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R. W. Embley and Gottfried, S., NOAA Ocean Explorer: Submarine ring of fire 2006, vol. 2007. Silver Spring, Md.: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Office of Ocean Exploration, 2006.
J. Engels, Edwards, M. H., Fornari, D. J., Perfit, M. R., and Cann, J. R., A new model for submarine volcanic collapse formation, Geochemistry, Geophysics, Geosystems, vol. 4, p. Article no. 1077, 2003.
J. Engels, Edwards, M. H., Fornari, D. J., Perfit, M. R., and Cann, J. R., A new model for submarine volcanic collapse formation, Geochemistry, Geophysics, Geosystems, vol. 4, p. Article no. 1077, 2003.
C. Roman, Pizarro, O., Eustice, R., and Singh, H., New autonomous underwater vehicle for imaging research, in Oceans 2000 MTS/IEEE: where marine science and technology meet, vol. 1, Piscataway, N.J.: IEEE, 2000, pp. 153–156.
M
I. Eichinger, Hourdez, S., and Bright, M., Morphology, microanatomy and sequence data of Sclerolinum contortum (Siboglindae, Annelida) of the Gulf of Mexico, ORGANISMS DIVERSITY {&} EVOLUTION, vol. 13, pp. 311–329, 2013.
C. E. J. de Ronde, Chadwick, W. W., Ditchburn, R. G., Embley, R. W., Tunnicliffe, V., Baker, E. T., Walker, S. L., Ferrini, V. L., and Merle, S. M., Molten sulfur lakes of intraoceanic arc volcanoes, in Volcanic Lakes, D. Rouwet, Ed. Springer, 2015.
P. J. Etnoyer, Wagner, D., Fowle, H. A., Poti, M., Kinlan, B., Georgian, S. E., and Cordes, E. E., Models of habitat suitability, size, and age-class structure for the deep-sea black coral Leiopathes glaberrima in the Gulf of Mexico, Deep Sea Research Part II: Topical Studies in Oceanography, vol. 150, pp. 218-228, 2018.
R. Brett, Evans, H. T., Gibson, E. K., Hedenquist, J. W., Wandless, M. V., and Sommer, M. A., Mineralogical studies of sulfide samples and volatile concentrations of basalt glasses from the southern Juan de Fuca Ridge, Journal of Geophysical Research, vol. 92, pp. 11,311–373,379, 1987.
D. R. Yoerger, Bradley, A. M., Jakuba, M. V., Tivey, M. A., German, C. R., Shank, T. M., and Embley, R. W., Mid-ocean ridge exploration with an autonomous underwater vehicle, Oceanography, vol. 20, pp. 52–61, 2007.
S. A. Earle, Microsubmersibles: Putting more scientists in deep water, Sea Technology, vol. 27, pp. 14–21, 1986.
L. Elsgaard, Isaksen, M. F., Jorgensen, B. B., Alayse, A. M., and Jannasch, H. W., Microbial sulfate reduction in deep-sea sediments at the Guaymas Basin hydrothermal area: Influence of temperature and pressure, Geochimica et Cosmochimica Acta, vol. 58, pp. 3335–3343, 1994.
J. J. Scott, Breier, J. A., Luther, G. W., and Emerson, D., Microbial Iron Mats at the Mid-Atlantic Ridge and Evidence that Zetaproteobacteria May Be Restricted to Iron-Oxidizing Marine Systems, PLoS ONE, vol. 10, p. e0119284, 2015.
B. N. Orcutt, Sylvan, J. B., Knab, N. J., and Edwards, K. J., Microbial Ecology of the Dark Ocean above, at, and below the Seafloor , Microbiology and Molecular Biology Reviews, vol. 75, pp. 361–422, 2011.
H. W. Jannasch, Eimhjellen, K., Wirsen, C. O., and Farmanfarmaian, A., Microbial degradation of organic matter in the deep sea, Science, vol. 171, pp. 672–675, 1971.
M. D. Lee, Walworth, N. G., Sylvan, J. B., Edwards, K. J., and Orcutt, B. N., Microbial Communities on Seafloor Basalts at Dorado Outcrop Reflect Level of Alteration and Highlight Global Lithic Clades, FRONTIERS IN MICROBIOLOGY, vol. 6, 2015.
E. T. Baker, Massoth, G. J., Walker, S. L., and Embley, R. W., A method for quantitatively estimating diffuse and discrete hydrothermal discharge, Earth and Planetary Science Letters, vol. 118, pp. 235–249, 1993.
J. M. Bernhard, Morrison, C. R., Pape, E., Beaudoin, D. J., M Todaro, A., Pachiadaki, M. G., Kormas, K. Ar, and Edgcomb, V. P., Metazoans of redoxcline sediments in Mediterranean deep-sea hypersaline anoxic basins, BMC BIOLOGY, vol. 13, 2015.
E. Uchupi, Ellis, J. P., Austin, J. A., Keller, G. H., and Ballard, R. D., Mesozoic-Cenozoic regressions and the development of margin off northeastern North America, in Ocean Floor: Bruce Heezen Commemorative Volume, vol. 1 (text), R. A. Scrutton, Ed. New York, N.Y.: Wiley, 1982, pp. 81–95.
L. Macelloni, Lutken, C. B., Ingrassia, M., Emidio, M. D. ', and Pizzi, M., Mesoscale biogeophysical characterization of Woolsey Mound (northern Gulf of Mexico), a new attribute of natural marine hydrocarbon seeps architecture, Marine Geology, vol. 380, pp. 330–344, 2016.
D. J. Fornari, Kurras, G., Edwards, M., Spencer, W., and Hersey, B., Mapping volcanic morphology on the crest of the East Pacific Rise 9 degrees 49'-52'N using the WHOI towed camera system: a versatile new digital camera sled for seafloor mapping, BRIDGE Newsletter, pp. 4–12, 1998.
M. C. Smith, Perfit, M. R., Fornari, D. J., Ridley, W. I., Edwards, M. H., Kurras, G. J., and Von Damm, K. L., Magmatic processes and segmentation at a fast spreading mid-ocean ridge: Detailed investigation of an axial discontinuity on the East Pacific Rise crest at 9 degrees 37' N, Geochemistry, Geophysics, Geosystems, vol. 2, p. 2000GC000134, 2001.
J. Chadwick, Perfit, M., Ridley, I., Kamenov, G., Chadwick, W., Embley, R., le Roux, P., and Smith, M., Magmatic effects of the Cobb hot spot on the Juan de Fuca Ridge, Journal of Geophysical Research, vol. 110, p. B03101, 2005.

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