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211 results for “Neotropical fauna”
FIGURE 7 in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 7. Holotype of Robinsonia decaensi Laguerrre sp. nov., dorsal view on the left and ventral view on the right, labels are not to scale. Scale 10 mm.
FIGURE 4 in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 4. Robinsonia simulans Laguerrre sp. nov., A–B: male holotype, A dorsal view, B ventral view; C–D: female paratype, C dorsal view D ventral view. Labels not to scale. Scale = 10 mm.
FIGURE 3 in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 3. Neighbour-Joining tree of 17 selected COX1 sequences of the studied group, distances in % are given below each branch and bootstrap supports are given above each branch in bold (only if larger than 70 %) (obtained with MEGA7, see KumaR et al., 2016). The newly described species are highlighted in bold.
FIGURE 1. Robinsonia praphoea Dognin, 1906. A in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 1. Robinsonia praphoea Dognin, 1906. A: male holotype. B: fresh sequenced specimen from Peru (Cuzco), photo courtesy of G. Brehm (PMJ).
FIGURE 17. A–E in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 17. A–E: male genitalia of Robinsonia mera (Schaus, 1910) from Costa Rica, A ventral view, B dorsal view, C lateral view, D valva view from inside, E aedeagus with everted vesica.
FIGURE 16 in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 16. Specimen male of Robinsonia mera (Schaus, 1910) from Costa Rica, dorsal view on the left and ventral view on the right, labels are not to scale. Scale = 10 mm.
FIGURE 6. A–C in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 6. A–C: female genitalia of Robinsonia simulans Laguerre sp. nov., A ventral view, B dorsal view, C detail of the antrum, ductus bursae and papillae anales.
FIGURE 19. A–E in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 19. A–E: male genitalia of R. marginata, A ventral view, B dorsal view, C lateral view, D valva view from inside, E aedeagus with everted vesica. F–J: male genitalia of R. flavicorpus, F ventral view, G dorsal view, H lateral view, I valva view from inside, J aedeagus with everted vesica.
FIGURE 2. A–E in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 2. A–E: male genitalia of Robinsonia praphoea Dognin, 1906, reference ML3291. A ventral view, B dorsal view, C lateral view, D valva view from inside, E aedeagus with everted vesica.
FIGURE 9 in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 9. Holotype of Robinsonia marahensis Laguerrre sp. nov., dorsal view on the left and ventral view on the right, labels are not to scale. Scale = 10 mm.
FIGURE 15. A–E in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 15. A–E: male genitalia of Robinsonia inexpectata Laguerre sp. nov., A ventral view, B dorsal view, C lateral view, D valva view from inside, E aedeagus with everted vesica.
FIGURE 5. A–E in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 5. A–E: male genitalia of Robinsonia simulans Laguerre sp. nov., A ventral view, B dorsal view, C lateral view, D valva view from inside, E aedeagus with everted vesica.
FIGURE 8. A–E in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 8. A–E: male genitalia of Robinsonia decaensi Laguerre sp. nov., A ventral view, B dorsal view, C lateral view, D detail of the valva, E aedeagus with everted vesica.
FIGURE 13. A–C in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 13. A–C: female genitalia of Robinsonia drechseli Laguerre sp. nov., A ventral view, B dorsal view, C detail of the antrum, ductus bursae and papillae anales.
FIGURE 12. A–E in Partial revision of the genus Robinsonia Grote 1866: description of five new species for the Neotropical fauna (Lepidoptera, Erebidae, Arctiinae, Phaegopterina)
FIGURE 12. A–E: male genitalia of Robinsonia drechseli Laguerre sp. nov., A ventral view, B dorsal view, C lateral view, D valva view from inside, E aedeagus with everted vesica
Data from: Community structure of a Neotropical bat fauna as revealed by stable isotope analysis: Not all species fit neatly into predicted guilds
Neotropical bat communities are among the most diverse mammal communities in the world, and a better understanding of these assemblages may permit inferences about how so many species coexist. While broad trophic guilds (e.g., frugivore, insectivore) of bats are recognized, details of diet and similarities among species remain largely unknown. We used stable isotope ratios of carbon (δ13C) and nitrogen (δ15N) to characterize the community structure of a diverse Neotropical bat fauna from Belize to test predictions of niche theory and the competitive exclusion principle. We predicted that (1) interspecific variation in isotopic overlap would be greater within guilds than between guilds, and (2) no two sympatric populations would have isotopic niches that overlap completely, unless there is variation along some other axis (e.g., temporal, spatial). We additionally tested body size as an explanatory metric of potential overlap, and predicted that larger-bodied animals would have greater niche breadths. Results suggest that while guild-level characterizations of communities is at least somewhat informative, there are multiple examples of intra- and inter-guild species pairs with significantly overlapping isotopic niches, suggesting that, counter to predictions, they may compete for resources. Understanding the trophic structure of animal communities is fundamental to conservation and management of endangered species and ecosystems and important for evolutionary studies, and stable isotope analyses can provide key insights as well as informing hypotheses of the diet of species that are not well known.
FIGURE 5. M. nigribasis. A. Male external genitalic structures, lateral view. B. Male external genitalic structures, posterior view. C. Male internal genitalic structures, lateral view. D. Male sternite 5, ventral view. E in Revision of the new world fauna of Mesembrina Meigen (Diptera: Muscidae) with the description of a new neotropical species
FIGURE 5. M. nigribasis. A. Male external genitalic structures, lateral view. B. Male external genitalic structures, posterior view. C. Male internal genitalic structures, lateral view. D. Male sternite 5, ventral view. E. Female apical portion of ovipositor, dorsal view. F. Female apical portion of ovipositor, ventral view. G. Female spermatheca.
FIGURE 4. M. latreillii. A. Male external genitalic structures, lateral view. B. Male external genitalic structures, posterior view. C. Male internal genitalic structures, lateral view. D. Male sternite 5, ventral view. E in Revision of the new world fauna of Mesembrina Meigen (Diptera: Muscidae) with the description of a new neotropical species
FIGURE 4. M. latreillii. A. Male external genitalic structures, lateral view. B. Male external genitalic structures, posterior view. C. Male internal genitalic structures, lateral view. D. Male sternite 5, ventral view. E. Female apical portion of ovipositor, dorsal view. F. Female apical portion of ovipositor, ventral view. G. Female spermatheca.
FIGURE 2 in Revision of the new world fauna of Mesembrina Meigen (Diptera: Muscidae) with the description of a new neotropical species
FIGURE 2. Male of M. decipiens. A. External genitalic structures, lateral view. B. External genitalic structures, posterior view. C. Internal genitalic structures, lateral view. D. Sternite 5, ventral view.
FIGURE 3 in Revision of the new world fauna of Mesembrina Meigen (Diptera: Muscidae) with the description of a new neotropical species
FIGURE 3. Female of M. decipiens, apical portion of ovipositor. A. Dorsal view. B. Ventral view. C. Spermatheca.
ScienceDex guides
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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.