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zenodo28/100

Figures 1-10 from: Gorayeb I (2014) Tabanidae (Diptera) of Amazônia XXI. Descriptions of Elephantotus gen. n. and E. tracuateuensis sp. n. (Diachlorini) from the Brazilian coast. ZooKeys 395: 1-9. https://doi.org/10.3897/zookeys.395.7056

Figures 1-10 - Female Elephantotus tracuateuensis sp. n.: 1 Body in dorsal view 2 Body in lateral view 3 Palpus, labella and stilets 4 Antenna 5 Head in lateral view 6 Frons 7 Tergites 9, 10 and cerci 8 Sternite 8 and gonapophyses 9 Spermatheca 10 Genital furca.

opencc-by-4.0Mar 2014View details →
zenodo28/100

Figure 2 from: Prata J, Christoffersen ML (2016) A new species of Pentamera Ayres, 1852 from the Brazilian coast (Holothuroidea, Dendrochirotida, Phyllophoridae). ZooKeys 634: 1-14. https://doi.org/10.3897/zookeys.634.9769

Figure 2 - Pentamera paraibanensis sp. n. A Rosettes from tentacles B Rods from tentacles C Rosettes from introvert D Tables from dorsal body wall E Support plates from dorsal tube feet F Base of support tables from dorsal tube feet G Support tables from dorsal tube feet H Tables from ventral body wall, the more elongated table was found near the anus I Large plate of tube feet.

opencc-by-4.0Nov 2016View details →
zenodo28/100

Figure 1 from: Prata J, Christoffersen ML (2016) A new species of Pentamera Ayres, 1852 from the Brazilian coast (Holothuroidea, Dendrochirotida, Phyllophoridae). ZooKeys 634: 1-14. https://doi.org/10.3897/zookeys.634.9769

Figure 1 - Pentamera paraibanensis sp. n. External view of holotype, A Dorsal B Ventral C Lateral D External view of specimen UFPB.ECH-2048, E External view of specimen UFPB.ECH-2058 F External view of specimen UFPB.ECH-2089. G Calcareous ring H Rosette of tentacles I Table from body wall J Support tables from tube feet.

opencc-by-4.0Nov 2016View details →
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Figure 3 from: Prata J, Christoffersen ML (2016) A new species of Pentamera Ayres, 1852 from the Brazilian coast (Holothuroidea, Dendrochirotida, Phyllophoridae). ZooKeys 634: 1-14. https://doi.org/10.3897/zookeys.634.9769

Figure 3 - Pentamera paraibanensis sp. n. A Support plates from ventral body wall B Base of support tables from ventral tube feet C Curved base of support tables from ventral tube feet D Support plate of tube feet E Support tables from ventral tube feet F Curved support tables from ventral tube feet G Large plate from body wall near the anus H Endplate from dorsal tube feet I Endplate from ventral tube feet J Anal tooth.

opencc-by-4.0Nov 2016View details →
zenodo28/100

FIG. 3 in The genera Famelica Bouchet & Warén, 1980 and Aliceia Dautzenberg & Fischer, 1897 (Conoidea Raphitomidae) collected by the MD55 expedition in the Brazilian coast with descriptions of two new species

FIG. 3. — Shells of Famelica leucospira n. sp. type specimens in SEM: A, paratype MNHN-IM-2000-38591 sta. DS05, frontal-sightly apical view; B, paratype MZSP 157441, frontal-sightly apical view; C, same, detail of protoconch; D, same, detail of surface of protoconch third whorl; E, paratype MNHN-IM-2000-38591 sta. DS05, frontal view; F, same, detail of protoconch; G, same, partial apical view; H, paratype IBUFRJ 18465, frontal-sightly apical view; I, same, profile of protoconch, showing protoconch 1 and 2, and transition with teleoconch (3); J, K, two paratypes IBUFRJ 18465, frontal view. Scale bars: A, B, E, H, 0.5 mm; C, 200 µm; D, 50 µm; F, I, 100 µm; G, 200 µm; J, K, 1 mm. H, K, courtesy Cléo Oliveira, IBUFRJ.

opencc-zeroDec 2022View details →
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Fig. 6 in New discoveries for the subfamily Phtisicinae Vassilenko, 1968 (Crustacea: Senticaudata) from the Brazilian coast

Fig. 6. World distribution of Phtisica marina Slabber, 1769 and Hemiproto wigleyi McCain, 1968.

opencc-by-4.0Jan 2020View details →
zenodo24/100

Fig. 3 in The bony fishes (Teleostei) caught by industrial trawlers off the Brazilian North coast, with insights into its conservation

Fig. 3. Species of the order Elopiformes, family Albulidae, Albula vulpes, MPEG 35222, 308 mm TL.

opencc-by-4.0Jun 2019View details →
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Figure 5 in A new species of Haminoea in Brazilian coast (Cephalaspidea, Haminoeidae) as part of H. elegans group

Figure 5. Haminoea maray, drawings of digestive system portions. (A) whole dorsal view; (B) digestive gland region, ventral view; (C) crop, opened longitudinally internal surface; (D) stomach opened longitudinally; (E) buccal mass opened longitudinally, internal view. Scales = 1 mm.

opencc-by-nc-4.0Jul 2024View details →
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Figure 1 from: Ribeiro RP, Alves PR, Almeida ZS, Ruta C (2018) A new species of Paraonis and an annotated checklist of polychaetes from mangroves of the Brazilian Amazon Coast (Annelida, Paraonidae). ZooKeys 740: 1-34. https://doi.org/10.3897/zookeys.740.14640

Figure 1 Study area. Buenos Aires and Tronco creeks in Maranhão, Brazilian Amazon Coast.

opencc-by-4.0Apr 2018View details →
zenodo24/100

TABLE 2 in Taxonomic and geographic novelties of Acarnus (Porifera: Demospongiae) from the Brazilian coast, with description of two new species

<p><b>TABLE 2.</b> Comparative table of spicule categories of <i>Acarnus hooperi</i> <b>sp. nov.</b> and <i>Acarnus nicoleae</i> van Soest <i>et al.</i>, 1991. Values are expressed in minimum&ndash; medium&ndash;maximum (&micro;m). *Spicule measurements from the original description.</p><table><tbody><tr><th></th><th><b>Styles</b></th><th><b>Tylotes</b></th><th><b>Acanthostyles</b></th><th><b>Cladotylotes (length&times;width)</b></th><th><b>Toxas (length) I.accolada; II.thin deeplycurved; III. oxhorn</b></th><th><b>Palmate Isochelae (length)</b></th><th><b>Locality and depth (m)</b></th></tr></tbody><tbody><tr><th><i>A. hooperi</i> <b>sp. nov.</b> Holotype MNRJ 3942</th><td>319&ndash; 442.8&ndash; 505/7.9&ndash; 10&ndash;13.3</td><td>266&ndash;345&ndash; 425/5.3&ndash; 6.0&ndash;7.9</td><td>66.5&ndash;97.7&ndash;109/ 2.9&ndash;3.4&ndash;4.8</td><td>I.172&ndash;210.7&ndash;260/ 8&ndash;8.9&ndash;10.6 II.79&ndash;97.8&ndash;122/ 2.6&ndash;3.3&ndash;5.3</td><td>I.133&ndash;209.5&ndash;532 II.34.5&ndash;109.6&ndash; 218.1</td><td>29.2&ndash;34.4&ndash; 39.9</td><td>Rio de Janeiro State (Brazil)/ 2.5&ndash;60</td></tr><tr><th><i>A. nicoleae sensu</i> van</th><td></td><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th>Soest <i>et al</i>. (1991) Holotype ZMA Por. 08768*</th><td>240&ndash;381/ 5&ndash;7</td><td>119&ndash;380/ 3&ndash;7</td><td>55&ndash;115/1&ndash;5</td><td>I.140&ndash;205/3&ndash;5 II.70&ndash;117/1&ndash;2</td><td>I.140&ndash;330 II.40&ndash;300 III. 50&ndash;90/ 2&ndash;4</td><td>14.4&ndash;21</td><td>Colombia/6</td></tr><tr><th><i>A. nicoleae sensu</i> Muricy <i>et al.</i> (2008) *</th><td>242&ndash;458&ndash; 1028</td><td>306&ndash;414&ndash; 509</td><td>90&ndash;165&ndash;210</td><td>I. 141&ndash;202&ndash;243 II. 81&ndash;92&ndash;123</td><td>I.230&ndash;245&ndash; 262 II.55&ndash;86&ndash;110 III.30&ndash;53&ndash;75</td><td>10&ndash;15</td><td>Rio Grande do Norte State (Brazil)/ 7&ndash;10</td></tr><tr><th><i>A. nicoleae sensu</i> R&uuml;tzler <i>et al.</i> (2014) *</th><td>430&ndash;442&ndash; 460/6&ndash;8&ndash; 10</td><td>310&ndash;357&ndash; 390/5&ndash;6&ndash;8</td><td>70&ndash;79&ndash;90/3&ndash; 5&ndash;6</td><td>140&ndash;187&ndash;220/ 13&ndash;17&ndash;22</td><td>110&ndash;150&ndash;210/ 1&ndash; 2</td><td>15&ndash;17&ndash;18</td><td>Belize/ 0.3</td></tr></tbody></table>

opennotspecifiedOct 2024View details →
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FIGURE 5 in A new species of Cephalanticoma (Enoplida: Anticomidae) from Brazilian coast (Atlantic Ocean), with emended diagnosis and dichotomous key to the genus

FIGURE 5. Cephalanticoma rugatusa sp. n.: (A) Paratype female #1, anterior region (head capsule); (B) anterior region (cervical setae); (C) anterior region (ventral gland); (D) anterior ovary; (E) vulva; (F) posterior ovary; (G) tail.

opennotspecifiedFeb 2020View details →
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FIGURE 3 in A new species of Cephalanticoma (Enoplida: Anticomidae) from Brazilian coast (Atlantic Ocean), with emended diagnosis and dichotomous key to the genus

FIGURE 3. Cephalanticoma rugatusa sp. n.: (A) Paratype male #3, precloacal region (p.= precloacal papilla, ts: tubular supplement; (B) holotype male, posterior region (transversal wrinkle in both subventral regions, arrows indicate the position of precloacal setae); (C) spicules; (D) Paratype male #2, gubernaculum.

opennotspecifiedFeb 2020View details →
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FIGURE 1 in A new species of Cephalanticoma (Enoplida: Anticomidae) from Brazilian coast (Atlantic Ocean), with emended diagnosis and dichotomous key to the genus

FIGURE 1. Cephalanticoma rugatusa sp. n.: (A) holotype male, overview; (B) anterior region (cephalic arrangement, amphidial fovea, head capsule and cervical setae); (C) anterior region (pharyngeal region, ventral gland and nerve ring); (D) posterior region (precloacal papilla, transversal wrinkle, tubular supplement and precloacal setae); (E) spicules and gubernaculum.

opennotspecifiedFeb 2020View details →
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FIGURE 1 in New records of family Hormathiidae (Cnidaria: Actiniaria) from Brazilian coast with description of Paraphelliactis labiata n. sp.

FIGURE 1. Distribution of the hormathiid sea anemones recorded from deep sea in Southwest Atlantic Ocean, highlighting the Potiguar Basin, RN, Brazil with new records. *The occurrence of Phelliactis lophohelia is indicated as an interval due to the imprecise coordinate data given by the author (22º to 38°S according to Riemann-Zürneck 1973).

opennotspecifiedApr 2020View details →
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FIGURE 11 in Distribution of larval Stomiidae of the Brazilian central coast, southwest Atlantic Ocean (12 S-22 S)

FIGURE 11. Distribution pattern of Aristostomias sp. and Photostomias guernei larvae along the Brazilian central coast.

opennotspecifiedJun 2006View details →
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Fig. 6 in A historical and integrative taxonomic account of mangrove oyster species native to the Atlantic American coast: A re-evaluation of Brazilian Crassostrea species

Fig. 6. Cladogram of Neighbor-Joining method for genus Crassostrea based on 16S rRNA, using Magallana gigas and Talonostrea talonata as outgroups. Oysters used in this and previous studies were identified by access numbers from GenBank.

opennotspecifiedJul 2023View details →
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Fig. 5 in A historical and integrative taxonomic account of mangrove oyster species native to the Atlantic American coast: A re-evaluation of Brazilian Crassostrea species

Fig. 5. Restriction fragment length patterns of mangrove oyster species of Crassostrea from Brazil base on HaeIII digestion of 16S rDNA fragments. Lane 1: 100bp DNA ladder. Lane 2 and 3: positive controls of C. rhizophorae (R) and C. gasar (G), respectively.

opennotspecifiedJul 2023View details →
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Fig. 1 in A historical and integrative taxonomic account of mangrove oyster species native to the Atlantic American coast: A re-evaluation of Brazilian Crassostrea species

Fig. 1. Map indicating areas of oyster sampling: Black circle – mangrove oysters from previous studies; Cross – mangrove oysters collected for this study; Star – Cultivated collection of LMM.

opennotspecifiedJul 2023View details →
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Subspecies and Distribution. A. g. guariba Humboldt, 1812 — Brazilian Atlantic Forest from the Rio Sao Francisco (although the Rio Paraguacu is the northernmost known locality) to the Rio Doce; however, based on his studies of morphology and pelage color patterns Gregorin in 2006 indicated that it extends from the Rio Paraguacu in Bahia State, S along the coast across the lower Rio Jequitinhonha extending inland somewhat into Minas Gerais State, S through the Rio Doce valley as far the Rio Paraiba do Sul Basin in Rio de Janeiro. A. g. clamitans Cabrera, 1940 — Brazilian Atlantic Forest S of Rio Doce (but Gregorin has recently identified howlers of the upper Rio Doce, Rio Matip6 and Caratinga, and the middle and upper Rio Jequitinhonha as marking the N limits of this subspecies) through the S of Espirito Santo to Rio de Janeiro, Sao Paulo, Parana, Santa Catarina, and Rio Grande do Sulstates (S limit is Rio Camaqua Basin in Rio Grande do Sul, 31° 10" S, where the Atlantic Forest gives way to the Pampas grasslands), and inland in the forested E of Minas Gerais ("Zona da Mata") and the Brazilian Highlands; also in NE Argentina (E of the Mts in Misiones Province to ¢.28° S). in Atelidae

Subspecies and Distribution. A. g. guariba Humboldt, 1812 — Brazilian Atlantic Forest from the Rio Sao Francisco (although the Rio Paraguacu is the northernmost known locality) to the Rio Doce; however, based on his studies of morphology and pelage color patterns Gregorin in 2006 indicated that it extends from the Rio Paraguacu in Bahia State, S along the coast across the lower Rio Jequitinhonha extending inland somewhat into Minas Gerais State, S through the Rio Doce valley as far the Rio Paraiba do Sul Basin in Rio de Janeiro. A. g. clamitans Cabrera, 1940 — Brazilian Atlantic Forest S of Rio Doce (but Gregorin has recently identified howlers of the upper Rio Doce, Rio Matip6 and Caratinga, and the middle and upper Rio Jequitinhonha as marking the N limits of this subspecies) through the S of Espirito Santo to Rio de Janeiro, Sao Paulo, Parana, Santa Catarina, and Rio Grande do Sulstates (S limit is Rio Camaqua Basin in Rio Grande do Sul, 31° 10" S, where the Atlantic Forest gives way to the Pampas grasslands), and inland in the forested E of Minas Gerais ("Zona da Mata") and the Brazilian Highlands; also in NE Argentina (E of the Mts in Misiones Province to ¢.28° S).

opennotspecifiedMar 2013View details →
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FIGURE 3 in Redescription of Naineris aurantiaca (Müller, 1858) and designation of a neotype from the Brazilian coast (Annelida: Orbiniidae)

FIGURE 3. Naineris aurantiaca from Marambaia Island (MNRJP 1957). A: Dorsal view of anterior region (Shirlastainstained); B: Lateral view of anterior region; C: Everted proboscis; D: Pygidium; E: Interramal papillae from abdominal chaetiger (Shirlastain-stained); F: Chaetal distribution on thoracic segments (neuropodia); G: Dorsal organs in abdominal segments (Shirlastain-stained); H: Pre- and post-branchial papillae in abdominal segments (Shirlastain-stained). Legends: ip: interramal papilla, do: dorsal organ, bp: branchial papilla (Scales: A-B: 2 mm; C: 1 mm; D-F-G: 200 µm; E: 100 µm; H: 500 µm).

opennotspecifiedMar 2019View 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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Last verified 2026-04-29Open record

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Last verified 2026-04-29Open record