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S. V. Galkin, Megafauna associated with hydrothermal vents in the Manus Back-Arc Basin (Bismarck Sea), Marine Geology, vol. 142, pp. 197–206, 1997.
R. D. Ballard, The Medea/Jason remotely operated vehicle system, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 40, pp. 1673–1687, 1993.
H. C. Wu, Chen, Y., Yang, C. J., Zhang, J. F., Zhou, H. Y., Peng, X. T., and Ji, F. W., Mechatronic integration and implementation of in situ multipoint temperature measurement for seafloor hydrothermal vent, Science in China Series E-Technological Sciences, vol. 50, pp. 144–153, 2007.
C. R. Smith, DeMaster, D. J., and Fornes, W. L., Mechanisms of age-dependent mixing on the bathyal California margin: The young and the restless, in Organism-sediment interactions, J. Y. Aller, Ed. Columbia, S.C.: University of South Carolina Press, 2001, pp. 263–278.
J. A. Karson, Mechanical extension of the median valley floor along the Mid-Atlantic Ridge in the MARK area, EOS, Transactions, American Geophysical Union, vol. 76, p. 582, 1995.
J. C. Mutter and Karson, J. A., Mechanical extension of oceanic lithosphere at slow-spreading ridges: Primary influence on morphology and segmentation, EOS, Transactions, American Geophysical Union, vol. 73, p. 286, 1992.
T. A. Terry, Mechanical engineering, geotechnology and research submersible operations. I. New York, N.Y.: American Society of Mechanical Engineers, 1973, p. 8.
N. T. Ulrich and Kumar, V., Mechanical design methods of improving manipulator performance, in Robots in Unstructured Environments: Fith International Conference on Advanced Robotics: '91 ICAR, June 19-22, 1991, Pisa, Italy, New York: IEEE, 1991, pp. 515–520.
F. B. Wooding, Bowen, A. D., Yoerger, D. R., Chave, A. D., and Dodeman, A. H., Mechanical design and deployment of the Hawaii-2 Observatory, in Proceedings of International Workshop on Scientific Use of Submarine Cables: Marine geophysical research using undersea cables, Japan Print Center, 1997, pp. 172–174.
J. W. Mavor, The mechanical and chemical properties of the HY 100 pressure hulls of the submarine, Alvin, vol. 65-1. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1965, p. 55.
M. A. Zumberge, Hatfield, W., and Wyatt, F. K., Measuring Seafloor Strain With an Optical Fiber Interferometer, Earth and Space Science, vol. 5, no. 8, pp. 371 - 379, 2018.
L. N. Germanovich, Hurt, R. S., Smith, J. E., Genc, G., and Lowell, R. P., Measuring fluid flow and heat output in seafloor hydrothermal environments, Journal of Geophysical Research: Solid Earth, vol. 120, pp. 8031–8055, 2015.
W. Smith, Grassle, J. F., and Kravitz, D., Measures of diversity with unbiased estimates, in Ecological Diversity in Theory and Practice, J. F. Grassle, Ed. Fairland, Md.: International Co-operative Publishing House, 1979, pp. 177–191.
S. A. Little, Stolzenbach, K. D., and Von Herzen, R. P., Measurements of plume flow from a hydrothermal vent field, Journal of Geophysical Research, vol. 92, pp. 2587–2596, 1987.
J. Gunderson, Jorgensen, B. B., Larsen, E., and Jannasch, H. W., Mats of giant sulfur bacteria in deep-sea sediments due to fluctuating hydrothermal flow, Nature, vol. 360, pp. 454–456, 1992.
H. W. Jannasch, Nelson, D. C., and Wirsen, C. O., Massive natural occurrence of unusually large bacteria (Beggiatoa sp.) at a hydrothermal deep-sea vent site, Nature, vol. 342, pp. 834–836, 1989.
J. Francheteau, Needham, H. D., Choukroune, P., Juteau, T., Seguret, M., Ballard, R. D., Fox, P. J., Normark, W., Carranza, A., Cordoba, D., Guerrero, J., Rangin, C., Bougault, H., Cambon, P., and Hekinian, R., Massive deep-sea sulphide ore deposits discovered on the East Pacific Rise, Nature, vol. 277, pp. 523–528, 1979.
A. - D. Schmitt, Galer, S. J. G., and Abouchami, W., Mass-dependent cadmium isotopic variations in nature with emphasis on the marine environment, Earth and Planetary Science Letters, vol. 277, pp. 262–272, 2009.
C. Boschi, Fruh-Green, G. L., Delacour, A., Karson, J. A., and Kelley, D. S., Mass transfer and fluid flow during detachment faulting and development of an oceanic core complex, Atlantis Massif (MAR 30 degrees N), Geochemistry, Geophysics, Geosystems, vol. 7, p. Q01004, 2006.
S. L'Haridon, Gouhier, L., St John, E., and Reysenbach, A. L., Marinitoga lauensis sp. nov., a novel deep-sea hydrothermal vent thermophilic anaerobic heterotroph with a prophage, Systematic and Applied Microbiology, vol. 42, pp. 343-347, 2019.
Oof Technol Congress, Marine minerals: Exploring our new ocean frontier. Washington, D.C.: U.S. Government Printing Office, 1987, p. 349.
H. W. Jannasch, Marine microbiology: A need for deep-sea diving?, Marine Technology Society Journal, vol. 24, pp. 38–41, 1990.
R. D. Ballard, Marine geophysics in the Caribbean, in Geophysics in the Americas: A Symposium of the Geophysics Commission of the Pan American Institute of Geography and History, Ottawa, Canada, September, 1976, J. G. Tanner, Ed. Ottawa, Ont.: Energy, Mines and Resources Canada, Earth Physics Branch, 1976, pp. 102–104.
R. P. Freeman-Lynde, The marine geology of the Bahama escarpment, Columbia University, New York, N.Y., 1981.

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