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M. A. Pollock, Geochemistry of dikes and lavas from tectonic windows, Duke University, Durham, N.C., 2007.
M. A. Stewart, Klein, E. M., and Karson, J. A., Geochemistry of dikes and lavas from the north wall of the Hess Deep Rift: Insights into the four-dimensional character of crustal construction at fast spreading mid-ocean ridges, Journal of Geophysical Research, vol. 107, p. Art. no. 2238, 2002.
J. M. McDermott, Sylva, S. P., Ono, S., German, C. R., and Seewald, J. S., Geochemistry of fluids from Earth's deepest ridge-crest hot-springs: Piccard hydrothermal field, Mid-Cayman Rise, Geochimica et Cosmochimica Acta, vol. 228, no. Journal Article, pp. 95 - 118, 2018.
K. L. Von Damm, Geochemistry of fluids in the Guaymas Basin geothermal system, in Genesis of Stratiform Sediment-Hosted Lead and Zinc Deposits: Conference Proceedings, R. J. W. Turner, Ed. Stanford, Calif.: Stanford University Publications, 1986, pp. 131–135.
J. S. Seewald, Reeves, E. P., Bach, W., Saccocia, P. J., Craddock, P. R., Walsh, E., Shanks, W. C., Sylva, S. P., Pichler, T., and Rosner, M., Geochemistry of hot-springs at the SuSu Knolls hydrothermal field, Eastern Manus Basin: Advanced argillic alteration and vent fluid acidity, Geochimica Et Cosmochimica Acta, vol. 255, pp. 25-48, 2019.
E. Reeves, Seewald, J. S., Saccocia, P. J., Walsh, E., Bach, W., Craddock, P. R., Shanks, W. C., Sylva, S. P., Pichler, T., and Rosner, M., Geochemistry of hydrothermal fluids from the PACMANUS, Northeast Pual and Vienna Woods hydrothermal fields, Manus Basin, Papua New Guinea, Geochimica et Cosmochimica Acta, vol. 75, pp. 1088–1123, 2011.
D. A. Butterfield, McDuff, R. E., Franklin, J., and Wheat, C. G., Geochemistry of hydrothermal vent fluids from Middle Valley, Juan de Fuca Ridge, in Proceedings of the Ocean Drilling Program, Scientific Results, vol. 139, M. K. McQuistion, Ed. College Station, Tex.: Ocean Drilling Program, Texas A{&}M University, 1994, pp. 395–410.
A. R. Goss, Perfit, M. R., Ridley, W. I., Rubin, K. H., Kamenov, G. D., Soule, S. A., Fundis, A., and Fornari, D. J., Geochemistry of lavas from the 2005-2006 eruption at the East Pacific Rise, 9 degrees 46'N-9 degrees 56'N: Implications for ridge crest plumbing and decadal changes in magma chamber compositions, Geochemistry, Geophysics, Geosystems, vol. 11, p. Q05T09, 2010.
A. M. Cruse and Seewald, J. S., Geochemistry of low-molecular weight hydrocarbons in hydrothermal fluids from Middle Valley, northern Juan de Fuca Ridge, Geochimica et Cosmochimica Acta, vol. 70, pp. 2073–2092, 2006.
J. M. Edmond, The geochemistry of ridge crest hot springs, Oceanus, vol. 27, pp. 15–19, 1984.
W. W. Chadwick, Wilcock, W. S. D., Nooner, S. L., Beeson, J. W., Sawyer, A. M., and Lau, T. ‐K., Geodetic Monitoring at Axial Seamount Since its 2015 Eruption Reveals a Waning Magma Supply and Tightly Linked Rates of Deformation and Seismicity, Geochemistry Geophysics Geosystems, 2021.
R. P. Von Herzen, Kirklin, J., and Becker, K., Geoelectrical measurements at the TAG hydrothermal mound, Geophysical Research Letters, vol. 23, pp. 3451–3454, 1996.
P. W. Sammarco, Atchison, A. D., Boland, G. S., Sinclair, J., and Lirette, A., Geographic expansion of hermatypic and ahermatypic corals in the Gulf of Mexico, and implications for dispersal and recruitment, JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, vol. 436, pp. 36–49, 2012.
S. M. Sudarikov, Krivitskaya, M. V., and Kaminskiy, D. V., Geokhimiya submarinnykh rudoobrazuyushchikh gidroterm severnoy Atlantiki; po dannym distantsionnykh nablyudeniy i oprobovaniya s podvodnykh obitayemykh apparatov., Zapiski Gornogo Instituta, vol. 176, pp. 26–30, 2008.
P. C. Valentine, Uzmann, J. R., and Cooper, R. A., Geologic and biologic observations in Oceanographer Submarine Canyon: Descriptions of dives aboard the research submersibles Alvin (1967, 1978) and Nekton Gamma (1974), vol. 80-76. Woods Hole, Mass.: U.S. Geological Survey, 1980, p. 43.
T. F. McConachy, Ballard, R. D., Mottl, M. J., and Von Herzen, R. P., Geologic form and setting of a hydrothermal vent field at lat 10 degrees 56'N, East Pacific Rise; a detailed study using Angus and Alvin, Geology, vol. 14, pp. 295–298, 1986.
W. B. F. Ryan, Miller, E., Cita, M. B., Hanselman, D., Nesteroff, W. D., and Nibbelink, M., Geologic history of Georges Bank as determined by submersible exploration of submarine canyons, in Proceedings - Offshore Technology Conference, Dallas, TX: Offshore Technology Conference, 1978, pp. 1859–1868.
J. L. Morton, Zierenberg, R. A., and Reiss, C. A., Geologic, hydrothermal, and biologic studies at Escanaba Trough: An introduction, in Geologic, hydrothermal, and biologic studies at Escanaba Trough, Gorda Ridge, offshore Northern California, J. L. Morton, Ed. Reston, Va.: U.S. Geological Survey, 1994, pp. 1–18.
J. A. Greene, Tominaga, M., and Blackman, D. K., Geologic implications of seafloor character and carbonate lithification imaged on the domal core of Atlantis Massif, Deep-Sea Research Part II: Topical Studies in Oceanography, vol. 121, pp. 246–255, 2015.
J. B. Stroup and Fox, P. J., Geologic investigations in the Cayman Trough: Evidence for thin oceanic crust along the Mid-Cayman Rise, Journal of Geology, vol. 89, pp. 395–420, 1981.
M. D. Rawson and Ryan, W. B. F., Geologic observations at the 2800-meter radioactive waste disposal site and associated deepwater dumpsite 105 (DWD-106) in the Atlantic Ocean, vol. rev. Washington, D.C.: Office of Radiation Programs, U.S. Environmental Protection Agency, 1983, p. 60.
R. A. Zierenberg, Morton, J. L., Koski, R. A., Ross, S. L., and Holmes, M. L., Geologic setting of massive sulfide mineralization in the Escanaba Trough, in Geologic, hydrothermal, and biologic studies at Escanaba Trough, Gorda Ridge, offshore Northern California, J. L. Morton, Ed. Reston, Va.: U.S. Geological Survey, 1994, pp. 171–197.
J. Thal, Tivey, M., Yoerger, D., Joens, N., and Bach, W., Geologic setting of PACManus hydrothermal area - High resolution mapping and in situ observations, Marine Geology, vol. 355, pp. 98–114, 2014.
J. A. Karson and Brown, J. R., Geologic setting of the Snake Pit Hydrothermal Site: An active vent field on the Mid-Atlantic Ridge, Marine Geophysical Researches, vol. 10, pp. 91–107, 1988.
J. A. Karson, Geologic structure of the uppermost oceanic crust created at fast- to intermediate-rate spreading centers, Annual Review of Earth and Planetary Sciences, vol. 30, pp. 347–384, 2002.

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