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P. Linke, Suess, E., Torres, M., Martens, V., Rugh, W. D., Ziebis, W., and Kulm, L. D., In situ measurement of fluid flow from cold seeps at active continental margins, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 41, pp. 721–739, 1994.
B. I. Larson, Olson, E. J., and Lilley, M. D., In situ measurement of dissolved chloride in high temperature hydrothermal fluids, Geochimica et Cosmochimica Acta, vol. 71, pp. 2510–2523, 2007.
B. I. Larson, Olson, E. J., and Lilley, M. D., In situ measurement of dissolved chloride in high temperature hydrothermal fluids, Geochimica et Cosmochimica Acta, vol. 71, pp. 2510–2523, 2007.
P. W. Lipman, Sisson, T. W., Ui, T., and Naka, J., In search of ancestral Kilauea Volcano, Geology, vol. 28, pp. 1079–1082, 2000.
L. S. Mullineaux, Micheli, F., Peterson, C. H., Lenihan, H. S., and Markus, N., Imprint of past environmental regimes on structure and succession of a deep-sea hydrothermal vent community, Oecologia, vol. 161, pp. 387–400, 2009.
N. J. Debenham, Lambshead, P. J. D., Ferrero, T. J., and Smith, C. R., The impact of whale falls on nematode abundance in the deep sea, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 51, pp. 701–706, 2004.
W. W. Chadwick Jr., Merle, S. G., Buck, N. J., J Lavelle, W., Resing, J. A., and Ferrini, V., Imaging of CO2 bubble plumes above an erupting submarine volcano, NW Rota-1, Mariana Arc, GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, vol. 15, pp. 4325–4342, 2014.
L. S. Mullineaux, Kim, S., Pooley, A., and Lutz, R., Identification of Archaeogastropod larvae from a hydrothermal vent community, Marine Biology, vol. 124, pp. 551–560, 1995.
C. Langmuir, Humphris, S. E., Fornari, D. J., Van Dover, C. L., Von Damm, K. L., Tivey, M. K., Colodner, D., Charlou, J. L., Desonie, D., Wilson, D., Fouquet, Y., Klinkhammer, G., and Bougault, H., Hydrothermal vents near a mantle hot spot: The Lucky Strike vent field at 37 degrees N on the Mid-Atlantic Ridge, Earth and Planetary Science Letters, vol. 148, pp. 69–91, 1997.
M. Yucel, Gartman, A., Chan, C. S., and Luther, G. W., Hydrothermal vents as a kinetically stable source of iron-sulphide-bearing nanoparticles to the ocean, Nature Geoscience, vol. 4, pp. 367–371, 2011.
H. A. Nees, Moore, T. S., Mullaugh, K. M., Holyoke, R. R., Janzen, C. P., Ma, S., Metzger, E., Waite, T. J., Yucel, M., Lutz, R. A., Shank, T. M., Vetriani, C., Nuzzio, D. B., and Luther, G. W., Hydrothermal vent mussel habitat chemistry, pre- and post-eruption at 9 degrees 50′North on the East Pacific Rise, Journal of Shellfish Research, vol. 27, pp. 169–175, 2008.
H. A. Nees, Moore, T. S., Mullaugh, K. M., Holyoke, R. R., Janzen, C. P., Ma, S., Metzger, E., Waite, T. J., Yucel, M., Lutz, R. A., Shank, T. M., Vetriani, C., Nuzzio, D. B., and Luther, G. W., Hydrothermal vent mussel habitat chemistry, pre- and post-eruption at 9 degrees 50′North on the East Pacific Rise, Journal of Shellfish Research, vol. 27, pp. 169–175, 2008.
R. N. Hey, Massoth, G. J., Vrijenhoek, R. C., Rona, P. A., Lupton, J., and Butterfield, D. A., Hydrothermal vent geology and biology at earth's fastest spreading rates, Marine Geophysical Researches, vol. 27, pp. 137–153, 2006.
D. P. Connelly, Copley, J. T., Murton, B. J., Stansfield, K., Tyler, P. A., German, C. R., Van Dover, C. L., Amon, D., Furlong, M., Grindlay, N., Hayman, N., Huehnerbach, V., Judge, M., Le Bas, T., McPhail, S., Meier, A., Nakamura, K. I., Nye, V., Pebody, M., Pedersen, R. B., Plouviez, S., Sands, C., Searle, R. C., Stevenson, P., Taws, S., and Wilcox, S., Hydrothermal vent fields and chemosynthetic biota on the world's deepest seafloor spreading centre, Nature Communications, vol. 3, p. 620, 2012.
C. R. Fisher, Takai, K., and Le Bris, N., Hydrothermal Vent Ecosystems, Oceanography, vol. 20, pp. 14–23, 2007.
P. Lonsdale and Becker, K., Hydrothermal plumes, hot springs, and conductive heat flow in the southern trough of Guaymas Basin, Earth and Planetary Science Letters, vol. 73, pp. 211–225, 1985.
S. Q. Lang and Benitez-Nelson, B., Hydrothermal Organic Geochemistry (HOG) sampler for deployment on deep-sea submersibles, Deep Sea Research Part I Oceanographic Research Papers, p. 103529, 2021.
C. Lalou, Brichet, E., Jehanno, C., and Perez-Leclaire, H., Hydrothermal manganese oxide deposits from Galapagos mounds, DSDP Leg 70, Hole 509B and Alvin dives 729 and 721, Earth and Planetary Science Letters, vol. 63, pp. 63–75, 1983.
C. R. German, Yoerger, D. R., Jakuba, M. V., Shank, T. M., Langmuir, C. H., and Nakamura, K. I., Hydrothermal exploration with the Autonomous Benthic Explorer, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 55, pp. 203–219, 2008.
C. Wilson, Charlou, J. L., Ludford, E., Klinkhammer, G., Chin, C., Bougault, H., German, C. R., Speer, K., and Palmer, M., Hydrothermal anomalies in the Lucky Strike segment on the Mid-Atlantic Ridge (37 degrees 17'N), Earth and Planetary Science Letters, vol. 142, pp. 467–477, 1996.
E. E. Davis, Becker, K., Dziak, R. P., Cassidy, J. F., Wang, K., and Lilley, M., Hydrological response to a seafloor spreading episode on the Juan de Fuca ridge, Nature, vol. 430, pp. 335–338, 2004.
E. J. Screaton, Carson, B., and Lennon, G. P., Hydrogeologic properties of a thrust fault within the Oregon Accretionary Prism, Journal of Geophysical Research, vol. 100, pp. 20,20–25,3, 1995.
L. C. Stewart, Llewellyn, J. G., Butterfield, D. A., Lilley, M. D., and Holden, J. F., Hydrogen and thiosulfate limits for growth of a thermophilic, autotrophic Desulfurobacterium species from a deep-sea hydrothermal vent, ENVIRONMENTAL MICROBIOLOGY REPORTS, vol. 8, pp. 196–200, 2016.
L. C. Stewart, Llewellyn, J. G., Butterfield, D. A., Lilley, M. D., and Holden, J. F., Hydrogen and thiosulfate limits for growth of a thermophilic, autotrophic Desulfurobacterium species from a deep-sea hydrothermal vent, ENVIRONMENTAL MICROBIOLOGY REPORTS, vol. 8, pp. 196–200, 2016.
C. Johansen, Macelloni, L., Natter, M., Silva, M., Woosley, M., Woolsey, A., Diercks, A. R., Hill, J., Viso, R., Marty, E., Lobodin, V. V., Shedd, W., Joye, S. B., and MacDonald, I. R., Hydrocarbon migration pathway and methane budget for a Gulf of Mexico natural seep site: Green Canyon 600, Earth and Planetary Science Letters, vol. 545, p. 116411, 2020.

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