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“Eruption of a deep-sea mud volcano triggers rapid sediment movement”, Nature Communications, vol. 5, p. 5385, 2014.
, “Imaging of CO2 bubble plumes above an erupting submarine volcano, NW Rota-1, Mariana Arc”, GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, vol. 15, pp. 4325–4342, 2014.
, “Late Holocene Foraminifera of Blake Ridge Diapir: Assemblage Variation and Stable-Isotope Record in gas-hydrate bearing sediments”, Marine Geology, vol. 353, pp. 99–107, 2014.
, “Microbial distribution in different spatial positions within the walls of a black sulfide hydrothermal chimney”, MARINE ECOLOGY PROGRESS SERIES, vol. 508, pp. 67–85, 2014.
, “Nanoparticulate pyrite and other nanoparticles are a widespread component of hydrothermal vent black smoker emissions”, Chemical Geology, vol. 366, pp. 32–41, 2014.
, “New insights into cerium anomalies and mechanisms of trace metal enrichment in authigenic carbonate from hydrocarbon seeps”, Chemical Geology, vol. 381, pp. 55–66, 2014.
, “A phylogenetic approach to octocoral community structure in the deep Gulf of Mexico”, Biology and Geology of Deep-Sea Coral Ecosystems: Proceedings of the Fifth International Symposium on Deep Sea Corals, vol. 99, pp. 92–102, 2014.
, “Spatial patterns of Aquificales in deep-sea vents along the Eastern Lau Spreading Center (SW Pacific)”, SYSTEMATIC AND APPLIED MICROBIOLOGY, vol. 37, pp. 442–448, 2014.
, “Spatial patterns of tissue stable isotope contents give insight into the nutritional sources for seep communities on the Gulf of Mexico lower slope”, MARINE ECOLOGY PROGRESS SERIES, vol. 498, pp. 133–U481, 2014.
, “Symbiont-driven sulfur crystal formation in a thiotrophic symbiosis from deep-sea hydrocarbon seeps”, ENVIRONMENTAL MICROBIOLOGY REPORTS, vol. 6, pp. 364–372, 2014.
, “Time integrated variation of sources of fluids and seepage dynamics archived in authigenic carbonates from Gulf of Mexico Gas Hydrate Seafloor Observatory”, Chemical Geology, vol. 385, pp. 129–139, 2014.
, “Understanding a submarine eruption through time series hydrothermal plume sampling of dissolved and particulate constituents: West Mata, 2008-2012”, Geochemistry, Geophysics, Geosystems, vol. 15, pp. 4631–4650, 2014.
, “Characterizing the distribution and rates of microbial sulfate reduction at Middle Valley hydrothermal vents”, ISME JOURNAL, vol. 7, pp. 1391–1401, 2013.
, “A comparative study of authigenic carbonates from mussel and tubeworm environments: Implications for discriminating the effects of tubeworms”, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 75, pp. 110–118, 2013.
, “A comparative study of authigenic carbonates from mussel and tubeworm environments: Implications for discriminating the effects of tubeworms”, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 75, pp. 110–118, 2013.
, “Distribution of mega fauna on sulfide edifices on the Eastern Lau Spreading Center and Valu Fa Ridge”, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 72, pp. 48–60, 2013.
, “A low-relief shield volcano origin for the South Kaua\''\}i Swell}”, GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, vol. 14, pp. 2328–2348, 2013.
, “Niche divergence by deep-sea octocorals in the genus Callogorgia across the continental slope of the Gulf of Mexico”, MOLECULAR ECOLOGY, vol. 22, pp. 4123–4140, 2013.
, “Chemistry, Temperature, and Faunal Distributions at Diffuse-Flow Hydrothermal Vents Comparison of Two Geologically Distinct Ridge Systems”, Oceanography, vol. 25, pp. 234–245, 2012.
, “CO2 variability in mid-ocean ridge basalts from syn-emplacement degassing: Constraints on eruption dynamics”, Earth and Planetary Science Letters, vol. 327–328, pp. 39–49, 2012.
, “CO2 variability in mid-ocean ridge basalts from syn-emplacement degassing: Constraints on eruption dynamics”, Earth and Planetary Science Letters, vol. 327–328, pp. 39–49, 2012.
, “Distribution, abundance, and diversity patterns of the thermoacidophilic ``deep-sea hydrothermal vent euryarchaeota 2\''\}}”, FRONTIERS IN MICROBIOLOGY, vol. 3, 2012.
, “The East Pacific Rise Between 9 degrees N and 10 degrees N: Twenty-Five Years of Integrated, Multidisciplinary Oceanic Spreading Center Studies”, Oceanography, vol. 25, pp. 18–43, 2012.
, “The East Pacific Rise Between 9 degrees N and 10 degrees N: Twenty-Five Years of Integrated, Multidisciplinary Oceanic Spreading Center Studies”, Oceanography, vol. 25, pp. 18–43, 2012.
, “The East Pacific Rise Between 9 degrees N and 10 degrees N: Twenty-Five Years of Integrated, Multidisciplinary Oceanic Spreading Center Studies”, Oceanography, vol. 25, pp. 18–43, 2012.
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