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449 results for “Atlantic rainforest”
Figure 1 in A new species of Passalus (Passalus) from Atlantic Rainforest, with a key and checklist for the Brazilian Petrejus group (Coleoptera, Passalidae)
Figure 1. Passalus (Passalus) lockerum sp. nov. holotype male: (a) dorsal habitus; (b) lateral. Scale bars = 1 mm.
Figure 6 in A new species of Passalus (Passalus) from Atlantic Rainforest, with a key and checklist for the Brazilian Petrejus group (Coleoptera, Passalidae)
Figure 6. Passalus (Passalus) lockerum sp. nov. holotype male: (a) aedeagus dorsal; (b) lateral; (c) ventral.
Figure 5 in A new species of Passalus (Passalus) from Atlantic Rainforest, with a key and checklist for the Brazilian Petrejus group (Coleoptera, Passalidae)
Figure 5. Passalus (Passalus) lockerum sp. nov. holotype male: (a) meso- and metasternum detail, lateroventral.
Figure 3 in A new species of Passalus (Passalus) from Atlantic Rainforest, with a key and checklist for the Brazilian Petrejus group (Coleoptera, Passalidae)
Figure 3. Passalus (Passalus) lockerum sp. nov. holotype male: (a) frontal area and central tubercle detail, frontal view; (b) head and pronotum detail, lateral.
Figure 2 in A new species of Passalus (Passalus) from Atlantic Rainforest, with a key and checklist for the Brazilian Petrejus group (Coleoptera, Passalidae)
Figure 2. Passalus (Passalus) lockerum sp. nov. holotype male: (a) labrum, head and pronotum detail, dorsal; (b) frontal area and central tubercle detail, dorsal.
Figure 2 in Helminths of some tree frogs of the families Hylidae and Phyllomedusidae in an Atlantic rainforest fragment, Brazil
Figure 2. Rarefaction curve of the component community richness of tree frogs from an Atlantic Rainforest fragment, north-east Brazil, June 2015 to February 2016.
Figure 1 in Helminths of some tree frogs of the families Hylidae and Phyllomedusidae in an Atlantic rainforest fragment, Brazil
Figure 1. Location of the Estação Ecológica do Tapacurá, an Atlantic Rainforest fragment located in the state of Pernambuco within the Brazilian Atlantic Rainforest domain, north-east Brazil.
Figure 5 in Spatial and temporal organization in three syntopic species of the Scinax ruber group (Anura: Hylidae) in the Atlantic rainforest, southeastern Brazil
Figure 5. Distribution of the daily temporal activity in Scinax cuspidatus, Scinax aff. hayii and Scinax aff. x-signatus, showing the start time (square) and end time (triangle) of calling activity, chorus duration (diamond) and activity peak (circle) at the study area, ReBio União, Rio de Janeiro, Brazil. The parameters shown are the mean ± SD (n = 5).
Figure 4 in Spatial and temporal organization in three syntopic species of the Scinax ruber group (Anura: Hylidae) in the Atlantic rainforest, southeastern Brazil
Figure 4. Breeding season of Scinax cuspidatus (filled circles), Scinax aff. hayii (filled triangles), and Scinax aff. x-signatus (open squares) from September 2002 to July 2004, according to the number of nights that each species formed a chorus in the study area, ReBio União, Rio de Janeiro, Brazil.
Figure 6 in Spatial and temporal organization in three syntopic species of the Scinax ruber group (Anura: Hylidae) in the Atlantic rainforest, southeastern Brazil
Figure 6. Cluster analysis of the microhabitats of the pond, based on the parameters canopy cover, vegetation structure and depth of the water column at the edge and the centre of each microhabitat. UPGMA method and Euclidean distance. Vertical axis: microhabitats; horizontal axis: linkage distance. Rebio União, Rio de Janeiro, Brazil.
Figure 7 in Spatial and temporal organization in three syntopic species of the Scinax ruber group (Anura: Hylidae) in the Atlantic rainforest, southeastern Brazil
Figure 7. Distance among conspecific and heterospecific calling sites of (A) Scinax cuspidatus, (B) Scinax aff. hayii and (C) Scinax aff. x-signatus. The left y-axis corresponds to the number of observations for conspecifics, the right y-axis for heterospecifics. ReBio União, Rio de Janeiro, Brazil.
Figure 2 in Spatial and temporal organization in three syntopic species of the Scinax ruber group (Anura: Hylidae) in the Atlantic rainforest, southeastern Brazil
Figure 2. Oscillogram (left) and sonogram (right) of the advertisement call of (A, B) Scinax cuspidatus, (C, D) Scinax aff. hayii, and (E, F) Scinax aff. x-signatus. ReBio União, Rio de Janeiro, Brazil.
Figure 3 in Spatial and temporal organization in three syntopic species of the Scinax ruber group (Anura: Hylidae) in the Atlantic rainforest, southeastern Brazil
Figure 3. Scatterplot of the discriminant functions of acoustic parameters of three syntopic species of Scinax. ReBio União, Rio de Janeiro, Brazil.
Figure 1 in Spatial and temporal organization in three syntopic species of the Scinax ruber group (Anura: Hylidae) in the Atlantic rainforest, southeastern Brazil
Figure 1. Mean air temperature (square), mean pond depth (grey area), and monthly precipitation (triangle) at the study site, ReBio União, Rio de Janeiro, Brazil from September 2002 to June 2004.
Figure 1 in Environmental humidity and leaf-litter depth affecting ecological parameters of a leaf-litter frog community in an Atlantic Rainforest area
Figure 1. Map showing the location of the study area of Serra das Torres mountains (the star), municipality of Atílio Vivacqua, State of Espírito Santo, south-eastern Brazil.
Figure 3 in Environmental humidity and leaf-litter depth affecting ecological parameters of a leaf-litter frog community in an Atlantic Rainforest area
Figure 3. Relationship between body mass and abundance of leaf-litter frogs sampled in the Atlantic Rainforest area of Serra das Torres, municipality of Atilio Vivacqua, State of Espírito Santo, south-eastern Brazil.
Figure 2 in Environmental humidity and leaf-litter depth affecting ecological parameters of a leaf-litter frog community in an Atlantic Rainforest area
Figure 2. Rarefaction curve (solid line) and corresponding 95% limits of confidence (dashed lines), using the Sobs Mao Tau estimator (n = 330 plots sampled; predicted richness = 12) (Colwelll 2005), in terms of the frog species in the plots sampled in the Atlantic Rainforest area of Serra das Torres, municipality of Atílio Vivacqua, State of Espírito Santo, south-eastern Brazil.
Figure 3 in Population dynamics of tadpoles of Crossodactylus gaudichaudii (Anura: Hylodidae) in the Atlantic Rainforest of Ilha Grande, southeastern Brazil
Figure 3. Density (individuals/meter of stream) of Crossodactylus gaudichaudii tadpoles sampled in three Atlantic Rainforest streams of Ilha Grande, municipality of Angra dos Reis, Rio de Janeiro, between May 2002 and April 2005 (continuous line) and rainfall values (mm) for Angra dos Reis, between May 2002 and April 2005 (dashed line).
Figure 2 in Population dynamics of tadpoles of Crossodactylus gaudichaudii (Anura: Hylodidae) in the Atlantic Rainforest of Ilha Grande, southeastern Brazil
Figure 2. Body length (mm) of Crossodactylus gaudichaudii tadpoles (n = 667) in three Atlantic Rainforest streams of Ilha Grande, municipality of Angra dos Reis, Rio de Janeiro between May 2002 and April 2005. – Class I (up to stage 25); – Class II (stages 26–41); – Class III (stages 42–46).
Figure 1 in Population dynamics of tadpoles of Crossodactylus gaudichaudii (Anura: Hylodidae) in the Atlantic Rainforest of Ilha Grande, southeastern Brazil
Figure 1. Map showing location of study area at Ilha Grande (municipality of Angra dos Reis), Rio de Janeiro state, Brazil.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.