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F
D. Feng, Birgel, D., Peckmann, J., Roberts, H. H., Joye, S. B., Sassen, R., Liu, X. - L., Hinrichs, K. - U., and Chen, D., Time integrated variation of sources of fluids and seepage dynamics archived in authigenic carbonates from Gulf of Mexico Gas Hydrate Seafloor Observatory, Chemical Geology, vol. 385, pp. 129–139, 2014.
Z. A. Filatova, Thermophylic communities of deep-sea bottom fauna in rift zones of the Pacific Ocean, Oceanology, vol. 20, pp. 339–341, 1980.
Z. A. Filatova, On the thermophilic deep-sea bottom faunal communities of the Pacific Ocean rift zones, Oceanology, vol. 20, pp. 520–524, 1980.
A. J. Findlay, Gartman, A., Shaw, T. J., and Luther, G. W., Trace metal concentration and partitioning in the first 1.5 m of hydrothermal vent plumes along the Mid-Atlantic Ridge: TAG, Snakepit, and Rainbow, Chemical Geology, vol. 412, pp. 117–131, 2015.
C. R. Fisher, Toward an appreciation of hydrothermal-vent animals: their environment, physiological ecology, and tissue stable isotope values, in Seafloor Hydrothermal Systems: Physical, Chemical, Biological, and Geochemical Interactions, S. E. Humphris, Ed. Washington, D.C.: American Geophysical Union, 1995, pp. 297–316.
C. R. Fisher and Childress, J. J., Translocation of fixed carbon from symbiotic bacteria to host tissues in the gutless bivalve Solemya reidi, Marine Biology, vol. 93, pp. 59–68, 1986.
C. R. Fisher, Temperature and sulphide tolerance of hydrothermal vent fauna, Cahiers de Biologie Marine, vol. 39, pp. 283–286, 1998.
D. J. Fornari and Embley, R. W., Tectonic and volcanic controls on hydrothermal processes at the Mid-Ocean Ridge: An overview based on near-bottom and submersible studies, in Seafloor Hydrothermal Systems: Physical, Chemical, Biological, and Geochemical Interactions, S. E. Humphris, Ed. Washington, D.C.: American Geophysical Union, 1995, pp. 1–46.
D. J. Fornari, Shank, T. M., Von Damm, K. L., Gregg, T. K. P., Lilley, M., Levai, G., Bray, A., Haymon, R. M., Perfit, M. R., and Lutz, R., Time-series temperature measurements at high-temperature hydrothermal vents, East Pacific Rise 9 degrees 49'-51'N; evidence for monitoring a crustal cracking event, Earth and Planetary Science Letters, vol. 160, pp. 419–431, 1998.
D. J. Fornari, Perfit, M. R., Smith, M., Haymon, R. M., Edwards, M. H., Cochran, J. R., Coakely, B., Von Damm, K. L., and Lilley, M., Temporal variation in the morphology and structure of the axial summit caldera and young volcanic flows, and relationship to hydrothermal venting on the East Pacific Rise crest 9 30-51'N, EOS, Transactions, American Geophysical Union, vol. 75, p. 618, 1994.
G
O. Garcia-Pineda, MacDonald, I., Silva, M., Shedd, W., S Asl, D., and Schumaker, B., Transience and persistence of natural hydrocarbon seepage in Mississippi Canyon, Gulf of Mexico, Deep Sea Research Part II: Topical Studies in Oceanography, vol. 129, pp. 119–129, 2016.
S. Gollner, Zekeley, J., Govenar, B., Le Bris, N., Nemeschkal, H. L., Fisher, C. R., and Bright, M., Tubeworm-associated permanent meiobenthic communities from two chemically different hydrothermal vent sites on the East Pacific Rise, Marine Ecology Progress Series, vol. 337, pp. 39–49, 2007.
M. R. Goud and Karson, J. A., Tectonics of short-offset, slow-slipping transform zones in the FAMOUS area, Mid-Atlantic Ridge, Marine Geophysical Researches, vol. 7, pp. 489–514, 1985.
B. W. Govenar, Bergquist, D. C., Urcuyo, I. A., Eckner, J. T., and Fisher, C. R., Three Ridgeia piscesae assemblages from a single Juan de Fuca Ridge sulphide edifice: Structurally different and functionally similar, Cahiers de Biologie Marine, vol. 43, pp. 247–252, 2002.
M. M. Gowing and Wishner, K. F., Trophic relationships of deep-sea calanoid copepods from the benthic boundary layer of the Santa Catalina Basin, California, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 33, pp. 939–961, 1986.
J. F. Grassle, Temporal adaptations in sibling species of Capitella, in Ecology of Marine Benthos, B. C. Coull, Ed. Columbia, S.C.: University of South Carolina Press, 1977, pp. 177–189.
H
E. E. Hays, Technical report, ARPA Program final report: 1 February 1971-31 December 1975, vol. 76-9. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1976, p. 29.
T. A. Heppenheimer, To the bottom of the sea, American Heritage of Invention {&} Technology, vol. 8, pp. 28–38, 1992.
R. R. Hessler, Smithey, W. M., Boudrias, M. A., Keller, C. H., Lutz, R. A., and Childress, J. J., Temporal change in megafauna at the Rose Garden hydrothermal vent (Galapagos Rift; eastern tropical Pacific), Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 35, pp. 1681–1710, 1988.
S. Hirano, Ogawa, Y., Yujiro, F., Fujioka, K., and Kawamura, K., Temporal changes of cracks in the oceanward slope of northern Japan Trench off Sanriku: Six-year observation by submersibles, JAMSTEC Journal of Deep Sea Research, pp. 445–454, 1999.
J. F. Holden, Summit, M., and Baross, J. A., Thermophilic and hyperthermophilic microorganisms in 3–30°C hydrothermal fluids following a deep-sea volcanic eruption, FEMS Microbiology Ecology, vol. 25, pp. 33–41, 1998.
T. Holler, Widdel, F., Knittel, K., Amann, R., Kellermann, M. Y., Hinrichs, K. - U., Teske, A., Boetius, A., and Wegener, G., Thermophilic anaerobic oxidation of methane by marine microbial consortia, ISME JOURNAL, vol. 5, pp. 1946–1956, 2011.
M. J. Hornbach, Ruppel, C. D., and Van Dover, C. L., Three-dimensional structure of fluid conduits sustaining an active deep marine cold seep, Geophysical Research Letters, vol. 34, p. L05601, 2007.
D. S. Hosom, Hays, E. E., Hess, F. R., McElroy, P. T., Marquet, W. M., Porter, R. P., Spindel, R. C., Winget, C. L., and Striffler, F. L., Technical progress report: Advanced marine technology 1 February 1974 - 31 July 1974, vol. 74-100. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1974, p. 22.

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