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“Composition of a One-Year-Old Riftia pachyptila Community Following a Clearance Experiment: Insight to Succession Patterns at Deep-Sea Hydrothermal Vents”, Biological Bulletin, vol. 207, pp. 177–182, 2004.
, “Conical seamount: SeaMARC II, Alvin submersible, and seismic-reflection studies”, in Proceedings of the Ocean Drilling Program. Part A. Initial Report, vol. 125, College Station, Tex.: Ocean Drilling Program, Texas A{&}M University, 1990, pp. 69–80.
, “Continuous near-bottom gravity measurements made with a BGM-3 gravimeter in DSV Alvin on the East Pacific Rise crest near 9 degrees 31 degrees N and 9 degrees 50'N”, Journal of Geophysical Research, vol. 104, pp. 10,810–841,861, 1999.
, “Contribution of aerobic photoheterotrophic bacteria to the carbon cycle in the ocean”, Science, vol. 292, pp. 2492–2495, 2001.
, “The co-occurrence of methanotrophic and chemoautotrophic sulfur-oxidizing symbionts in a deep-sea mussel”, Marine Ecology, vol. 14, pp. 277–289, 1993.
, “Coral communities of the deep Gulf of Mexico”, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 55, pp. 777–787, 2008.
, “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.
, “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.
, “Craters, calderas, and hyaloclastites on young Pacific seamounts”, Journal of Geophysical Research, vol. 89, pp. 8371–8390, 1984.
, “Cross-hole tracer experiment reveals rapid fluid flow and low effective porosity in the upper oceanic crust”, Earth and Planetary Science Letters, vol. 450, pp. 355–365, 2016.
, “Crustal magnetization and the subseafloor structure of the ASHES vent field, Axial Seamount, Juan de Fuca Ridge: Implications for the investigation of hydrothermal sites”, Geophysical Research Letters, vol. 43, pp. 6205–6211, 2016.
, “Current-induced sediment movement in the deep Florida Straits Observations”, in Dynamic environment of the ocean floor, Lexington, Mass.: Lexington Books, 1982, pp. 77–94.
, “A decade of volcanic construction and destruction at the summit of NW Rota-1 seamount: 2004-2014”, JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, vol. 122, pp. 1558–1584, 2017.
, “Deep Submergence, Science of”, in Encyclopedia of ocean sciences, vol. 2 (D-H), San Diego, Calif.: Academic Press, 2001, pp. 643–658.
, “Deep submersibles and potential marine geological research”, Marine Technology Society Journal, vol. 24, pp. 22–31, 1990.
, Deep water archaeology: a late Roman ship sailing from Carthage and a trade route northeast of Skerki Bank. Ann Arbor, Mich.: Journal of Roman Archaeology, 1994, p. 162.
, “Deeply-sourced formate fuels sulfate reducers but not methanogens at Lost City hydrothermal field”, Scientific Reports, vol. 8, p. 755, 2018.
, “Deep-sea amphipod swarms”, Nature, vol. 358, pp. 25–26, 1992.
, “Deep-sea coral $δ$13C: A tool to reconstruct the difference between seawater pH and $δ$11B-derived calcifying fluid pH”, Geophysical Research Letters, vol. 43, pp. 299–308, 2016.
, “Deep-sea hydrocarbon seep communities: Evidence for energy and nutritional carbon sources”, Science, vol. 238, pp. 1138–1142., 1987.
, “Deep-sea hydrothermal vent metagenome-assembled genomes provide insight into the phylum Nanoarchaeota”, Environmental Microbiology Reports, vol. 11, pp. 262-270, 2019.
, “Deep-sea scleractinian coral age and depth distributions in the northwest Atlantic for the last 225,000 years”, Bulletin of Marine Science, vol. 81, pp. 371–391, 2007.
, “Deep-water temperatures in the FAMOUS area”, Geological Society of America Bulletin, vol. 88, pp. 488–494, 1977.
, “Depth-dependent gene flow in Gulf of Mexico cold seep Lamellibrachia tubeworms (Annelida, Siboglinidae)”, HYDROBIOLOGIA, vol. 736, pp. 139–154, 2014.
, “Detachment shear zone of the Atlantis Massif core complex, Mid-Atlantic Ridge, 30 degrees N”, Geochemistry, Geophysics, Geosystems, vol. 7, p. Q06016, 2006.
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