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533 results for “Brazilian coast”

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Figure 2 in Morphological anomalies in polychaetes: Perinereis species (Polychaeta: Annelida) examples from the Brazilian coast

Figure 2. Morphological anomalies in P. anderssoni: A. single antenna; B. basally fused antennae; C. completely fused antennae; D. seven tentacular cirri; E. two parapodia on the same side of chaetiger; F. five eyes; G. nine tentacular cirri; H. six tentacular cirri.

opencc-by-4.0Dec 2014View details →
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Figure 3 in Morphological anomalies in polychaetes: Perinereis species (Polychaeta: Annelida) examples from the Brazilian coast

Figure 3. Morphological anomalies in P. ponteni: A. nine tentacular cirri; B. seven tentacular cirri.

opencc-by-4.0Dec 2014View details →
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FIGURE 6 in The deep sea teleost fish fauna of the Brazilian North Coast

FIGURE 6 | Species of the order Lophiiformes, family Lophiidae, A. Sladenia shaefersi, photograph by PRODEMERSAL, family Chaunacidae, B. Chaunax suttkusi, photograph by Revizee Score-North, and family Ogcocephalidae, C. Dibranchus atlanticus, photograph by Revizee Score-North.

opencc-by-4.0Oct 2020View details →
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FIGURE 1 in The deep sea teleost fish fauna of the Brazilian North Coast

FIGURE 1 | Brazilian North coast, shaded in grey, with The Great Amazon Reef System, as defined by Moura et al. (2016), shaded in red and collection locations shaded in black (modified from resources and species with potential for exploitation on the continental shelf and slope (Lucena, Asano-Filho, 2006). A. collection locations of Program REVIZEE Score-North, B. collection locations of Program PRODEMERSAL, and C. collection locations of Program PROTUNA.

opencc-by-4.0Oct 2020View details →
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FIGURE 4 in The deep sea teleost fish fauna of the Brazilian North Coast

FIGURE 4 | Species of the order Gadiformes, family Moridae, A. Physiculus kaupi, photograph by Revizee Score-North, order Trachichthyiformes, family Trachichthyidae, B. Gephyroberyx darwinii, photograph by PRODEMERSAL, order Pleuronectiformes, family Bothidae, C. Chascanopsetta lugubris, photograph by Revizee Score-North, order Callionymiformes, family Callionymidae, D. Synchiropus agassizii, photograph by Revizee Score-North, order Scombriformes, family Gempylidae E. Gempylus serpens, photograph by PROTUNA, F. Lepidocybium flavobrunneum, photograph by PROTUNA, G. Neoepinnula americana, photograph by PRODEMERSAL, H. Ruvettus pretiosus, photograph by PRODEMERSAL, family Ariommatidae, I. Ariomma bondi, photograph by Revizee Score-North, J. Ariomma melana, photograph by PRODEMERSAL, order Perciformes, family Epigonidae, K. Epigonus pandionis, photograph by CEPNOR, and family Serranidae, L. Anthias asperilinguis, photograph by PRODEMERSAL, M. Anthias nicholsi, photograph by PRODEMERSAL.

opencc-by-4.0Oct 2020View details →
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FIGURE 5 in The deep sea teleost fish fauna of the Brazilian North Coast

FIGURE 5 | Species of the order Perciformes, family Bramidae, A. Brama brama, photograph by PRODEMERSAL, family Priacanthidae, B. Cookeolus japonicus, photograph by PRODEMERSAL, family Lutjanidae, C. Etelis oculatus, photograph by PRODEMERSAL, order Scorpaeniformes, family Scorpaenidae, D. Pontinus rathbuni, photograph by Revizee Score-North, E. Setarches guentheri, photograph by PRODEMERSAL, family Triglidae, F. Bellator brachychir, photograph by Revizee Score-North, G. Prionotus stearnsi, photograph by Revizee Score-North, family Peristediidae, H. Peristedion sp., photograph by Revizee Score-North, order Caproiformes, family Caproidae, I. Antigonia capros, photograph by PRODEMERSAL, J. Antigonia combatia, photograph by PRODEMERSAL, and order Lophiiformes, family Lophiidae, K. Lophius gastrophysus, photograph by PRODEMERSAL.

opencc-by-4.0Oct 2020View details →
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Fig. 3 in Evaluation of the stomach contents of Eriphia gonagra from a rocky shore in the southeastern Brazilian coast

Fig. 3. Percentage of itens found in the stomachs of Eriphia gonagra (Fabricius, 1781) captured in the rocky shores (RO) and sand reefs (SR) of Praia Grande, Ubatuba (São Paulo, Brazil). Other animals on RO (0.3%) and SR (0.2%), as well as the presence of nylon threads (RO = 0.05%; SR = 0.06%) are not visible in the figure.

opencc-by-4.0Jun 2020View details →
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Fig. 6 in Evaluation of the stomach contents of Eriphia gonagra from a rocky shore in the southeastern Brazilian coast

Fig. 6. Frequency of the composition of the main items of the Eriphia gonagra (Fabricius, 1781) diet, according to size classes.

opencc-by-4.0Jun 2020View details →
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Fig. 2 in Evaluation of the stomach contents of Eriphia gonagra from a rocky shore in the southeastern Brazilian coast

Fig. 2. Percentage of the main food items found in the stomachs of males, females and total population of Eriphia gonagra (Fabricius, 1781) captured on the rocky shore of Praia Grande beach, Ubatuba, São Paulo, Brazil.

opencc-by-4.0Jun 2020View details →
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Fig. 5 in Evaluation of the stomach contents of Eriphia gonagra from a rocky shore in the southeastern Brazilian coast

Fig. 5. Correspondence Analysis (CA) of frequency of the most relevant food item in the stomachs of males and females of Eriphia gonagra (Fabricius, 1781) at different sampling points of Praia Grande beach, Ubatuba, São Paulo, Brazil.

opencc-by-4.0Jun 2020View details →
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Fig. 1 in Evaluation of the stomach contents of Eriphia gonagra from a rocky shore in the southeastern Brazilian coast

Fig. 1. Map of Ubatuba Bay with the sampling area between Praia Grande and TenÓrio beaches, state of São Paulo, Brazil.

opencc-by-4.0Jun 2020View details →
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Fig. 4 in Evaluation of the stomach contents of Eriphia gonagra from a rocky shore in the southeastern Brazilian coast

Fig. 4. Percentage of itens found in the stomachs of Eriphia gonagra (Fabricius, 1781) captured over the seasons in the rocky shores (RO) and sand reefs (SR) of Praia Grande, Ubatuba (São Paulo, Brazil).

opencc-by-4.0Jun 2020View details →
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Fig. 3-8 in A closer look at Batillipes dicrocercus and new records of Batillipes potiguarensis (Tardigrada: Arthrotardigrada) from the Brazilian coast with comments on intra- and interspecific variability

Fig. 3-8. Batillipes potiguarensis Santos, Rocha, Gomes Jr & Fontoura, 2017: 3, detail of a bifurcated caudal appendage; 4, posterior portion of the body, showing an asymmetric caudal appendage with one short spike only (arrowhead); 5, posterior portion of the body showing an asymmetric caudal appendage with one short spine only (white arrowhead). The black arrowhead shows the blunt lateral projection between legs III–IV; 6, caudal appendage without spines. The sense organ on leg IV is visible (arrowhead); 7, dorsal cuticle with visible folds and punctation not uniformlY distributed; 8, detail of the first leg showing the oblique tarsus and spatula-like toe discs. Scale bars: 10 µm.

opencc-by-4.0Dec 2018View details →
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Figs 1,2 in A closer look at Batillipes dicrocercus and new records of Batillipes potiguarensis (Tardigrada: Arthrotardigrada) from the Brazilian coast with comments on intra- and interspecific variability

Figs 1,2. Batillipes potiguarensis Santos, Rocha, Gomes Jr & Fontoura, 2017: 1, specimen from our samples with a bifurcated caudal appendage. The arrowhead shows the well-developed secondarY clava; 2, holotYpe with a rounded caudal protrusion. Scale bars: 50 µm.

opencc-by-4.0Dec 2018View details →
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Fig. 9-11. Batillipes dicrocercus Pollock, 1970 in A closer look at Batillipes dicrocercus and new records of Batillipes potiguarensis (Tardigrada: Arthrotardigrada) from the Brazilian coast with comments on intra- and interspecific variability

Fig. 9-11. Batillipes dicrocercus Pollock, 1970: 9, paratype. Conical body projections between legs III–IV (black arrowhead) and sense organ on leg IV (white arrowhead) are visible; 10, anterior region of a specimen showing the head and cephalic appendages. 11, posterior region of the body showing long sense organ on leg IV (asterisk), conical body projections between legs III–IV (black arrowhead) and lateral processes on legs IV (white arrowhead). Scale bars: 10 µm.

opencc-by-4.0Dec 2018View details →
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FIGURE 3 in Molecular identification of Brachygenys and Haemulon species (Perciformes: Haemulidae) from the Brazilian coast

FIGURE 3 | Haplotype networks of the three Haemulon species in which multiple MOTUs were identified. The dashes represent mutational steps. The size of the circle representing each haplotype is proportional to the number of individuals with that haplotype. The black dots represent missing haplotypes. A. H. steindachneri = Haemulon steindachneri (eastern Pacific); H. atlanticus B = specimens from Colombia, Guatemala, and Venezuela; H. atlanticus A = specimens from Brazil and Colombia; B. H. aurolineatum A = specimens from Bermuda; H. aurolineatum B = specimens from Bermuda; H. aurolineatum C = specimens from the United States; H. aurolineatum D = specimens from Belize, Brazil, Colombia, Jamaica, Venezuela, and the United States; and C. H. plumieri C = specimens from Brazil and Puerto Rico; H. plumieri B = specimens from the United States; H. plumieri A = specimens from the Bahamas, Belize, Haiti, Mexico, Puerto Rico, and the United States.

opencc-by-4.0Jul 2021View details →
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FIGURE 1 in Molecular identification of Brachygenys and Haemulon species (Perciformes: Haemulidae) from the Brazilian coast

FIGURE 1 | Species of the genera Haemulon and Brachygenys collected off the coast of Brazil during this study. A. Haemulon aurolineatum (16.2 cm of Total Length, TL); B. H. melanurum (18.3 cm of TL); C. H. parra (21.7 cm of TL); D. H. squamipinna (15.9 cm of TL); E. H. plumieri (23.5 cm of TL); F. H. atlanticus (16.1 cm of TL); G. Brachygenys chrysargyrea (16.0 cm of TL).

opencc-by-4.0Jul 2021View details →
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FIGURE 2 in Molecular identification of Brachygenys and Haemulon species (Perciformes: Haemulidae) from the Brazilian coast

FIGURE 2 | The Maximum Likelihood tree of the Haemulon and Brachygenys specimens, based on the sequences of the mitochondrial cytochrome c oxidase subunit I gene under the TRN+G model. The numbers at each branch indicate the bootstrap values (1000 pseudoreplicates) and those between parentheses are the number of specimens analyzed. The species delimitation methods were ABGD, PTP, and GMYC (see Material and Methods section).

opencc-by-4.0Jul 2021View details →
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FIGURE 4 in Environmental influences on the ichthyoplankton in hypersaline estuaries located in a Semiarid Northeastern Brazilian coast

FIGURE 4 | A. Percentage of larval stages of ichthyoplankton in each of zones of Tubarão River estuary (Z1: Lower, Z2: Middle, Z3: Upper) in their periods of dry (TD) and rainy (TR); B. Percentage of ichthyoplankton larval stages in each of Casqueira River estuary zones (Z1: Lower, Z2: Middle, Z3: Upper) during their dry (CD) and rainy (CR) periods.

opencc-by-4.0Mar 2022View details →
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FIGURE 6 in Environmental influences on the ichthyoplankton in hypersaline estuaries located in a Semiarid Northeastern Brazilian coast

FIGURE 6 | Percentage contribution of species in Casqueira River estuary (Z1: Lower, Z2: Middle, Z3: Upper) zones in their periods of dry (CD) and rainy (CR). Yol = Vitelline larval; Pre = Preflexion; Fle = Flexion; Pos = Postflexion.

opencc-by-4.0Mar 2022View details →

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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.

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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.

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Last verified 2026-04-29Open record