Export 858 results:
Author Title Type [ Year
Filters: First Letter Of Last Name is M [Clear All Filters]
,
“Abyssal deposit feeders are secondary consumers of detritus and rely on nutrition derived from microbial communities in their guts”, Scientific Reports, vol. 11, 2021.
, “Activities of 223Ra and 226Ra in fluids from the Lost City Hydrothermal Field require short fluid residence times”, Journal of Geophysical Research - Oceans, 2021.
, “Activities of Ra-223 and Ra-226 in Fluids From the Lost City Hydrothermal Field Require Short Fluid Residence Times”, Journal of Geophysical Research-Oceans, vol. 126, 2021.
, “Archaeal lipid diversity, alteration, preservation at Cathedral Hill, Guaymas Basin, Gulf of California, and its link to the deep time preservation paradox”, Organic Geochemistry, p. 104302, 2021.
, “Bacterial symbiont subpopulations have different roles in a deep-sea symbiosis”, eLife, vol. 10, p. e58371, 2021.
, “Bacterial symbiont subpopulations have different roles in a deep-sea symbiosis”, eLife, vol. 10, p. e58371, 2021.
, “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.
, “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.
, “Coherent pathways for subduction from the surface mixed layer at ocean fronts”, Journal of Geophysical Research - Oceans, 2021.
, “Deep sea without limits-four new closely related species of Emertonia Wilson, 1932 (Copepoda: Harpacticoida: Paramesochridae) show characters with a world- wide distribution”, Zootaxa, vol. 5051, pp. 443-486, 2021.
, “Differential patterns of connectivity in Western Pacific hydrothermal vent metapopulations: A comparison of biophysical and genetic models”, Evolutionary Applications, 2021.
, “Distribution of Methane Plumes on Cascadia Margin and Implications for the Landward Limit of Methane Hydrate Stability”, Frontiers in Earth Science, vol. 9, p. 531714, 2021.
, “The dynamic influence of methane seepage on macrofauna inhabiting authigenic carbonates”, Ecosphere, vol. 12, 2021.
, “The dynamic influence of methane seepage on macrofauna inhabiting authigenic carbonates”, Ecosphere, vol. 12, 2021.
, “The dynamic influence of methane seepage on macrofauna inhabiting authigenic carbonates”, Ecosphere, vol. 12, 2021.
, “Environmental factors shaping bacterial, archaeal and fungal community structure in hydrothermal sediments of Guaymas Basin, Gulf of California”, PLOS ONE, vol. 16, p. e0256321, 2021.
, “Extensive decentralized hydrogen export from the Atlantis Massif”, Geology, vol. 49, pp. 851-856, 2021.
, “Extensive decentralized hydrogen export from the Atlantis Massif”, Geology, vol. 49, pp. 851-856, 2021.
, “Functional traits provide new insight into recovery and succession at deep‐sea hydrothermal vents”, Ecology, p. e03418, 2021.
, “Functional traits provide new insight into recovery and succession at deep‐sea hydrothermal vents”, Ecology, p. e03418, 2021.
, ,