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D. Stakes and Moore, W. S., Evolution of hydrothermal activity on the Juan de Fuca Ridge: Observations, mineral ages and Ra isotope ratios, Journal of Geophysical Research, vol. 96, pp. 21,721–739,752, 1991.
V. Robigou and Delaney, J. R., Evolution of two hydrothermal vent fields on the Endeavour Segment, Juan de Fuca Ridge, EOS, Transactions, American Geophysical Union, vol. 75, p. 706, 1994.
S. K. Goffredi, Hurtado, L. A., Hallam, S. J., and Vrijenhoek, R. C., Evolutionary relationships of deep-sea vent and cold seep clams (Mollusca: Vesicomyidae) of the "pacifica/lepta" species complex, Marine Biology, vol. 142, pp. 311–320, 2003.
R. L. Simister, Antzis, E. W., and White, H. K., Examining the diversity of microbes in a deep-sea coral community impacted by the Deepwater Horizon oil spill, Deep Sea Research Part II: Topical Studies in Oceanography, vol. 129, pp. 157–166, 2016.
P. Gente, Mével, C., Auzende, J. M., Karson, J. A., and Fouquet, Y., An example of a recent accretion on the Mid-Atlantic Ridge: The Snake Pit neovolcanic ridge (MARK Area, 23 degrees 22'N), Tectonophysics, vol. 190, pp. 1–29, 1991.
C. A. Brunner and Culver, S. J., An example of slump block construction of the continental rise, Journal of the Mississippi Academy of Sciences, vol. 37, p. 42, 1992.
W. J. Jenkins, Edmond, J. M., and Corliss, J. B., Excess 3He and 4He in Galapagos submarine hydrothermal waters, Nature, vol. 272, pp. 156–158, 1978.
A. J. Pietruszka, Keyes, M. J., Duncan, J. A., Hauri, E. H., Carlson, R. W., and Garcia, M. O., Excesses of seawater-derived 234U in volcanic glasses from Loihi Seamount due to crustal contamination, Earth and Planetary Science Letters, vol. 304, pp. 280–289, 2011.
C. D. Girice, The existence of a bottom-living calanoid copepod fauna in the deep water with descriptions of five new species, Crustaceana, vol. 23, pp. 219–242, 1972.
G. W. Quaint, Expandable Floating Bases Program: Model Test and Analysis, 1973.
D. K. Adams, Mills, S. W., Shank, T. M., and Mullineaux, L. S., Expanding dispersal studies at hydrothermal vents through species identification of cryptic larval forms, MARINE BIOLOGY, vol. 157, pp. 1049–1062, 2010.
A. - L. Reysenbach, Gotz, D., Banta, A., Jeanthon, C., and Fouquet, Y., Expanding the distribution of the Aquificales to the deep-sea vents on Mid-Atlantic Ridge and Central Indian Ridge, Cahiers de Biologie Marine, vol. 43, pp. 425–428, 2002.
S. Beckmann, Farag, I. F., Zhao, R., Christman, G. D., Prouty, N. G., and Biddle, J. F., Expanding the repertoire of electron acceptors for the anaerobic oxidation of methane in carbonates in the Atlantic and Pacific Ocean, The ISME Journal: Multidisciplinary Journal of Microbial Ecology, pp. 1-14, 2021.
H. H. Roberts and Potter, J. M., Expedition to the Deep Slope 2007, June 4 - July 6, 2007, vol. 2008. Washington, D.C.: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Office of Ocean Exploration, 2007.
J. M. Cohen, An experimental analysis of the dynamics of a submerged cradle in a seaway, Naval Engineers Journal, vol. 92, pp. 25–35, 1980.
J. M. Cohen, An experimental analysis of the dynamics of a submerged tethered cradle in a seaway, Massachusetts Institute of Technology and Woods Hole Oceanographic Institution, Cambridge, Mass. and Woods Hole, Mass., 1972.
J. M. Cohen, An experimental analysis of the dynamics of a submerged tethered cradle in a seaway, vol. 72-45. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1972, p. 62.
H. O. Berteaux and Morey, R. L., Experimental analysis of the failed wire ropes of the submersible Alvin hoist system. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1970, p. 37.
P. T. McElroy, Experimental applications of the modular acoustic system for the submersible Alvin. Cambridge, Mass.: Bolt Beranek and Newman, Inc., 1975, p. 108.
R. J. Kinzler, Experimental constraints on the generation and evolution of mid-ocean ridge basalts, Massachusetts Institute of Technology, Cambridge, Mass., 1991.
J. R. Voight, Experimental deep-sea deployments reveal diverse Northeast Pacific wood-boring bivalves of Xylophagainae (Myoida: Pholadidae), Journal of Molluscan Studies, vol. 73, pp. 377–391, 2007.
C. L. Van Dover and Lutz, R. A., Experimental ecology at deep-sea hydrothermal vents: a perspective, Journal of Experimental Marine Biology and Ecology, vol. 300, pp. 273–307, 2004.
H. M. Page, Fisher, C. R., Fiala-Medioni, A., and Childress, J. J., Experimental evidence for filter-feeding by the hydrothermal vent mussel, Bathymodiolus thermophilus, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 38, pp. 1455–1461, 1991.
L. Mevenkamp, Van Campenhout, J., and Vanreusel, A., Experimental evidence for selective settlement of meiofauna from two distinct environments after sediment suspension, Journal of Experimental Marine Biology and Ecology, vol. 474, pp. 195–203, 2016.
B. Govenar and Fisher, C. R., Experimental evidence of habitat provision by aggregations of Riftia pachyptila at hydrothermal vents on the East Pacific Rise, Marine Ecology, vol. 28, pp. 3–14, 2007.

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