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J. L. Michel and Ballard, R. D., The RMS Titanic 1985 discovery expedition, in Oceans '94: Oceans Engineering for Today's Technology and Tomorrow's Preservation : Proceedings, vol. 3, New York: IEEE, 1994, pp. 132–136.
J. R. Bourque, Demopoulos, A. W. J., Robertson, C. M., and Mienis, F., The role of habitat heterogeneity and canyon processes in structuring sediment macrofaunal communities associated with hard substrate habitats in Norfolk Canyon, USA, Deep Sea Research Part I Oceanographic Research Papers, p. 103495, 2021.
L. S. Mullineaux, The role of settlement in structuring a hard-substratum community in the deep sea, Journal of Experimental Marine Biology and Ecology, vol. 120, pp. 247–261, 1988.
A. M. McCann, ROVs for archaeology: The Jason Project 1989, in Intervention/ROV '91 Conference {&} Exposition: May 21-23, 1991, Diplomat Resort and Convention Center, Hollywood, Florida, San Diego, Calif.: Marine Technology Society ROV Committee, 1991, p. 13.
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J. M. Brooks, Wiesenburg, D. A., Roberts, H., Carney, R. S., MacDonald, I. R., Fisher, C. R., Guinasso, N. L., Sager, W. W., McDonald, S. J., Burke, R. A., Aharon, P., and Bright, T. J., Salt, seeps and symbiosis in the Gulf of Mexico, EOS, Transactions, American Geophysical Union, vol. 71, pp. 1772–1773, 1990.
J. M. Brooks, Wiesenburg, D. A., Roberts, H., Carney, R. S., MacDonald, I. R., Fisher, C. R., Guinasso, N. L., Sager, W. W., McDonald, S. J., Burke, R. A., Aharon, P., and Bright, T. J., Salt, seeps and symbiosis in the Gulf of Mexico, EOS, Transactions, American Geophysical Union, vol. 71, pp. 1772–1773, 1990.
M. J. Mottl, Sampling and analysis of particles from buoyant hydrothermal plumes, in Marine Particles: Analysis and Characterization, D. C. Hurd, Ed. Washington, D.C.: American Geophysical Union, 1991, pp. 281–283.
P. J. Auster, Hodge, B. C., McKee, M. P., and Kraus, S. D., A Scientific Basis for Designation of the Northeast Canyons and Seamounts Marine National Monument, Frontiers in Marine Science, vol. 7, p. 566, 2020.
R. T. Alexander and Macdonald, K. C., Sea Beam, SeaMARC II and Alvin-based studies of faulting on the East Pacific Rise 9 degrees 20' N-9 degrees 50' N, Marine Geophysical Researches, vol. 18, pp. 557–587, 1996.
R. N. Hey, Kleinrock, M. C., Miller, S. P., Atwater, T. M., and Searle, R. C., Sea Beam/deep-tow investigation of an active oceanic propagating rift system, Galapagos 95.5 degrees W, Journal of Geophysical Research, vol. 91, pp. 3369–3393, 1986.
J. C. Haney, Haury, L. R., Mullineaux, L. S., and Fey, C. L., Seabird aggregation at a deep North Pacific seamount, Marine Biology, vol. 123, pp. 1–9, 1995.
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. 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.
U. Muench, Halbach, P., and Fujimoto, H., Sea-floor hydrothermal mineralization from the Mt. Jourdanne, Southwest Indian Ridge, JAMSTEC Journal of Deep Sea Research, pp. 125–132, 2000.
S. E. Humphris, Zierenberg, R., Mullineaux, L., and Thomson, R., Seafloor hydrothermal systems: Physical, chemical, biological and geological interactions. Washington, D.C.: American Geophysical Union, 1995, p. xiii, 466.
S. Wu, Sakamoto, I., Iwase, R., Kawaguchi, K., Misawa, Y., and Wong, H. K., Seafloor sedimentary processes on the western slope of Sagami Bay, Central Japan: Deep tow observations, JAMSTEC Journal of Deep Sea Research, pp. 43–52, 2000.
N. C. Mitchell, Tivey, M. A., and Gente, P., Seafloor slopes at mid-ocean ridges from submersible observations and implications for interpreting geology from seafloor topography, Earth and Planetary Science Letters, vol. 183, pp. 543–555, 2000.
J. A. Karson, Seafloor spreading on the Mid-Atlantic Ridge: Implications for the structure of ophiolites and oceanic lithosphere produced in slow-spreading environment, in Ophiolites: Oceanic Crustal Analogues: Proceedings of the Symposium "Troodos 87", J. Malpas, Ed. Nicosia, Cyprus: Geological Survey Dept., Ministry of Agriculture and Natural Resources, 1990, pp. 547–555.
B. G. McAdoo, Orange, D. L., Silver, E. A., McIntosh, K., Abbott, L., Galewsky, J., Kahn, L., and Protti, M., Seafloor structural observations, Costa Rica accretionary prism, Geophysical Research Letters, vol. 23, pp. 883–886, 1996.
B. G. McAdoo, Orange, D. L., Silver, E. A., McIntosh, K., Abbott, L., Galewsky, J., Kahn, L., and Protti, M., Seafloor structural observations, Costa Rica accretionary prism, Geophysical Research Letters, vol. 23, pp. 883–886, 1996.
C. R. Smith, Maybaum, H. L., Baco, A. R., Pope, R. H., Carpenter, S. D., Yager, P. L., Macko, S. A., and Deming, J. W., Sediment community structure around a whale skeleton in the deep Northeast Pacific: Macrofaunal, microbial and bioturbation effects, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 45, pp. 335–364, 1998.
C. R. Smith, Maybaum, H. L., Baco, A. R., Pope, R. H., Carpenter, S. D., Yager, P. L., Macko, S. A., and Deming, J. W., Sediment community structure around a whale skeleton in the deep Northeast Pacific: Macrofaunal, microbial and bioturbation effects, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 45, pp. 335–364, 1998.
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.
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.
J. C. MacIlvaine, Sedimentary processes on the continental slope off New England, Massachusetts Institute of Technology and the Woods Hole Oceanographic Institution, Cambridge, MA and Woods Hole, MA, 1973.

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