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V. Tunnicliffe, Tyler, J., and Dower, J. F., Population ecology of the tonguefish Symphurus thermophilus (Pisces; Pleuronectiformes; Cynoglossidae) at sulphur-rich hydrothermal vents on volcanoes of the northern Mariana Arc, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 92, pp. 172–182, 2013.
M. B. Black, Trivedi, A., A Y Maas, P., Lutz, R. A., and Vrijenhoek, R. C., Population genetics and biogeography of vestimentiferan tube worms, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 45, pp. 365–382, 1998.
C. Vetriani, Jannasch, H. W., MacGregor, B. J., Stahl, D. A., and Reysenbach, A. - L., Population structure and phylogenetic characterization of marine benthic Archaea in deep-sea sediments, Applied and Environmental Microbiology, vol. 65, pp. 4375–4384, 1999.
S. M. Hulme, Wheat, C. G., Fryer, P., and Mottl, M. J., Pore water chemistry of the Mariana serpentinite mud volcanoes: A window to the seismogenic zone, Geochemistry, Geophysics, Geosystems, vol. 11, p. Q01X09, 2010.
L. A. Gilbert, McDuff, R. E., and Johnson, H. P., Porosity of the upper edifice of Axial Seamount, Geology, vol. 35, pp. 49–52, 2007.
M. J. Pruis and Johnson, H. P., Porosity of very young oceanic crust from sea floor gravity, Geophysical Research Letters, vol. 25, pp. 1959–1962, 1998.
S. L. Nooner, Webb, S. C., Buck, W. R., and Cormier, M. H., Post Eruption inflation of the East Pacific Rise at 9 degrees 50 ' N, Geochemistry, Geophysics, Geosystems, vol. 15, pp. 2676–2688, 2014.
W. R. Bertsche, Pesch, A. J., and Winget, C. L., Potential design alternatives and analysis of system response variables, characteristic of undersea manipulators with force feedback. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1976, p. 66.
P. R. Girguis and Holden, J. F., On the Potential for Bioenergy and Biofuels from Hydrothermal Vent Microbes, OCEANOGRAPHY, vol. 25, pp. 213–217, 2012.
W. B. F. Ryan and Farre, J. A., Potential of radioactive and other waste disposals on the continental margin by natural dispersal processes, in Radioactive Wastes and the Ocean, P. K. Park, Ed. New York, N.Y.: Wiley, 1983, pp. 215–236.
C. G. Wheat and McManus, J., The potential role of ridge-flank hydrothermal systems on oceanic germanium and silicon balances, Geochimica et Cosmochimica Acta, vol. 69, pp. 2021–2029, 2005.
M. C. Kleinrock, Hey, R. N., and Theberge, A. E., Practical geological comparison of some seafloor survey instruments, Geophysical Research Letters, vol. 19, pp. 1407–1410, 1992.
H. A. Nees, Lutz, R. A., Shank, T. M., and Luther, G. W., Pre- and post-eruption diffuse flow variability among tubeworm habitats at 9 degrees 50′ north on the East Pacific Rise, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 56, pp. 1607–1615, 2009.
A. Simpson and Watling, L., Precious corals (Coralliidae) from north-western Atlantic Seamounts, JOURNAL OF THE MARINE BIOLOGICAL ASSOCIATION OF THE UNITED KINGDOM, vol. 91, pp. 369–382, 2011.
S. Kuramoto and Joshima, M., Precise gravity measurements for gas hydrate layer, JAMSTEC Journal of Deep Sea Research, pp. 371–379, 1999.
D. R. Yoerger and Mindell, D. A., Precise navigation and control of an ROV at 2200 meters depth, in Intervention/ROV '92 conference {&} exposition, San Diego, Calif.: Intervention/ROV 92 Committee of the Marine Technology Society, 1992, pp. 277–281.
B. S. Bingham, Precision autonomous underwater navigation, Massachusetts Institute of Technology, Cambridge, Mass., 2003.
A. J. Arnold, D'Escrivan, F., and Parker, W. C., Predation and avoidance responses in the foraminifera of the Galapagos hydrothermal mounds, Journal of Foraminiferal Research, vol. 15, pp. 38–42, 1985.
F. Micheli, Peterson, C. H., Mullineaux, L. S., Fisher, C. R., Mills, S. W., Sancho, G., Johnson, G. A., and Lenihan, H. S., Predation structures communities at deep-sea hydrothermal vents, Ecological Monographs, vol. 72, pp. 365–382, 2002.
D. C. Reed, Breier, J. A., Jiang, H., Anantharaman, K., Klausmeier, C. A., Toner, B. M., Hancock, C., Speer, K., Thurnherr, A. M., and Dick, G. J., Predicting the response of the deep-ocean microbiome to geochemical perturbations by hydrothermal vents, ISME JOURNAL, vol. 9, pp. 1857–1869, 2015.
C. L. Van Dover, Franks, P., and Ballard, R. D., Prediction of hydrothermal vent locations from distributions of brachyuran crabs, Limnology and Oceanography, vol. 32, pp. 1006–1010, 1987.
T. J. Kiernan, Predictions of the collapse strength of three HY-100 steel spherical hulls fabricated for the oceanographic research vehicle Alvin. Washington, D.C.: David Taylor Model Basin, 1964, p. 41.
K. Becker and Von Herzen, R. P., Pre-drilling observations of conductive heat flow at the TAG active mound using Alvin, in Proceedings of the Ocean Drilling Program, Initial Reports, vol. 158, E. Maddox, Ed. College Station, Tex.: Ocean Drilling Program, Texas A{&}M University, 1996, pp. 23–29.
L. L. Whitcomb and Yoerger, D. R., Preliminary experiments in model-based thruster control for underwater vehicle positioning, IEEE Journal of Oceanic Engineering, vol. 24, pp. 495–506, 1999.
J. W. Mavor, Preliminary memorandum on the weight, buoyancy and stability, speed, power, drag and thrust of the research submarine Alvin. Woods Hole, MA: Woods Hole Oceanographic Institution, 1964, p. 32.

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