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“Geological and biological heterogeneity of the Aleutian Margin (1965–4822 m)”, Progress In Oceanography, vol. 80, pp. 22–50, 2009.
, “Geological and biological investigations in the northern part of Mohn Ridge (Norwegian Sea)”, Okeanologija, vol. 37, pp. 609–616, 1997.
, “Geological setting and characteristics of the Lucky Strike vent field at 37 degrees 17'N on the Mid-Atlantic Ridge”, EOS, Transactions, American Geophysical Union, vol. 74, p. 99, 1993.
, “A geological transect across the crest of the East Pacific Rise at 21 degrees N latitude made from the deep submersible Alvin”, Marine Geophysical Researches, vol. 7, pp. 467–488, 1985.
, “Geology of Great Abaco submarine canyon (Blake Plateau): observations from the research submersible Alvin”, Marine Geology, vol. 48, pp. 239–257, 1982.
, “Greenhouse gases generated from the anaerobic biodegradation of natural offshore asphalt seepages in southern California”, GEO-MARINE LETTERS, vol. 34, pp. 281–295, 2014.
, “Growth and distribution of mollusks at deep-sea vents and seeps”, Oceanus, vol. 27, pp. 54–62, 1984.
, “Growth and phylogenetic properties of novel bacteria belonging to the epsilon subdivision of the proteobacteria enriched from Alvinella pompejana and deep-sea hydrothermal vents”, Applied and Environmental Microbiology, vol. 67, pp. 4566–4572, 2001.
, “Growth of bivalves at deep-sea hydrothermal vents along the Galapagos Rift”, Science, vol. 214, pp. 911–913, 1981.
, “Growth of mussels at deep-sea hydrothermal vents along the Galapagos Rift”, Journal of Shellfish Research, vol. 1, p. 121, 1981.
, “The Guaymas Basin Hiking Guide to Hydrothermal Mounds, Chimneys, and Microbial Mats: Complex Seafloor Expressions of Subsurface Hydrothermal Circulation”, Frontiers in Microbiology, vol. 7, p. 75, 2016.
, “The Guaymas Basin Hiking Guide to Hydrothermal Mounds, Chimneys, and Microbial Mats: Complex Seafloor Expressions of Subsurface Hydrothermal Circulation”, Frontiers in Microbiology, vol. 7, p. 75, 2016.
, “Headless submarine canyons and fluid flow on the toe of the Cascadia accretionary complex”, Basin Research, vol. 9, pp. 303–312, 1997.
, “Heat flow and mineralogy of TAG relict high-temperature hydrothermal zones: Mid-Atlantic Ridge 26 degrees N, 45 degrees W”, Geophysical Research Letters, vol. 23, pp. 3507–3510, 1996.
, “Helium-3 and manganese at the 21 degrees N East Pacific Rise hydrothermal site”, Earth and Planetary Science Letters, vol. 50, pp. 115–127, 1980.
, “Hemoglobin from a deep-sea hydrothermal-vent copepod”, Biological Bulletin, vol. 199, pp. 95–99, 2000.
, “High-resolution seafloor mapping using the DSL-120 sonar system: Quantitative assessment of sidescan and phase-bathymetry data from the Lucky Strike segment of the Mid-Atlantic Ridge”, Marine Geophysical Researches, vol. 21, pp. 121–142, 2000.
, “Hippea jasoniae sp nov and Hippea alviniae sp nov., thermoacidophilic members of the class Deltaproteobacteria isolated from deep-sea hydrothermal vent deposits”, INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY, vol. 62, pp. 1252–1258, 2012.
, “Hot vents and hydrocarbon seeps in the Sea of Cortez”, Oceanus, vol. 27, pp. 21–24, 1984.
, “Hungry scale worms: Phylogenetics of Peinaleopolynoe (Polynoidae, Annelida), with four new species”, ZooKeys, vol. 932, pp. 27-74, 2020.
, “A hybrid zone between hydrothermal vent mussels (Bivalvia: Mytilidae) from the Mid-Atlantic Ridge”, Molecular Ecology, vol. 10, pp. 2819–2831, 2001.
, “Hydrocarbon migration pathway and methane budget for a Gulf of Mexico natural seep site: Green Canyon 600”, Earth and Planetary Science Letters, vol. 545, p. 116411, 2020.
, “Hydrogen and thiosulfate limits for growth of a thermophilic, autotrophic Desulfurobacterium species from a deep-sea hydrothermal vent”, ENVIRONMENTAL MICROBIOLOGY REPORTS, vol. 8, pp. 196–200, 2016.
, “Hydrogen and thiosulfate limits for growth of a thermophilic, autotrophic Desulfurobacterium species from a deep-sea hydrothermal vent”, ENVIRONMENTAL MICROBIOLOGY REPORTS, vol. 8, pp. 196–200, 2016.
, “Hydrogeologic properties of a thrust fault within the Oregon Accretionary Prism”, Journal of Geophysical Research, vol. 100, pp. 20,20–25,3, 1995.
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