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S. L. Kim and Mullineaux, L. S., Distribution and near-bottom transport of larvae and other plankton at hydrothermal vents, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 45, pp. 423–440, 1998.
J. L. Morton, Koski, R. A., Normark, W. R., and Ross, S. L., Distribution and composition of massive sulfide deposits at Escanaba Trough, southern Gorda Ridge, in Gorda Ridge: A seafloor spreading center in the United States' Exclusive Economic Zone: Proceedings of the Gorda Ridge symposium, May 11-13, 1987, Portland, Oregon, G. R. McMurray, Ed. New York, N.Y.: Springer-Verlag, 1990, pp. 77–92.
K. Longnecker, Siever, S. M., Sylva, S. P., Seewald, J. S., and Kujawinski, E. B., Dissolved organic carbon compounds in deep-sea hydrothermal vent fluids from the East Pacific Rise at 9 degrees 50 ' N, Organic Geochemistry, vol. 125, pp. 41-49, 2018.
P. J. Katsioloudis, Discovery of the depths: the world's oceans have been almost impenetrable to human exploration because of obstacles associated with underwater exploration–until the very recent development of remote underwater vehicles, Technology Teacher, vol. 68, pp. 12–16, 2009.
R. J. Varga, Horst, A. J., Gee, J. S., and Karson, J. A., Direct evidence from anisotropy of magnetic susceptibility for lateral melt migration at superfast spreading centers, Geochemistry, Geophysics, Geosystems, vol. 9, p. Q08008, 2008.
K. M. Haase, Koschinsky, A., Petersen, S., Devey, C. W., German, C. R., Lackschewitz, K. S., Melchert, B., Seifert, R., Borowski, C., Giere, O., and Paulick, H., Diking, young volcanism and diffuse hydrothermal activity on the southern Mid-Atlantic Ridge: The Lilliput field at 9 degrees 33′S, Marine Geology, vol. 266, pp. 52–64, 2009.
R. M. Lawrence, Karson, J. A., and Hurst, S. D., Dike orientations, fault-block rotations, and the construction of slow spreading oceanic crust at 22 degrees 40' N on the Mid-Atlantic Ridge, Journal of Geophysical Research, vol. 103, pp. 663–676, 1998.
E. Mittelstaedt, Fornari, D. J., Crone, T. J., Kinsey, J. C., Kelley, D. S., and Elend, M. J., Diffuse venting at the ASHES hydrothermal field: Heat flux and tidally modulated flow variability derived from in situ time-series measurements, Geochemistry, Geophysics, Geosystems, vol. 17, pp. 1435–1453, 2016.
E. Mittelstaedt, Fornari, D. J., Crone, T. J., Kinsey, J. C., Kelley, D. S., and Elend, M. J., Diffuse venting at the ASHES hydrothermal field: Heat flux and tidally modulated flow variability derived from in situ time-series measurements, Geochemistry, Geophysics, Geosystems, vol. 17, pp. 1435–1453, 2016.
J. C. Dreyer, Knick, K. E., Flickinger, W. B., and Van Dover, C. L., Development of macrofaunal community structure in mussel beds on the northern East Pacific Rise, Marine Ecology Progress Series, vol. 302, pp. 121–134, 2005.
K. L. Smith, Baldwin, R. J., Glatts, R. C., Kaufmann, R. S., and Fisher, E. C., Detrital aggregates on the sea floor: chemical composition and aerobic decomposition rates at a time-series station in the abyssal N.E. Pacific, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 45, pp. 843–880, 1998.
I. Perez-Rodriguez, Bohnert, K. A., Cuebas, M., Keddis, R., and Vetriani, C., Detection and phylogenetic analysis of the membrane-bound nitrate reductase (Nar) in pure cultures and microbial communities from deep-sea hydrothermal vents, FEMS MICROBIOLOGY ECOLOGY, vol. 86, pp. 256–267, 2013.
M. C. Kleinrock and Hey, R. N., Detailed tectonics near the tip of the Galapagos 95.5 degrees W propagator: How the lithosphere tears and a spreading axis develops, Journal of Geophysical Research, vol. 94, pp. 13,801–813,838, 1989.
M. C. Kleinrock, Humphris, S. E., Shaw, P., Bowen, A., Crook, T., Davis, C. S., Elder, R., Gleason, D. E., Goff, J., Goldstein, L., Handley, W., Howland, J., Hussenoeder, S., Koga, K., Lerner, S., Nakamura, K., Rashid, M., L Wetzel, R., Sellers, W., Sulanowska, M., Van Dover, C. L., and Whitcomb, L., Detailed structure and morphology of the TAG active hydrothermal mound and its geotectonic environment, in Proceedings of the Ocean Drilling Program, Initial reports, vol. 158, E. Maddox, Ed. College Station, Tex.: Ocean Drilling Program, Texas A{&}M University, 1996, pp. 15–21.
M. C. Kleinrock, Humphris, S. E., Shaw, P., Bowen, A., Crook, T., Davis, C. S., Elder, R., Gleason, D. E., Goff, J., Goldstein, L., Handley, W., Howland, J., Hussenoeder, S., Koga, K., Lerner, S., Nakamura, K., Rashid, M., L Wetzel, R., Sellers, W., Sulanowska, M., Van Dover, C. L., and Whitcomb, L., Detailed structure and morphology of the TAG active hydrothermal mound and its geotectonic environment, in Proceedings of the Ocean Drilling Program, Initial reports, vol. 158, E. Maddox, Ed. College Station, Tex.: Ocean Drilling Program, Texas A{&}M University, 1996, pp. 15–21.
M. C. Kleinrock, Detailed structural studies of the propagator system near 95.5 degrees W along the Galapagos spreading axis, University of California, San Diego, San Diego, Calif., 1988.
M. Kinoshita, Ytow, N., Akashi, A., and Takekawa, K., Detailed mapping of a hydrothermal field using navigation and visual data of submersible Shinkai 6500, JAMSTEC Journal of Deep Sea Research, pp. 661–669, 1999.
M. M. Sulanowska, Humphris, S. E., Howland, J. C., and Kleinrock, M. C., Detailed analysis of the surface morphology of the active TAG hydrothermal mound by mosaicking of digital images, EOS, Transactions, American Geophysical Union, vol. 77, p. 768, 1996.
J. A. Karson, Fruh-Green, G. L., Kelley, D. S., and Williams, E. A., Detachment shear zone of the Atlantis Massif core complex, Mid-Atlantic Ridge, 30 degrees N, Geochemistry, Geophysics, Geosystems, vol. 7, p. Q06016, 2006.
J. A. Karson, Fruh-Green, G. L., Kelley, D. S., and Williams, E. A., Detachment shear zone of the Atlantis Massif core complex, Mid-Atlantic Ridge, 30 degrees N, Geochemistry, Geophysics, Geosystems, vol. 7, p. Q06016, 2006.
N. T. Ulrich and Kumar, V., Design methods of improving robot manipulator performance, in Advances in Design Automation, 1991, vol. 2, G. A. Gabriele, Ed. New York: American Society of Mechanical Engineers, 1991, pp. 545–550.
V. K. Smith and Koski, R. A., Descriptive and chemical data for hydrothermal sulfide-sulfate silica chimneys from the northern Cleft segment, Juan de Fuca Ridge. Reston, Va.: US Geological Survey, 1994, p. 21.
J. R. Voight, Kurth, J. A., Strauss, R. E., Strugnell, J. M., and Allcock, A. L., A depth cline in deep-sea octopods (Cephalopoda: Graneledone) in the northeast Pacific Ocean, Bulletin of Marine Science, vol. 96, pp. 323-339, 2020.
R. A. Lutz and Kristof, E., Deep-sea vents: Science at the extreme, National Geographic Magazine, vol. 198, pp. 116–127, 2000.
D. M. Karl, Wirsen, C. O., and Jannasch, H. W., Deep-sea primary production at the Galapagos hydrothermal vents, Science, vol. 207, pp. 1345–1347, 1980.

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