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4,490 results for “Brazilian species”
FIGURE 14 in On the Brazilian Exocnophila stick insects (Insecta: Phasmatodea), with the description of a new species
FIGURE 14. Exocnophila hastata comb. nov., abdomen, females from Rio de Janeiro, MZV0677 (A, C, E, G), MZ0564 (B, D, F). A, abdomen in dorsal view; B, terminalia in dorsal view; C–D, terminalia in lateral view; E–F, terminalia in ventral view; G, valves in lateral view with subgenital plate spread out. Scale bars: 1 mm.
FIGURE 23 in On the Brazilian Exocnophila stick insects (Insecta: Phasmatodea), with the description of a new species
FIGURE 23. Exocnophila ovifuscum sp. nov. abdomen, female paratypes PNI036 (A, D–E), PNI119 (B), PNI220 (C). A–B, dorsal view; C–E, lateral view. Scale bars: 2 mm.
FIGURE 22 in On the Brazilian Exocnophila stick insects (Insecta: Phasmatodea), with the description of a new species
FIGURE 22. Exocnophila ovifuscum sp. nov. thorax, legs and abdomen, female paratype V0309. A, metathorax in dorsal view; B, left protarsus, ventral view; C, left mesotarsus, ventral view; D, left metatarsus, ventrolateral view; E, apex of left mesotibia, lateral view. Scale bars: 1 mm.
FIGURE 5 in On the Brazilian Exocnophila stick insects (Insecta: Phasmatodea), with the description of a new species
FIGURE 5. Exocnophila brevitarsata comb. nov., head and thorax, lectotype (A, C, D), paralectotype 22.041 (B); A–B, dorsal view; C, lateral view; D, ventral view. Scale bars: 1 mm.
FIGURE 8 in On the Brazilian Exocnophila stick insects (Insecta: Phasmatodea), with the description of a new species
FIGURE 8. Exocnophila hastata comb. nov., male body and habitus, lectotype. A, habitus in dorsal view; B, body in dorsal view; C, habitus in lateral view. Scale bars: 2 mm.
FIGURE 17 in On the Brazilian Exocnophila stick insects (Insecta: Phasmatodea), with the description of a new species
FIGURE 17. Exocnophila hastata comb. nov., terminalia, male V0608 from Rio de Janeiro, Brazil. A, dorsal view; B, lateral view; C, ventral view; D, cerci and vomer in ventral view; E, thorn pads in ventral view. Scale bars: 1 mm.
FIGURE 3 in On the Brazilian Exocnophila stick insects (Insecta: Phasmatodea), with the description of a new species
FIGURE 3. Exocnophila brevitarsata comb. nov., thorax and abdomen, female holotype of Exocnophila exintegra syn. nov. A, metathorax in dorsal view; B, terminala (end of the abdomen) in dorsal view; C, terminalia, lateral view; D, terminalia, ventral view. Scale bars: 2 mm.
FIGURE 27 in On the Brazilian Exocnophila stick insects (Insecta: Phasmatodea), with the description of a new species
FIGURE 27. Exocnophila ovifuscum sp. nov. thorax, legs and abdomen, male paratype V0293. A, metathorax in dorsal view; B, right protarsus, lateral view; C, left mesotarsus, lateral view; left metatarsus, lateral view (mirrored). Scale bars: 1 mm.
FIGURE 4. Immature stages. A, first instar. B, second instar. C, third instar. D, fourth instar. E in A new species of Coelidiana Oman (Hemiptera: Cicadellidae: Neocoelidiinae) from Brazil with key to Brazilian species, description of immature stages, and notes about parasitoids and host plant
FIGURE 4. Immature stages. A, first instar. B, second instar. C, third instar. D, fourth instar. E, fifth instar. Scale bar in mm
FIGURE 2 in A new species of Coelidiana Oman (Hemiptera: Cicadellidae: Neocoelidiinae) from Brazil with key to Brazilian species, description of immature stages, and notes about parasitoids and host plant
FIGURE 2. Coelidiana aroeira sp. nov., paratype female. A, posterior portion of abdomen, ventral view. B, posterior portion of abdomen, lateral view. C, sternite VII and inner sternite VIII, ventral view. D, pygofer and anal tube, lateral view. E, first valvifer and first valvula of ovipositor, lateral view. F, apex of first valvula, lateral view. G, second valvifer and second valvula of ovipositor, lateral view. H, apex of second valvula, lateral view. I, gonoplac, lateral view. J, apex of gonoplac, lateral view. Scale bars in mm.
FIGURE 1 in A new species of Coelidiana Oman (Hemiptera: Cicadellidae: Neocoelidiinae) from Brazil with key to Brazilian species, description of immature stages, and notes about parasitoids and host plant
FIGURE 1. Coelidiana aroeira sp. nov., holotype male. A, head and thorax, dorsal view. B, head, frontal view. C, head and thorax, lateral view. D, forewing. E, genital capsule. F, pygofer and anal tube, lateral view. G, valve and subgenital plates, ventral view. H, valve and subgenital plate, lateral view. I, styles and connective, dorsal view. J, style, lateral view. K, aedeagus, lateral view. L, aedeagus, posterior view. Scale bars in mm.
FIGURE 6 in A new species of Coelidiana Oman (Hemiptera: Cicadellidae: Neocoelidiinae) from Brazil with key to Brazilian species, description of immature stages, and notes about parasitoids and host plant
FIGURE 6. Tree of Schinus terebinthifolia (Aroeira-Pimenteira) studied at Curitiba (Paraná) and detail of growing fruits.
FIGURE 5 in A new species of Coelidiana Oman (Hemiptera: Cicadellidae: Neocoelidiinae) from Brazil with key to Brazilian species, description of immature stages, and notes about parasitoids and host plant
FIGURE 5. Fifth instar nymph terminalia of Coelidiana aroeira sp. nov. A, Male plates. B, Female plates.
Data from: Nuclear markers reveal a complex introgression pattern among marine turtle species on the Brazilian coast
A surprisingly high frequency of interspecific sea turtle hybrids have been previously recorded in a nesting site along a short stretch of the Brazilian coast. Mitochondrial DNA data indicated that as much as 43% of the females identified as E. imbricata are hybrids in this area (Bahia State of Brazil). It is a remarkable find, since most of the nesting sites surveyed worldwide, including some in northern Brazil, presents no hybrids, and rare Caribbean sites present no more than 2% of hybrids. Thus, a detailed understanding of the hybridization process is needed to evaluate natural or anthropogenic causes of this regional phenomenon in Brazil, which could be an important factor affecting the conservation of this population. We analyzed a set of 12 nuclear markers to investigate the pattern of hybridization involving three species of sea turtles: hawksbill (Eretmochelys imbricata), loggerhead (Caretta caretta), and olive ridley (Lepidochelys olivacea). Our data indicate that most of the individuals in the crossings L. olivacea × E. imbricata and L. olivacea × C. caretta are F1 hybrids, whereas C. caretta × E. imbricata crossings present F1 and backcrosses with both parental species. In addition, the C. caretta × E. imbricata hybridization seems to be gender and species biased, and we also found one individual with evidence of multispecies hybridization among C. caretta × E. imbricata × Chelonia mydas. The overall results also indicate that hybridization in this area is a recent phenomenon, spanning at least two generations or ~40 years.
FIGURES 1–3 in Two new species of Opheliidae (Annelida: Polychaeta): Euzonus papillatus sp. n. from a northeastern Brazilian sandy beach and Euzonus mammillatus sp. n. from the continental shelf of southeastern Brazil
FIGURES 1–3. Euzonus papillatus sp. n., NE Brazil: 1. Holotype (MCEM 1617), right lateral view, posterior end contracted, sand grains visible; 2. paratype (MCEM 1620), left lateral view of extended posterior end, real length of chaetae not shown; 3. holotype, detail of subterminal region of chaetae of abranchiate posterior chaetigers showing knob (arrows).
FIGURES 4–7 in Two new species of Opheliidae (Annelida: Polychaeta): Euzonus papillatus sp. n. from a northeastern Brazilian sandy beach and Euzonus mammillatus sp. n. from the continental shelf of southeastern Brazil
FIGURES 4–7. Euzonus mammillatus sp. n., specimen from SE Brazil, Rio de Janeiro State, from Nonato (1981): 4. right lateral view of whole body; 5. details of lateral papillae on chaetiger 10 and branchiae; 6. posterior end, dorsal view; 7. posterior end, ventral view.
Figure 3 in Review of the Brazilian species of Omorgus Erichson, 1847 (Coleoptera: Trogidae: Omorginae)
Figure 3. Lectotype of Trox badeni Harold, 1872 (now Omorgus badeni). A, dorsal view; B, lateral view and C, lectotype labels (Photos by Jonathan Brecko, copyright RBINS). Length of specimen: 7.5 mm.
Figure 7 in Review of the Brazilian species of Omorgus Erichson, 1847 (Coleoptera: Trogidae: Omorginae)
Figure 7. Holotype of Omorgus (Omorgus) triestinae Pittino, 1987. A, dorsal view; B, lateral view; C, aedeagus in dorsal view and D, holotype labels (Photos by A. Mantilleri, copyright MNHN).
Figure 2 in Review of the Brazilian species of Omorgus Erichson, 1847 (Coleoptera: Trogidae: Omorginae)
Figure 2. Holotype of Trox loxus Vaurie, 1955 (now Omorgus loxus). A, dorsal view; B, lateral view and C, holotype labels (Photos by Rachel Hawkins, copyright MCZC).
Figure 12 in Review of the Brazilian species of Omorgus Erichson, 1847 (Coleoptera: Trogidae: Omorginae)
Figure 12. Distribution of Omorgus triestinae in the Brazilian territory. Red circle with small black point inside refers to approximate type locality of O. triestinae (Brazil: Minas Gerais).
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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.