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93 results for “Southwest Indian Ridge”
Figure 9 in New sea cucumber species from the seamounts on the Southwest Indian Ocean Ridge (Echinodermata: Holothuroidea: Aspidochirotida, Elasipodida, Dendrochirotida)
Figure 9. Photos of holotype of Psolus atlantis O'Loughlin sp. nov. (preserved, 28 mm long, NHMUK 2013.6). a, dorsal view of holotype with oral valves left; b, dorsolateral view of holotype showing elevated oral valves; c, view of five triangular interradial oral valves and five narrow radial oral valves; d, ventral view of sole; e, ventral view of margin of sole showing inner series of large tube feet and outer series of small inconspicuous tube feet; f, view of sole showing scattered, small perforated plate and cross ossicles.
Figure 10 in New sea cucumber species from the seamounts on the Southwest Indian Ocean Ridge (Echinodermata: Holothuroidea: Aspidochirotida, Elasipodida, Dendrochirotida)
Figure 10. SEM images of ossicles from holotype of Psolus atlantis O'Loughlin sp. nov. (NHMUK 2013.6). a, tube foot endplate (top left; scale bar 100 µm) and tube foot support ossicles (scale bars 20 µm); b, small plates and crosses from central sole (scale bars 20 µm).
Figure 8 in New sea cucumber species from the seamounts on the Southwest Indian Ocean Ridge (Echinodermata: Holothuroidea: Aspidochirotida, Elasipodida, Dendrochirotida)
Figure 8. Photo of dorsal view of live holotype specimen of Psolus atlantis O'Loughlin sp. nov., attached to a rock fragment from Atlantis Bank collected during cruise JC066 (oral end left; specimen NHMUK 2013.6; photo taken by David Shale and used with permission).
Figure 4 in New sea cucumber species from the seamounts on the Southwest Indian Ocean Ridge (Echinodermata: Holothuroidea: Aspidochirotida, Elasipodida, Dendrochirotida)
Figure 4. SEM images of ossicles from holotype of Amphigymnas staplesi O'Loughlin sp. nov. (NHMUK 2013.4). a, tables from lateral papilla (scale bars 50 µm); b, tables with truncate spires from ventral body wall (scale bars 20 µm); c, tentacle rods with outer surface spines (scale bar 50 µm); d, ventrolateral tube foot endplate (top left, scale bar 100 µm), tube foot support rods, very irregular and under-developed tables (scale bars 50 µm); e, tables from dorsal body wall with distal spires lacking teeth (scale bars 50 µm).
Figure 7 in New sea cucumber species from the seamounts on the Southwest Indian Ocean Ridge (Echinodermata: Holothuroidea: Aspidochirotida, Elasipodida, Dendrochirotida)
Figure 7. SEM images of ossicles from holotype of Pannychia taylorae O'Loughlin sp. nov. (NHMUK 2013.5). a, tentacle rods with outer surface spines (scale bar 50 µm; small plate ossicle probable contaminant from body wall); b, wheels from dorsal body wall (scale bars 100 µm); c, wheels and small plates from dorsal papilla (scale bars 50 µm); d, small concave plates from ventral body wall (scale bars 10 µm).
Figure 3 in New sea cucumber species from the seamounts on the Southwest Indian Ocean Ridge (Echinodermata: Holothuroidea: Aspidochirotida, Elasipodida, Dendrochirotida)
Figure 3. Photos of holotype of Amphigymnas staplesi O'Loughlin sp. nov. (preserved, 140 mm long, NHMUK 2013.4). a, dorsal view of holotype with oral end left; b, ventrolateral view of holotype with oral end left; c, ventral view of oral region showing marginal and post-oral transverse papillae; d, midbody ventral view showing discrete ambulacral series of tube feet.
Figure 2 in New sea cucumber species from the seamounts on the Southwest Indian Ocean Ridge (Echinodermata: Holothuroidea: Aspidochirotida, Elasipodida, Dendrochirotida)
Figure 2. Photos of live holotype specimen of Amphigymnas staplesi O'Loughlin sp. nov. (in situ on Atlantis Bank; extracted from ROV video footage during cruise JC066; copyright AD Rogers University of Oxford/NERC; specimen NHMUK 2013.4). a, left ventrolateral view of rolling specimen with oral end right and left series of long, conical ventrolateral papillae prominent (up to 15 mm long); b, ventral view of rolling specimen with mouth right, ambulacral series of small tube feet evident, and left ventrolateral series of conical papillae again prominent.
Figure 6 in New sea cucumber species from the seamounts on the Southwest Indian Ocean Ridge (Echinodermata: Holothuroidea: Aspidochirotida, Elasipodida, Dendrochirotida)
Figure 6. Photos of holotype of Pannychia taylorae O'Loughlin sp. nov. (preserved, 180 mm long, NHMUK 2013.5). Ventral view of holotype with oral end below and midventral tube feet more numerous posteriorly. Insert with ventral view of damaged oral region showing non-retractile tentacles.
Figure 5 in New sea cucumber species from the seamounts on the Southwest Indian Ocean Ridge (Echinodermata: Holothuroidea: Aspidochirotida, Elasipodida, Dendrochirotida)
Figure 5. Photos of live holotype specimen of Pannychia taylorae O'Loughlin sp. nov. (NHMUK 2013.5). a, photo of live holotype specimen (in situ on Coral Seamount; taken by ROV during cruise JC066; copyright AD Rogers University of Oxford/NERC); b, ventral view of live holotype (with two commensal polynoid specimens) (photo taken by David Shale and used with permission).
Figure 1 in New sea cucumber species from the seamounts on the Southwest Indian Ocean Ridge (Echinodermata: Holothuroidea: Aspidochirotida, Elasipodida, Dendrochirotida)
Figure 1. RRS James Cook cruise map showing the Southwest Indian Ocean Ridge and the locations of the five seamounts that were visited during NERC JC066. The hydrothermal vent system studied during JC067 is indicated by the filled circle near Middle of What seamount. The sea cucumbers described in this study were collected from the Atlantis Bank, northeast on the Ridge, and the Coral Seamount, southwest on the Ridge.
Rock magnetic data sets for Coupled detachment faulting and hydrothermal circulation at 49.7°E Southwest Indian Ridge revealed by seafloor magnetism
<p>The rock magnetic data sets in "Coupled detachment faulting and hydrothermal circulation at 49.7°E Southwest Indian Ridge revealed by seafloor magnetism" was studied, including the density, magnetic susceptibility, NRM, Q ratio and other parameters of rock samples , as well as the thermomagnetic curves, hysteresis loops, FORCs, AF and TD demagnetization.</p>
Lithospheric structure controls the sequentially active detachment faulting at the Longqi segment on the Southwest Indian Ridge
<p><strong>supplementary materials for "Lithospheric structure controls the sequentially active detachment faulting at the Longqi segment on the Southwest Indian Ridge"</strong></p>
Volatile (C, N, Ar) variability in MORB and the respective roles of mantle source heterogeneity and degassing: the case of the Southwest Indian Ridge
<p>Location, isotopic compositions of δ13C and δ18O of CO2, δ15N of N2 and C, N and Ar abundances in vesicles of SWIR basaltic glasses</p>
FIGURE 4 in Is the North Atlantic Geodia barretti (Porifera, Tetractinellida, Geodiidae) present on the Southwest Indian Ridge?
FIGURE 4. Maximum likelihood (ML) COI phylogenetic tree of the Depressiogeodia clade. ML bootstrap supports (1,000 bootstrap replicates)> 70 are indicated. Numbers refer to NCBI Genbank accession numbers.
FIGURE 2 in Is the North Atlantic Geodia barretti (Porifera, Tetractinellida, Geodiidae) present on the Southwest Indian Ridge?
FIGURE 2. Geodia cf. barretti (NCPOR/HYD-CIO/0011) attached on a rock. B. thick section (cortex thickness 1 mm). Red arrow points at oxeas crossing the cortex. C. ortho/dichotriaene. D. oxeas I & II. E, F. sterraster. G. sterraster surface showing the rosettes with warts. H. strongylasters. I. oxyasters. D scale = 0.7 mm.
FIGURE 5 in Is the North Atlantic Geodia barretti (Porifera, Tetractinellida, Geodiidae) present on the Southwest Indian Ridge?
FIGURE 5. Geographical distribution of Geodia barretti species (source: WPD database). The yellow coloured stars indicate COI haplotype 2: the new location from the SWIR and two specimens from the Flemish Cap in the Northwest Atlantic Ocean at a depth deeper than 1000 m. The simplified paths of NADW (North Atlantic Deep Water) and LCDW (Lower Circumpolar Deep Water) currents are represented.
FIGURE 3 in Is the North Atlantic Geodia barretti (Porifera, Tetractinellida, Geodiidae) present on the Southwest Indian Ridge?
FIGURE 3. Comparative morphology of spicules in species of deep-sea Geodia belonging the the 'Depressiogeodia' clade. SEM pictures were all obtained from previous publications/figures, and reorganised here from the original photoshop files. A. microxeas. B. oxea. C. dichotriaene. D. strongylaster. E. oxyaster. F. sterraster. Geodia barretti, specimens ZMBN 105662 and 105665 from the Mid-Atlantic Ridge (modified from Fig. 4, Cárdenas & Rapp, 2015); Geodia hentscheli, specimen ZMBN 105680 from the Mid-Atlantic Ridge (modified from Fig. 6, Cárdenas & Rapp, 2015); Geodia garoupa, holotype, MNRJ 7349 from Brazil (modified from Fig. 1, Carvalho et al., 2016); Geodia williami, holotype, NIWA 64828 from New Zealand (modified from Fig. 36, Sim-Smith & Kelly, 2015).
FIGURE 10 in Description of a new branchiate scale-worm (Polychaeta: Polynoidae) from the hydrothermal vent on Southwest Indian Ocean Ridge
FIGURE 10. Distribution of the number of notosetae and upper branchiae's length ratio along the body in two specimens.
FIGURE 8. Branchipolynoe longqiensis n in Description of a new branchiate scale-worm (Polychaeta: Polynoidae) from the hydrothermal vent on Southwest Indian Ocean Ridge
FIGURE 8. Branchipolynoe longqiensis n. sp., paratype (RSIO35430): A, Dorsal view; B, Ventral view; C, Dorsal view of anterior end, pharynx extended; D, Frontal view of proboscis.
FIGURE 9 in Description of a new branchiate scale-worm (Polychaeta: Polynoidae) from the hydrothermal vent on Southwest Indian Ocean Ridge
FIGURE 9. Chaetal arrangement in left neuropodia on segment 3 (A), 10 (B), 16 (C) and 20 (D) of specimen RSIO35279. Ac, acicula; Sup, supraacicular neurosetae; Usub, upper subacicular neurosetae; Lsub, lower subacicular neurosetae; c = caudal, d = dorsal, f = frontal, v = ventral.
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