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Journal Article
B. Gueguen, Rouxel, O. J., Rouget, M. - L., Bollinger, C., Ponzevera, E., Germain, Y., and Fouquet, Y., Comparative geochemistry of four ferromanganese crusts from the Pacific Ocean and significance for the use of Ni isotopes as paleoceanographic tracers, Geochimica et Cosmochimica Acta, vol. 189, pp. 214–235, 2016.
B. Gueguen, Rouxel, O. J., Rouget, M. - L., Bollinger, C., Ponzevera, E., Germain, Y., and Fouquet, Y., Comparative geochemistry of four ferromanganese crusts from the Pacific Ocean and significance for the use of Ni isotopes as paleoceanographic tracers, Geochimica et Cosmochimica Acta, vol. 189, pp. 214–235, 2016.
W. Xie, Wang, F., Guo, L., Chen, Z., Sievert, S. M., Meng, J., Huang, G., Li, Y., Yan, Q., Wu, S., Wang, X., Chen, S., He, G., Xiao, X., and Xu, A., Comparative metagenomics of microbial communities inhabiting deep-sea hydrothermal vent chimneys with contrasting chemistries, ISME JOURNAL, vol. 5, pp. 414–426, 2011.
D. B. Goldsmith, Kellogg, C. A., Morrison, C. L., Gray, M. A., Stone, R. P., Waller, R. G., Brooke, S. D., and Ross, S. W., Comparison of microbiomes of cold-water corals Primnoa pacifica and Primnoa resedaeformis, with possible link between microbiome composition and host genotype, Scientific Reports, vol. 8, no. Journal Article, pp. 12383 - 12383, 2018.
D. B. Goldsmith, Kellogg, C. A., Morrison, C. L., Gray, M. A., Stone, R. P., Waller, R. G., Brooke, S. D., and Ross, S. W., Comparison of microbiomes of cold-water corals Primnoa pacifica and Primnoa resedaeformis, with possible link between microbiome composition and host genotype, Scientific Reports, vol. 8, no. Journal Article, pp. 12383 - 12383, 2018.
B. Govenar, Freeman, M., Bergquist, D. C., Johnson, G. A., and Fisher, C. R., Composition of a One-Year-Old Riftia pachyptila Community Following a Clearance Experiment: Insight to Succession Patterns at Deep-Sea Hydrothermal Vents, Biological Bulletin, vol. 207, pp. 177–182, 2004.
D. Gao, Hurst, S. D., Karson, J. A., Delaney, J. R., and Speiss, F. N., Computer-aided interpretation of side-looking sonar images from the eastern intersection of the Mid- Atlantic Ridge with the Kane Transform, Journal of Geophysical Research, vol. 103, pp. 14,20,921–997, 1998.
S. M. Gallager, Yamazaki, H., and Davis, C. S., Contribution of fine-scale vertical structure and swimming behavior to formation of plankton layers on Georges Bank, Marine Ecology Progress Series, vol. 267, pp. 27–43, 2004.
C. Diaz- Recio Lorenzo, Bruggen, Dter, Luther, G. W., Gartman, A., and Gollner, S., Copepod assemblages along a hydrothermal stress gradient at diffuse flow habitats within the ABE vent site (Eastern Lau Spreading Center, Southwest Pacific), Deep Sea Research Part I Oceanographic Research Papers, p. 103532, 2021.
C. Diaz- Recio Lorenzo, Bruggen, Dter, Luther, G. W., Gartman, A., and Gollner, S., Copepod assemblages along a hydrothermal stress gradient at diffuse flow habitats within the ABE vent site (Eastern Lau Spreading Center, Southwest Pacific), Deep Sea Research Part I Oceanographic Research Papers, p. 103532, 2021.
J. M. Webster, Braga, J. C., Clague, D. A., Gallup, C., Hein, J. R., Potts, D. C., Renema, W., Riding, R., Riker-Coleman, K., Silver, E. A., and Wallace, L. M., Coral reef evolution on rapidly subsiding margins, Global and Planetary Change, vol. 66, pp. 128–148, 2009.
R. Escoube, Rouxel, O. J., Edwards, K. J., Glazer, B., and Donard, O. F. X., Coupled Ge/Si and Ge isotope ratios as geochemical tracers of seafloor hydrothermal systems: Case studies at Loihi Seamount and East Pacific Rise 9°50′N, Geochimica et Cosmochimica Acta, vol. 167, pp. 93–112, 2015.
E. Pacific Ri Group, Ballard, R. D., Craig, H., Edmond, J., Einaudi, M., Holcomb, R., Holland, H. D., Hopson, C., Luyendyk, B. P., Macdonald, K., Morton, J., Orcutt, J., and Sleep, N., Crustal processes of the Mid-Ocean Ridge, Science, vol. 213, pp. 31–40, 1981.
H. - H. Gennerich and Villinger, H., Deciphering the ocean bottom pressure variation in the Logatchev hydrothermal field at the eastern flank of the Mid-Atlantic Ridge, GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, vol. 12, 2011.
R. Hekinian, Pineau, F., Shilobreeva, S., Bideau, D., Gracia, E., and Javoy, M., Deep sea explosive activity on the Mid-Atlantic Ridge near 34 degrees 50'N; magma composition, vesicularity and volatile content, Journal of Volcanology and Geothermal Research, vol. 98, pp. 49–77, 2000.
A. Mathiske, Thistle, D., Gheerardyn, H., and Veit-Kohler, G., Deep sea without limits-four new closely related species of Emertonia Wilson, 1932 (Copepoda: Harpacticoida: Paramesochridae) show characters with a world- wide distribution, Zootaxa, vol. 5051, pp. 443-486, 2021.
R. Griboulard, Deniaud, Y., and Gonthier, E., Deep-dive observations and acoustic sonar imagery of an accretionary fold: surficial deformations on the South Barbados Wedge (Atlantic Ocean), Comptes rendus de l'Académie des sciences. Série II, Mécanique, physique, chimie, sciences de l'univers, sciences de la terre, vol. 330, pp. 281–287, 2000.
R. Griboulard, Deniaud, Y., and Gonthier, E., Deep-dive observations and acoustic sonar imagery of an accretionary fold: surficial deformations on the South Barbados Wedge (Atlantic Ocean), Comptes rendus de l'Académie des sciences. Série II, Mécanique, physique, chimie, sciences de l'univers, sciences de la terre, vol. 330, pp. 281–287, 2000.
P. Martin, Goodkin, N. F., Stewart, J. A., Foster, G. L., Sikes, E. L., White, H. K., Hennige, S., and Roberts, J. M., Deep-sea coral $δ$13C: A tool to reconstruct the difference between seawater pH and $δ$11B-derived calcifying fluid pH, Geophysical Research Letters, vol. 43, pp. 299–308, 2016.
A. G. Glover and Smith, C. R., The deep-sea floor ecosystem: Current status and prospects of anthropogenic change by the year 2025, Environmental Conservation, vol. 30, pp. 219–241, 2003.
A. V. Gebruk, Chevaldonne, P., Shank, T. M., Lutz, R. A., and Vrijenhoek, R. C., Deep-sea hydrothermal vent communities of the Logatchev area (14 degrees 45'N, Mid-Atlantic Ridge): Diverse biotypes and high biomass, Journal of the Marine Biological Association of the United Kingdom, vol. 80, pp. 383–393, 2000.
C. Vetriani, Voordeckers, J. W., Crespo-Medina, M., O'Brien, C. E., Giovannelli, D., and Lutz, R. A., Deep-sea hydrothermal vent Epsilonproteobacteria encode a conserved and widespread nitrate reduction pathway (Nap), ISME JOURNAL, vol. 8, pp. 1510–1521, 2014.
J. R. Heirtzler and Grassle, J. F., Deep-sea research by manned submersibles, Science, vol. 194, pp. 294–299, 1976.
L. F. Robinson, Adkins, J. F., Scheirer, D. S., Fernandez, D. P., Gagnon, A. C., and Waller, R. G., Deep-sea scleractinian coral age and depth distributions in the northwest Atlantic for the last 225,000 years, Bulletin of Marine Science, vol. 81, pp. 371–391, 2007.
U. Fehn, Siegel, M. D., Robinson, G. R., Holland, H. D., Williams, D. L., Erickson, A. J., and Green, K. E., Deep-water temperatures in the FAMOUS area, Geological Society of America Bulletin, vol. 88, pp. 488–494, 1977.

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