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P. J. Fox, Moody, R. H., Karson, J. A., Bonatti, E., Kidd, W. S. F., Crane, K., Gallo, D. G., Stroup, J. B., Fornari, D. J., Elthon, D., Hamlyn, P., Casey, J. F., Needham, D., and Sartori, R., The geology of the Oceanographer Transform: The transform domain, Marine Geophysical Researches, vol. 7, pp. 329–358, 1985.
O. T. T. E. R. - Oceanogr Team, Karson, J. A., Fox, P. J., Sloan, H., Crane, K. T., Kidd, W. S. F., Bonatti, E., Stroup, J. B., Fornari, D. J., Elthon, D., Hamlyn, P., Casey, J. F., Gallo, D. G., Needham, D., and Sartori, R., The geology of the Oceanographer Transform: The ridge-transform intersection, Marine Geophysical Researches, vol. 6, pp. 109–141, 1984.
R. W. Embley, Chadwick, W. W., Perfit, M. R., and Baker, E. T., Geology of the northern Cleft Segment, Juan de Fuca Ridge: recent eruptions, seafloor spreading, and the formation of megaplumes, Geology, vol. 19, pp. 771–775, 1991.
J. A. Austin, Uchupi, E., Shaughnessy, D. R., and Ballard, R. D., Geology of the New England passive margin, AAPG Bulletin, vol. 64, pp. 501–526, 1980.
R. D. Ballard and Uchupi, E., Geology of the Gulf of Maine, AAPG Bulletin, vol. 58, pp. 1156–1158, 1974.
D. K. Blackman, Karson, J. A., Kelley, D. S., Cann, J. R., Fruh-Green, G. L., Gee, J. S., Hurst, S. D., John, B. E., Morgan, J., Nooner, S. L., Ross, D. K., Schroeder, T. J., and Williams, E. A., Geology of the Atlantis Massif (Mid Atlantic Ridge, 30 degrees N): Implications for the evolution of an ultramafic oceanic core complex, Marine Geophysical Researches, vol. 23, pp. 443–469, 2002.
C. G. Wheat, Hartwell, A. M., McManus, J., Fisher, A. T., Orcutt, B. N., Schlicht, L. E. M., Niedenzu, S., and Bach, W., Geology and Fluid Discharge at Dorado Outcrop, a Low Temperature Ridge-Flank Hydrothermal System, Geochemistry Geophysics Geosystems, vol. 20, pp. 487-504, 2019.
S. Petersen, Kuhn, K., Kuhn, T., Augustin, N., Hekinian, R., Franz, L., and Borowski, C., The geological setting of the ultramafic-hosted Logatchev hydrothermal field (14 degrees 45′N, Mid-Atlantic Ridge) and its influence on massive sulfide formation, Lithos, vol. 112, pp. 40–56, 2009.
R. D. Ballard, Hekinian, R., and Francheteau, J., Geological setting of hydrothermal activity at 12 degrees 50'N on the East Pacific Rise; A submersible study, Earth and Planetary Science Letters, vol. 69, pp. 176–186, 1984.
R. W. Embley, Eittreim, S. L., McHugh, C. H., Normark, W. R., Rau, G. H., Hecker, B., DeBevoise, A. E., Greene, H. G., Ryan, W. B. F., Harrold, C., and Baxter, C., Geological setting of chemosynthetic communities in the Monterey Fan Valley system, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 37, pp. 1651–1667, 1990.
R. D. Ballard, Uchupi, E., Blackman, D. K., Cheminee, J., Francheteau, J., Hekinian, R., Schwab, W. C., and Sigurdsson, H., Geological mapping of the East Pacific Rise axis (10 degrees 19' -11 degrees 53'N) using the Argo and Angus imaging systems, Canadian Mineralogist, vol. 26, pp. 467–486, 1988.
R. D. Ballard, Uchupi, E., Blackman, D. K., Cheminee, J., Francheteau, J., Hekinian, R., Schwab, W. C., and Sigurdsson, H., Geological mapping of the East Pacific Rise axis (10 degrees 19' -11 degrees 53'N) using the Argo and Angus imaging systems, Canadian Mineralogist, vol. 26, pp. 467–486, 1988.
R. Batiza, Smith, T. L., and Niu, Y., Geological and petrologic evolution of seamounts near the EPR based on submersible and camera study, Marine Geophysical Researches, vol. 11, pp. 169–236, 1989.
G. Thompson, Bryan, W. B., and Melson, W. G., Geological and geophysical investigation of the Mid-Cayman Rise spreading center: Geochemical variation and petrogenesis of basalt glasses, Journal of Geology, vol. 88, pp. 41–55, 1980.
N. C. Becker, Wheat, C. G., Mottl, M. J., Karsten, J. L., and Davis, E. E., A geological and geophysical investigation of Baby Bare, locus of a ridge-flank hydrothermal system in the Cascadia Basin, Journal of Geophysical Research, vol. 105, pp. 23,523–557,568, 2000.
Y. Bogdanov, Sagalevich, A. M., Galkin, S. V., Chernyaev, E. S., Lukashin, V. N., and Ivanov, G. V., Geological and biological investigations in the northern part of Mohn Ridge (Norwegian Sea), Okeanologija, vol. 37, pp. 609–616, 1997.
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. 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. 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.
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.
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.
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.
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.
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.
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.

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