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A
D. K. Adams, Influence of hydrodynamics on the larval supply to hydrothermal vents on the East Pacific Rise, Massachusetts Institute of Technology and Woods Hole Oceanographic Institution, Cambridge, MA and Woods Hole, MA, 2007.
J. M. Auzende, Ceuleneer, G., Cornen, G., Juteau, T., Lagabrielle, Y., Lensch, G., Mével, C., Nicolas, A., Prichard, H., Ribeiro, A., Ruellan, E., and Vanney, J. R., Intraoceanic tectonism in the Gorringe Bank: observations by submersible, in Ophiolites and oceanic lithosphere, vol. 13, I. G. Gass, Ed. Boston, Mass.: Blackwell Scientific Publications, 1984, pp. 113–120.
B
R. D. Ballard, Improving the usefulness of deep-sea photographs with precision tracking, Oceanus, vol. 18, pp. 40–43, 1975.
R. D. Ballard, Incredible world of the deep-sea rifts, National Geographic Magazine, vol. 156, pp. 680–688, 1979.
A. K. Barker, Coogan, L. A., and Gillis, K. M., Insights into the behaviour of sulphur in mid-ocean ridge axial hydrothermal systems from the composition of the sheeted dyke complex at Pito Deep, Chemical Geology, vol. 275, pp. 105–115, 2010.
B. L. Beard, Johnson, C. M., and Von Damm, K. L., Iron isotope constraints on Fe cycling and mass balance in the oxygenated Earth, Geochimica et Cosmochimica Acta, vol. 66. p. A58, 2002.
B. L. Beard, Johnson, C. M., Von Damm, K. L., and Poulson, R. L., Iron isotope constraints on Fe cycling and mass balance in oxygenated Earth oceans, Geology, vol. 31, pp. 629–632, 2003.
D. J. Beaudoin, Carmichael, C. A., Nelson, R. K., Reddy, C. M., Teske, A. P., and Edgcomb, V. P., Impact of protists on a hydrocarbon-degrading bacterial community from deep-sea Gulf of Mexico sediments: A microcosm study, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 129, pp. 350–359, 2016.
E. L. Becker, Cordes, E. E., Macko, S. A., and Fisher, C. R., Importance of seep primary production to Lophelia pertusa and associated fauna in the Gulf of Mexico, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 56, pp. 786–800, 2009.
R. A. Beinart, Nyholm, S. V., Dubilier, N., and Girguis, P. R., Intracellular Oceanospirillales inhabit the gills of the hydrothermal vent snail Alviniconcha with chemosynthetic, gamma-Proteobacterial symbionts, ENVIRONMENTAL MICROBIOLOGY REPORTS, vol. 6, pp. 656–664, 2014.
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.
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.
W. R. Bertsche, Pesch, A. J., and Winget, C. L., Investigation of operator performance and related design variables in undersea force feedback manipulator systems, December 1975, vol. 76-47. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1976, p. 35.
B. Bingham, Mindell, D., Wilcox, T., and Bowen, A., Integrating precision relative positioning into Jason/Medea ROV operations, Marine Technology Society Journal, vol. 40, pp. 87–96, 2006.
C. Boschi, Dini, A., Fruh-Green, G. L., and Kelley, D. S., Isotopic and element exchange during serpentinization and metasomatism at the Atlantis Massif (MAR 30 degrees N): Insights from B and Sr isotope data, Geochimica et Cosmochimica Acta, vol. 72, pp. 1801–1823, 2008.
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.
M. F. Bowen, Intercontinental ROV pilot training and telerobotics via satellite, in Global ocean partnership : MTS '92 proceedings, vol. 2, Washington, D.C.: Marine Technology Society, 1992, pp. 1067–1073.
J. M. Brooks, Fisher, C. R., Roberts, H., Bernard, B., MacDonald, I. R., Carney, R., Jove, S., Cordes, E. E., Wolff, G. A., and Goehring, E., Investigations of chemosynthetic communities on the lower continental slope of the Gulf of Mexico: Interim Report 1. New Orleans, LA: U.S. Department of the Interior, Minerals Management Service, 2008, p. 332.
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.
C
S. C. Cary, Warren, W., Anderson, E., and Giovannoni, S. J., Identification and localization of bacterial endosymbionts in hydrothermal vent taxa with symbiont-specific polymerase chain reaction amplification and in situ hybridization techniques, Molecular Marine Biology and Biotechnology, vol. 2, pp. 51–62, 1993.
J. J. Childress, Lee, R., Sanders, N. K., Felbeck, H., Oros, D., Toulmond, A., Desbruyeres, D., Brooks, J., and II, K. M. C., Inorganic carbon uptake in hydrothermal vent tubeworms facilitated by high environmental pCO2, Nature, vol. 362, pp. 147–149, 1993.
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.
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.
P. R. Craddock and Bach, W., Insights to magmatic–hydrothermal processes in the Manus back–arc Basin as recorded by anhydrite, Geochimica et Cosmochimica Acta, vol. 74, pp. 5514–5536, 2010.

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