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D. M. Christie and Fisher, C. R., Geological, Biological, Chemical, and Physical Interactions in Back-Arc Spreading Systems—An Introduction, in Back-Arc Spreading Systems: Geological, Biological, Chemical, and Physical Interactions, AGU, 2006, pp. 1–4.
Y. Bogdanov, Sagalevich, A. M., Galkin, S. V., Chernyaev, E. S., Lukashin, V. N., and Ivanov, G. V., Geological and biological investigations in the northern part of Mohn Ridge (Norwegian Sea), Okeanologija, vol. 37, pp. 609–616, 1997.
W. B. F. Ryan, Miller, E., Cita, M. B., Hanselman, D., Nesteroff, W. D., and Nibbelink, M., Geologic history of Georges Bank as determined by submersible exploration of submarine canyons, in Proceedings - Offshore Technology Conference, Dallas, TX: Offshore Technology Conference, 1978, pp. 1859–1868.
P. C. Valentine, Uzmann, J. R., and Cooper, R. A., Geologic and biologic observations in Oceanographer Submarine Canyon: Descriptions of dives aboard the research submersibles Alvin (1967, 1978) and Nekton Gamma (1974), vol. 80-76. Woods Hole, Mass.: U.S. Geological Survey, 1980, p. 43.
W. W. Chadwick, Wilcock, W. S. D., Nooner, S. L., Beeson, J. W., Sawyer, A. M., and Lau, T. ‐K., Geodetic Monitoring at Axial Seamount Since its 2015 Eruption Reveals a Waning Magma Supply and Tightly Linked Rates of Deformation and Seismicity, Geochemistry Geophysics Geosystems, 2021.
A. M. Cruse and Seewald, J. S., Geochemistry of low-molecular weight hydrocarbons in hydrothermal fluids from Middle Valley, northern Juan de Fuca Ridge, Geochimica et Cosmochimica Acta, vol. 70, pp. 2073–2092, 2006.
E. Reeves, Seewald, J. S., Saccocia, P. J., Walsh, E., Bach, W., Craddock, P. R., Shanks, W. C., Sylva, S. P., Pichler, T., and Rosner, M., Geochemistry of hydrothermal fluids from the PACMANUS, Northeast Pual and Vienna Woods hydrothermal fields, Manus Basin, Papua New Guinea, Geochimica et Cosmochimica Acta, vol. 75, pp. 1088–1123, 2011.
J. S. Seewald, Reeves, E. P., Bach, W., Saccocia, P. J., Craddock, P. R., Walsh, E., Shanks, W. C., Sylva, S. P., Pichler, T., and Rosner, M., Geochemistry of hot-springs at the SuSu Knolls hydrothermal field, Eastern Manus Basin: Advanced argillic alteration and vent fluid acidity, Geochimica Et Cosmochimica Acta, vol. 255, pp. 25-48, 2019.
A. Carranza-Edwards, Rosales-Hoz, L., Aguayo-Camargo, J. E., Cruz, R. L. - S., and Hornelas-Orozco, Y., Geochemical study of hydrothermal core sediments and rocks from the Guaymas Basin, Gulf of California, Applied Geochemistry, vol. 5, pp. 77–82, 1990.
A. Carranza-Edwards, Rosales-Hoz, L., Aguayo-Camargo, J. E., Cruz, R. L. - S., and Hornelas-Orozco, Y., Geochemical study of hydrothermal core sediments and rocks from the Guaymas Basin, Gulf of California, Applied Geochemistry, vol. 5, pp. 77–82, 1990.
J. Ishibashi, Okamura, K., Tsumune, D., Nakamura, K., Urabe, T., Shitashima, K., Roe, K., and Cowen, J. P., Geochemical studies of hydrothermal activities along the S-EPR by Shinkai 6500, JAMSTEC Journal of Deep Sea Research, pp. 53–59, 1999.
C. A. Di Meo, Wilbur, A. E., Holben, W. E., Feldman, R. A., Vrijenhoek, R. C., and Cary, S. C., Genetic variation among endosymbionts of widely distributed vestimentiferan tubeworms, Applied and Environmental Microbiology, vol. 66, pp. 651–658, 2000.
T. Cole and Turner, R. D., Genetic relations of deep sea wood borers, Bulletin of the American Malacological Union, pp. 19–25, 1977.
A. L. LaBella, Van Dover, C. L., Jollivet, D., and Cunningham, C. W., Gene flow between Atlantic and Pacific Ocean basins in three lineages of deep-sea clams (Bivalvia: Vesicomyidae: Pliocardiinae) and subsequent limited gene flow within the Atlantic, Deep Sea Research Part II: Topical Studies in Oceanography, vol. 137, pp. 307–317, 2017.
D. M. DeLeo, Herrera, S., Lengyel, S. D., Quattrini, A. M., Kulathinal, R. J., and Cordes, E. E., Gene expression profiling reveals deep-sea coral response to the Deepwater Horizon oil spill, Molecular Ecology, vol. 27, pp. 4066-4077, 2018.
J. L. Charlou, Donval, J. P., Jean-Baptiste, P., Dapoigny, A., and Rona, P. A., Gases and helium isotopes in high temperature solutions sampled before and after ODP Leg 158 drilling at TAG hydrothermal field (26 degrees N, MAR), Geophysical Research Letters, vol. 23, pp. 3491–3494, 1996.
Z. Zhou, Liu, Y., Pan, J., Cron, B. R., Toner, B. M., Anantharaman, K., Breier, J. A., Dick, G. J., and Li, M., Gammaproteobacteria mediating utilization of methyl-, sulfur- and petroleum organic compounds in deep ocean hydrothermal plumes, The ISME Journal: Multidisciplinary Journal of Microbial Ecology, pp. 1-13, 2020.
K. Crane, Galapagos Rift axis: Angus traverses and vent locations, in Galapagos spreading system from 81 [degrees] to 87 [degrees] W; East Pacific rise, between 10 [degrees] and 20 [degrees] N, M. G. Langseth, Ed. Woods Hole, Mass.: Marine Science International, 1985, pp. 8–9.
K. Crane, The Galapagos Rift at 86 degrees W: Morphological wave forms: Evidence for a propagating rift, Journal of Geophysical Research, vol. 84, pp. 6011–6018, 1979.
K. Crane and Ballard, R. D., The Galapagos Rift at 86 degrees W: 4, Structure and morphology of hydrothermal fields and their relationship to the volcanic and tectonic processes of the rift valley, Journal of Geophysical Research, vol. 85, pp. 1443–1454, 1980.
J. F. Grassle, Berg, C. J., Childress, J. J., Hessler, R. R., Jannasch, H. W., Karl, D. M., Lutz, R. A., Mickel, T. J., Rhoads, D. C., Sanders, H. L., Smith, K. L., Somero, G. N., Turner, R. D., Tuttle, J. H., Walsh, P. J., and Williams, A. J., Galapagos '79: Initial findings of a deep-sea biological quest, Oceanus, vol. 22, pp. 2–10, 1979.

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