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P. Polloni, Haedrich, R., Rowe, G., and Clifford, C. H., The size-depth relationship in deep ocean animals, Internationale Revue der Gesamten Hydrobiologie, vol. 64, pp. 39–46, 1979.
S. Gollner, Govenar, B., Fisher, C. R., and Bright, M., Size matters at deep-sea hydrothermal vents: different diversity and habitat fidelity patterns of meio- and macrofauna, MARINE ECOLOGY PROGRESS SERIES, vol. 520, pp. 57–66, 2015.
B. C. Heezen, Six dives to the lower continental slope and upper continental rise southwest of Hudson Canyon geological aspects, in Baseline Report of Environmental Conditions in Deepwater Dumpsite 106, vol. 1, Rockville, Md.: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, National Ocean Survey, 1977, pp. 9–27.
M. V. Rudenko, Site survey of the Campeche Bank in the Gulf of Mexico, Okeanologija, vol. 38, pp. 129–133, 1998.
P. Chevaldonne, Jollivet, D., Desbruyeres, D., Lutz, R. A., and Vrijenhoek, R. C., Sister species of eastern Pacific hydrothermal vent worms (Ampharetidae, Alvinellidae, Vestimentifera) provide new mitochondrial COI clock calibration, Cahiers de Biologie Marine, vol. 43, pp. 367–370, 2002.
D. R. Tappin, Watts, P., McMurtry, G. M., Lafoy, Y., and Matsumoto, T., The Sissano, Papua New Guinea tsunami of July 1998 – offshore evidence on the source mechanism, Marine Geology, vol. 175, pp. 1–23, 2001.
D. J. Fornari, Perfit, M. R., Casey, J., Kastens, K., and Edwards, M., Siqueiros - Alvin Diving Cruise, Atlantis-II 125-25 : May 2 to June 2, 1991, Acapulco, Mexico to San Diego. s.l.: s.n., 1991, p. var.
S. J. Mitchell, Fauria, K. E., Houghton, B. F., and Carey, R. J., Sink or float: microtextural controls on the fate of pumice deposition during the 2012 submarine Havre eruption, Bulletin of Volcanology, vol. 83, p. 80, 2021.
M. P. Schimak, Toenshoff, E. R., and Bright, M., Simultaneous 16S and 18S rRNA fluorescence in situ hybridization (FISH) on LR White sections demonstrated in Vestimentifera (Siboglinidae) tubeworms, Acta Histochemica, vol. 114, pp. 122–130, 2012.
J. C. Howland and Singh, H., Simulation of the deep sea mosaicking process, in Oceans 2000 MTS/IEEE: where marine science and technology meet, vol. 2, Piscataway, N.J.: IEEE, 2000, pp. 1353–1375.
M. A. Grosenbaugh, Howell, C. T., and Moxnes, S., Simulating the dynamics of underwater vehicles with low-tension tethers, International Journal of Offshore and Polar Engineering, vol. 3, pp. 213–218, 1993.
C. L. Waters, Sims, K. W. W., Klein, E. M., White, S. M., Reagan, M. K., and Girard, G., Sill to surface: Linking young off-axis volcanism with subsurface melt at the overlapping spreading center at 9°03′N East Pacific Rise, Earth and Planetary Science Letters, vol. 369–370, pp. 59–70, 2013.
T. Koslow, The Silent Deep: The discovery, ecology, and conservation of the deep sea. Chicago, IL: University of Chicago Press, 2007, p. 312.
S. M. White, Mason, J. L., Macdonald, K. C., Perfit, M. R., Wanless, V. D., and Klein, E. M., Significance of widespread low effusion rate eruptions over the past two million years for delivery of magma to the overlapping spreading centers at 9 degrees N East Pacific Rise, Earth and Planetary Science Letters, vol. 280, pp. 175–184, 2009.
S. D. Hurst and Karson, J. A., Side-scan sonar along the north wall of the Hess Deep Rift: Processing, texture analysis, and geologic ground truth on an oceanic escarpment, Journal of Geophysical Research, vol. 109, p. B02107, 2004.
K. L. Von Damm, Short term variability, phase separation and water-rock reaction in hydrothermal fluids from 9-10N, East Pacific Rise, in Water-rock Interaction: Proceedings of the 7th International Symposium on Water-Rock Interaction: WRI-7, Park City, Utah, USA, 13-18 July 1992, Y. K. Kharaka, Ed. Rotterdam; Brookfield, Vt.: A.A. Balkema, 1992, pp. 1679–1680.
K. S. Johnson, Childress, J. J., and Beehler, C. L., Short term temperature variability in the Rose Garden hydrothermal vent field: an unstable deep-sea environment, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 35, pp. 1711–1722, 1988.
D. Maicher, White, J. D. L., and Batiza, R., Sheet hyaloclastite; density-current deposits of quench and bubble-burst fragments from thin, glassy sheet lava flows, Seamount Six, eastern Pacific Ocean, Marine Geology, vol. 171, pp. 75–94, 2000.
J. C. Van Leer, Shear of small vertical scale observed in the permanent oceanic thermocline, Massachusetts Institute of Technology and the Woods Hole Oceanographic Institution, Cambridge, MA and Woods Hole, MA, 1971.
C. R. Smith, Bernardino, A. F., Baco, A., Hannides, A., and Altamira, I., Seven-year enrichment: macrofaunal succession in deep-sea sediments around a 30 tonne whale fall in the Northeast Pacific, MARINE ECOLOGY PROGRESS SERIES, vol. 515, pp. 133–149, 2014.
D. S. Kelley, Karson, J. A., Fruh-Green, G. L., Yoerger, D. R., Shank, T. M., Butterfield, D. A., Hayes, J. M., Schrenk, M. O., Olson, E. J., Proskurowski, G., Jakuba, M. V., Bradley, A. M., Larson, B. I., Ludwig, K. A., Glickson, D. A., Buckman, K., Bradley, A. S., Brazelton, W. J., Roe, K., Elend, M. J., Delacour, A., Bernasconi, S. M., Lilley, M. D., Baross, J. A., Summons, R. T., and Sylva, S. P., A serpentinite-hosted ecosystem: The lost city hydrothermal field, Science, vol. 307, pp. 1428–1434, 2005.
C. Roman and Singh, H., A self-consistent bathymetric mapping algorithm, Journal of Field Robotics, vol. 24, pp. 23–50, 2007.
C. N. Roman, Self consistent bathymetric mapping from robotic vehicles in the deep ocean, Massachusetts Institute of Technology and Woods Hole Oceanographic Institution, Cambridge, MA and Woods Hole, MA, 2005.
G. Sancho, Fisher, C. R., Mills, S. W., Micheli, F., Johnson, G. A., Lenihan, H. S., Peterson, C. H., and Mullineaux, L. S., Selective predation by the zoarcid fish Thermarces cerberus at hydrothermal vents., Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 52, pp. 837–844, 2005.
A. Moulana, Anderson, R. E., Fortunato, C. S., and Huber, J. A., Selection Is a Significant Driver of Gene Gain and Loss in the Pangenome of the Bacterial Genus Sulfurovum in Geographically Distinct Deep-Sea Hydrothermal Vents, Msystems, vol. 5, 2020.

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