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S. Roth and Dymond, J., Transport and settling of organic material in a deep-sea hydrothermal plume: evidence from particle flux measurements, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 36, pp. 1237–1254, 1989.
G. N. Evans, Tivey, M. K., Monteleone, B., Shimizu, N., Seewald, J. S., and Rouxel, O. J., Trace element proxies of seafloor hydrothermal fluids based on secondary ion mass spectrometry (SIMS) of black smoker chimney linings, Geochimica Et Cosmochimica Acta, vol. 269, pp. 346-375, 2020.
C. G. Wheat, Mottl, M. J., and Rudniki, M., Trace element and REE composition of a low-temperature ridge flank hydrothermal spring, Geochimica et Cosmochimica Acta, vol. 66, pp. 3693–3705, 2002.
H. Singh, Roman, C., Pizarro, O., Eustice, R., and Can, A., Towards high-resolution imaging from underwater vehicles, International Journal of Robotics Research, vol. 26, pp. 55–74, 2007.
K. O. Emery and Ross, D. A., Topography and sediments of a small area of the continental slope south of Martha's Vineyard, Deep-Sea Research and Oceanographic Abstracts, vol. 15, pp. 415–422, 1968.
E. C. Raulfs, Macko, S. A., and Van Dover, C. L., Tissue and symbiont condition of mussels (Bathymodiolus thermophilus) exposed to varying levels of hydrothermal activity, Journal of the Marine Biological Association of the United Kingdom, vol. 84, pp. 229–234, 2004.
G. T. Rowe, Keller, G., Edgerton, H. E., Staresinic, N., and MacIlvaine, J. C., Time-lapse photography of the biological reworking of sediments in Hudson Submarine Canyon, vol. 74-79. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1974, p. 552.
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.
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.
H. W. Jannasch, Wirsen, C. O., Nelson, D. C., and Robertson, L. A., Thiomicrospira crunogena sp. nov., a colorless sulfur-oxidizing bacterium from a deep-sea hydrothermal vent, International Journal of Systematic Bacteriology, vol. 35, pp. 422–424, 1985.
A. I. Slobodkin, Reysenbach, A. - L., Slobodkina, G. B., Baslerov, R. V., Kostrikina, N. A., Wagner, I. D., and Bonch-Osmolovskaya, E. A., Thermosulfurimonas dismutans gen. nov., sp nov., an extremely thermophilic sulfur-disproportionating bacterium from a deep-sea hydrothermal vent, INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY, vol. 62, pp. 2565–2571, 2012.
P. Blondel, Sempéré, J. C., and Robigou, V., Textural analysis and structure-tracking for geological mapping: Applications to sonar data from the Endeavour Segment, Juan de Fuca Ridge, in Oceans '93: Engineering in harmony with the ocean: Proceedings, vol. 3, New York, N.Y.: IEEE, 1993, pp. III208–III213.
P. Blondel, Sempéré, J. C., Robigou, V., and Delaney, J. R., Textural analysis and geological mapping of high-resolution sonar images: Applications to Endeavour Segment, Juan de Fuca Ridge, EOS, Transactions, American Geophysical Union, vol. 74, p. 573, 1993.
R. W. Lee, Robert, K., Matabos, M., Bates, A. E., and Juniper, S. K., Temporal and spatial variation in temperature experienced by macrofauna at Main Endeavour hydrothermal vent field, Deep-Sea Research Part I: Oceanographic Research Papers, vol. 106, pp. 154–166, 2015.
G. J. Massoth, Baker, E. T., Lupton, J. E., Feely, R. A., Butterfield, D. A., Von Damm, K. L., Roe, K. K., and Lebon, G. T., Temporal and spatial variability of hydrothermal manganese and iron at Cleft segment, Juan de Fuca Ridge, Journal of Geophysical Research, vol. 99, pp. 4905–4923, 1994.
H. H. Roberts and Kohl, B., Temperature control of cold-water coral (Lophelia) mound growth by climate-cycle forcing, Northeast Gulf of Mexico, Deep-Sea Research Part I-Oceanographic Research Papers, vol. 140, pp. 142-158, 2018.
J. - P. M. Baquiran, Ramirez, G. A., Haddad, A. G., Toner, B. M., Hulme, S., Wheat, C. G., Edwards, K. J., and Orcutt, B. N., Temperature and Redox Effect on Mineral Colonization in Juan de Fuca Ridge Flank Subsurface Crustal Fluids, FRONTIERS IN MICROBIOLOGY, vol. 7, 2016.
W. B. Bryan, Maxwell, A. E., Bowin, C. O., Ballard, R. D., Phillips, J. D., Hess, F. R., Vine, A. C., Teal, J., Marquet, W. M., Uchupi, E., Wiebe, P. H., Zafiriou, O. C., Rowe, G. T., Smith, K. L., and Von Herzen, R. P., Technical progress report: Advanced marine technology 1 February 1971 - 31 July 1971, vol. 72-33. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1972, p. 48.
T. C. Aldrich, Maxwell, A. E., Bowin, C. O., Luyendyk, B. P., Phillips, J. D., Hess, F. R., Vine, A. C., Teal, J., Marquet, W. M., Uchupi, E., Wiebe, P. H., Rowe, G. T., Smith, K. L., Von Herzen, R. P., and Williams, D. L., Technical progress report: Advanced marine technology 1 August 1971 - 31 January 1972, vol. 72-90. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1972, p. 66.
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J. A. Breier, Rauch, C. G., McCartney, K., Toner, B. M., Fakra, S. C., White, S. N., and German, C. R., A suspended-particle rosette multi-sampler for discrete biogeochemical sampling in low-particle-density waters, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 56, pp. 1579–1589, 2009.
V. Tunnicliffe, Davies, K. T. A., Butterfield, D. A., Embley, R. W., Rose, J. M., and Chadwick, W. W., Survival of mussels in extremely acidic waters on a submarine volcano, Nature Geoscience, vol. 2, pp. 344–348, 2009.
C. A. Robinson, Bernhard, J. M., Levin, L. A., Mendoza, G. F., and Blanks, J. K., Surficial hydrocarbon seep infauna from the Blake Ridge (Atlantic Ocean, 2150 m) and the Gulf of Mexico (690–2240 m), Marine Ecology, vol. 25, pp. 313–336, 2004.
D. K. Adams, McGillicuddy, D. J., Zamudio, L., Thurnherr, A. M., Liang, X., Rouxel, O. J., German, C. R., and Mullineaux, L. S., Surface-generated mesoscale eddies transport deep-sea products from hydrothermal vents, Science, vol. 332, pp. 580–583, 2011.
G. W. Luther, Glazer, B. Y., Hohmann, L., Popp, J. I., Taillefert, M., Rozan, T. F., Brendel, P. J., Theberge, S. M., and Nuzzio, D. B., Sulfur speciation monitored in situ with solid state gold amalgam voltammetric microelectrodes: Polysulfides as a special case in sediments, microbial mats and hydrothermal vent waters, Journal of Environmental Monitoring, vol. 3, pp. 61–66, 2001.
J. F. Flores, Fisher, C. R., Carney, S. L., Green, B. N., Freytag, J. K., Schaeffer, S. W., and Royer, W. E., Sulfide binding is mediated by zinc ions discovered in the crystal structure of a hydrothermal vent tubeworm hemoglobin, Proceedings of the National Academy of Sciences of the United States of America, vol. 102, pp. 2713–2718, 2005.

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