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K. C. Macdonald and Luyendyk, B. P., The crest of the East Pacific Rise, Scientific American, vol. 244, pp. 100–108,110,112–114,116, 1981.
R. Batiza, Fornari, D. J., Vanko, D. A., and Lonsdale, P., Craters, calderas, and hyaloclastites on young Pacific seamounts, Journal of Geophysical Research, vol. 89, pp. 8371–8390, 1984.
S. D. Hurst and Karson, J. A., Crack Structure of Seafloor Outcrops Based on Analysis of Digital Images: A New Approach to the Study of the Structure and Acoustic Properties of the Uppermost Oceanic Crust, EOS, Transactions, American Geophysical Union, vol. 74, p. 306, 1993.
L. A. Hurtado, Mateos, M., Lutz, R. A., and Vrijenhoek, R. C., Coupling of bacterial endosymbiont and host mitochondrial genomes in the hydrothermal vent clam Calyptogena magnifica, Applied and Environmental Microbiology, vol. 69, pp. 2058–2064, 2003.
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.
M. J. Hornbach, Ruppel, C., Saffer, D. M., Van Dover, C. L., and Holbrook, W. S., Coupled geophysical constraints on heat flow and fluid flux at a salt diapir, Geophysical Research Letters, vol. 32, p. L24617, 2005.
E. E. Davis, Becker, K., and He, J., Costa Rica Rift revisited: Constraints on shallow and deep hydrothermal circulation in young oceanic crust, Earth and Planetary Science Letters, vol. 222, pp. 863–879, 2004.
S. M. White, Haymon, R. M., Fornari, D. J., Macdonald, K. C., and Perfit, M. R., Correlation between volcanic and tectonic segmentation of fast-spreading ridges: Evidence from volcanic structures and lava flow morphology on the East Pacific Rise at 9 degrees -10 degrees N, Journal of Geophysical Research, vol. 107, p. Article no. 2173, 2002.
M. D. Kurz, Moreira, M., Curtice, J., Lott, D. E., Mahoney, J. J., and Sinton, J. M., Correlated helium, neon, and melt production on the super-fast spreading East Pacific Rise near 17 degrees S, Earth and Planetary Science Letters, vol. 232, pp. 125–142, 2005.
C. L. Van Dover, Jenkins, C. D., and Turnipseed, M., Corralling of larvae in the deep sea, Journal of the Marine Biological Association of the United Kingdom, vol. 81, pp. 823–826, 2001.
R. E. Thresher, Fallon, S. J., and Townsend, A. T., A “core-top” screen for trace element proxies of environmental conditions and growth rates in the calcite skeletons of bamboo corals (Isididae), Geochimica et Cosmochimica Acta, vol. 193, pp. 75–99, 2016.
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.
E. E. Cordes, McGinley, M. P., Podowski, E. L., Becker, E. L., Lessard-Pilon, S., Viada, S. T., and Fisher, C. R., Coral communities of the deep Gulf of Mexico, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 55, pp. 777–787, 2008.
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.
A. Bahr, Cooperative localization for autonomous underwater vehicles, Massachusetts Institute of Technology and the Woods Hole Oceanographic Institution, Cambridge, MA and Woods Hole, MA, 2009.
S. Kawagucci, Miyazaki, J., Morono, Y., Seewald, J. S., C. Wheat, G., and Takai, K., Cool, alkaline serpentinite formation fluid regime with scarce microbial habitability and possible abiotic synthesis beneath the South Chamorro Seamount, Progress in Earth and Planetary Science, vol. 5, p. 74, 2018.
C. R. Fisher, Brooks, J. M., Vodenichar, J. S., Zande, J. M., Childress, J. J., and Burke, R. A., The co-occurrence of methanotrophic and chemoautotrophic sulfur-oxidizing symbionts in a deep-sea mussel, Marine Ecology, vol. 14, pp. 277–289, 1993.
R. L. Elder, Converting Jason Junior, a small ROV, to fiber optics, in Intervention/ROV '92 conference {&} exposition: a decade of achievement, 1992, vol. San Diego, pp. 479–484.
K. L. Von Damm, Controls on the chemistry and temporal variability of seafloor hydrothermal fluids, in Seafloor Hydrothermal Systems: Physical, Chemical, Biological, and Geochemical Interactions, S. E. Humphris, Ed. Washington, D.C.: American Geophysical Union, 1995, pp. 222–247.
J. - W. Yang and Edwards, R. N., Controlled source time-domain electromagnetic methods for seafloor electric conductivity mapping, Transactions of Nonferrous Metals Society of China, vol. 10, pp. 270–274, 2000.
D. R. Yoerger and Newman, J. B., Control of remotely operated vehicles for precise survey, in Intervention '89 conference and exposition, San Diego, Calif.: Marine Technology Society, 1989, pp. 123–127.
L. A. Levin, Huggett, C. L., and Wishner, K. F., Control of deep-sea benthic community structure by oxygen and organic-matter gradients in the easter Pacific Ocean, Journal of Marine Research, vol. 49, pp. 763–800, 1991.
D. R. Yoerger and DiPietro, D. M., Control capabilities of Jason and its manipulator, in Subsea Work Systems and Technologies, D. A. Ardus, Ed. Boston: Kluwer Academic Publishers., 1990, pp. 19–29.
M. J. Stanway, Contributions to automated realtime underwater navigation, Massachusetts Institute of Technology and the Woods Hole Oceanographic Institution, Cambridge, MA and Woods Hole, MA, 2012.
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.

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