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S. D. Cairns, Studies on Western Atlantic Octocorallia (Gorgonacea: Primnoidae), Part 8: New Records of Primnoidae from the New England and Corner Rise Seamounts, Proceedings of the Biological Society of Washington, vol. 120, pp. 243–263, 2007.
H. W. Jannasch and Wirsen, C. O., Studies on the microbial turnover of organic substances in deep sea sediments, in Biogeochimie de la Matiere Organique a l'Interface Eau-Sediment Marin: Marseille 25-27 Avril 1979, vol. 293, R. Daumas, Ed. Paris, France: Centre National de la Recherche Scientifique, 1980, pp. 289–290.
E. M. Briggs and DeHart, R. C., Stud tension tests of twelve interference fitted studs after compressive failure. San Antonio, Tex.: Southwest Research Institute, 1964.
J. A. Karson, Klein, E. M., Hurst, S. D., Lee, C. E., and Rivizzigno, P. A., Structure of uppermost fast-spread oceanic crust exposed at the Hess Deep Rift: Implications for subaxial processes at the East Pacific Rise, Geochemistry, Geophysics, Geosystems, vol. 3, p. 1002, 2002.
S. L. Nooner, Sasagawa, G. S., Blackman, D. K., and Zumberge, M. A., Structure of oceanic core complexes: Constraints from seafloor gravity measurements made at the Atlantis Massif, Geophysical Research Letters, vol. 30, p. Article no. 1446, 2003.
D. A. Clague, Paduan, J. B., Caress, D. W., Moyer, C. L., Glazer, B. T., and Yoerger, D. R., Structure of Lo'ihi Seamount, Hawai'i and Lava Flow Morphology From High-Resolution Mapping, Frontiers in Earth Science, vol. 7, 2019.
S. M. Sudarikov and Roumiantsev, A. B., Structure of hydrothermal plumes at the Logatchev vent field, 14 degrees 45'N, Mid-Atlantic Ridge; Evidence from geochemical and geophysical data, Journal of Volcanology and Geothermal Research, vol. 101, pp. 245–252, 2000.
M. Sheader, Van Dover, C. L., and Shank, T. M., Structure and function of Halice hesmonectes (Amphipoda: Pardaliscidae) swarms from hydrothermal vents in the eastern Pacific, Marine Biology, vol. 136, pp. 901–911, 2000.
D. Curewitz and Karson, J. A., Structural settings of hydrothermal outflow: Fracture permeability maintained by fault propagation and interaction, Journal of Volcanology and Geothermal Research, vol. 79, pp. 149–168, 1997.
J. C. Mutter and Karson, J. A., Structural processes at slow-spreading ridges, Science, vol. 257, pp. 627–634, 1992.
A. S. Bradley, Fredricks, H., Hinrichs, K. - U., and Summons, R. E., Structural diversity of diether lipids in carbonate chimneys at the Lost City Hydrothermal Field, Organic Geochemistry, vol. 40, pp. 1169–1178, 2009.
B. Taylor, Klaus, A., Brown, G. R., Moore, G. F., Okamura, Y., and Murakami, F., Structural development of Sumisu Rift, Izu Bonin Arc, Journal of Geophysical Research, vol. 96, pp. 16,113–116,129, 1991.
Structural design requirements for the fabrication of titanium pressure hulls. Hyattsville, Md.: Naval Ship Engineering Center, 1970.
J. W. Mavor, Structural design of a 6000 foot submergence manned oceanographic research vehicle, in Proceedings of David Taylor Model Basin Deep Submergence Structures Workshop, 3-5 December 1962, vol. Vol. 1, Washington, D.C.: David Taylor Model Basin, 1963, p. Report C–1327.
D. G. Gallo, The structural character of oceanic transforms: Implications for tectonic processes, University of Rhode Island, Kingston, R.I., 1993.
G. D. Mayers and Brown, R. S., Structural analysis of Alvin variable ballast piping. Annapolis, Md.: Anteon Corporation, Machinery Systems Group, 2002, p. 57.
R. Thresher, Althaus, F., Adkins, J., Gowlett-Holmes, K., Alderslade, P., Dowdney, J., Cho, W., Gagnon, A., Staples, D., and McEnnulty, F., Strong Depth-Related Zonation of Megabenthos on a Rocky Continental Margin ( similar to 700-4000 m) off Southern Tasmania, Australia: e85872, PLoS ONE, vol. 9, 2014.
J. B. Walsh and Mavor, J. W., Strength of the Alvin hulls, vol. 66-16. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1966, p. 34.
D. J. W. Piper, Shaw, J., and Skene, K. I., Stratigraphic and sedimentological evidence for late Wisconsinan sub-glacial outburst floods to Laurentian Fan, Palaeogeography, Palaeoclimatology, Palaeoecology, vol. 246, pp. 101–119, 2007.
J. L. Meyer and Huber, J. A., Strain-level genomic variation in natural populations of Lebetimonas from an erupting deep-sea volcano, ISME JOURNAL, vol. 8, pp. 867–880, 2014.
T. J. Schroeder and John, B. E., Strain localization on an oceanic detachment fault system, Atlantis Massif, 30 degrees N, Mid-Atlantic Ridge, Geochemistry, Geophysics, Geosystems, vol. 5, p. Article no. Q11007, 2004.
M. V. Jakuba, Stochastic mapping for chemical plume source localization with application to autonomous hydrothermal vent discovery, Massachusetts Institutte of Technology and Woods Hole Oceanographic Institution, Cambridge, Mass. and Woods Hole, Mass., 2007.
R. A. Sohn, Stochastic analysis of exit fluid temperature records from the active TAG hydrothermal mound (Mid-Atlantic Ridge, 26 degrees N); 1, Modes of variability and implications for subsurface flow, Journal of Geophysical Research, vol. 112, p. B07101, 2007.
B. I. Larson, Lang, S. Q., Lilley, M. D., Olson, E. J., Lupton, J. E., Nakamura, K., and Buck, N. J., Stealth export of hydrogen and methane from a low temperature serpentinization system, Deep-Sea Research Part II: Topical Studies in Oceanography, vol. 121, pp. 233–245, 2015.
R. A. Lutz, Collins, A. G., Annis, E. R., Reed, A. J., Bennett, K. F., Halanych, K. M., and Vrijenhoek, R. C., Stauromedusan populations inhabiting deep-sea hydrothermal vents along the southern East Pacific Rise, Cahiers de Biologie Marine, vol. 47, pp. 409–413, 2006.

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