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449 results for “Atlantic rainforest”
Fig. 4 in Ontogenetic, spatial and temporal variations in the feeding ecology of Deuterodon langei Travassos, 1957 (Teleostei: Characidae) in a Neotropical stream from the Atlantic rainforest, southern Brazil
Fig. 4. MDS on the different sizes, sites and seasonal independent groups. The total length (Lt) categories compared were Juveniles (J = Lt <3 cm), Semi-adults (S = 3 8 cm). The three sites sampled along the catchment were: site 1 (P1), an upstream first order section of the basin near its spring; site 2 (P2), a second order middle section of the basin; and site 3 (P3), a downstream third order section of the basin. Seasons compared were: VER=summer (December, January and February), OUT=Autumn (March, April and May), INV=Winter (June, July andAugust) and Spring=PRI (September, October and November).
Fig. 5 in Ontogenetic, spatial and temporal variations in the feeding ecology of Deuterodon langei Travassos, 1957 (Teleostei: Characidae) in a Neotropical stream from the Atlantic rainforest, southern Brazil
Fig. 5. MDS on the different sizes, sites and seasonal groups. Total length (Lt) categories compared were Juveniles (J = Lt <3 cm), Semi-adults(S = 3 8 cm) and seasons were: VER=summer (December, January and February), OUT=Autumn (March, April and May), INV=Winter (June, July andAugust) and Spring=PRI (September, October and November).
Fig. 2 in Ontogenetic, spatial and temporal variations in the feeding ecology of Deuterodon langei Travassos, 1957 (Teleostei: Characidae) in a Neotropical stream from the Atlantic rainforest, southern Brazil
Fig. 2. Geographical location of the rio Ribeirão basin, with indication of the three sampling sites (P1, P2, and P3).
Fig. 3 in Ontogenetic, spatial and temporal variations in the feeding ecology of Deuterodon langei Travassos, 1957 (Teleostei: Characidae) in a Neotropical stream from the Atlantic rainforest, southern Brazil
Fig. 3. UPGMA cluster analysis using Morisita-Horn similarity coefficient on the different sizes, sites and seasonal groups. Total length (Lt) categories compared were Juveniles (J = Lt <3 cm), Semi-adults (S = 3 8 cm). The three sites sampled along the catchment were: site 1 (P1), an upstream first order section of the basin near its spring; site 2 (P2), a second order middle section of the basin; and site 3 (P3), a downstream third order section of the basin. The seasons are: VER=summer (December, January and February), OUT=Autumn (March, April and May), INV=Winter (June, July and August), and Spring=PRI (September, October, November). A (> 70 % similarity) = with a predominance of Autochthonous Insects, Allochthonous Insects and Non Identifiable Arthropod Parts; B (> 80 % similarity) = with a predominance of Detritus and Allochthonous and Autochthonous Insects; and C (> 80 % similarity)= with a predominance of Allochthonous plants and Detritus.
Fig. 1. Monthly rainfall for 2002 in Ontogenetic, spatial and temporal variations in the feeding ecology of Deuterodon langei Travassos, 1957 (Teleostei: Characidae) in a Neotropical stream from the Atlantic rainforest, southern Brazil
Fig. 1. Monthly rainfall for 2002 (x) and 2003 (filled triangles) in the study region, and average temperature in 2002 (filled squares) and 2003 (open squares). Source: IAPAR.
Fig. 1 in Phoracantha recurva (Coleoptera: Cerambycidae): first report in the Atlantic rainforest of Minas Gerais, Brazil
Fig. 1. Phoracantha recurva (Coleoptera: Cerambycidae) signs on Corymbia citriodora (Myrtaceae) trunk in ViÇosa, Minas Gerais State, Brazil. Corymbia citriodora trunk bored by P. recurva larvae with oviposition sites, galleries, and adult exit holes (A), and P. recurva adult collected on the C. citriodora trunk gallery (B). Oviposition sites (I), galleries (II), adult exit holes (III), P. recurva adult (IV), and excrement (V). Photo: Norivaldo dos Anjos, 7 Jul 2017.
Figs 1-4 in New species of Eclipta from the Brazilian Atlantic Rainforest (Coleoptera, Cerambycidae, Cerambycinae, Rhinotragini)
Figs 1-4. Eclipta dendensis sp. nov., holotype female, habitus: 1, dorsal; 2, ventral; 3, lateral; 4, frontal view.
FIGURE 1 in Discriminating Scleromystax barbatus (Siluriformes: Callichthyidae) populations from Atlantic Rainforest streams employing otolith shape
FIGURE 1 | Locations where Scleromystax barbatus populations were sampled in clear-water streams of the coastal Atlantic Rainforest biome. Red symbols represent the southern locations (VR, GR, DM, CU, and PE) and blue symbols indicate the southeastern locations (AR, PM, and AE).
FIGURE 4 in Discriminating Scleromystax barbatus (Siluriformes: Callichthyidae) populations from Atlantic Rainforest streams employing otolith shape
FIGURE 4 | Otolith shapes of males and females of Scleromystax barbatus from southern and southeastern regions in the Atlantic Rainforest biome employing a Canonical Analysis of Principal Coordinates (CAP) applied to Fourier (above) and Wavelet (below) coefficients. Bold letters represent the mean canonical coordinates surrounding the standard error for each population. Lines represent the groups: SeFe (Females from the southeastern region), SeMa (Males from the southeastern region), SFe (Females from the southern region), SMa (Males from the southeastern region).
FIGURE 3 in Discriminating Scleromystax barbatus (Siluriformes: Callichthyidae) populations from Atlantic Rainforest streams employing otolith shape
FIGURE 3 | Mean otolith shape based on the Fourier (above) and Wavelet (below) reconstructions for males and females of Scleromystax barbatus from southern and southeastern regions in the Atlantic Rainforest biome. Lines represent the groups: SeFe (Females from the southeastern region), SeMa (Males from the southeastern region), SFe (Females from the southern region), SMa (Males from the southeastern region).
FIGURE 2 in Discriminating Scleromystax barbatus (Siluriformes: Callichthyidae) populations from Atlantic Rainforest streams employing otolith shape
FIGURE 2 | Ventral view of the left lapillus otoliths of Scleromystax barbatus from streams in the southern (VR, GR, DM, CU, and PE) and southeastern (AR, PM, and AE) regions of the Atlantic Rainforest biome. A (Anterior), M (Medial).
Linked collectors and determiners for: Four new species of Luciuranus fireflies from the Brazilian Atlantic Rainforest (Coleoptera: Lampyridae).
Natural history specimen data linked to collectors and determiners held within, "Four new species of Luciuranus fireflies from the Brazilian Atlantic Rainforest (Coleoptera: Lampyridae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/762fe4d7-c776-4f9a-97d9-fc85969f57f0">https://bionomia.net/dataset/762fe4d7-c776-4f9a-97d9-fc85969f57f0</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/762fe4d7-c776-4f9a-97d9-fc85969f57f0">https://gbif.org/dataset/762fe4d7-c776-4f9a-97d9-fc85969f57f0</a>. Formatted as a Frictionless Data package.
Figure 5 in Among the world 's smallest vertebrates: a new miniaturized flea-toad (Brachycephalidae) from the Atlantic rainforest
Figure 5 Skeletal anatomy of Brachycephalus dacnis (ZUEC-AMP 24978; undetermined sex) based on CT-scans. (A) The entire skeleton, with insets of (B) the skull (in dorsal, ventral, and right lateral views), (C) right hand and (D) left foot (both in dorsal view), (E) vertebral column (in dorsal view), (F) pectoral girdle (in ventral view), and (G) pelvic girdle (in right lateral view). Abbreviations: c, carpus; cl, clavicle; cor, coracoid; dt, distal tarsals; ex, exoccipital; fp, frontoparietal; il, ilium; isc, ischium; m, maxilla; mdI, manual digit I; mdV, manual digit V; min, mineralized cartilage; n, nasal; op, operculum; pd I, pedal digit I; pd V, pedal digit V; pm, premaxilla; pr, prootic; ps, parasphenoid; pt, pterygoid; pub, pubis; qj, quadratojugal; sac, sacrum; sc, scapula; ses, sesamoid; sm, septomaxilla; sp, sphenethmoid; sq, squamosal; ur, urostyle; v, vomer. Full-size DOI: 10.7717/peerj.18265/fig-5
Figure 7 in Among the world 's smallest vertebrates: a new miniaturized flea-toad (Brachycephalidae) from the Atlantic rainforest
Figure 7 Selected skulls of other Brachycephalus species. Cranial elements labeled are discussed in comparisons of B. dacnis to other species. Top row is the leptodactyliform "flea toads", including B. hermogenesi (sister species of B. dacnis), B. clarissae, B. sulfuratus, and B. didactylus. Bottom row contains representatives of the three named species groups: pernix group (B. albolineatus, B. pernix), vertebralis group (B. vertebralis), and ephippium group (B. ephippium). Museum catalog numbers are listed below each species name. Abbreviations: fp, frontoparietal; n, nasal; ps, parasphenoid; pt, pterygoid; qj, quadratojugal; sp, sphenethmoid; sq, squamosal; v, vomer. Full-size DOI: 10.7717/peerj.18265/fig-7
Figure 1 in Among the world 's smallest vertebrates: a new miniaturized flea-toad (Brachycephalidae) from the Atlantic rainforest
Figure 1 Brachycephalusdacnis holotype (ZUEC-AMP 24982) adult male, SVL = 7.55 mm. (A) Dorsal and (B) ventral views. Full-size DOI: 10.7717/peerj.18265/fig-1
Figure 3 in Among the world 's smallest vertebrates: a new miniaturized flea-toad (Brachycephalidae) from the Atlantic rainforest
Figure 3 Brachycephalus dacnis paratype individuals found at the Projeto Dacnis private reserve, municipality of Ubatuba, state of São Paulo, Brazil. (A) ZUEC-AMP 25272; (B) ZUEC-AMP 25274; (C and D) ZUEC-AMP 25275 displaying mouth-gaping behavior and the same individual on top of one herpetologist's fingertip. Full-size DOI: 10.7717/peerj.18265/fig-3
Figure 6 in Among the world 's smallest vertebrates: a new miniaturized flea-toad (Brachycephalidae) from the Atlantic rainforest
Figure 6 Geographicdistribution, advertisementcallsandphylogeny. (A) Typelocalitiesof Brachycephalusdacnis (redstar) and B. hermogenesi (black star), and additional distribution records of B. dacnis (red triangles, based on call recordings published in Bornschein et al., 2021). This map was created using the free and open-source software QGIS, utilizing publicly available base data sources. (B) Brachycephalus dacnis holotype's advertisement call (FNJV 51341), recorded at Projeto Dacnis private reserve (type locality), Ubatuba, São Paulo (left) and B. hermogenesi topotype's advertisement call (FNJV 51343), recorded at Picinguaba (type locality), Ubatuba, São Paulo (right). (C) Schematic representation of the Bayesian phylogenetic inference of Brachycephalus based on the mitochondrially encoded 16S rDNA fragment. Black dots indicate fully supported clades (posterior probability, PP => 99). Whitedotsindicate PP> 0.95. Nodesupportsbelowpp = 0.95 arenot shown. Completetreeinthesupplement (Fig. S1). Full-size DOI: 10.7717/peerj.18265/fig-6
Fig. 1 in Feeding ecology of Rivulus luelingi (Aplocheiloidei: Rivulidae) in a Coastal Atlantic Rainforest stream, southern Brazil
Fig. 1. Location of the study site in Guaratuba Munipality (black square), Paraná State coast (southern Brazil).
Fig. 5 in Temporal and ontogenetic variations in feeding habits of Hollandichthys multifasciatus (Teleostei: Characidae) in coastal Atlantic rainforest streams, southern Brazil
Fig. 5. Proportion of autochthonous and allochthonous food items in the diet of Hollandichthys multifasciatus according to the method proposed by Costello (1990).
Fig. 3 in Temporal and ontogenetic variations in feeding habits of Hollandichthys multifasciatus (Teleostei: Characidae) in coastal Atlantic rainforest streams, southern Brazil
Fig. 3. Monthly distribution of the environmental factors measured pH (a), water temperature (b) and water current (c) in the streams investigated.
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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.