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T. Juteau, Eissen, J. P., Francheteau, J., Needham, H. D., Choukroune, P., Rangin, C., Seguret, M., Ballard, R. D., Fox, P. J., Normark, W. R., Carranza, A., Cordoba, D., and Guerrero, J., Homogeneous basalts from the East Pacific Rise at 21 degrees N: steady state magma reservoirs at moderately fast spreading centers, Oceanologica Acta, vol. 3, pp. 487–503, 1980.
J. M. Edmond and Von Damm, K. L., Hot springs on the ocean floor, Scientific American, vol. 248, pp. 78–93, 1983.
P. A. Rona, Thompson, G., Mottl, M. J., Karson, J. A., Jenkins, W. J., Graham, D., Mallette, M., Von Damm, K. L., and Edmond, J. M., Hydrothermal activity at the TAG hydrothermal field, Mid-Atlantic Ridge crest at 26 degrees N, Journal of Geophysical Research, vol. 89, pp. 11,311–365,379, 1984.
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.
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.
N. Mahmoudi, Enke, T. N., Beaupre, S. R., Teske, A. P., Cordero, O. X., and Pearson, A., Illuminating microbial species-specific effects on organic matter remineralization in marine sediments, Environmental Microbiology, 2019.
D. J. Beaudoin, Carmichael, C. A., Nelson, R. K., Reddy, C. M., Teske, A. P., and Edgcomb, V. P., Impact of protists on a hydrocarbon-degrading bacterial community from deep-sea Gulf of Mexico sediments: A microcosm study, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 129, pp. 350–359, 2016.
R. W. Embley, Chadwick, W. W., Jonasson, I. R., Butterfield, D. A., and Baker, E. T., Initial results of the rapid response to the 1993 CoAxial event: Relationships between hydrothermal and volcanic processes, Geophysical Research Letters, vol. 22, pp. 143–146, 1995.
O. J. Rouxel, Shanks, W. C., Bach, W., and Edwards, K. J., Integrated Fe- and S-isotope study of seafloor hydrothermal vents at East Pacific Rise 9–10 degrees N, Chemical Geology, vol. 252, pp. 214–227, 2008.
M. R. Perfit, Cann, J. R., Fornari, D. J., Engels, J., Smith, D. K., Ridley, W. I., and Edwards, M. H., Interaction of sea water and lava during submarine eruptions at mid-ocean ridges, Nature, vol. 426, pp. 62–64, 2003.
M. R. Perfit, Cann, J. R., Fornari, D. J., Engels, J., Smith, D. K., Ridley, W. I., and Edwards, M. H., Interaction of sea water and lava during submarine eruptions at mid-ocean ridges, Nature, vol. 426, pp. 62–64, 2003.
K. Kormas, Pachiadaki, M., Karayanni, H., Leadbetter, E. R., Bernhard, J. M., and Edgcomb, V. P., Inter-comparison of the potentially active prokaryotic communities in the halocline sediments of Mediterranean deep-sea hypersaline basins, Extremophiles, vol. 19, pp. 949–960, 2015.
J. Escartin, Soule, S. A., Fornari, D. J., Tivey, M. A., Schouten, H., and Perfit, M. R., Interplay between faults and lava flows in construction of the upper oceanic crust: The East Pacific Rise crest 9 degrees 25 '-9 degrees 58 ' N, Geochemistry, Geophysics, Geosystems, vol. 8, p. Q06005, 2007.
A. J. Findlay, Estes, E. R., Gartman, A., Yucel, M., Kamyshny, A., and Luther, G. W., Iron and sulfide nanoparticle formation and transport in nascent hydrothermal vent plumes, Nature Communications, vol. 10, 2019.
D. Thistle, Eckman, J. E., and Paterson, G. L. J., Large, motile epifauna interact strongly with harpacticoid copepods and polychaetes at a bathyal site, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 55, pp. 324–331, 2008.
W. W. Chadwick and Emblew, R. W., Lava flows from a mid-1980s submarine eruption on the Cleft Segment, Juan de Fuca Ridge, Journal of Geophysical Research, vol. 99, pp. 4761–4776, 1994.
R. A. Lutz, Shank, T. M., and Evans, R., Life after death in the deep sea, American Scientist, vol. 89, pp. 422–431, 2001.
T. J. Lin, Eecke, H. C. Ver, Breves, E. A., Dyar, M. D., Jamieson, J. W., Hannington, M. D., Dahle, H., Bishop, J. L., Lane, M. D., Butterfield, D. A., Kelley, D. S., Lilley, M. D., Baross, J. A., and Holden, J. F., Linkages between mineralogy, fluid chemistry, and microbial communities within hydrothermal chimneys from the Endeavour Segment, Juan de Fuca Ridge, Geochemistry, Geophysics, Geosystems, vol. 17, pp. 300–323, 2016.
C. K. Paull, Neumann, A. C., Ende, B. A. am, Ussler, W., and Rodriguez, N. M., Lithoherms on the Florida-Hatteras Slope, Marine Geology, vol. 166, pp. 83–101, 2000.
R. W. Embley, Chadwick, W. W., Baker, E. T., Butterfield, D. A., and Resing, J. A., Long-term eruptive activity at a submarine arc volcano, Nature, vol. 441, pp. 494–497, 2006.
R. P. Dziak, Bohnenstiehl, D. R., Baker, E. T., Matsumoto, H., Caplan-Auerbach, J., Embley, R. W., Merle, S. G., Walker, S. L., Lau, T. - K., and Jr., W. W. Chadwick, Long-term explosive degassing and debris flow activity at West Mata submarine volcano, GEOPHYSICAL RESEARCH LETTERS, vol. 42, pp. 1480–1487, 2015.
J. B. Sylvan, Sia, T. Y., Haddad, A. G., Briscoe, L. J., Toner, B. M., Girguis, P. R., and Edwards, K. J., Low temperature geomicrobiology follows host rock composition along a geochemical gradient in Lau Basin, FRONTIERS IN MICROBIOLOGY, vol. 4, 2013.
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.
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.

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