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D. R. Calder, Hydroids (Cnidaria: Hydrozoa) recorded from depths exceeding 3000 m in the abyssal western North Atlantic, Canadian Journal of Zoology, vol. 74, pp. 1721–1726, 1996.
E. E. Davis, Becker, K., Dziak, R. P., Cassidy, J. F., Wang, K., and Lilley, M., Hydrological response to a seafloor spreading episode on the Juan de Fuca ridge, Nature, vol. 430, pp. 335–338, 2004.
K. Fujioka, Mitsuzawa, K., Kinoshita, M., Ishibashi, J., Joshima, M., Shitashima, K., Maruyama, A., and Cowen, J. P., Hydrothermal activity and long-term monitoring at Southern East Pacific Rise - Preliminary results of the Ridge Flux SEPR'97 Leg 2 cruise, JAMSTEC Journal of Deep Sea Research, pp. 21–33, 1999.
C. Wilson, Charlou, J. L., Ludford, E., Klinkhammer, G., Chin, C., Bougault, H., German, C. R., Speer, K., and Palmer, M., Hydrothermal anomalies in the Lucky Strike segment on the Mid-Atlantic Ridge (37 degrees 17'N), Earth and Planetary Science Letters, vol. 142, pp. 467–477, 1996.
C. Wilson, Charlou, J. L., Ludford, E., Klinkhammer, G., Chin, C., Bougault, H., German, C. R., Speer, K., and Palmer, M., Hydrothermal anomalies in the Lucky Strike segment on the Mid-Atlantic Ridge (37 degrees 17'N), Earth and Planetary Science Letters, vol. 142, pp. 467–477, 1996.
E. T. Baker, Chadwick, W. W., Cowen, J. P., Dziak, R. P., Rubin, K. H., and Fornari, D. J., Hydrothermal Discharge During Submarine Eruptions THE IMPORTANCE OF DETECTION, RESPONSE, AND NEW TECHNOLOGY, Oceanography, vol. 25, pp. 128–141, 2012.
E. T. Baker, Chadwick, W. W., Cowen, J. P., Dziak, R. P., Rubin, K. H., and Fornari, D. J., Hydrothermal Discharge During Submarine Eruptions THE IMPORTANCE OF DETECTION, RESPONSE, AND NEW TECHNOLOGY, Oceanography, vol. 25, pp. 128–141, 2012.
K. L. Von Damm, Colodner, D. C., and Edmonds, H. N., Hydrothermal fluid chemistry at 9-10 degrees N EPR '92: Big changes and still changing, EOS, Transactions, American Geophysical Union, vol. 73, p. 524, 1992.
C. G. Wheat, McManus, J., Dymond, J., Collier, R., and Whiticar, M., Hydrothermal fluid circulation through the sediment of Crater Lake, Oregon: pore water and heat flow constraints, Journal of Geophysical Research, vol. 103, pp. 9931–9944, 1998.
A. M. Cruse, Seewald, J. S., Saccocia, P. J., and Zierenberg, R., Hydrothermal fluid composition at Middle Valley, northern Juan de Fuca Ridge: temporal and spatial variability, in Magma to microbe : modeling hydrothermal processes at ocean spreading centers, R. P. Lowell, Ed. Washington, DC: American Geophysical Union, 2008, pp. 145–166.
D. L. Williams, Green, K., van Andel, T. H., Von Herzen, R. P., Dymond, J. R., and Crane, K., The hydrothermal mounds of the Galapagos Rift: Observations with DSRV Alvin and detailed heat flow studies, Journal of Geophysical Research, vol. 84, pp. 7467–7484, 1979.
L. A. Levin, Orphan, V. J., Rouse, G. W., Rathburn, A. E., Ussler, W., Cook, G. S., Goffredi, S. K., Perez, E. M., Waren, A., Grupe, B. M., Chadwick, G., and Strickrott, B., A hydrothermal seep on the Costa Rica margin: middle ground in a continuum of reducing ecosystems, Proceedings of the Royal Society B: Biological Sciences, vol. 279. pp. 2580–2588, 2012.
L. A. Levin, Orphan, V. J., Rouse, G. W., Rathburn, A. E., Ussler, W., Cook, G. S., Goffredi, S. K., Perez, E. M., Waren, A., Grupe, B. M., Chadwick, G., and Strickrott, B., A hydrothermal seep on the Costa Rica margin: middle ground in a continuum of reducing ecosystems, Proceedings of the Royal Society B: Biological Sciences, vol. 279. pp. 2580–2588, 2012.
J. W. Jamieson, Clague, D. A., and Hannington, M. D., Hydrothermal sulfide accumulation along the Endeavour Segment, Juan de Fuca Ridge, Earth and Planetary Science Letters, vol. 395, pp. 136–148, 2014.
R. P. Dziak, Chadwick, W. W., Fox, C. G., and Embley, R. W., Hydrothermal temperature changes at the southern Juan de Fuca Ridge associated with MW 6.2 Blanco Transform earthquake, Geology, vol. 31, pp. 119–122, 2003.
R. M. Haymon, Fornari, D. J., Edwards, M. H., Carbotte, S., Wright, D., and Macdonald, K. C., Hydrothermal vent distribution along the East Pacific Rise Crest (9 degrees 09'-54'N) and its relationship to magmatic and tectonic processes on fast-spreading Mid-Ocean Ridge, Earth and Planetary Science Letters, vol. 104, pp. 513–534, 1991.
D. P. Connelly, Copley, J. T., Murton, B. J., Stansfield, K., Tyler, P. A., German, C. R., Van Dover, C. L., Amon, D., Furlong, M., Grindlay, N., Hayman, N., Huehnerbach, V., Judge, M., Le Bas, T., McPhail, S., Meier, A., Nakamura, K. I., Nye, V., Pebody, M., Pedersen, R. B., Plouviez, S., Sands, C., Searle, R. C., Stevenson, P., Taws, S., and Wilcox, S., Hydrothermal vent fields and chemosynthetic biota on the world's deepest seafloor spreading centre, Nature Communications, vol. 3, p. 620, 2012.
D. P. Connelly, Copley, J. T., Murton, B. J., Stansfield, K., Tyler, P. A., German, C. R., Van Dover, C. L., Amon, D., Furlong, M., Grindlay, N., Hayman, N., Huehnerbach, V., Judge, M., Le Bas, T., McPhail, S., Meier, A., Nakamura, K. I., Nye, V., Pebody, M., Pedersen, R. B., Plouviez, S., Sands, C., Searle, R. C., Stevenson, P., Taws, S., and Wilcox, S., Hydrothermal vent fields and chemosynthetic biota on the world's deepest seafloor spreading centre, Nature Communications, vol. 3, p. 620, 2012.
M. Yucel, Gartman, A., Chan, C. S., and Luther, G. W., Hydrothermal vents as a kinetically stable source of iron-sulphide-bearing nanoparticles to the ocean, Nature Geoscience, vol. 4, pp. 367–371, 2011.
C. Langmuir, Humphris, S. E., Fornari, D. J., Van Dover, C. L., Von Damm, K. L., Tivey, M. K., Colodner, D., Charlou, J. L., Desonie, D., Wilson, D., Fouquet, Y., Klinkhammer, G., and Bougault, H., Hydrothermal vents near a mantle hot spot: The Lucky Strike vent field at 37 degrees N on the Mid-Atlantic Ridge, Earth and Planetary Science Letters, vol. 148, pp. 69–91, 1997.
C. Langmuir, Humphris, S. E., Fornari, D. J., Van Dover, C. L., Von Damm, K. L., Tivey, M. K., Colodner, D., Charlou, J. L., Desonie, D., Wilson, D., Fouquet, Y., Klinkhammer, G., and Bougault, H., Hydrothermal vents near a mantle hot spot: The Lucky Strike vent field at 37 degrees N on the Mid-Atlantic Ridge, Earth and Planetary Science Letters, vol. 148, pp. 69–91, 1997.

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