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571 results for “Hydrothermal vents”
Appendix 2 in Tanaidacea (Crustacea; Peracarida) from chemically reduced habitats-the hydrothermal vent system of the Juan de Fuca Ridge, Escabana Trough and Gorda Ridge, northeast Pacific
Appendix 2. Microhabitat
Appendix 1 in Tanaidacea (Crustacea; Peracarida) from chemically reduced habitats-the hydrothermal vent system of the Juan de Fuca Ridge, Escabana Trough and Gorda Ridge, northeast Pacific
Appendix 1. Station list
Figure 7 from: Ivanenko VN, Lee J, Chang CY, Kim I-H (2019) Description of Barathricola thermophilus, a new species from a deep-sea hydrothermal vent field in the Indian Ocean with redescription of the Barathricola type species (Crustacea, Copepoda, Cyclopoida). ZooKeys 865: 103-121. https://doi.org/10.3897/zookeys.865.35827
Figure 7 Barathricolarimensis Humes, 1999: A leg 1 of female, inner part of protopod B leg 1 of male, inner part of protopod C leg 3 of female, distal endopodal segment, posterior D leg 3 of male, distal endopodal segment, anterior E leg 4 of female, endopod, anterior F leg 5 of female, exopod, anterior G leg 5 of male, distal segment. Scale bars: 0.05 mm.
Figure 6 from: Ivanenko VN, Lee J, Chang CY, Kim I-H (2019) Description of Barathricola thermophilus, a new species from a deep-sea hydrothermal vent field in the Indian Ocean with redescription of the Barathricola type species (Crustacea, Copepoda, Cyclopoida). ZooKeys 865: 103-121. https://doi.org/10.3897/zookeys.865.35827
Figure 6 Barathricolarimensis Humes, 1999, female: A maxillule B maxilla C maxilliped. Scale bars: 0.05 mm.
Figure 5 from: Ivanenko VN, Lee J, Chang CY, Kim I-H (2019) Description of Barathricola thermophilus, a new species from a deep-sea hydrothermal vent field in the Indian Ocean with redescription of the Barathricola type species (Crustacea, Copepoda, Cyclopoida). ZooKeys 865: 103-121. https://doi.org/10.3897/zookeys.865.35827
Figure 5 Barathricolarimensis Humes, 1999, female: A antenna B mandible C distal part of the mandibular gnathobase. Scale bars: 0.05 mm.
Figure 1 from: Ivanenko VN, Lee J, Chang CY, Kim I-H (2019) Description of Barathricola thermophilus, a new species from a deep-sea hydrothermal vent field in the Indian Ocean with redescription of the Barathricola type species (Crustacea, Copepoda, Cyclopoida). ZooKeys 865: 103-121. https://doi.org/10.3897/zookeys.865.35827
Figure 1 Barathricolathermophilus sp. nov., female: A habitus, dorsal B urosome, dorsal C right caudal ramus, ventral D spermatophore E rostrum F antennule G antenna H mandible I maxillule. Scale bars: 0.1 mm (A), 0.05 mm (B), 0.02 mm (C–I).
Figure 4 from: Ivanenko VN, Lee J, Chang CY, Kim I-H (2019) Description of Barathricola thermophilus, a new species from a deep-sea hydrothermal vent field in the Indian Ocean with redescription of the Barathricola type species (Crustacea, Copepoda, Cyclopoida). ZooKeys 865: 103-121. https://doi.org/10.3897/zookeys.865.35827
Figure 4 Barathricolarimensis Humes, 1999: A antennule of female B antennule of male, distal segments 8-17 C antennule of male, proximal segments 1-12 D caudal ramus of female E caudal ramus of male. Scale bars: 0.05 mm.
Figure 3 from: Ivanenko VN, Lee J, Chang CY, Kim I-H (2019) Description of Barathricola thermophilus, a new species from a deep-sea hydrothermal vent field in the Indian Ocean with redescription of the Barathricola type species (Crustacea, Copepoda, Cyclopoida). ZooKeys 865: 103-121. https://doi.org/10.3897/zookeys.865.35827
Figure 3 Barathricolathermophilus sp. nov. female: A leg 4 B leg 5 C left genital aperture. Male: D habitus, dorsal E genital somite and abdomen, ventral F antennule G third endopodal segment of leg 3. Scale bars: 0.05 mm (A, B, E), 0.02 mm (C, F, G), 0.1 mm (D).
Figure 2 from: Ivanenko VN, Lee J, Chang CY, Kim I-H (2019) Description of Barathricola thermophilus, a new species from a deep-sea hydrothermal vent field in the Indian Ocean with redescription of the Barathricola type species (Crustacea, Copepoda, Cyclopoida). ZooKeys 865: 103-121. https://doi.org/10.3897/zookeys.865.35827
Figure 2 Barathricolathermophilus sp. nov., female: A maxilla B maxilliped C leg 1 D leg 2 E leg 3. Scale bars: 0.02 mm.
Larvae of Hydrothermal Vents in the Eastern Pacific
Open the record for dataset details and reuse information.
FIGURE 16 in Species of the genus Munidopsis (Crustacea, Decapoda, Galatheidae) from the deep Atlantic Ocean, including cold-seep and hydrothermal vent areas
FIGURE 16. Depth distribution for the specimens of Munidopsis considered in the study.
FIGURE 15 in Species of the genus Munidopsis (Crustacea, Decapoda, Galatheidae) from the deep Atlantic Ocean, including cold-seep and hydrothermal vent areas
FIGURE 15. Geographic distribution for the specimens of Munidopsis considered in the study.
Figure 6 in Diversity and abnormalities of cyclopoid copepods around hydrothermal vent fluids, Kueishantao Island, north-eastern Taiwan
Figure 6. Vertical bar graph showing the abundance of normal and infected cyclopoid copepods.
Figure 2 in Diversity and abnormalities of cyclopoid copepods around hydrothermal vent fluids, Kueishantao Island, north-eastern Taiwan
Figure 2. Variation of physical and chemical parameters at four sampling stations.
Figure 9. Stenothoe menezgweni, DIVA 2 in Stenothoidae (Crustacea: Amphipoda) of hydrothermal vents and surroundings on the Mid-Atlantic Ridge, Azores Triple Junction zone
Figure 9. Stenothoe menezgweni, DIVA 2, PL26, holotype female. (1) Mandible right; (2) mandible left; (3) maxilla 1; (4) maxilla 2; (5) pereiopod 4; (6) pereiopod 6; (7) pereiopod 7; (8) epimeral plate 3; (9) uropod 1; (10) uropod 2; (11) uropod 3; (12) telson. Scale bars: 100 mm.
FIG. 5 in The megalopa stage of the hydrothermal vent crab genus Bythograea (Crustacea, Decapoda, Bythograeidae)
FIG. 5. — Megalopa stage of Bythograea, selected SEM photographs of mouthparts and abdomen: A, outer view of distal 4 articles and part of ischium of left third maxilliped; B, dactylus of left second maxilliped, inner view; C, setae of the epipod of the first maxilliped (arrow in Fig. 3E); D, ventral view of telson and uropods; E, higher magnification of serrate cleaning setae (shown in C and indicated in Fig. 3E). Scale bars: A, D, 500 µm; B, C, E, photographs at higher magnifications, no scale bar available.
FIG. 7. — Nematocarcinus burukovskyi n in Two new species of Nematocarcinus A. Milne-Edwards, 1881 (Crustacea, Decapoda, Caridea, Nematocarcinidae) from hydrothermal vents on the North and South East Pacific Rise
FIG. 7. — Nematocarcinus burukovskyi n. sp.; A, holotype subadult, Wormwood vent site, SEPR, cl 18.6 mm (MNHN-Na 15768), photograph taken on board, just after collection (photo: Ifremer/BIOSPEEDO/P. Briand); B, paratype juvenile from Fred's Fortress vent site, SEPR, cl 13.8 mm (CBM-ZC 8630), photograph taken on board, just after collection (photo: MBARI/PAR5/G. Rouse); C, photograph showing an individual in situ, taken at site Fred's Fortress vent site, SEPR during PAR5 cruise by DS Alvin, dive 4094, on mussel bed of Bathymodiolus sp., with bythograeid crabs Bythograea vrijenhoeki (photo: MBARI/PAR5/R. Vrijenhoek); D, photograph showing an individual lying close to a holothurian Chiridota hydrothermica, taken at Krasnov vent site during BIOSPEEDO cruise by DS Nautile dive 1575 (photo: Ifremer/BIOSPEEDO/D. Jollivet).
Fig. 8 in Cytotoxic shornephines and asterresins from the hydrothermal vent associated fungus Aspergillus terreus CXX-158-20
Fig. 8. Experimental and calculated ECD spectra of compounds 1–7.
Fig. 3 in Cytotoxic shornephines and asterresins from the hydrothermal vent associated fungus Aspergillus terreus CXX-158-20
Fig. 3. Key NOESY interactions of compounds 1 and 3.
Fig. 5 in Cytotoxic shornephines and asterresins from the hydrothermal vent associated fungus Aspergillus terreus CXX-158-20
Fig. 5. Plausible biosynthetic pathway of compounds 1–2 and 4.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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