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“Hydrocarbon geochemistry of hydrothermally generated petroleum from Escanaba trough, offshore California U.S.A”, Applied Geochemistry, vol. 5, pp. 83–91, 1990.
, “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.
, “Volcanic morphology of the East Pacific Rise Crest 9 degrees 49'-52': Implications for volcanic emplacement processes at fast-spreading mid-ocean ridges”, Marine Geophysical Researches, vol. 21, pp. 23–41, 2000.
, “High-resoluion bathymetry of the East Pacific Rise axial summit trough 9 degrees 49'-51'N: a compilation of Alvin scanning sonar and altimetry data from 1991-1995”, Geophysical Research Letters, vol. 25, pp. 1209–1212, 1998.
, “Methanopyrus kandleri, gen. and sp. nov. represents a novel group of hyperthermophilic methanogens growing at 110C”, Archives of Microbiology, vol. 156, pp. 239–247, 1991.
, “Precise gravity measurements for gas hydrate layer”, JAMSTEC Journal of Deep Sea Research, pp. 371–379, 1999.
, “Between home and the abyss”, Discover, vol. 14, pp. 66–75, 1993.
, “Oregon subduction zone: venting, fauna, and carbonates”, Science, vol. 231, pp. 561–566, 1986.
, “Relationship between carbonate deposits and fluid venting: Oregon accretionary prism”, Journal of Geophysical Research, vol. 95, pp. 8899–8915, 1990.
, “Retinal anatomy of new breslid shrimp from the Lucky Strike and Broken Spur hydrothermal vent fields on the Mid-Atlantic Ridge”, Journal of the Marine Biological Association of the United Kingdom, vol. 77, pp. 707–725, 1997.
, “Abyssogena: a new genus of the family Vesicomyidae (Bivalvia) from deep-water vents and seeps”, JOURNAL OF MOLLUSCAN STUDIES, vol. 76, pp. 107–132, 2010.
, “Candidatus Desulfofervidus auxilii, a hydrogenotrophic sulfate-reducing bacterium involved in the thermophilic anaerobic oxidation of methane”, Environmental Microbiology, vol. 18, pp. 3073–3091, 2016.
, “Microbial Community Response to Polysaccharide Amendment in Anoxic Hydrothermal Sediments of the Guaymas Basin”, Frontiers in Microbiology, vol. 12, p. 763971, 2021.
, “Growth history of a diffusely venting sulfide structure from the Juan de Fuca Ridge: A petrological and geochemical study”, Geochemistry, Geophysics, Geosystems, vol. 7, p. Q07001, 2006.
, “Preliminary results of an Alvin dive program on active hydrothermal vents at the southern Juan de Fuca Ridge.”, in USGS Research on Mineral Resources–1985: Program and Abstracts: V.E. McKelvey Forum on Mineral and Energy Resources, Menlo Park, Calif.: U.S. Geological Survey, 1985, pp. 54–55.
, Dive to the deep ocean: Voyages of exploration and discovery. Austin, Tex.: Raintree Steck-Vaughn, 2000, p. 64.
, A day underwater. New York: Scholastic, 1987, p. 32.
, “Phylogenetic diversity of sediment bacteria from the deep Northeastern Pacific Ocean: a comparison with the deep Eastern Mediterranean Sea”, INTERNATIONAL MICROBIOLOGY, vol. 13, pp. 143–150, 2010.
, The Silent Deep: The discovery, ecology, and conservation of the deep sea. Chicago, IL: University of Chicago Press, 2007, p. 312.
, “Composition and growth history of hydrothermal deposits in Escanaba Trough, southern Gorda Ridge”, in Geologic, hydrothermal, and biologic studies at Escanaba Trough, Gorda Ridge, offshore Northern California, Reston, Va.: U.S. Geological Survey, 1994, pp. 293–324.
, “Mineralogy and chemistry of massive sulfide deposits from the Juan de Fuca Ridge”, Geological Society of America Bulletin, vol. 95, pp. 930–945, 1984.
, “Hydrothermal sulfide-sulfate-silica deposits at the northern Cleft segment, Juan de Fuca Ridge: Compositions, growth mechanisms, and implications for fluid flow”, Journal of Geophysical Research, vol. 99, pp. 4813–4832, 1994.
, “Metal concentrations in the tissues of the hydrothermal vent mussel Bathymodiolus: Reflection of different metal sources”, Marine Environmental Research, vol. 95, pp. 62–73, 2014.
, Myodocopid Ostracoda of hydrothermal vents in the Eastern Pacific Ocean, vol. 516. Washington, D.C.: Smithsonian Institution Press, 1991, p. 48 p.
, “Inter-comparison of the potentially active prokaryotic communities in the halocline sediments of Mediterranean deep-sea hypersaline basins”, Extremophiles, vol. 19, pp. 949–960, 2015.
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