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D
B. J. Campbell, Polson, S. W., Allen, L. Zeigler, Williamson, S. J., Lee, C. K., K Wommack, E., and S Cary, C., Diffuse flow environments within basalt- and sediment-based hydrothermal vent ecosystems harbor specialized microbial communities, FRONTIERS IN MICROBIOLOGY, vol. 4, 2013.
S. Gollner, Govenar, B., Arbizu, P. Martinez, Mills, S., Le Bris, N., Weinbauer, M., Shank, T. M., and Bright, M., Differences in recovery between deep-sea hydrothermal vent and vent-proximate communities after a volcanic eruption, DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, vol. 106, pp. 167–182, 2015.
F. Pradillon, Zbinden, M., Le Bris, N., Hourdez, S., Barnay, A. S., and Gaill, F., Development of assemblages associated with alvinellid colonies on the walls of high-temperature vents at the East Pacific Rise, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 56, pp. 1622–1631, 2009.
D. K. Smith, Schouten, H., Dick, H. J. B., Cann, J. R., Salters, V., Marschall, H. R., Ji, F., Yoerger, D. R., Sanfilippo, A., Parnell-Turner, R., Palmiotto, C., Zheleznov, A., Bai, H., Junkin, W., Urann, B., Dick, S., Sulanowska, M., Lemmond, P., and Curry, S., Development and evolution of detachment faulting along 50 km of the Mid-Atlantic Ridge near 16.5°N, Geochemistry, Geophysics, Geosystems, vol. 15, pp. 4692–4711, 2014.
M. C. Kleinrock, Humphris, S. E., Shaw, P., Bowen, A., Crook, T., Davis, C. S., Elder, R., Gleason, D. E., Goff, J., Goldstein, L., Handley, W., Howland, J., Hussenoeder, S., Koga, K., Lerner, S., Nakamura, K., Rashid, M., L Wetzel, R., Sellers, W., Sulanowska, M., Van Dover, C. L., and Whitcomb, L., Detailed structure and morphology of the TAG active hydrothermal mound and its geotectonic environment, in Proceedings of the Ocean Drilling Program, Initial reports, vol. 158, E. Maddox, Ed. College Station, Tex.: Ocean Drilling Program, Texas A{&}M University, 1996, pp. 15–21.
T. B. Aldrich, Leiby, J., and Sharp, A. G., Design and testing of the deep-submersible hoist system for the catamaran R/V Lulu, vol. 71-46. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1971, p. var. p.
R. Eldred, Lussier, J., and Pollman, A., Design and Testing of a Spherical Autonomous Underwater Vehicle for Shipwreck Interior Exploration, Journal of Marine Science and Engineering, vol. 9, p. 320, 2021.
A. Colaco, Dehairs, F., Desbruyeres, D., Le Bris, N., and Sarradin, P. - M., Delta 13C signature of hydrothermal mussels is related with the end-member fluid concentrations of H2S and CH4 at the Mid-Atlantic Ridge hydrothermal vent fields, Cahiers de Biologie Marine, vol. 43, pp. 259–262, 2002.
B. R. T. Simoneit, Lonsdale, P. F., Edmond, J. M., and Shanks, W. C., Deep-water hydrocarbon seeps in Guaymas Basin, Gulf of California, Applied Geochemistry, vol. 5, pp. 41–49, 1990.
R. A. Lutz and Kristof, E., Deep-sea vents: Science at the extreme, National Geographic Magazine, vol. 198, pp. 116–127, 2000.
C. Vetriani, Voordeckers, J. W., Crespo-Medina, M., O'Brien, C. E., Giovannelli, D., and Lutz, R. A., Deep-sea hydrothermal vent Epsilonproteobacteria encode a conserved and widespread nitrate reduction pathway (Nap), ISME JOURNAL, vol. 8, pp. 1510–1521, 2014.
R. A. Lutz, Desbruyeres, D., Shank, T. M., and Vrijenhoek, R. C., A deep-sea hydrothermal vent community dominated by Stauromedusae, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 45, pp. 329–334, 1998.
A. V. Gebruk, Chevaldonne, P., Shank, T. M., Lutz, R. A., and Vrijenhoek, R. C., Deep-sea hydrothermal vent communities of the Logatchev area (14 degrees 45'N, Mid-Atlantic Ridge): Diverse biotypes and high biomass, Journal of the Marine Biological Association of the United Kingdom, vol. 80, pp. 383–393, 2000.
L. M. L. Lauerman and Kaufmann, R. S., Deep-sea epibenthic echinoderms and a temporally varying food supply: results from a one year time series in the N.E. Pacific, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 45, pp. 817–842, 1998.
G. T. Rowe, The deep-sea ecosystem, in Analysis of Marine Ecosystems, A. R. Longhurst, Ed. New York, N.Y.: Academic Press, 1981, pp. 235–267.
S. Q. Lang, Früh-Green, G. L., Bernasconi, S. M., Brazelton, W. J., Schrenk, M. O., and McGonigle, J. M., Deeply-sourced formate fuels sulfate reducers but not methanogens at Lost City hydrothermal field, Scientific Reports, vol. 8, p. 755, 2018.
R. A. Lutz, Dawn in the deep, National Geographic Magazine, vol. 203, pp. 92–103, 2003.
S. Lerner, Data monitoring, access, and analysis systems for the M.V. Derbyshire survey, 1997, in OCC '98 proceedings: the Marine Technology Society Annual Conference; Ocean Community Conference '98, November 16-19 1998, Baltimore Convention Center., vol. 2, Washington, D.C.: Marine Technology Society, 1998, pp. 1109–1113.
C
D. J. Stanley, Sheng, H., Lambert, D. N., Rona, P. A., McGrail, D. W., and Jenkyns, J. S., Current-influenced depositional provinces, continental margin off Cape Hatteras, identified by petrologic method, Marine Geology, vol. 40, pp. 215–235, 1981.
H. Wimbush and Lesht, B., Current-induced sediment movement in the deep Florida Straits; Critical parameters, Journal of Geophysical Research, vol. 84, pp. 2495–2502, 1979.
E. Pacific Ri Group, Ballard, R. D., Craig, H., Edmond, J., Einaudi, M., Holcomb, R., Holland, H. D., Hopson, C., Luyendyk, B. P., Macdonald, K., Morton, J., Orcutt, J., and Sleep, N., Crustal processes of the Mid-Ocean Ridge, Science, vol. 213, pp. 31–40, 1981.
K. C. Macdonald and Luyendyk, B. P., The crest of the East Pacific Rise, Scientific American, vol. 244, pp. 100–108,110,112–114,116, 1981.
R. Batiza, Fornari, D. J., Vanko, D. A., and Lonsdale, P., Craters, calderas, and hyaloclastites on young Pacific seamounts, Journal of Geophysical Research, vol. 89, pp. 8371–8390, 1984.
L. A. Hurtado, Mateos, M., Lutz, R. A., and Vrijenhoek, R. C., Coupling of bacterial endosymbiont and host mitochondrial genomes in the hydrothermal vent clam Calyptogena magnifica, Applied and Environmental Microbiology, vol. 69, pp. 2058–2064, 2003.
M. D. Kurz, Moreira, M., Curtice, J., Lott, D. E., Mahoney, J. J., and Sinton, J. M., Correlated helium, neon, and melt production on the super-fast spreading East Pacific Rise near 17 degrees S, Earth and Planetary Science Letters, vol. 232, pp. 125–142, 2005.

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