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R
H. H. Roberts, Shedd, W., and Hunt, J., Dive site geology: DSV ALVIN (2006) and ROV JASON II (2007) dives to the middle-lower continental slope, northern Gulf of Mexico, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 57, pp. 1837–1858, 2010.
H. H. Roberts, Potter, J. M., and Wolff, G. A., NOAA Ocean Explorer: Expedition to the deep slope, vol. 2007. U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Office of Ocean Exploration, Silver Spring, Md., 2006.
H. Roberts, Carney, R., Kupchik, M., Fisher, C. R., Nelson, K., Becker, E., Goehring, E., Lessard-Pilon, S., Telesnicki, G., Bernard, B., Brooks, J., Bright, M., Cordes, E., Hourdez, S., Hunt, J., Shedd, W., Boland, G., Joye, S., Samarkin, V., Bernier, M., Bowles, M., MacDonald, I., Niemann, H., Petersen, C., Morrison, C., and Potter, J., Alvin explores the deep northern Gulf of Mexico Slope, EOS, Transactions, American Geophysical Union, vol. 88, pp. 341–342, 2007.
K. Robert, Onthank, K. L., Juniper, S. K., and Lee, R. W., Small-scale thermal responses of hydrothermal vent polynoid polychaetes: Preliminary in situ experiments and methodological development, Journal of Experimental Marine Biology and Ecology, vol. 420-421, pp. 69–76, 2012.
J. M. Robb, Kirby, J. R., Hampson, J. C., Gibson, P. R., and Hecker, B., Furrowed outcrops of Eocene chalk on the lower continental slope offshore New Jersey, Geology, vol. 11, pp. 182–186, 1983.
A. Robador, LaRowe, D. E., Jungbluth, S. P., Lin, H. - T., Rappe, M. S., Nealson, K. H., and Amend, J. P., Nanocalorimetric Characterization of Microbial Activity in Deep Subsurface Oceanic Crustal Fluids, FRONTIERS IN MICROBIOLOGY, vol. 7, 2016.
A. Robador, Jungbluth, S. P., LaRowe, D. E., Bowers, R. M., Rappe, M. S., Amend, J. P., and Cowen, J. P., Activity and phylogenetic diversity of sulfate-reducing microorganisms in low-temperature subsurface fluids within the upper oceanic crust, FRONTIERS IN MICROBIOLOGY, vol. 5, 2015.
W. I. Ridley, Perfit, M. R., Jonasson, I. R., and Smith, M. F., Hydrothermal alteration in oceanic ridge volcanics: A detailed study at the Galapagos fossil hydrothermal field, Geochimica et Cosmochimica Acta, vol. 58, pp. 2477–2494, 1994.
D. T. Rickard and Luther, G. W., Chemistry of iron sulfides, Chemical Reviews, vol. 107, pp. 514–582, 2007.
K. P. Richberg, Identification of chemoautotrophic microorganisms from a diffuse flow hydrothermal vent at EPR 9 degrees North using 13C DNA Stable Isotope Probing and Catalyzed Activated Reporter Deposition-Fluorescence in situ Hybridization, Massachusetts Institute of Technology and the Woods Hole Oceanographic Institution, Cambridge, MA and Woods Hole, MA, 2010.
D. C. Rhoads, Lutz, R. A., and Cerrato, R. M., Growth of mussels at deep-sea hydrothermal vents along the Galapagos Rift, Journal of Shellfish Research, vol. 1, p. 121, 1981.
D. C. Rhoads, Lutz, R. A., Revelas, E. C., and Cerrato, R. M., Growth of bivalves at deep-sea hydrothermal vents along the Galapagos Rift, Science, vol. 214, pp. 911–913, 1981.
A. - L. Reysenbach, Banta, A. B., Boone, D. R., Cary, S. C., and Luther, G. W., Microbial essentials at hydrothermal vents, Nature, vol. 404, p. 835, 2000.
A. - L. Reysenbach, Liu, Y. T., Banta, A. B., Beveridge, T. J., Kirshtein, J. D., Schouten, S., Tivey, M. K., Von Damm, K. L., and Voytek, M. A., A ubiquitous thermoacidophilic archaeon from deep-sea hydrothermal vents, Nature, vol. 442, pp. 444–447, 2006.
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.
A. L. Reysenbach, St John, E., Meneghin, J., Flores, G. E., Podar, M., Dombrowski, N., Spang, A., L'Haridon, S., Humphris, S. E., de Ronde, C. E. J., Tontini, F. C., Tivey, M., Stucker, V. K., Stewart, L. C., Diehl, A., and Bach, W., Complex subsurface hydrothermal fluid mixing at a submarine arc volcano supports distinct and highly diverse microbial communities, Proceedings of the National Academy of Sciences of the United States of America, vol. 117, pp. 32627-32638, 2020.
G. T. Reynolds and Lutz, R. A., Sources of light in the deep ocean, Reviews of Geophysics, vol. 39, pp. 123–136, 2001.
S. Revillon, Hallot, E., Arndt, N. T., Chauvel, C., and Duncan, R. A., A complex history for the Caribbean Plateau; petrology, geochemistry, and geochronology of the Beata Ridge, South Hispaniola, Journal of Geology, vol. 108, pp. 641–661, 2000.
J. Reveillaud, Reddington, E., McDermott, J., Algar, C., Meyer, J. L., Sylva, S., Seewald, J., German, C. R., and Huber, J. A., Subseafloor microbial communities in hydrogen-rich vent fluids from hydrothermal systems along the Mid-Cayman Rise, ENVIRONMENTAL MICROBIOLOGY, vol. 18, pp. 1970–1987, 2016.
J. Reveillaud, Anderson, R., Reves-Sohn, S., Cavanaugh, C., and Huber, J. A., Metagenomic investigation of vestimentiferan tubeworm endosymbionts from Mid-Cayman Rise reveals new insights into metabolism and diversity, Microbiome, vol. 6, no. Journal Article, pp. 19 - 19, 2018.
F. Renosto, Martin, R. L., Borrell, J. L., Nelson, D. C., and Segel, I. H., ATP sulfurylase from trophosome tissue of Riftia pachyptila (hydrothermal vent tube worm), Archives of Biochemistry and Biophysics, vol. 290, pp. 66–78, 1991.
V. Renard, Hekinian, R., Francheteau, J., Ballard, R. D., and Backer, H., Submersible observations at the axis of the ultra-fast-spreading East Pacific Rise (17-30 to 21-30 S), Earth and Planetary Science Letters, vol. 75, pp. 339–353, 1985.
H. M. Reiswig and Stone, R. P., New glass sponges (Porifera: Hexactinellida) from deep waters of the central Aleutian Islands, Alaska, Zootaxa, vol. 3628, pp. 1–64, 2013.
C. A. Reiss and Zierenberg, R. A., Preliminary report of the 1988 A2-88-NC Gorda Ridge Cruise. Reston, Va.: US Geological Survey, 1994, p. 109.
E. Reeves, Seewald, J. S., Saccocia, P. J., Walsh, E., Bach, W., Craddock, P. R., Shanks, W. C., Sylva, S. P., Pichler, T., and Rosner, M., Geochemistry of hydrothermal fluids from the PACMANUS, Northeast Pual and Vienna Woods hydrothermal fields, Manus Basin, Papua New Guinea, Geochimica et Cosmochimica Acta, vol. 75, pp. 1088–1123, 2011.

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