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2,293 results for “Atlantic forests”
Fig. 4 in Spatial distribution of Culicidae (Diptera) larvae, and its implications for Public Health, in five areas of the Atlantic Forest biome, State of São Paulo, Brazil
Fig. 4. Spatial distribution of the species found in the Santa Alice rural districts.
Fig. 5 in Spatial distribution of Culicidae (Diptera) larvae, and its implications for Public Health, in five areas of the Atlantic Forest biome, State of São Paulo, Brazil
Fig. 5. Semi-variograms of Shannon and Simpson diversity indices.
Figure 1 from: Menezes R, Carvalho A, Costa M (2011) First records of Synoeca septentrionalis Richards, 1978 (Hymenoptera, Vespidae, Epiponini) in the Brazilian Atlantic Rain Forest. ZooKeys 151: 75-78. https://doi.org/10.3897/zookeys.151.1882
Figure 1 - Nest of Synoeca septentrionalis collected in Santa Terezinha in the state of Bahia.
Figure 1 from: Dias I, Medeiros T, Vila Nova M, Solé M (2014) Amphibians of Serra Bonita, southern Bahia: a new hotpoint within Brazil's Atlantic Forest hotspot. ZooKeys 449: 105-130. https://doi.org/10.3897/zookeys.449.7494
Figure 1 - Map and sampling sites in the RPPN Serra Bonita, Bahia State, Northeastern Brazil.
Figure 2 from: Freitas L, Salino A, Neto LM, Almeida TE, Mortara SR, Stehmann JR, Amorim AM, Guimarãe EF, Coelho MN, Zanin A, Forzza RC (2016) A comprehensive checklist of vascular epiphytes of the Atlantic Forest reveals outstanding endemic rates. PhytoKeys 58: 65-79. https://doi.org/10.3897/phytokeys.58.5643
Figure 2 - Family representativeness of Atlantic Forest fern and lycophyte epiphyte species.
Figure 1 from: Freitas L, Salino A, Neto LM, Almeida TE, Mortara SR, Stehmann JR, Amorim AM, Guimarãe EF, Coelho MN, Zanin A, Forzza RC (2016) A comprehensive checklist of vascular epiphytes of the Atlantic Forest reveals outstanding endemic rates. PhytoKeys 58: 65-79. https://doi.org/10.3897/phytokeys.58.5643
Figure 1 - Family representativeness of Atlantic Forest vascular epiphyte species.
Ground-foraging ant communities in invaded (by Hovenia dulcis) and non-invaded Atlantic Forest sites, and ant-H. dulcis diaspore interactions
Open the record for dataset details and reuse information.
Initiatives to monitor and manage biodiversity, and best practices in sustainable tourism in the Atlantic Forest Trail
Open the record for dataset details and reuse information.
Figure 2 in Two new species of miniature psammophilic sarcoglanidine catfishes of the genus Microcambeva from the Atlantic Forest of eastern Brazil (Siluriformes: Trichomycteridae)
Figure 2. Osteological structures of Microcambeva mucuriensis sp. nov., UFRJ 11841, paratype, 17.6 mm standard length: (a) mesethmoidal region and adjacent structures, left and middle portions, dorsal view; (b) left suspensorium and opercular series, lateral view. Larger stippling represents cartilaginous areas. aao, autopalatine anterior ossification; apw, autopalatine posterior process widening; iap, interopercular anterior process. Scale bar: 0.5 mm.
Figure 1 in Two new species of miniature psammophilic sarcoglanidine catfishes of the genus Microcambeva from the Atlantic Forest of eastern Brazil (Siluriformes: Trichomycteridae)
Figure 1. Microcambeva mucuriensis sp. nov., UFRJ 12123, holotype, 25.2 mm standard length: (a) left lateral view (in life); (b) left lateral view (preserved); (c) head, dorsal view; (d) head, ventral view.
Figure 6 in Two new species of miniature psammophilic sarcoglanidine catfishes of the genus Microcambeva from the Atlantic Forest of eastern Brazil (Siluriformes: Trichomycteridae)
Figure 6. Osteological structures of Microcambeva jucuensis sp. nov., UFRJ 11840, paratype, 22.0 mm standard length: (a) mesethmoidal region and adjacent structures, left and middle portions, dorsal view; (b) left suspensorium and opercular series, lateral view. Arrow indicates the anterior autopalatine ossification. Larger stippling represents cartilaginous areas. aao, autopalatine anterior ossification; apw, autopalatine posterior process widening; iap, interopercular anterior process. Scale bar: 0.5 mm.
Figure 3 in A new genus of dung beetles (Coleoptera: Scarabaeidae: Scarabaeinae) endemic to the Brazilian Atlantic Forest
Figure 3. Male genitalia Atlantemolanum riehli. (a) aedeagus, lateral view; (b) apex of the paramere; (c) basal sclerite; (d) membranous area showing small scales; (e) elongate sclerite; (f) genital segment.
Figure 1 in A new genus of dung beetles (Coleoptera: Scarabaeidae: Scarabaeinae) endemic to the Brazilian Atlantic Forest
Figure 1. Atlantemolanum new genus and Deltochilum. (a) male Atlantemolanum riehli (Harold 1868) new combination, dorsal view; (b) female Atlantemolanum costalimai (Pereira and d'Andretta 1955) new combination, dorsal view. (c-e) A. riehli (c) mesoleg; (d) pronotum in lateral view, white arrow indicates the interrupted carina that separates pronotum from hypomeron, black arrow indicates the anterior hypomeral excavation; (e) pronotum, dorsal view; (f) Deltochilum rubripenne, pronotum in dorsal view.
FIGURE 9 in Endemism within endemism: a new species of Austroleptis Hardy, 1920 (Diptera Austroleptidae) from the Brazilian Atlantic Forest highlands
FIGURE 9. Wing of Austroleptis camposgerais sp. nov., female, holotype. Scale bar, 1 mm. Abbreviations: A1, first branch of anal vein; al, alula; an lb, anal lobe; bm, basal medial cell; br, basal radial cell; c, costal cell; C, costal vein; Cu, cubital vein or cubitus; CuA, anterior branch of cubital vein; cua, anterior cubital cell; CuA+CuP, anterior branch of cubital vein + posterior branch of cubital vein; CuP, posterior branch of cubital vein; cup, posterior cubital cell; d, discal cell; h, humeral crossvein; M, medial vein or media; M1, first branch of media; m1, first medial cell; M1+2, fused first and second branch of media; M2, second branch of media; m2+3, fused second and third cell of media; M3, third branch of media; M3+4, fused third and fourth branch of media; M4, fourth branch of media; m4, fourth medial cell; m–cu, medial–cubital crossvein; m–m, medial crossvein; R1, anterior branch of radius; r1, first radial cell; R2+3, second branch of radius; r2+3, second + third radial cell; r4, fourth radial cell; R4, upper branch of third branch of radius; r5, fifth radial cell; R5, lower branch of third branch of radius; r–m, radial–medial crossvein; Rs, radial sector; sc, subcostal cell; Sc, subcostal vein; u calyp, upper calypter.
FIGURES 1–2 in Endemism within endemism: a new species of Austroleptis Hardy, 1920 (Diptera Austroleptidae) from the Brazilian Atlantic Forest highlands
FIGURES 1–2. Habitus of Austroleptis camposgerais sp. nov., female, holotype. 1. Dorsal view. 2. Lateral view. Scale bar, 1 mm.
FIGURE 19 in Endemism within endemism: a new species of Austroleptis Hardy, 1920 (Diptera Austroleptidae) from the Brazilian Atlantic Forest highlands
FIGURE 19. Geographic distribution of the Brazilian species of Austroleptis. A. Map of main Brazilian biomes. B. Position of the Parque Nacional dos Campos Gerais in the Atlantic Forest and the distribution of the three known species of Austroleptis. C. Delimitation of the Parque Nacional dos Campos Gerais—yellow square indicates where in the park was set the Malaise trap that collected the specimen of Austroleptis camposgerais sp. nov. D. Primary Malaise trap set up near the limit of the park, where it that yielded the specimen. Squares represent holotypes and circles paratypes.
FIGURES 3–8 in Endemism within endemism: a new species of Austroleptis Hardy, 1920 (Diptera Austroleptidae) from the Brazilian Atlantic Forest highlands
FIGURES 3–8. Head and thorax of Austroleptis camposgerais sp. nov., female, holotype. 3. Head, dorsal view. 4. Head, lateral view. 5. Head, frontolateral view. 6. Antenna, lateral view (scale bar, 0.1 mm). 6. Thorax, dorsal view. 7. Thorax, lateral view. Scale bar, 0.5 mm. Abbreviations: clyp, clypeus; fc, face; flg, flagellum; flgm, flagellomere; fr, frons; gn, gena; lbl, labellum; oc tub, ocellar tubercle; ped, pedicel; plp, palpus; pocl reg, postocular region; scp, scape; vrt, vertex.
FIGURES 16–18 in Endemism within endemism: a new species of Austroleptis Hardy, 1920 (Diptera Austroleptidae) from the Brazilian Atlantic Forest highlands
FIGURES 16–18. Terminalia and reproductive tracts of Austroleptis camposgerais sp. nov., female, holotype. 16. Terminalia, dorsal view. 17. Terminalia, ventral view. 18. Genital fork, spermathecal ducts, and spermathecae. Scale bar, 0.1 mm. Abbreviations: cerc, cercus; gen fk, genital fork; pp, posterolateral process; spmth dt, spermathecal duct; spmth, spermatheca; st, sternite; tg, tergite.
FIGURE 4. A–E in New Polypedilum Kieffer (Diptera: Chironomidae) from mountains of the Atlantic Forest, Brazil
FIGURE 4. A–E. Polypedilum (Tripodura) goiocoio sp. n. male adult. A, wing. B, scale of fore tibia. C. hypopigyum, dorsal view. D, hypopigyum with tergite IX removed, dorsal view. E, superior volsella.
FIGURE 3. A–E in New Polypedilum Kieffer (Diptera: Chironomidae) from mountains of the Atlantic Forest, Brazil
FIGURE 3. A–E. Polypedilum (Tripodura) yvatekaty sp. n. male adult. A, wing. B, scale of fore tibia. C. hypopigyum, dorsal view. D, hypopigyum with tergite IX removed, dorsal view. E, superior volsella.
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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.