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Journal Article
A. W. J. Demopoulos, Smith, C. R., DeMaster, D. J., and Fornes, W. L., Evaluation of excess 234Th activity in sediments as an indicator of food quality for deep-sea deposit feeders, Journal of Marine Research, vol. 61, pp. 267–284, 2003.
E. Davis, Heesemann, M., and Wang, K., Evidence for episodic aseismic slip across the subduction seismogenic zone off Costa Rica: CORK borehole pressure observations at the subduction prism toe, Earth and Planetary Science Letters, vol. 306, pp. 299–305, 2011.
D. L. Distel, Felbeck, H., and Cavanaugh, C. M., Evidence for phylogenetic congruence among sulfur-oxidizing chemoautotrophic bacterial endosymbionts and their bivalve hosts, Journal of Molecular Evolution, vol. 38, pp. 533–543, 1994.
V. Robigou and Delaney, J. R., Evolution of two hydrothermal vent fields on the Endeavour Segment, Juan de Fuca Ridge, EOS, Transactions, American Geophysical Union, vol. 75, p. 706, 1994.
A. J. Pietruszka, Keyes, M. J., Duncan, J. A., Hauri, E. H., Carlson, R. W., and Garcia, M. O., Excesses of seawater-derived 234U in volcanic glasses from Loihi Seamount due to crustal contamination, Earth and Planetary Science Letters, vol. 304, pp. 280–289, 2011.
R. W. Embley, Baker, E. T., Butterfield, D. A., Chadwick, W. W., Lupton, J. E., Resing, J. A., de Ronde, C. E. J., Nakamura, K. I., Tunnicliffe, V., Dower, J. F., and Merle, S. G., Exploring the submarine ring of fire: Mariana Arc-Western Pacific, Oceanography, vol. 20, pp. 69–80, 2007.
R. W. Embley, Baker, E. T., Butterfield, D. A., Chadwick, W. W., Lupton, J. E., Resing, J. A., de Ronde, C. E. J., Nakamura, K. I., Tunnicliffe, V., Dower, J. F., and Merle, S. G., Exploring the submarine ring of fire: Mariana Arc-Western Pacific, Oceanography, vol. 20, pp. 69–80, 2007.
T. Dahlgren, Glover, A. G., Baco, A. R., and Smith, C. R., Fauna of whale falls: Systematics and ecology of a new polychaete (Annelida: Chrysopetalidae) from the deep Pacific Ocean., Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 51, pp. 1873–1887, 2004.
D. D. Syverson, Luhmann, A. J., Tan, C. Y., Borrok, D. M., Ding, K., and Seyfried, W. E., Fe isotope fractionation between chalcopyrite and dissolved Fe during hydrothermal recrystallization: An experimental study at 350 °C and 500 bars, Geochimica et Cosmochimica Acta, vol. 200, pp. 87–109, 2017.
T. J. Shaw, Luther, G. W., Rosas, R., Oldham, V. E., Coffey, N. R., Ferry, J. L., Dias, D. M. C., Yucel, M., and de Chanvalon, A. T., Fe-catalyzed sulfide oxidation in hydrothermal plumes is a source of reactive oxygen species to the ocean, Proceedings of the National Academy of Sciences of the United States of America, vol. 118, 2021.
T. J. Shaw, Luther, G. W., Rosas, R., Oldham, V. E., Coffey, N. R., Ferry, J. L., Dias, D. M. C., Yücel, M., and de Chanvalon, A. Thibault, Fe-catalyzed sulfide oxidation in hydrothermal plumes is a source of reactive oxygen species to the ocean, Proceedings of the National Academy of Sciences of the United States of America, vol. 118, p. e2026654118, 2021.
T. J. Shaw, Luther, G. W., Rosas, R., Oldham, V. E., Coffey, N. R., Ferry, J. L., Dias, D. M. C., Yucel, M., and de Chanvalon, A. T., Fe-catalyzed sulfide oxidation in hydrothermal plumes is a source of reactive oxygen species to the ocean, Proceedings of the National Academy of Sciences of the United States of America, vol. 118, 2021.
T. J. Shaw, Luther, G. W., Rosas, R., Oldham, V. E., Coffey, N. R., Ferry, J. L., Dias, D. M. C., Yücel, M., and de Chanvalon, A. Thibault, Fe-catalyzed sulfide oxidation in hydrothermal plumes is a source of reactive oxygen species to the ocean, Proceedings of the National Academy of Sciences of the United States of America, vol. 118, p. e2026654118, 2021.
R. J. Miller, Smith, C. R., DeMaster, D. J., and Fornes, W. L., Feeding selectivity and rapid particle processing by deep-sea megafaunal deposit feeders: A super(234)Th tracer approach, Journal of Marine Research, vol. 58, pp. 653–673, 2000.
J. Dymond, Lyle, M., Finney, B., Piper, D. Z., Murphy, K., Conard, R., and Pisias, N., Ferromanganese nodules from MANOP Sites H, S, and R; control of mineralogical and chemical composition by multiple accretionary processes, Geochimica et Cosmochimica Acta, vol. 48, pp. 931–949, 1984.
C. A. Schutte, Teske, A., MacGregor, B. J., Salman-Carvalho, V., Lavik, G., Hach, P., and de Beer, D., Filamentous Giant Beggiatoaceae from the Guaymas Basin Are Capable of both Denitrification and Dissimilatory Nitrate Reduction to Ammonium, Applied and Environmental Microbiology, vol. 84, pp. e02860-17, 2018.
B. Melchert, Devey, C. W., German, C. R., Lackschewitz, K. S., Seifert, R., Walter, M., Mertens, C., Yoerger, D. R., Baker, E. T., Paulick, H., and Nakamura, K., First evidence for high-temperature off-axis venting of deep crustal/mantle heat: The Nibelungen hydrothermal field, southern Mid-Atlantic Ridge, Earth and Planetary Science Letters, vol. 275, pp. 61–69, 2008.
A. N. Netburn, Kinsey, J. D., Bush, S. L., Djurhuus, A., Fernandez, J., Hoffman, C. L., McVeigh, D. M., Twing, K. I., and Bagge, L., First HOV Alvin study of the pelagic environment at Hydrographer Canyon (NW Atlantic), Deep Sea Research Part II: Topical Studies in Oceanography, vol. 150, no. Journal Article, pp. 30 - 40, 2018.
M. Biscoito, Segonzac, M., Almeida, A. J., Desbruyeres, D., Geistdoerfer, P., Turnipseed, M., and Van Dover, C. L., Fishes from the hydrothermal vents and cold seeps: An update, Cahiers de Biologie Marine, vol. 43, pp. 359–362, 2002.
M. E. Torres, McManus, J., Hammond, D. E., De Angelis, M. A., Heeschen, K. U., Colbert, S. L., Tryon, M. D., Brown, K. M., Suess, E., and Torres, M. E., Fluid and chemical flux in and out of sediments hosting methane hydrate deposits on Hydrate Ridge, OR, II: Hydrological processes, Earth and Planetary Science Letters, vol. 201, pp. 525–540, 2002.
R. P. Dziak, Baker, E. T., Shaw, A. M., Bohnenstiehl, D. R., Chadwick, W. W., Haxel, J. H., Matsumoto, H., and Walker, S. L., Flux measurements of explosive degassing using a yearlong hydroacoustic record at an erupting submarine volcano, Geochemistry, Geophysics, Geosystems, vol. 13, p. Q0AF07, 2012.
C. Wentrup, Wendeberg, A., Schimak, M., Borowski, C., and Dubilier, N., Forever competent: deep-sea bivalves are colonized by their chemosynthetic symbionts throughout their lifetime, ENVIRONMENTAL MICROBIOLOGY, vol. 16, pp. 3699–3713, 2014.
E. E. Davis, Wang, K., Becker, K., and Thomson, R. E., Formation-scale hydraulic and mechanical properties of oceanic crust inferred from pore pressure response to periodic seafloor loading, Journal of Geophysical Research, vol. 105, pp. 13,413–423,435, 2000.
L. N. Dykman, Beaulieu, S. E., Mills, S. W., Solow, A. R., and Mullineaux, L. S., Functional traits provide new insight into recovery and succession at deep‐sea hydrothermal vents, Ecology, p. e03418, 2021.
L. N. Dykman, Beaulieu, S. E., Mills, S. W., Solow, A. R., and Mullineaux, L. S., Functional traits provide new insight into recovery and succession at deep-sea hydrothermal vents, Ecology, 2021.

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