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“Microbial biofilms associated with fluid chemistry and megafaunal colonization at post-eruptive deep-sea hydrothermal vents”, Deep-Sea Research Part II: Topical Studies in Oceanography, vol. 121, pp. 31–40, 2015.
, “Microbial Communities on Seafloor Basalts at Dorado Outcrop Reflect Level of Alteration and Highlight Global Lithic Clades”, FRONTIERS IN MICROBIOLOGY, vol. 6, 2015.
, “The path to COVIS: A review of acoustic imaging of hydrothermal flow regimes”, Deep-Sea Research Part II: Topical Studies in Oceanography, vol. 121, pp. 159–176, 2015.
, “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.
, “Temperature and Redox Effect on Mineral Colonization in Juan de Fuca Ridge Flank Subsurface Crustal Fluids”, FRONTIERS IN MICROBIOLOGY, vol. 7, 2016.
, “Rapid variations in fluid chemistry constrain hydrothermal phase separation at the Main Endeavour Field”, Geochemistry, Geophysics, Geosystems, 2017.
, “Clumped isotopologue constraints on the origin of methane at seafloor hot springs”, Geochimica et Cosmochimica Acta, vol. 223, no. Journal Article, pp. 141 - 158, 2018.
, “Diversity patterns and isolation of Planctomycetes associated with metalliferous deposits from hydrothermal vent fields along the Valu Fa Ridge (SW Pacific)”, Antonie Van Leeuwenhoek International Journal of General and Molecular Microbiology, vol. 111, no. 6, pp. 841 - 858, 2018.
, “Geochemistry of fluids from Earth's deepest ridge-crest hot-springs: Piccard hydrothermal field, Mid-Cayman Rise”, Geochimica et Cosmochimica Acta, vol. 228, no. Journal Article, pp. 95 - 118, 2018.
, “Improved detection and mapping of deepwater hydrocarbon seeps: optimizing multibeam echosounder seafloor backscatter acquisition and processing techniques”, Marine Geophysical Research, vol. 39, pp. 323-347, 2018.
, “Microbial decomposition of marine dissolved organic matter in cool oceanic crust”, Nature Geoscience, vol. 11, no. 5, p. 334 - +, 2018.
, “A new species and phylogenetic insights in Hesiospina (Annelida, Hesionidae)”, Zootaxa, vol. 4441, no. 1, pp. 59 - 75, 2018.
, “Sediment Microbial Communities Influenced by Cool Hydrothermal Fluid Migration”, Frontiers in Microbiology, vol. 9, p. 1249, 2018.
, “Subgroup Characteristics of Marine Methane-Oxidizing ANME-2 Archaea and Their Syntrophic Partners as Revealed by Integrated Multimodal Analytical Microscopy”, Applied and Environmental Microbiology, vol. 84, pp. e00399-18, 2018.
, “Divergent methyl-coenzyme M reductase genes in a deep-subseafloor Archaeoglobi”, Isme Journal, vol. 13, pp. 1269-1279, 2019.
, “Evidence for Low-Temperature Diffuse Venting at North Pond, Western Flank of the Mid-Atlantic Ridge”, Geochemistry Geophysics Geosystems, vol. 20, pp. 2572-2584, 2019.
, “Geology and Fluid Discharge at Dorado Outcrop, a Low Temperature Ridge-Flank Hydrothermal System”, Geochemistry Geophysics Geosystems, vol. 20, pp. 487-504, 2019.
, “Abiotic redox reactions in hydrothermal mixing zones: Decreased energy availability for the subsurface biosphere”, Proceedings of the National Academy of Sciences of the United States of America, p. 202003108, 2020.
, “Experimentally-validated correlation analysis reveals new anaerobic methane oxidation partnerships with consortium-level heterogeneity in diazotrophy”, Isme Journal, 2020.
, “Microbe-mineral biogeography from multi-year incubations in oceanic crust at North Pond, Mid-Atlantic Ridge”, Environmental Microbiology, 2020.
, “Carbonate-hosted microbial communities are prolific and pervasive methane oxidizers at geologically diverse marine methane seep sites”, Proceedings of the National Academy of Sciences of the United States of America, vol. 118, 2021.
, “A chemosynthetic ecotone—“chemotone”—in the sediments surrounding deep‐sea methane seeps”, Limnology and Oceanography, 2021.
, “A chemosynthetic ecotone-"chemotone"-in the sediments surrounding deep-sea methane seeps”, Limnology and Oceanography, 2021.
, “Fe-catalyzed sulfide oxidation in hydrothermal plumes is a source of reactive oxygen species to the ocean”, Proceedings of the National Academy of Sciences of the United States of America, vol. 118, p. e2026654118, 2021.
, “Fe-catalyzed sulfide oxidation in hydrothermal plumes is a source of reactive oxygen species to the ocean”, Proceedings of the National Academy of Sciences of the United States of America, vol. 118, 2021.
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