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Journal Article
H. - T. Lin, Hsieh, C. - C., Repeta, D. J., and Rappé, M. S., Sampling of basement fluids via Circulation Obviation Retrofit Kits (CORKs) for dissolved gases, fluid fixation at the seafloor, and the characterization of organic carbon, MethodsX, p. 101033, 2020.
J. R. Voight, Lee, R. W., Reft, A. J., and Bates, A. E., Scientific Gear as a Vector for Non-Native Species at Deep-Sea Hydrothermal Vents, Conservation Biology, vol. 26, pp. 938–942, 2012.
D. A. Butterfield, Jonasson, I. R., Massoth, G. J., Feely, R. A., Roe, K. K., Embley, R. E., Holden, J. F., McDuff, R. E., Lilley, M. D., and Delaney, J. R., Seafloor eruptions and evolution of hydrothermal fluid chemistry, Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences, vol. 355, pp. 369–386, 1997.
D. J. Fornari, Ryan, W. B. F., and Fox, P. J., Sea-floor lava fields on the East Pacific Rise, Geology, vol. 13, pp. 413–416, 1985.
H. H. Roberts, Aharon, P., Carney, R., Larkin, J., and Sassen, R., Seafloor responses to hydrocarbon seeps, Louisiana continental slope, Geo-Marine Letters, vol. 10, pp. 232–243, 1990.
M. Tolstoy, Cowen, J. P., Baker, E. T., Fornari, D. J., Rubin, K. H., Shank, T. M., Waldhauser, F., Bohnenstiehl, D. R., Forsyth, D. W., Holmes, R. C., Love, B., Perfit, M. R., Weekly, R. T., Soule, S. A., and Glazer, B., A sea-floor spreading event captured by seismometers, Science, vol. 314, pp. 1920–1922, 2006.
J. B. Rucker, Stiles, N. T., and Busby, R. F., Sea-floor strength observations from the DRV Alvin in the Tongue of the Ocean, Bahamas, Southeastern Geology, vol. 8, pp. 1–8, 1967.
M. Sharma, Rosenberg, E. J., and Butterfield, D. A., Search for the proverbial mantle osmium sources to the oceans: Hydrothermal alteration of mid-ocean ridge basalt, Geochimica et Cosmochimica Acta, vol. 71, pp. 4655–4667, 2007.
P. A. Rona, Secret survivor, Natural History, vol. 113, pp. 50–55, 2004.
L. A. Zinke, Reese, B. Kiel, McManus, J., Wheat, C. G., Orcutt, B. N., and Amend, J. P., Sediment Microbial Communities Influenced by Cool Hydrothermal Fluid Migration, Frontiers in Microbiology, vol. 9, p. 1249, 2018.
V. Y. Rusakov, Lukashin, V. N., and Burovkin, A. A., A sediment trap for short-term studies of vertical particle fluxes in the ocean, Okeanologija, vol. 36, pp. 754–756, 1996.
J. C. MacIlvaine and Ross, D. A., Sedimentary processes on the continental slope of New England, Journal of Sedimentary Petrology, vol. 49, pp. 563–574, 1979.
M. R. Raven, Sessions, A. L., Fischer, W. W., and Adkins, J. F., Sedimentary pyrite $δ$34S differs from porewater sulfide in Santa Barbara Basin: Proposed role of organic sulfur, Geochimica et Cosmochimica Acta, vol. 186, pp. 120–134, 2016.
G. T. Rowe and Gardner, W. D., Sedimentation rates in the slope water of the northwest Atlantic Ocean measured directly with sediment traps, Journal of Marine Research, vol. 37, pp. 581–600, 1979.
C. Roman and Singh, H., A self-consistent bathymetric mapping algorithm, Journal of Field Robotics, vol. 24, pp. 23–50, 2007.
D. S. Kelley, Karson, J. A., Fruh-Green, G. L., Yoerger, D. R., Shank, T. M., Butterfield, D. A., Hayes, J. M., Schrenk, M. O., Olson, E. J., Proskurowski, G., Jakuba, M. V., Bradley, A. M., Larson, B. I., Ludwig, K. A., Glickson, D. A., Buckman, K., Bradley, A. S., Brazelton, W. J., Roe, K., Elend, M. J., Delacour, A., Bernasconi, S. M., Lilley, M. D., Baross, J. A., Summons, R. T., and Sylva, S. P., A serpentinite-hosted ecosystem: The lost city hydrothermal field, Science, vol. 307, pp. 1428–1434, 2005.
C. L. Waters, Sims, K. W. W., Klein, E. M., White, S. M., Reagan, M. K., and Girard, G., Sill to surface: Linking young off-axis volcanism with subsurface melt at the overlapping spreading center at 9°03′N East Pacific Rise, Earth and Planetary Science Letters, vol. 369–370, pp. 59–70, 2013.
M. V. Rudenko, Site survey of the Campeche Bank in the Gulf of Mexico, Okeanologija, vol. 38, pp. 129–133, 1998.
P. Polloni, Haedrich, R., Rowe, G., and Clifford, C. H., The size-depth relationship in deep ocean animals, Internationale Revue der Gesamten Hydrobiologie, vol. 64, pp. 39–46, 1979.
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.
G. T. Reynolds and Lutz, R. A., Sources of light in the deep ocean, Reviews of Geophysics, vol. 39, pp. 123–136, 2001.
M. F. McCowin, Feehery, C., and Rouse, G. W., Spanning the depths or depth-restricted: Three new species of Bathymodiolus (Bivalvia, Mytilidae) and a new record for the hydrothermal vent Bathymodiolus thermophilus at methane seeps along the Costa Rica margin, Deep Sea Research Part I Oceanographic Research Papers, p. 103322, 2020.
J. L. Karsten, Delaney, J. R., Rhodes, J. M., and Liias, R. A., Spatial and temporal evolution of magmatic systems beneath the Endeavour Segment, Juan de Fuca Ridge: Tectonic and petrologic constraints, Journal of Geophysical Research, vol. 95, pp. 19,219–235,256, 1990.
L. A. Levin, Ziebis, W., Mendoza, G. F., Growney, V. A., Tryon, M. D., Brown, K. M., Mahn, C., Gieskes, J. M., and Rathburn, A. E., Spatial heterogeneity of macrofauna at northern California methane seeps: Influence of sulfide concentration and fluid flow, Marine Ecology Progress Series, vol. 265, pp. 123–139, 2003.
I. Ferrera, Banta, A. B., and Reysenbach, A. - L., Spatial patterns of Aquificales in deep-sea vents along the Eastern Lau Spreading Center (SW Pacific), SYSTEMATIC AND APPLIED MICROBIOLOGY, vol. 37, pp. 442–448, 2014.

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