genital atrium, cirrus-sac and ovarian complex of A; lateral perspective. C, redia ex Echinolittorina vidua, Lizard Island, Queensland, Australia; ventral perspective. D, emerged cercaria ex Echinolittorina vidua, Lizard Island; ventral perspective. E, adult voucher ex Kyphosus sydneyanus, Point Riley; ventral perspective. Scale bars: A, E, 500 µm; B, C, D, 250 µm.
Figure 13. Gorgocephalus graboides A in Gorgocephalidae (Digenea: Lepocreadioidea) in the Indo-West Pacific: new species, life-cycle data and perspectives on species delineation over geographic range
Figure 13. Gorgocephalus graboides A, paratype ex Kyphosus cinerascens, Lizard Island, Queensland, Australia; lateral perspective. B, genital atrium, cirrus-sac and ovarian complex of paratype; lateral perspective. C, redia ex Echinolittorina vidua, Lizard Island; ventral perspective. D, emerged cercaria ex Echinolittorina vidua, Lizard Island; ventral perspective. E, holotype ex Kyphosus cinerascens, Lizard Island; ventral perspective. Scale bars: A, E, 500 µm; B, C, D, 250 µm.
Figure 6 in Gorgocephalidae (Digenea: Lepocreadioidea) in the Indo-West Pacific: new species, life-cycle data and perspectives on species delineation over geographic range
Figure 6. Bayesian majority-rule consensus tree of the concatenated COI + ITS2 + 28S alignment. Bayesian inference (BI) posterior probabilities and maximum likelihood (ML) bootstrap support shown at nodes. A '-' symbol indicates the node was not recovered in ML analysis. The scale-bar indicates the number of substitutions per site.
Figure 11. Gorgocephalus euryaleae. A in Gorgocephalidae (Digenea: Lepocreadioidea) in the Indo-West Pacific: new species, life-cycle data and perspectives on species delineation over geographic range
Figure 11. Gorgocephalus euryaleae. A, paratype ex Kyphosus gladius, Point Peron, Rockingham, Western Australia; lateral perspective. B, genital atrium, cirrus-sac and ovarian complex of separate paratype ex Kyphosus gladius, Point Peron; lateral perspective. C, holotype ex Kyphosus gladius, Point Peron; ventral perspective. Scale bars: A, C, 500 µm; B, 250 µm.
Figure 5 in Gorgocephalidae (Digenea: Lepocreadioidea) in the Indo-West Pacific: new species, life-cycle data and perspectives on species delineation over geographic range
Figure 5. Bayesian majority-rule consensus tree of the 28S rDNA single-gene alignment. Bayesian inference (BI) posterior probabilities and maximum likelihood (ML) bootstrap support shown at nodes. A '-' symbol indicates the node was not recovered in ML analysis. The scale-bar indicates the number of substitutions per site.
Figure 3 in Gorgocephalidae (Digenea: Lepocreadioidea) in the Indo-West Pacific: new species, life-cycle data and perspectives on species delineation over geographic range
Figure 3. Bayesian majority-rule consensus tree of the COI mtDNA single-gene alignment. Bayesian inference (BI) posterior probabilities and maximum likelihood (ML) bootstrap support shown at nodes. A '-' symbol indicates the node was not recovered in ML analysis. The scale-bar indicates the number of substitutions per site.
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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.