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449 results for “Atlantic rainforest”
Fig. 6 in A new species and first record of Vates Burmeister, 1838 from the Atlantic Rainforest (Mantodea: Vatinae)
Fig. 6. Vates phoenix sp. nov., female morphology (both specimens are from Jardim Botânico do Rio de Janeiro), and head morphology of Vates spp. A. Head, frontal view, allotype (MNRJ-ENT6-28442). – B–C. Variation in ocellar tubercles (not to scale). B. Allotype (collected in 2018; MNRJ-ENT6-28442). C. Paratype (collected in 1935; MNRJ-ENT6-28455). – D. Pronotum, dorsal view, allotype (MNRJENT6-28442). – E–H. Mid- and hind legs, allotype (MNRJ-ENT6-28442). E. Mid-femur, detail of distal section. F. Hind femur, detail of distal section. G. Mid-tibia. H. Hind tibia. – I. Vates biplagiata Sjöstedt, 1930, head, frontal view (male specimen from Peru). J. Vates weyrauchi Beier, 1958, head, frontal view (male specimen from Peru). Scale bars: A = 1 mm; D–H = 5 mm.
Fig. 8 in A new species and first record of Vates Burmeister, 1838 from the Atlantic Rainforest (Mantodea: Vatinae)
Fig. 8. Habitus of Vates phoenix sp. nov. Adult female is portrayed upside-down with raptorial legs stretched forward, perching on Licania tomentosa (Benth.) Fritsch. ('oiti'), an arboreal species distinct from the Atlantic Rainforest and abundant within the general area where the female allotype was found. A male specimen is depicted flying, as they often are on the wings through adulthood. Scientific illustration executed by Paulo Ormindo, based on observations of wild specimens.
Fig. 5 in A new species and first record of Vates Burmeister, 1838 from the Atlantic Rainforest (Mantodea: Vatinae)
Fig. 5. Male genital structures of Vates phoenix sp. nov., highlighting variation across specimens. A–B. Left phallomere, paratype (MNRJ-ENT6-28445). A. Dorsal view. B. Ventral view. – C–E. Left phallomere, partial ventral view. C. Paratype (MNRJ-ENT6-28445). D. Paratype (MNRJ-ENT6-28443). E. Paratype (MNRJ-ENT6-28446). – F–I. Ventral phallomere. F. Dorsal view, paratype (MNRJENT6-28445). G. Partial ventral view, same as in F. H. Partial dorsal view, same as in F. I. Partial ventral view, paratype (MNRJ-ENT6-28446). – J–L. Right phallomere, dorsal view. J. Fazenda Recanto, paratype (MNRJ-ENT6-28445). K. Reserva Ecológica de Guapiaçu, paratype (MNRJ-ENT6-28446). L. Fazenda Recanto, paratype (MNRJ-ENT6-28443). – M–N. Right phallomere, details of ventral structures. M. Fazenda Recanto, paratype (MNRJ-ENT6-28443). N. Reserva Ecológica de Guapiaçu, paratype (MNRJ-ENT6-28446). Scale bars: A–B, F, J–L = 2 mm; C–E, G–I = 1 mm; M–N = 500 μm.
Fig. 1 in A new species and first record of Vates Burmeister, 1838 from the Atlantic Rainforest (Mantodea: Vatinae)
Fig. 1. Habitat of Vates phoenix sp. nov. in the Atlantic Rainforest, highlighting variation across collecting sites. A. Jardim Botânico do Rio de Janeiro. B. Fazenda Recanto, Valença. C. Reserva Ecológica de Guapiaçu, Cachoeiras de Macacu. D. Customized white cloth light trap used to lure adult males.
Fig. 3 in A new species and first record of Vates Burmeister, 1838 from the Atlantic Rainforest (Mantodea: Vatinae)
Fig. 3. Vates phoenix sp. nov., male morphology. A. Head, frontal view, holotype (MNRJ-ENT6-28441). – B–E. Variation in ocellar tubercles across localities (not to scale). B. Fazenda Recanto, holotype (MNRJENT6-28441). C. Reserva Ecológica de Guapiaçu, paratype (MNRJ-ENT6-28447). D. Jussaral, paratype (MNRJ-ENT6-28449). E. Corcovado, paratype (MNRJ-ENT6-28448). – F–H. Antenna, highlighting sectional variation of antennomeres. F. Basal section. G. Mid section. H. Apex. – I–L. Pronota, highlighting size variation. I. Fazenda Recanto, holotype (MNRJ-ENT6-28441). J. Reserva Ecológica de Guapiaçu, paratype (MNRJ-ENT6-28447). K. Jussaral, paratype (MNRJ-ENT6-28449). L. Angatuba, paratype (MNRJ-ENT6-28456). Scale bars: A = 1 mm; I–L = 5 mm.
Figure 2 from: Monjardim M, Azevedo CO, Fagundes V (2020) DNA barcoding and hypopygium shape support delimitation of sympatric Dissomphalus species (Hymenoptera, Bethylidae) from the Atlantic rainforest. ZooKeys 959: 87-97. https://doi.org/10.3897/zookeys.959.53737
Figure 2 A bayesian consensus tree generated from the 304-bp COI from 29 representatives of the species complex. Posterior probabilities (PP) and bootstrap (BT) indicated above branches. The species D. thaianus, D. wusheanus and D. chiangmaiensis were used as outgroups to root the tree B–D hypopygium magnified 9.2×, corresponding to each clade.
Figure 1 from: Monjardim M, Azevedo CO, Fagundes V (2020) DNA barcoding and hypopygium shape support delimitation of sympatric Dissomphalus species (Hymenoptera, Bethylidae) from the Atlantic rainforest. ZooKeys 959: 87-97. https://doi.org/10.3897/zookeys.959.53737
Figure 1 Locations of the samples in Brazil and Paraguay (see Appendix I for geographic coordinates).
Figure 2 in Population structure of a native and an alien species of snail in an urban area of the Atlantic Rainforest
Figure 2. Detectability probability (A), abundance (B) and recruitment (C) estimated for Megalobulimus paranaguensis during the study. The error bars show 90% confidence intervals.
Figure 1 in Population structure of a native and an alien species of snail in an urban area of the Atlantic Rainforest
Figure 1. Study site location in Brazil (A; shown in rectangle) and in detail (B; shown in the rectangle), and study areas inside the study site (C; image from Google Earth).
FIGURE 4 in Novelties and nomenclatural notes in Pabstiella (Orchidaceae) from the Brazilian Atlantic Rainforest of Bahia and Espírito Santo
FIGURE 4. Distribution map of the three new species of Pabstiella.
Figures 4-5 from: Gomez-Mesa L, Pereira-Ribeiro J, Colombo Ferreguetti Á, Almeida-Santos M, Bergallo HG, Rocha CFD (2017) Ecological and reproductive aspects of Aparasphenodon brunoi (Anura: Hylidae) in an ombrophilous forest area of the Atlantic Rainforest Biome, Brazil. Zoologia 34: 1-8. https://doi.org/10.3897/zoologia.34.e20477
Figures 4-5 - Activity and microhabitat use of Aparasphenodon brunoi: (4) Number of individuals of A. brunoi (N = 77) recorded between 11:00 am and 11:00 pm in transects in the Vale Natural Reserve (VNR), municipality of Linhares, Espírito Santo, Southeastern Brazil). (5) Use of natural microhabitats by individuals of A. brunoi (N = 51) in the VNR. (H) On herbaceous plant, (TF) on a fallen tree trunk, (L) on liana, (TT) on a tree trunk, (TR) on a tree root, (PL) on a palm leaf, or in a (HTT) hollow in a tree trunk.
Figures 2-3 from: Gomez-Mesa L, Pereira-Ribeiro J, Colombo Ferreguetti Á, Almeida-Santos M, Bergallo HG, Rocha CFD (2017) Ecological and reproductive aspects of Aparasphenodon brunoi (Anura: Hylidae) in an ombrophilous forest area of the Atlantic Rainforest Biome, Brazil. Zoologia 34: 1-8. https://doi.org/10.3897/zoologia.34.e20477
Figures 2-3 - Results of Multiple Regression Analysis between (2) the accumulated rainfall of the sampling period in each month (June 2015 – July 2016) and (3) temperature with corresponding density of active individuals of Aparasphenodon brunoi in the Vale Natural Reserve, municipality of Linhares, Espírito Santo, Southeastern Brazil (Density = -15.156+0.115*Rainfall+0.636*Temperature).
Figure 1 from: Gomez-Mesa L, Pereira-Ribeiro J, Colombo Ferreguetti Á, Almeida-Santos M, Bergallo HG, Rocha CFD (2017) Ecological and reproductive aspects of Aparasphenodon brunoi (Anura: Hylidae) in an ombrophilous forest area of the Atlantic Rainforest Biome, Brazil. Zoologia 34: 1-8. https://doi.org/10.3897/zoologia.34.e20477
Figure 1 - Location of the Vale Natural Reserve, north of Espírito Santo, southeastern Brazil, showing the vegetation types present in the reserve and the location of the plots (black squares) and collection sites of individuals for diet analysis and reproductive aspects (stars).
FIGURE 4 in A new species of Phyllodytes (Anura: Hylidae) from the Atlantic Rainforest of southern Bahia, Brazil
FIGURE 4. Photos of Phyllodytes amadoi SP. nov., paratype MZUESC 14995 in life. Photos: Mirco Solé.
FIGURE 2 in A new species of Phyllodytes (Anura: Hylidae) from the Atlantic Rainforest of southern Bahia, Brazil
FIGURE 2. Phyllodytes amadoi SP. nov. in preservative (holotype, MZUESC 14954, SVL = 20 mm).
FIGURE 2 in Physical habitat as predictor of fish trophic structure in Brazilian Atlantic rainforest streams
FIGURE 2 | Proportion of fish species richness, biomass, and number of individuals in each trophic group for each sampling point in the Paranapanema river basin, São Paulo state, Brazil.
FIGURE 4 in Physical habitat as predictor of fish trophic structure in Brazilian Atlantic rainforest streams
FIGURE 4 | Biplot of the first two canonical functions showing how substrate composition (SC), mesohabitat variability (MH), and bank stability (BS) correlate with number of individuals of carnivores (NCar), invertivores (NInv), omnivores (NOmn), and herbivorous-detritivores (NHD).
Fig. 6 in Crepuscular and nocturnal hawkmoths (Lepidoptera: Sphingidae) from a fragment of Atlantic rainforest in the state of São Paulo, southeastern Brazil
Fig. 6. Individual-based rarefaction curves, with 95% confidence intervals, of the samplings at the Serra do Japi Biological Reserve (this study; solid line) and at the Boraceia Biological Station (Duarte et al. 2008; dashed line).
Fig. 3 in Crepuscular and nocturnal hawkmoths (Lepidoptera: Sphingidae) from a fragment of Atlantic rainforest in the state of São Paulo, southeastern Brazil
Fig. 3. Fluctuation of richness (A) and relative abundance (B) of the subfamilies during the sampling period.
Fig. 1 in Crepuscular and nocturnal hawkmoths (Lepidoptera: Sphingidae) from a fragment of Atlantic rainforest in the state of São Paulo, southeastern Brazil
Fig. 1. Location of the Serra do Japi Biological Reserve. (A) Brazil with detail showing the state of São Paulo. (B) State of São Paulo with detail of the municipality of Jundiaí. (C) Municipality of Jundiaí and the Serra do Japi Biological Reserve.
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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.