Export 2610 results:
Author Title [ Type(Desc)] Year
Journal Article
F. U. Zielinski, Gennerich, H. - H., Borowski, C., Wenzhoefer, F., and Dubilier, N., In situ measurements of hydrogen sulfide, oxygen, and temperature in diffuse fluids of an ultramafic-hosted hydrothermal vent field (Logatchev, 14 degrees 45 ` N, Mid-Atlantic Ridge): Implications for chemosymbiotic bathymodiolin mussels, GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, vol. 12, 2011.
W. M. Hamner and Robison, B. H., In situ observations of giant appendicularians in Monterey Bay, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 39, pp. 1299–1313, 1992.
K. Ding, Seyfried, W. E., Zhang, Z., Tivey, M. K., Von Damm, K. L., and Bradley, A. M., The in situ pH of hydrothermal fluids at mid-ocean ridges, Earth and Planetary Science Letters, vol. 237, pp. 167–174, 2005.
M. Hattori and Okano, M., In situ sea bottom Gamma ray surveys by manned submersibles and ROV, JAMSTEC Journal of Deep Sea Research, pp. 639–660, 1999.
Y. Fujiwara, Tsukahara, J., Hashimoto, J., and Fujikura, K., In situ spawning of a deep-sea vesicomyid clam: Evidence for an environmental cue, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 45, pp. 1881–1889, 1998.
C. L. Van Dover, In situ spawning of hydrothermal vent tubeworms (Riftia pachyptila), Biological Bulletin, vol. 186, pp. 134–135, 1994.
M. O. Schrenk, Kelley, D. S., Delaney, J. R., and Baross, J. A., Incidence and diversity of mcroorganisms within the walls of an active deep-sea sulfide chimney, Applied and Environmental Microbiology, vol. 69, pp. 3580–3592, 2003.
W. W. Cho and Shank, T. M., Incongruent patterns of genetic connectivity among four ophiuroid species with differing coral host specificity on North Atlantic seamounts, Marine Ecology, vol. 31, pp. 121–143, 2010.
G. L. Christeson, McIntosh, K. D., and Karson, J. A., Inconsistent correlation of seismic layer 2a and lava layer thickness in oceanic crust, Nature, vol. 445, pp. 418–421, 2007.
H. Lee, Chen, W. J., Puillandre, N., Aznar-Cormano, L., Tsai, M. H., and Samadi, S., Incorporation of deep-sea and small-sized species provides new insights into gastropods phylogeny, Molecular Phylogenetics and Evolution, vol. 135, pp. 136-147, 2019.
R. D. Ballard, Incredible world of the deep-sea rifts, National Geographic Magazine, vol. 156, pp. 680–688, 1979.
S. K. Goffredi, Indigenous ectosymbiotic bacteria associated with diverse hydrothermal vent invertebrates, ENVIRONMENTAL MICROBIOLOGY REPORTS, vol. 2, pp. 479–488, 2010.
D. J. Fornari, Bradley, A., Humphris, S. E., Walden, B., and Deuster, A., Inductively coupled link (ICL) temperature probes for hot hydrothermal fluid sampling from ROV Jason and DSV Alvin, RIDGE Events, vol. 8, pp. 26–30, 1997.
S. L. Nooner and Jr., W. W. Chadwick, Inflation-predictable behavior and co-eruption deformation at Axial Seamount, SCIENCE, vol. 354, pp. 1399–1403, 2016.
J. R. Bourque and Demopoulos, A. W. J., The influence of different deep-sea coral habitats on sediment macrofaunal community structure and function, PeerJ, vol. 6, p. e5276, 2018.
F. Pradillon, Le Bris, N., Shillito, B., Young, C. M., and Gaill, F., Influence of environmental conditions on early development of the hydrothermal vent polychaete Alvinella pompejana, Journal of Experimental Biology, vol. 208, pp. 1551–1561, 2005.
E. E. Cordes, Becker, E. L., Hourdez, S., and Fisher, C. R., Influence of foundation species, depth, and location on diversity and community composition at Gulf of Mexico lower-slope cold seeps, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 57, pp. 1870–1881, 2010.
F. K. Wilckens, Reeves, E. P., Bach, W., Meixner, A., Seewald, J. S., Koschinsky, A., and Kasemann, S. A., The influence of magmatic fluids and phase separation on B systematics in submarine hydrothermal vent fluids from back-arc basins, Geochimica et Cosmochimica Acta, vol. 232, no. Journal Article, pp. 140 - 162, 2018.
J. N. Bentley, Ventura, G. T., Walters, C. C., Sievert, S. M., and Seewald, J. S., The influence of near surface sediment hydrothermalism on the TEX86 tetraether lipid-based proxy and a new correction for ocean bottom lipid overprinting, Biogeosciences Discussions, vol. 2021, pp. 1-31, 2021.
D. R. Yoerger, Cooke, J. G., and Slotine, J. E., The influence of thruster dynamics on underwater behavior and their incorporation into control system design, IEEE Journal of Oceanic Engineering, vol. 15, pp. 167–178, 1990.
A. M. Burkett, Rathburn, A. E., M. Perez, E., and Martin, J. B., Influences of thermal and fluid characteristics of methane and hydrothermal seeps on the stable oxygen isotopes of living benthic foraminifera, Marine and Petroleum Geology, vol. 93, no. Journal Article, pp. 344 - 355, 2018.
D. Feng and Roberts, H. H., Initial results of comparing cold-seep carbonates from mussel- and tubeworm-associated environments at Atwater Valley 340, northern Gulf of Mexico, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 57, pp. 2030–2039, 2010.
R. W. Embley, Chadwick, W. W., Jonasson, I. R., Butterfield, D. A., and Baker, E. T., Initial results of the rapid response to the 1993 CoAxial event: Relationships between hydrothermal and volcanic processes, Geophysical Research Letters, vol. 22, pp. 143–146, 1995.
G. Bellaiche, Cheminee, J. L., Francheteau, J., Hekinian, R., Le Pichon, X., Needham, H. D., and Ballard, R. D., Inner floor of the Rift Valley: First submersible study, Nature, vol. 250, pp. 558–560, 1974.
E. Hanauer, Innerspace shuttle: The peregrinations of Alvin, workhorse of the underwater world, Oceans, vol. 16, pp. 20–25, 1983.

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