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B. D. Lanoil, La Duc, M. T., Wright, M., Kastner, M., Nealson, K. H., and Bartlett, D. H., Archaeal diversity in ODP legacy borehole 892b and associated seawater and sediments of the Cascadia Margin, FEMS Microbiology Ecology, vol. 54, pp. 167–177, 2005.
H. W. Jannasch, Cuhel, R. L., Wirsen, C. O., and Taylor, C. D., An approach for in situ studies of deep-sea amphipods and their microbial gut flora, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 27, pp. 867–872, 1980.
F. K. Wilckens, Reeves, E. P., Bach, W., Seewald, J. S., and Kasemann, S. A., Application of B, Mg, Li, and Sr Isotopes in Acid-Sulfate Vent Fluids and Volcanic Rocks as Tracers for Fluid-Rock Interaction in Back-Arc Hydrothermal Systems, Geochemistry Geophysics Geosystems, 2019.
R. G. Waller, Adkins, J. F., Robinson, L. F., and Shank, T. M., Ancient DNA techniques : applications for deep-water corals, Bulletin of Marine Science, vol. 81, pp. 351–359, 2007.
C. E. J. de Ronde, Walker, S. L., Ditchburn, R. G., F Tontini, C., Hannington, M. D., Merle, S. G., Timm, C., Handler, M. R., Wysoczanski, R. J., Dekov, V. M., Kamenov, G. D., Baker, E. T., Embley, R. W., Lupton, J. E., and Stoffers, P., The Anatomy of a Buried Submarine Hydrothermal System, Clark Volcano, Kermadec Arc, New Zealand, ECONOMIC GEOLOGY, vol. 109, pp. 2261–2292, 2014.
C. E. J. de Ronde, Walker, S. L., Ditchburn, R. G., F Tontini, C., Hannington, M. D., Merle, S. G., Timm, C., Handler, M. R., Wysoczanski, R. J., Dekov, V. M., Kamenov, G. D., Baker, E. T., Embley, R. W., Lupton, J. E., and Stoffers, P., The Anatomy of a Buried Submarine Hydrothermal System, Clark Volcano, Kermadec Arc, New Zealand, ECONOMIC GEOLOGY, vol. 109, pp. 2261–2292, 2014.
P. Rueter, Rabus, R., Wilkes, H., Aekersberg, F., Rainey, F., Jannasch, H. W., and Widdel, F., Anaerobic oxidation of hydrocarbons from crude oil by new types of sulfate-reducing bacteria, Nature, vol. 372, pp. 455–459, 1994.
P. Rueter, Rabus, R., Wilkes, H., Aekersberg, F., Rainey, F., Jannasch, H. W., and Widdel, F., Anaerobic oxidation of hydrocarbons from crude oil by new types of sulfate-reducing bacteria, Nature, vol. 372, pp. 455–459, 1994.
S. D. Wankel, Adams, M. M., Johnston, D. T., Hansel, C. M., Joye, S. B., and Girguis, P. R., Anaerobic methane oxidation in metalliferous hydrothermal sediments: influence on carbon flux and decoupling from sulfate reduction, ENVIRONMENTAL MICROBIOLOGY, vol. 14, pp. 2726–2740, 2012.
S. Kaartvedt, Van Dover, C. L., Mullineaux, L. S., Wiebe, P. H., and Bollens, S., Amphipods on a deep-sea hydrothermal treadmill, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 41, pp. 179–195, 1994.
T. Hoaki, Wirsen, C. O., Hanzawa, S., Maruyama, T., and Jannasch, H. W., Amino acid requirements of two hyperthermophilic Archaeal isolates from deep sea vents: Desulfurococcus strain SY and Pyrococcus strain GB-D, Applied and Environmental Microbiology, vol. 59, pp. 610–613, 1993.
S. N. White, Chave, A. D., Reynolds, G. T., and Van Dover, C. L., Ambient light emission from hydrothermal vents on the Mid-Atlantic Ridge, Geophysical Research Letters, vol. 29, p. Article no 1744, 2002.
A. G. Sharp, Walden, B. B., and Hosom, D. S., Alvin titanium electrical penetrator design, manufacture and testing: Interim report. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1976, p. 68.
J. B. Walsh and Rainnie, W. O., Alvin, ocean research submarine, Mechanical Engineering, vol. 86, pp. 22–26, 1964.
J. B. Walsh and Rainnie, W. D., Alvin: Ocean Research Submarine, Mechanical Engineering, vol. 136, p. 28, 2014.
H. W. Jannasch and Wirsen, C. O., Alvin and the sandwich, Oceanus, vol. 16, pp. 20–22, 1972.
D. S. Hosom, Forrester, N. C., and Walden, B. B., Alvin – 120 VDC/28 VDC electrical system, in Oceans '87 Proceedings: The ocean, an international workplace; Halifax, N.S. (Canada), 28 Sep-1 Oct 1987, vol. 3, New York, N.Y.: IEEE, 1987, pp. 1272–1277.
J. A. Karson and Winters, A. T., Along-Axis Variations in Tectonic Extension and Accommodation Zones in the MARK Area, Mid-Atlantic Ridge 23N Latitude, in Ophiolites and Their Modern Oceanic Analogues, L. M. Parson, Ed. London: Geological Society, 1992, pp. 107–116.
J. A. Karson, Thompson, G., Humphris, S. E., Edmond, J. M., Bryan, W. B., Brown, J. R., Winters, A. T., Pockalny, R. A., Casey, J. F., Campbell, A. C., Klinkhammer, G., Palmer, M. R., Kinzler, R. J., and Sulanowska, M. M., Along-axis variations in seafloor spreading in the MARK area, Nature, vol. 328, pp. 681–685, 1987.
D. J. Fornari, Perfit, M. R., Tolstoy, M., Haymon, R., Schreirer, D. S., Johnson, P., Kurras, G., White, S., Getsiv, J., and Party, S. Scientific, AHA-NEMO2: Shipboard data web site compiled during R/V Melville NEMO Expedition, Leg 2, May, 2000, vol. 2005. 2001.
L. Whitcomb, Yoerger, D. R., Singh, H., and Howland, J., Advances in underwater robot vehicles for deep ocean exploration: Navigation, control, and survey operations, in Robotics research: the Ninth International Symposium, J. M. Hollerbach, Ed. New York: Springer, 2000, pp. 1–9.
G. Troni and Whitcomb, L. L., Advances in In Situ Alignment Calibration of Doppler and High/Low-end Attitude Sensors for Underwater Vehicle Navigation: Theory and Experimental Evaluation, JOURNAL OF FIELD ROBOTICS, vol. 32, pp. 655–674, 2015.
H. Singh, Roman, C., Whitcomb, L., and Yoerger, D. R., Advances in fusion of high resolution underwater optical and acoustic data, in Proceedings of the 2000 International Symposium on Underwater Technology, Tokyo, Japan, May 23-26, 2000, Piscatway, N.J.: IEEE, 2000, pp. 206–211.
J. P. Cowen, Copson, D. A., Jolly, J., Hsieh, C. - C., Lin, H. - T., Glazer, B. T., and Wheat, C. G., Advanced instrument system for real-time and time-series microbial geochemical sampling of the deep (basaltic) crustal biosphere, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 61, pp. 43–56, 2012.
M. Crespo-Medina, Chatziefthimiou, A. D., Bloom, N. S., Luther, G. W., Wright, D. D., Reinfelder, J. R., Vetriani, C., and Barkay, T., Adaptation of chemosynthetic microorganisms to elevated mercury concentrations in deep-sea hydrothermal vents, Limnology and Oceanography, vol. 54, pp. 41–49, 2009.

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