Export 510 results:
Author Title [ Type(Asc)] Year
Filters: First Letter Of Last Name is R  [Clear All Filters]
Journal Article
A. R. Goss, Perfit, M. R., Ridley, W. I., Rubin, K. H., Kamenov, G. D., Soule, S. A., Fundis, A., and Fornari, D. J., Geochemistry of lavas from the 2005-2006 eruption at the East Pacific Rise, 9 degrees 46'N-9 degrees 56'N: Implications for ridge crest plumbing and decadal changes in magma chamber compositions, Geochemistry, Geophysics, Geosystems, vol. 11, p. Q05T09, 2010.
E. Reeves, Seewald, J. S., Saccocia, P. J., Walsh, E., Bach, W., Craddock, P. R., Shanks, W. C., Sylva, S. P., Pichler, T., and Rosner, M., Geochemistry of hydrothermal fluids from the PACMANUS, Northeast Pual and Vienna Woods hydrothermal fields, Manus Basin, Papua New Guinea, Geochimica et Cosmochimica Acta, vol. 75, pp. 1088–1123, 2011.
E. Reeves, Seewald, J. S., Saccocia, P. J., Walsh, E., Bach, W., Craddock, P. R., Shanks, W. C., Sylva, S. P., Pichler, T., and Rosner, M., Geochemistry of hydrothermal fluids from the PACMANUS, Northeast Pual and Vienna Woods hydrothermal fields, Manus Basin, Papua New Guinea, Geochimica et Cosmochimica Acta, vol. 75, pp. 1088–1123, 2011.
J. S. Seewald, Reeves, E. P., Bach, W., Saccocia, P. J., Craddock, P. R., Walsh, E., Shanks, W. C., Sylva, S. P., Pichler, T., and Rosner, M., Geochemistry of hot-springs at the SuSu Knolls hydrothermal field, Eastern Manus Basin: Advanced argillic alteration and vent fluid acidity, Geochimica Et Cosmochimica Acta, vol. 255, pp. 25-48, 2019.
J. S. Seewald, Reeves, E. P., Bach, W., Saccocia, P. J., Craddock, P. R., Walsh, E., Shanks, W. C., Sylva, S. P., Pichler, T., and Rosner, M., Geochemistry of hot-springs at the SuSu Knolls hydrothermal field, Eastern Manus Basin: Advanced argillic alteration and vent fluid acidity, Geochimica Et Cosmochimica Acta, vol. 255, pp. 25-48, 2019.
O. J. Rouxel, Toner, B. M., Manganini, S. J., and German, C. R., Geochemistry and iron isotope systematics of hydrothermal plume fall-out at East Pacific Rise 9°50′N, Chemical Geology, vol. 441, pp. 212–234, 2016.
A. Carranza-Edwards, Rosales-Hoz, L., Aguayo-Camargo, J. E., Cruz, R. L. - S., and Hornelas-Orozco, Y., Geochemical study of hydrothermal core sediments and rocks from the Guaymas Basin, Gulf of California, Applied Geochemistry, vol. 5, pp. 77–82, 1990.
J. Ishibashi, Okamura, K., Tsumune, D., Nakamura, K., Urabe, T., Shitashima, K., Roe, K., and Cowen, J. P., Geochemical studies of hydrothermal activities along the S-EPR by Shinkai 6500, JAMSTEC Journal of Deep Sea Research, pp. 53–59, 1999.
K. H. Rubin, Smith, M. C., Bergmanis, E. C., Perfit, M. R., Sinton, J. M., and Batiza, R., Geochemical heterogeneity within mid-ocean ridge lava flows: Insights into eruption, emplacement and global variations in magma generation, Earth and Planetary Science Letters, vol. 188, pp. 349–367, 2001.
D. J. Fornari, Perfit, M. R., Allan, J. F., Batiza, R., Haymon, R., Barone, A., Ryan, W. B. F., Smith, T., Simkin, T., and Luckman, M. A., Geochemical and structural studies of the Lamont seamounts: seamounts as indicators of mantle processes, Earth and Planetary Science Letters, vol. 89, pp. 63–67,70–83, 1988.
O. J. Rouxel, Toner, B., Germain, Y., and Glazer, B., Geochemical and iron isotopic insights into hydrothermal iron oxyhydroxide deposit formation at Loihi Seamount, Geochimica et Cosmochimica Acta, vol. 220, no. Journal Article, pp. 449 - 482, 2018.
M. Hoffert, Anderson, R. E., Reveillaud, J., Murphy, L. G., Stepanauskas, R., and Huber, J. A., Genomic Variation Influences Methanothermococcus Fitness in Marine Hydrothermal Systems, Frontiers in Microbiology, vol. 12, p. 714920, 2021.
D. Galambos, Anderson, R. E., Reveillaud, J., and Huber, J. A., Genome-resolved metagenomics and metatranscriptomics reveal niche differentiation in functionally redundant microbial communities at deep-sea hydrothermal vents, Environ Microbiol, 2019.
J. L. Charlou, Donval, J. P., Jean-Baptiste, P., Dapoigny, A., and Rona, P. A., Gases and helium isotopes in high temperature solutions sampled before and after ODP Leg 158 drilling at TAG hydrothermal field (26 degrees N, MAR), Geophysical Research Letters, vol. 23, pp. 3491–3494, 1996.
J. F. Grassle, Berg, C. J., Childress, J. J., Hessler, R. R., Jannasch, H. W., Karl, D. M., Lutz, R. A., Mickel, T. J., Rhoads, D. C., Sanders, H. L., Smith, K. L., Somero, G. N., Turner, R. D., Tuttle, J. H., Walsh, P. J., and Williams, A. J., Galapagos '79: Initial findings of a deep-sea biological quest, Oceanus, vol. 22, pp. 2–10, 1979.
J. M. Robb, Kirby, J. R., Hampson, J. C., Gibson, P. R., and Hecker, B., Furrowed outcrops of Eocene chalk on the lower continental slope offshore New Jersey, Geology, vol. 11, pp. 182–186, 1983.
K. Rojas-Jimenez, Grossart, H. Peter, Cordes, E., and Cortes, J., Fungal communities in sediments along a depth gradient in the Eastern Tropical Pacific, bioRxiv, p. 2020.06.26.173682, 2020.
I. Perez-Rodriguez, Bolognini, M., Ricci, J., Bini, E., and Vetriani, C., From deep-sea volcanoes to human pathogens: a conserved quorum-sensing signal in Epsilonproteobacteria, ISME Journal, vol. 9, pp. 1222–1234, 2015.
G. M. Cailliet, Andrews, A. H., Wakefield, W. W., Moreno, G., and Rhodes, K. L., Fish faunal and habitat analyses using trawls, camera sleds and submersibles in benthic deep-sea habitats off central California, Oceanologica Acta, vol. 22, pp. 579–592, 1999.
S. Brooke and Ross, S. W., First observations of the cold-water coral Lophelia pertusa in mid-Atlantic canyons of the USA, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 104, pp. 245–251, 2014.
C. Y. A. M. E. X. Scientific Team, Francheteau, J., Needham, H. D., Choukroune, P., Juteau, T., Seguret, M., Ballard, R. D., Fox, P. J., Normark, W. R., Carranza, A., Cordoba, D., Guerrero, J., and Rangin, C., First manned submersible dives on the East Pacific Rise at 21 degrees N (project RITA): general results, Marine Geophysical Researches, vol. 4, pp. 345–379, 1981.
N. B. Morgan, Goode, S., Roark, E. B., and Baco, A. R., Fine Scale Assemblage Structure of Benthic Invertebrate Megafauna on the North Pacific Seamount Mokumanamana, Frontiers in Marine Science, vol. 6, 2019.
T. J. Shaw, Luther, G. W., Rosas, R., Oldham, V. E., Coffey, N. R., Ferry, J. L., Dias, D. M. C., Yucel, M., and de Chanvalon, A. T., 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.
T. J. Shaw, Luther, G. W., Rosas, R., Oldham, V. E., Coffey, N. R., Ferry, J. L., Dias, D. M. C., Yücel, M., and de Chanvalon, A. Thibault, 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.
M. Anderson, Wanless, V. D., Perfit, M., Conrad, E., Gregg, P., Fornari, D., and Ridley, W. I., Extreme Heterogeneity in Mid-Ocean Ridge Mantle Revealed in Lavas From the 8 degrees 20 ' N Near-Axis Seamount Chain, Geochemistry Geophysics Geosystems, vol. 22, 2021.

Pages