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J. A. Karson and Fox, P. J., Geological and geophysical investigation of the Mid-Cayman spreading centre; seismic velocity measurements and implications for the constitution of layer 3, Geophysical Journal International, vol. 85, pp. 389–411, 1986.
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.
D. M. Christie and Fisher, C. R., Geological, Biological, Chemical, and Physical Interactions in Back-Arc Spreading Systems—An Introduction, in Back-Arc Spreading Systems: Geological, Biological, Chemical, and Physical Interactions, AGU, 2006, pp. 1–4.
E. M. Emel'yanov, Trimonis, E. S., and Kharin, G. S., Geological bottom structure in the Baltic Shield – Baltic syneclise junction area in the northern Baltic Sea, Okeanologija, vol. 36, pp. 910–918, 1996.
D. Curewitz and Karson, J. A., Geological consequences of dike intrusion at mid-ocean ridge spreading centers, in Faulting and Magmatism at Mid-Ocean Ridges, W. R. Buck, Ed. Washington, D.C.: American Geophysical Union, 1998, pp. 117–136.
J. V. A. Trumbull and McCamis, M. J., Geological exploration in an east coast submarine canyon from a research submersible, Science, vol. 158, pp. 370–372, 1967.
E. J. Gier, The geological implications of the basalts and sediments of the Lucky Strike segment, Columbia University, New York, N.Y., 2005.
J. A. Karson, Geological investigation of a lineated massif at the Kane Transform Fault: Implications for oceanic core complexes, Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences, vol. 357, pp. 713–740, 1999.
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.
Y. Mart, Auffret, G. A., Auzende, J. M., and Pastouret, L., Geological observations from a submersible on the western continental slope of the Armorican Massif, Marine Geology, vol. 31, pp. M61–M68, 1979.
R. D. Ballard and Francheteau, J., Geological processes of the mid-ocean ridge and their relationship to sulfide deposition, in Hydrothermal processes at seafloor spreading centers, P. A. Rona, Ed. New York, N.Y.: Plenum Press, 1983, pp. 47–62.
C. H. Langmuir, Fornari, D. J., Colodner, D., Charlou, J. L., Costa, I., Desbruyeres, D., Desonie, D., Emerson, T., Fiala-Medioni, A., Fouquet, Y., Humphris, S. E., Saldanha, L., Sours-Page, R., Thatcher, M., Tivey, M., Van Dover, C. L., Von Damm, K. L., Wiese, K., and Wilson, C., Geological setting and characteristics of the Lucky Strike vent field at 37 degrees 17'N on the Mid-Atlantic Ridge, EOS, Transactions, American Geophysical Union, vol. 74, p. 99, 1993.
A. Malahoff, Embley, R. W., Cronan, D. S., and Skirrow, R., The geological setting and chemistry of hydrothermal sulfides and associated deposits from the Galapagos Rift at 86 degrees W, Marine Mining, vol. 4, pp. 123–137, 1983.
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, 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.
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.
B. P. Luyendyk and Macdonald, K. C., A geological transect across the crest of the East Pacific Rise at 21 degrees N latitude made from the deep submersible Alvin, Marine Geophysical Researches, vol. 7, pp. 467–488, 1985.
L. Pastouret, Auffret, G. A., Auzende, J. M., Beuzart, P., Dubois, P., Seguret, M., Sigal, J., and Vanney, J. R., Geologie du canyon Shamrock, marge Armoricaine (Atlantique du N.E.), in Processus geodynamiques observes en submersible: Geodynamic processes observed from a submersible: Seminaire du 2 avril 1982, J. R. Vanney, Ed. Paris, France: Institut Oceanographique, 1982, pp. 683–710.
P. C. Valentine, Uzmann, J. R., and Cooper, R. A., Geology and biology of Oceanographer Submarine Canyon, Marine Geology, vol. 38, pp. 283–312, 1980.
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.
D. A. Glickson, Kelley, D. S., and Delaney, J. R., Geology and hydrothermal evolution of the Mothra Hydrothermal Field, Endeavour Segment, Juan de Fuca Ridge, Geochemistry, Geophysics, Geosystems, vol. 8, p. Q06010, 2007.
D. S. Kelley, Delaney, J. R., and Yoerger, D. R., Geology and venting characteristics of the Mothra hydrothermal field, Endeavour segment, Juan de Fuca Ridge, Geology, vol. 29, pp. 959–962, 2001.
T. L. Smith, Geology and volcanic development of a near-ridge seamount and new evidence for the diversity of origin of seamount hyaloclastites: results from integrated Alvin/Angus and laboratory study, Washington University, St. Louis, Mo., 1987.
J. Schlee, Geology from a deep-diving submersible, Geotimes, vol. 12, pp. 10–13, 1967.
J. Schlee, Geology from a deep-diving submersible, vol. 67-50. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1967, p. 4.

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