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Journal Article
C. R. Fisher, Roberts, H., Cordes, E., and Bernard, B., Cold Seeps and Associated Communities of the Gulf of Mexico, Oceanography, vol. 20, pp. 118–129, 2007.
B. H. Robison, The coevolution of undersea vehicles and deep-sea research, Marine Technology Society Journal, vol. 33, pp. 65–73, 2000.
D. T. Wang, Reeves, E. P., McDermott, J. M., Seewald, J. S., and Ono, S., Clumped isotopologue constraints on the origin of methane at seafloor hot springs, Geochimica et Cosmochimica Acta, vol. 223, no. Journal Article, pp. 141 - 158, 2018.
O. S. Ashford, Guan, S. Z., Capone, D., Rigney, K., Rowley, K., Orphan, V., Mullin, S. W., Dawson, K. S., Cortes, J., Rouse, G. W., Mendoza, G. F., Lee, R. W., Cordes, E. E., and Levin, L. A., A chemosynthetic ecotone-"chemotone"-in the sediments surrounding deep-sea methane seeps, Limnology and Oceanography, 2021.
O. S. Ashford, Guan, S. Z., Capone, D., Rigney, K., Rowley, K., Orphan, V., Mullin, S. W., Dawson, K. S., Cortes, J., Rouse, G. W., Mendoza, G. F., Lee, R. W., Cordes, E. E., and Levin, L. A., A chemosynthetic ecotone-"chemotone"-in the sediments surrounding deep-sea methane seeps, Limnology and Oceanography, 2021.
O. S. Ashford, Guan, S. Z., Capone, D., Rigney, K., Rowley, K., Orphan, V., Mullin, S. W., Dawson, K. S., Cortes, J., Rouse, G. W., Mendoza, G. F., Lee, R. W., Cordes, E. E., and Levin, L. A., A chemosynthetic ecotone-"chemotone"-in the sediments surrounding deep-sea methane seeps, Limnology and Oceanography, 2021.
O. S. Ashford, Guan, S., Capone, D., Rigney, K., Rowley, K., Orphan, V., Mullin, S. W., Dawson, K. S., Cortes, J., Rouse, G. W., Mendoza, G. F., Lee, R. W., Cordes, E. E., and Levin, L. A., A chemosynthetic ecotone—“chemotone”—in the sediments surrounding deep‐sea methane seeps, Limnology and Oceanography, 2021.
O. S. Ashford, Guan, S., Capone, D., Rigney, K., Rowley, K., Orphan, V., Mullin, S. W., Dawson, K. S., Cortes, J., Rouse, G. W., Mendoza, G. F., Lee, R. W., Cordes, E. E., and Levin, L. A., A chemosynthetic ecotone—“chemotone”—in the sediments surrounding deep‐sea methane seeps, Limnology and Oceanography, 2021.
O. S. Ashford, Guan, S., Capone, D., Rigney, K., Rowley, K., Orphan, V., Mullin, S. W., Dawson, K. S., Cortes, J., Rouse, G. W., Mendoza, G. F., Lee, R. W., Cordes, E. E., and Levin, L. A., A chemosynthetic ecotone—“chemotone”—in the sediments surrounding deep‐sea methane seeps, Limnology and Oceanography, 2021.
D. T. Rickard and Luther, G. W., Chemistry of iron sulfides, Chemical Reviews, vol. 107, pp. 514–582, 2007.
A. C. Campbell, Palmer, M. R., Klinkhammer, G. P., Bowers, T. S., Edmond, J. M., Lawrence, J. R., Casey, J. F., Thompson, G., Humphris, S. E., Rona, P. A., and Karson, J. A., Chemistry of hot springs on the Mid-Atlantic Ridge, Nature, vol. 335, pp. 514–519, 1988.
M. J. Mottl, Seewald, J. S., Wheat, C. G., Tivey, M. K., Michael, P. J., Proskurowski, G., McCollom, T. M., Reeves, E., Sharkey, J., You, C. F., Chan, L. H., and Pichler, T., Chemistry of hot springs along the Eastern Lau Spreading Center, Geochimica et Cosmochimica Acta, vol. 75, pp. 1013–1038, 2011.
D. A. Clague, Paduan, J. B., Dreyer, B. M., Chadwick, W. W., Rubin, K. R., Perfit, M. R., and Fundis, A. T., Chemical Variations in the 1998, 2011, and 2015 Lava Flows From Axial Seamount, Juan de Fuca Ridge: Cooling During Ascent, Lateral Transport, and Flow, Geochemistry Geophysics Geosystems, vol. 19, pp. 2915-2933, 2018.
G. W. Luther, Rozan, T. F., Taillefert, M., Nuzzio, D. B., Di Meo, C. A., Shank, T. M., Lutz, R. A., and Cary, S. C., Chemical speciation drives hydrothermal vent ecology, Nature, vol. 410, pp. 813–816, 2001.
J. E. Lupton, Baker, E. T., Mottl, M. J., Sansone, F. J., Wheat, C. G., Resing, J. A., Massoth, G. J., Measures, C. I., and Feely, R. A., Chemical and physical diversity of hydrothermal plumes along the East Pacific Rise, 8 degrees 45' N to 11 degrees 50' N, Geophysical Research Letters, vol. 20, pp. 2913–2916, 1993.
K. L. Frank, Rogers, D. R., Olins, H. C., Vidoudez, C., and Girguis, P. R., Characterizing the distribution and rates of microbial sulfate reduction at Middle Valley hydrothermal vents, ISME JOURNAL, vol. 7, pp. 1391–1401, 2013.
T. P. Heyl, Gilhooly, W. P., Chambers, R. M., Gilchrist, G. W., Macko, S. A., Ruppel, C. D., and Van Dover, C. L., Characteristics of vesicomyid clams and their environment at the Blake Ridge cold seep, South Carolina, USA, Marine Ecology Progress Series, vol. 339, pp. 169–184, 2007.
A. Teske, McKay, L. J., Ravelo, A. C., Aiello, I., Mortera, C., Nunez-Useche, F., Canet, C., Chanton, J. P., Brunner, B., Hensen, C., Ramirez, G. A., Sibert, R. J., Turner, T., White, D., Chambers, C. R., Buckley, A., Joye, S. B., Soule, S. A., and Lizarralde, D., Characteristics and Evolution of sill-driven off-axis hydrothermalism in Guaymas Basin - the Ringvent site, SCIENTIFIC REPORTS, vol. 9, 2019.
A. Teske, McKay, L. J., Ravelo, A. C., Aiello, I., Mortera, C., Nunez-Useche, F., Canet, C., Chanton, J. P., Brunner, B., Hensen, C., Ramirez, G. A., Sibert, R. J., Turner, T., White, D., Chambers, C. R., Buckley, A., Joye, S. B., Soule, S. A., and Lizarralde, D., Characteristics and Evolution of sill-driven off-axis hydrothermalism in Guaymas Basin - the Ringvent site, SCIENTIFIC REPORTS, vol. 9, 2019.
S. A. Soule, Fornari, D. J., Perfit, M. R., Tivey, M. A., Ridley, W. I., and Schouten, H., Channelized lava flows at the East Pacific Rise crest 9 degrees-10 degrees N: The importance of off-axis lava transport in developing the architecture of young oceanic crust, Geochemistry, Geophysics, Geosystems, vol. 6, p. Q08005, 2005.
D. Birgel, Feng, D., Roberts, H. H., and Peckmann, J., Changing redox conditions at cold seeps as revealed by authigenic carbonates from Alaminos Canyon, northern Gulf of Mexico, Chemical Geology, vol. 285, pp. 82–96, 2011.
J. J. Marlow, Hoer, D., Jungbluth, S. P., Reynard, L. M., Gartman, A., Chavez, M. S., El-Naggar, M. Y., Tuross, N., Orphan, V. J., and Girguis, P. R., Carbonate-hosted microbial communities are prolific and pervasive methane oxidizers at geologically diverse marine methane seep sites, Proceedings of the National Academy of Sciences of the United States of America, vol. 118, 2021.
J. C. Sample, Reid, M. R., Tobin, H. J., and Moore, J. C., Carbonate cements indicate channeled fluid flow along a zone of vertical faults at the deformation front of the Cascadia accretionary wedge (Northwest U.S. coast), Geology, vol. 21, pp. 507–510, 1993.
B. N. Orcutt, Sylvan, J. B., Rogers, D. R., Delaney, J., Lee, R. W., and Girguis, P. R., Carbon fixation by basalt-hosted microbial communities, FRONTIERS IN MICROBIOLOGY, vol. 6, 2015.
C. Basak, Rathburn, A. E., Perez, M. E., Martin, J. B., Kluesner, J. W., Levin, L. A., De Deckker, P., Gieskes, J. M., and Abriani, M., Carbon and oxygen isotope geochemistry of live (stained) benthic foraminifera from the Aleutian Margin and the Southern Australian Margin, Marine Micropaleontology, vol. 70, pp. 89–101, 2009.

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