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741 results for “Atlantic Water”
Figure 1 from: Corgosinho PHC, Kihara TC, Schizas NV, Ostmann A, Arbizu PM, Ivanenko VN (2018) Traditional and confocal descriptions of a new genus and two new species of deep water Cerviniinae Sars, 1903 from the Southern Atlantic and the Norwegian Sea: with a discussion on the use of digital media in taxonomy (Copepoda, Harpacticoida, Aegisthidae). ZooKeys 766: 1-38. https://doi.org/10.3897/zookeys.766.23899
Figure 1 Sampling locations around Iceland (middle) and South Atlantic Ocean (right).
Figure 7 from: Malyutina M, Brandt A (2011) Dubinectes infirmus, a new species of deep-water Munnopsidae (Crustacea, Isopoda, Asellota) from the Argentine Basin, South Atlantic Ocean. ZooKeys 144: 1-19. https://doi.org/10.3897/zookeys.144.1578
Figure 7 - Dubinectes infirmus sp. n. Paratype male (ZMH 42970). Pleopods 1-5, right uropod.
FIGURE 4. Alpheus gallicus n in Description of Alpheus gallicus, a new deep-water snapping shrimp from Galicia Bank, northeastern Atlantic (Malacostraca, Decapoda, Alpheidae)
FIGURE 4. Alpheus gallicus n. sp., unspecified specimen, from Galicia Bank, NE Atlantic Ocean off western Spain: colouration of living individual, lateral. Scale below in cm. Photograph courtesy of Dr. Antonio Puzón.
FIGURE 2. Alpheus gallicus, n in Description of Alpheus gallicus, a new deep-water snapping shrimp from Galicia Bank, northeastern Atlantic (Malacostraca, Decapoda, Alpheidae)
FIGURE 2. Alpheus gallicus, n. sp., holotype male (CL 11.5 mm), OUMNH.ZC.2017-01-0061, from Galicia Bank, NE Atlantic Ocean off western Spain: a, major cheliped, lateral; b, same, mesial; c, same, fingers; opened, lateral; d, same, dactylus, opened, lateral; e, minor cheliped, lateral; f, same, mesial.
FIGURE 3. Alpheus gallicus, n in Description of Alpheus gallicus, a new deep-water snapping shrimp from Galicia Bank, northeastern Atlantic (Malacostraca, Decapoda, Alpheidae)
FIGURE 3. Alpheus gallicus, n. sp., paratype male (CL 9.6 mm), ICM 002619 (a–d), and holotype male (CL 11.5 mm) (e–g), OUMNH.ZC.2017-01-0061, both from Galicia Bank, NE Atlantic Ocean off western Spain: a, second pereiopod, lateral; b, third pereiopod, lateral; c, same, propodus and dactylus, lateral; d, same, detail of dactylus, lateral; e, fifth pereiopod, lateral; f, same, propodus and dactylus, lateral; g, same, dactylus, lateral.
FIGURE 9 in Asteroidea (Echinodermata) from shallow-waters of the remote oceanic archipelago Trindade and Martin Vaz, southeastern Atlantic, with taxonomic and zoogeographical notes
FIGURE 9. Astropecten aff. antillensis Lütken, 1859. A–Y. MZUSP 2090: A, B. Abactinal and actinal views. C. Paxillae. D. Madreporite. E. Mouth. F. Ambulacral spines. G. Squamules and spines, inferomarginal plate. H–Y. Scanning electron microscope. H–J. Superomarginal plates. K–M. Inferomarginal plates. N–P. Ambulacral plates. Q, R. Adambulacral plates. S, T. Haste, paxillae. U. Superomarginal spine. V, X. Inferomarginal spines. Z–Y. Furrow spines. Scale bars: A–B, 10 mm; C–D, G, 1 mm; E–F, 2 mm; H–J, N–R, U–X, Y, 200 μm; K–M, 300 μm; S, Z–W, 100 μm; T, 60 μm.
FIGURE 7 in Asteroidea (Echinodermata) from shallow-waters of the remote oceanic archipelago Trindade and Martin Vaz, southeastern Atlantic, with taxonomic and zoogeographical notes
FIGURE 7. Mithrodia clavigera (Lamarck, 1816). A. Specimen from Trindade Island photographed in situ (MZUSP 1177). B–H. MZUSP 1631: B, C. Abactinal and actinal views. D. Abactinal plates and papulae. E. Detail of the madreporite. F. Mouth. G. Ambulacral spines. H. Tip of the arm, abactinal view. I–R. Scanning electron microscope (MZUSP 1175). I–K. Abactinal plates. L–N. Adambulacral plates. O. Abactinal spine. P–R. Ambulacral plates. Scale bars: B–C, 20 mm; D–H, 2 mm; I, K–N, 200 μm; J, P–R, 400 μm; O, 600 μm.
FIGURE 4. A. Copidaster lymani A. H. Clark, 1948 in Asteroidea (Echinodermata) from shallow-waters of the remote oceanic archipelago Trindade and Martin Vaz, southeastern Atlantic, with taxonomic and zoogeographical notes
FIGURE 4. A. Copidaster lymani A. H. Clark, 1948, Trindade Island, Enseada das Orelhas. B–D. Mithrodia clavigera (Lamarck, 1816). B, C. Trindade Island, Príncipe beach. D. Fernando de Noronha, tide pool at Boldró beach. Photograph by Gabriela C. Zeineddine. E. Oreaster reticulatus (Linnaeus, 1758), Trindade Island, Enseada dos Portugueses, Farol. F. Luidia alternata alternata (Say, 1825) Trindade Island, Ponta da Calheta.
FIGURE 3. Copidaster lymani A. H. Clark, 1948. A–N. MZUSP 1550 in Asteroidea (Echinodermata) from shallow-waters of the remote oceanic archipelago Trindade and Martin Vaz, southeastern Atlantic, with taxonomic and zoogeographical notes
FIGURE 3. Copidaster lymani A. H. Clark, 1948. A–N. MZUSP 1550: A. Specimen from Trindade Island photographed in situ. B, C. Abactinal and actinal views. D. Abactinal plates and papulae. E. Detail of the madreporite. F. Mouth. G. Ambulacral spines. H. Tip of the arm, abactinal view. I–N. Scanning electron microscope. I, J. Abactinal plates. K, L. Ambulacral plates. M, N. Valves of the abactinal pedicellariae. Scale bars: B–C, 20 mm; D–H, 2 mm; I, K–L, 400 μm; J, 200 μm; M–N, 40 μm.
FIGURE 1. A in Asteroidea (Echinodermata) from shallow-waters of the remote oceanic archipelago Trindade and Martin Vaz, southeastern Atlantic, with taxonomic and zoogeographical notes
FIGURE 1. A. Diagrammatic East-West oriented cross-section of the volcanic Vitoria-Trindade Seamount Chain. Brazil's landmass in dark grey. B, C. Trindade and Martin Vaz islands, respectively. Photographs by J.B. Mendonça Jr.
FIGURE 5. Linckia guildingi Gray, 1840. A in Asteroidea (Echinodermata) from shallow-waters of the remote oceanic archipelago Trindade and Martin Vaz, southeastern Atlantic, with taxonomic and zoogeographical notes
FIGURE 5. Linckia guildingi Gray, 1840. A. Specimen from Trindade Island photographed in situ (MZUSP 2015). B–I. MZUSP 1595: B, C. Abactinal and actinal views. D. Abactinal plates and papulae. E. Detail of the madreporite. F. Mouth. G. Ambulacral spines. H. Actinal granules. I. Tip of the arm, abactinal view. J–Q. Scanning electron microscope (MZUSP 1591). J–L. Abactinal plates. M–O. Ambulacral plates. P, Q. Adambulacral plates. Scale bars: B–C, 20 mm; D–I, 1 mm; J–Q, 200 μm.
FIGURE 6. Ophidiaster guildingi Gray, 1840. A in Asteroidea (Echinodermata) from shallow-waters of the remote oceanic archipelago Trindade and Martin Vaz, southeastern Atlantic, with taxonomic and zoogeographical notes
FIGURE 6. Ophidiaster guildingi Gray, 1840. A. Specimen from Trindade Island photographed in situ (MZUSP 1560). B–I. MZUSP 1580: B, C. Abactinal and actinal views. D. Abactinal plates and papulae. E. Detail of the madreporite. F. Mouth. G. Ambulacral spines. H. Tip of the arm, abactinal view. J–O. Scanning electron microscope (MZUSP 1570). J, K. Ambulacral plates. L–N. Abactinal plates. O. Oral plate. Scale bars: B–C, 10 mm; D–I, 1 mm; J–O, 200 μm.
FIGURE 8 in Asteroidea (Echinodermata) from shallow-waters of the remote oceanic archipelago Trindade and Martin Vaz, southeastern Atlantic, with taxonomic and zoogeographical notes
FIGURE 8. Oreaster reticulatus (Linnaeus, 1758). A–R. MZUSP 1611: A. specimen from Trindade Island photographed in situ. B, C. Abactinal and actinal views. D. Detail of the reticulate area. E. Madreporite. F. Mouth. G. Ambulacral spines. H–R. Scanning electron microscope. H–J. Adambulacral plates. K. Stereom, ambulacral plate. L–N. Ambulacral plates. O. Actinal plate. P. Marginal spine. Q. Superomarginal plate. R. Stereom, superomarginal plate. Scale bars: B–C, 20 mm; D, 10 mm; E, 1 mm; F–G, 3 mm. H–J, O, Q, 600 μm; K, R, 90 μm; L–N, 900 μm; P, 400 μm.
FIGURE 31 in Identification guide to the shallow water (0-200 m) octocorals of the South Atlantic Bight 2599
FIGURE 31. Diodogorgia nodulifera: A, sclerites (S2698); a, b) rods from medulla; c–e) spindles from cortex; f) capstan from cortex (scale bar for a–c = 0.05 mm; d–f = 0.01 mm); B, preserved specimen S2698 (scale bar = 10 mm); C, branch of preserved specimen USNM 49705 (scale bar for B applies).
FIGURE 20. a in Identification guide to the shallow water (0-200 m) octocorals of the South Atlantic Bight 2599
FIGURE 20. a) Bebryce cinerea knobbed plate; Bebryce parastellata b) knobbed star and c) cup-shaped rosette (b and c modified from images by S. Cairns/Smithsonian Institution).
Distribution. Tropical to warm temperate waters from ¢.50° N to ¢.40° S in the Indian, Pacific, and Atlantic oceans, as well as many adjacent seas including the Gulf of California, Sea ofJapan, Bohai, Yellow, and East China seas, and the Mediterranean Sea. Vagrant to the Red Sea and Persian Gulf. in Delphinidae
Distribution. Tropical to warm temperate waters from ¢.50° N to ¢.40° S in the Indian, Pacific, and Atlantic oceans, as well as many adjacent seas including the Gulf of California, Sea ofJapan, Bohai, Yellow, and East China seas, and the Mediterranean Sea. Vagrant to the Red Sea and Persian Gulf.
FIGURES 85–86 in Cribrilinids (Bryozoa, Cheilostomata) associated with deep-water coral habitats at the Great Bahama Bank slope (NW Atlantic), with description of new taxa
FIGURES 85–86. Harmelinius uniserialis (Harmelin, 1978) n. comb., holotype MNHN IB-2008-7908, Biacores Station 197, 5.11.1971, 37°49.5'N 25°01.5'W, 815 m. 85. Uniserial chain of autozooids with a laterally budded kenozooid with smooth surface and a central opesia (bottom right). 86. Close-up of a regenerated autozooid lacking oral spines, with a shield of flat costae separated by thin fissures without intercostal bridges and pelmatidia. Scale bars: 85 = 500 µm; 86 = 200 µm.
FIGURES 55–64 in Cribrilinids (Bryozoa, Cheilostomata) associated with deep-water coral habitats at the Great Bahama Bank slope (NW Atlantic), with description of new taxa
FIGURES 55–64. Teresaspis lineata (Canu & Bassler, 1928) n. comb., Great Bahama Bank slope. 55, 56. Ovicellate zooids with hyperstomial acleithral ovicells having pseudoporous ooecia formed by the distal autozooid; note broken oral costa-like processes and more (55) or less (56) developed caudal portions, Station GeoB16382-1, SMF-45.523. 57, 58. Frontal (57) and inclined (58) views of an ovicellate zooid with fully developed costal arch leaving a wider and a narrower passages to the orifice on the proximal and distal sides, respectively, Station GeoB16376-1, SMF-45.519. 59, 60. Frontal (59) and lateral (60) views of the same zooid and its ooecium (seen in 57, 58) to show its relationships with the costal arch formed by lateral oral costa-like processes, Station GeoB16376-1, SMF-45.519. 61. Group of closely spaced, partly regenerated autozooids belonging to converging branches, Station GeoB16382-1, SMF-45.523. 62–64. The only ooecium produced by a distal kenozooid, in frontal (62), lateral (63) and distofrontal (64) views to show the large passage between the ovicell and the handle-shaped oral process. Station GeoB16388-3, PMC-Rosso Bahama Collection Bah.HB43a. Scale bars: 59, 60 = 200 µm; 55–58, 61–64 = 500 µm.
FIGURES 26–28. Glabrilaria hirsuta Rosso n in Cribrilinids (Bryozoa, Cheilostomata) associated with deep-water coral habitats at the Great Bahama Bank slope (NW Atlantic), with description of new taxa
FIGURES 26–28. Glabrilaria hirsuta Rosso n. sp., Great Bahama Bank slope. Orifices encircled by oral spine bases. 26. Orifice with six oral spines, Station GeoB16388-3, SMF-45.513. 27. Orifice with six oral spines, Station GeoB16368-1. 28. Orifice with seven oral spines, Station GeoB16368-1, SMF-45.507. Scale bars: 50 µm.
FIGURE 1 in Pycnogonida (Arthropoda) from Uruguayan waters (Southwest Atlantic): annotated checklist and biogeographic considerations
FIGURE 1. Uruguayan Economic Exclusive Zone (URY EEZ), indicating the position of the stations of HMS Challenger (circle), RV Atlantis II (triangle) and RV Ƒema (square).
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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
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OpenNeuro
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