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FIGURE 2 in Bats in settlements from an atlantic forest area in northeastern Brazil
FIGURE 2: The Sorensen/Bray-Curtis Similarity test Dendrogram for Biological Reserve areas and the villages. Where JPER, IMB, CAI, correspond to the each of the villages, and MATA and TAB correspond to Guaribas Biological Reserve (Atlantic forest and Tabuleiro, respectively).
Figure 2 in Amiid remains (Actinopterygii, Amiiformes) from the Early Cretaceous Marizal Formation (Tucano Basin) of Northeastern Brazil
Figure 2. – Scale of the Amiidae-Vidalaminae, UERJ-PMB 541, from the Amargosa Bed of the Marizal Formation (Tucano Basin), Northeastern Brazil. A: Nearly complete scale of the predorsal midline region of the fish body showing its external side with the four fields and the initium. B: Detail of the anterior field showing the radial ridges and four annuli (arrow-heads) that separate the areas of fast growth; the inset represents a detail of the anterior field and shows the thin striation of the parallel crests. C: Detail of the scale initium and the posterior field; the asterisk points the initial centre of the scale. AF: anterior field; fg: areas of fast growth; LF: lateral field; PF: posterior field. Scales bars: A = 10 mm; B = 500 µm; C = 2 mm.
FIGURE 5 in Genetic differentiation through dispersal and isolation in two freshwater fish species from coastal basins of Northeastern Brazil
FIGURE 5 | Time-calibrated phylogeny for samples of Prochilodus lacustris from Maranhão coastal basins and Tocantins basin. Time is in thousands of years. The color bars in the tree correspond to the populations presented in Fig. 3A.
FIGURE 4 in Genetic differentiation through dispersal and isolation in two freshwater fish species from coastal basins of Northeastern Brazil
FIGURE 4 | Time-calibrated phylogeny for samples of Schizodon dissimilis from coastal basins of northeastern Brazil. Time is in thousands of years. The color bars in the tree correspond to the populations presented in Fig. 2A.
FIGURE 3 in Genetic differentiation through dispersal and isolation in two freshwater fish species from coastal basins of Northeastern Brazil
FIGURE 3 | Distribution and haplotype structure of Prochilodus lacustris. A. Paleodrainage reconstruction of coastal basins from northeastern Brazil and geographic distribution of groups defined by SAMOVA. B. Estimate of the probable groups of populations produced by the BAPS. C. Haplotypes networks of mtDNA control region. All analysis recovered a total of six groups in this area, but the SAMOVA do not identify the same groups that other analysis. The colors used to highlight areas in the network correspond to populations in map.
Figure 1 in First record of Cosmocerca podicipinus (Nematoda: Cosmocercidae) parasitizing Leptodeira annulata (Serpentes: Dipsadidae) in northeastern Brazil
Figure 1. Cosmocerca podicipinus Baker and Vaucher, 1984 parasite of Leptodeira annulata (Linnaeus, 1758) from the Sete Cidades National Park, municipality of Piripiri, state of Piauí, Brazil. A - anterior region of the female showing esophagus (ES), bulb (B), lateral view. B - posterior region of the female with the anus (AN) opening in subventral view. C - Female with detail of the vulva (VU) opening, lateral view. D - male in toto, lateral view. E - Tail of the male showing spicules (white arrows), gubernaculum (black arrow), lateral view. F - detail of the male's caudal papillae, showing five pairs of plectanas (white arrows) precloacal and three pairs of rosettes papillae "barrel" shaped (black arrows), lateral view.
Figure 3 in Population attributes of Littoraria angulifera (Gastropoda: Littorinidae) in mangroves in Bahia State, northeastern Brazil
Figure 3. Total specimens of Littoraria angulifera collected monthly throughout 2018 on the grass Spartina alterniflora in a mangrove (M1) in Ilhéus, Bahia State, northeastern Brazil, distributed by size classes (shell height), being: C1 (less than 2.99 mm), C2 (3-5.9 mm), C3 (6-8.99 mm), C4 (9-11.99 mm), C5 (12-14.99 mm), C6 (15-17.99 mm) and C7 (18-20.99 mm); A-L: January to December.
Figure 1 in Population attributes of Littoraria angulifera (Gastropoda: Littorinidae) in mangroves in Bahia State, northeastern Brazil
Figure 1. Map of northeastern Brazil showing the location of the Bahia State and the sampling stations (M1 and M2).
Figure 2 in Population attributes of Littoraria angulifera (Gastropoda: Littorinidae) in mangroves in Bahia State, northeastern Brazil
Figure 2. Monthly absolute frequency of males and females of Littoraria angulifera collected throughout 2018 on trunks of Rhizophora mangle in two localities (A = M1; B = M2) in the coast of the Bahia State, northeastern Brazil.
Figure 2 in Epidemiological aspects of scorpionic accidents in a municipality in Brazil's northeastern
Figure 2. Analysis of scorpionic accidents between the years 2008 to 2018 in the neighborhoods of Arapiraca-AL.
Figure 1 in Epidemiological aspects of scorpionic accidents in a municipality in Brazil's northeastern
Figure 1. Percentage of households with inadequate sanitation in neighborhoods in the urban area of Arapiraca-AL, from 2008 to 2018.
Fig. 2 in Diversity of forensically-important dipteran species in different environments in northeastern Brazil, with notes on the attractiveness of animal baits
Fig. 2. Similarity analysis (Cluster's dendrogram) of the diversity of necrophagous Diptera species in 4 types of environment in northeastern Brazil.
Fig. 1 in Ticks, rickettsial and erlichial infection in small mammals from Atlantic forest remnants in northeastern Brazil
Fig. 1. Bayesian analysis tree inferred from dsb gene partial sequences of Ehrlichia spp. Numbers at nodes are support values derived from posterior probability. The sequence obtained in this study (Ehrlichia sp. strain Natal) is in bold. Numbers in brackets are GenBank accession numbers. Scale bar: units of expected substitutions per site.
FIG. 3 in New genus and species of Seirini (Collembola, Entomobryidae) from Caatinga Biome, Northeastern Brazil
FIG. 3. — Males of Tyrannoseira raptora (Zeppelini & Bellini, 2006) n. comb. fighting: A, males grabbing each other to strike with legs, antennae and furca; B, male grabbing an antenna of another male. Scale bars: A, B, 100 μm.
FIG. 4. — Tyrannoseira sex n in New genus and species of Seirini (Collembola, Entomobryidae) from Caatinga Biome, Northeastern Brazil
FIG. 4. — Tyrannoseira sex n. sp.: A, habitus; B, apical bulb of the 4th antennal segment; C, right eye patch; D, labial papillae; E, setae of the labial triangle; F, anterior femur of males; G, anterior tibiotarsus of the males; H, trochanteral organ; I, second foot complex; J, distal dens with mucro. Scale bars: A, 100 μm; B-J, 10 μm.
FIG. 2 in New genus and species of Seirini (Collembola, Entomobryidae) from Caatinga Biome, Northeastern Brazil
FIG. 2. — Femur and tibiotarsus of the first pair of legs of males of: A, Tyrannoseira raptora (Zeppelini & Bellini, 2006) n. comb.; B, T. bicolorcornuta (Bellini, Pais & Zeppelini, 2009) n. comb. Scale bars: A, B, 10 μm.
FIG. 1 in New genus and species of Seirini (Collembola, Entomobryidae) from Caatinga Biome, Northeastern Brazil
FIG. 1. — Dorsal macrochaetae distribution of: A, Tyrannoseira raptora (Zeppelini & Bellini, 2006) n. comb.; B, T. bicolorcornuta (Bellini, Pais & Zeppelini, 2009) n. comb.
Figure 7 in Growth and reproductive biology of the amphidromous shrimp Palaemon pandaliformis (Decapoda: Caridea) in a Neotropical river from northeastern Brazil
Figure 7. Modal dispersion and selected cohorts for males and females of Palaemon pandaliformis collected from September 2009 and August 2010 in Rio Salsa, Canavieiras, Bahia, Brazil.
Figure 6 in Growth and reproductive biology of the amphidromous shrimp Palaemon pandaliformis (Decapoda: Caridea) in a Neotropical river from northeastern Brazil
Figure 6. Monthly length frequency distribution of males and females of Palaemon pandaliformis collected from September 2009 and August 2010 in Rio Salsa, Canavieiras, Bahia, Brazil. Dotted line at 4.53 mm was drawn for illustrative purposes, indicating recruitment of small individuals into the population, according to PASCHOAL et al. (2013b).
Figures 3-4 in Blood metabolites as predictors to evaluate the body condition of Neopelma pallescens (Passeriformes: Pipridae) in northeastern Brazil
Figures 3-4. Spearman's correlation between Body Condition Index (BCI) and glucose concentration for breeding (3) (N = 28) and non-breeding (4) (N = 46) individuals of N. pallescens in Reserva Biológica de Guaribas, PB. The breeding period of N. pallescens started at the end of July (P1) and climaxed in January (P3). It occurred throughout Figure 2. Monthly samples sizes of captured individuals of N. palles- the rainy and dry seasons. Glucose concentrations showed cens in Reserva Biológica de Guaribas, PB. Recaptured individuals significant variation during the developmental phases of brood are not included. patches with a higher concentration in P3 (Fig. 5) (ANOVA, F = 5.39, p = 0.01). Tukey's test showed significant values only The glucose concentration was negatively correlated with between P1 and P3 (Tukey's Test, P2-P1: p = 0.76, P3-P1 = 0.01, body condition (Table 1). Further analyses showed that the glu- P3-P2: p = 0.05).
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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
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