Export 456 results:
Author [ Title(Asc)] Type Year
Filters: First Letter Of Last Name is W  [Clear All Filters]
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
D
J. A. Boyd, Jungbluth, S. P., Leu, A. O., Evans, P. N., Woodcroft, B. J., Chadwick, G. L., Orphan, V. J., Amend, J. P., Rappe, M. S., and Tyson, G. W., Divergent methyl-coenzyme M reductase genes in a deep-subseafloor Archaeoglobi, Isme Journal, vol. 13, pp. 1269-1279, 2019.
K. Watanabe, Dive surveys on knolls off the north-east of the Iriomote Island–The Iriomote Knoll and the Daiichi and Daini Kohama Knolls, JAMSTEC Journal of Deep Sea Research, pp. 19–28, 2000.
S. D. Brooke, Watts, M. W., Heil, A. D., Rhode, M., Mienis, F., Duineveld, G. C. A., Davies, A. J., and Ross, S. W., Distributions and habitat associations of deep-water corals in Norfolk and Baltimore Canyons, Mid-Atlantic Bight, USA, Deep Sea Research Part II: Topical Studies in Oceanography, vol. 137, pp. 131–147, 2017.
A. Sen, Becker, E. L., Podowski, E. L., Wickes, L. N., Ma, S., Mullaugh, K. M., Hourdez, S., Luther, G. W., and Fisher, C. R., 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.
G. E. Flores, Wagner, I. D., Liu, Y., and Reysenbach, A. - L., Distribution, abundance, and diversity patterns of the thermoacidophilic ``deep-sea hydrothermal vent euryarchaeota 2\''\}}, FRONTIERS IN MICROBIOLOGY, vol. 3, 2012.
J. L. Meyer, Jaekel, U., Tully, B. J., Glazer, B. T., C Wheat, G., Lin, H. - T., Hsieh, C. - C., Cowen, J. P., Hulme, S. M., Girguis, P. R., and Huber, J. A., A distinct and active bacterial community in cold oxygenated fluids circulating beneath the western flank of the Mid-Atlantic ridge, SCIENTIFIC REPORTS, vol. 6, 2016.
B. D. Walker, McCarthy, M. D., Fisher, A. T., and Guilderson, T. P., Dissolved inorganic carbon isotopic composition of low-temperature axial and ridge-flank hydrothermal fluids of the Juan de Fuca Ridge, Marine Chemistry, vol. 108, pp. 123–136, 2008.
H. - T. Lin, Cowen, J. P., Olson, E. J., Lilley, M. D., Jungbluth, S. P., Wilson, S. T., and Rappe, M. S., Dissolved hydrogen and methane in the oceanic basaltic biosphere, EARTH AND PLANETARY SCIENCE LETTERS, vol. 405, pp. 62–73, 2014.
Y. - J. Won, Young, C. R., Lutz, R. A., and Vrijenhoek, R. C., Dispersal barriers and isolation among deep-sea mussel populations (Mytilidae: Bathymodiolus) from eastern Pacific hydrothermal vents, Molecular Ecology, vol. 12, pp. 169–184, 2003.
R. D. Ballard, McCann, A. M., Yoerger, D. R., Whitcomb, L., Mindell, D., Oleson, J., Singh, H., Foley, B., Adams, J., Piechota, D., and Giangrande, C., The discovery of ancient history in the deep sea using advanced deep submergence technology, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 47, pp. 1591–1620, 2000.
C. D. Jenkins, Ward, M. E., Turnipseed, M., Osterberg, J., and Van Dover, C. L., The digestive system of the hydrothermal vent polychaete Galapagomystides aristata (Phyllodocidae): Evidence for hematophagy?, Invertebrate Biology, vol. 121, pp. 243–254, 2002.
B. J. Campbell, Polson, S. W., Allen, L. Zeigler, Williamson, S. J., Lee, C. K., K Wommack, E., and S Cary, C., Diffuse flow environments within basalt- and sediment-based hydrothermal vent ecosystems harbor specialized microbial communities, FRONTIERS IN MICROBIOLOGY, vol. 4, 2013.
B. J. Campbell, Polson, S. W., Allen, L. Zeigler, Williamson, S. J., Lee, C. K., K Wommack, E., and S Cary, C., Diffuse flow environments within basalt- and sediment-based hydrothermal vent ecosystems harbor specialized microbial communities, FRONTIERS IN MICROBIOLOGY, vol. 4, 2013.
S. Gollner, Govenar, B., Arbizu, P. Martinez, Mills, S., Le Bris, N., Weinbauer, M., Shank, T. M., and Bright, M., Differences in recovery between deep-sea hydrothermal vent and vent-proximate communities after a volcanic eruption, DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, vol. 106, pp. 167–182, 2015.
P. H. Wiebe, Madin, L. P., Haury, L. R., Harbison, G. R., and Philbin, L. M., Diel vertical migration by Salpa aspera and its potential for large-scale particulate organic matter transport to the deep-sea, Marine Biology, vol. 53, pp. 249–255, 1979.
N. Estabrook, Wheeler, H., Uhler, D., and Hackman, D., Development of deep-ocean work system, Mechanism and Machine Theory, vol. 12, pp. 569–576, 1977.
L. L. Whitcomb and Yoerger, D. R., Development, comparison and preliminary experimental validation of nonlinear dyanmic thruster models, IEEE Journal of Oceanic Engineering, vol. 24, pp. 481–494, 1999.
M. C. Kleinrock, Humphris, S. E., Shaw, P., Bowen, A., Crook, T., Davis, C. S., Elder, R., Gleason, D. E., Goff, J., Goldstein, L., Handley, W., Howland, J., Hussenoeder, S., Koga, K., Lerner, S., Nakamura, K., Rashid, M., L Wetzel, R., Sellers, W., Sulanowska, M., Van Dover, C. L., and Whitcomb, L., Detailed structure and morphology of the TAG active hydrothermal mound and its geotectonic environment, in Proceedings of the Ocean Drilling Program, Initial reports, vol. 158, E. Maddox, Ed. College Station, Tex.: Ocean Drilling Program, Texas A{&}M University, 1996, pp. 15–21.
M. C. Kleinrock, Humphris, S. E., Shaw, P., Bowen, A., Crook, T., Davis, C. S., Elder, R., Gleason, D. E., Goff, J., Goldstein, L., Handley, W., Howland, J., Hussenoeder, S., Koga, K., Lerner, S., Nakamura, K., Rashid, M., L Wetzel, R., Sellers, W., Sulanowska, M., Van Dover, C. L., and Whitcomb, L., Detailed structure and morphology of the TAG active hydrothermal mound and its geotectonic environment, in Proceedings of the Ocean Drilling Program, Initial reports, vol. 158, E. Maddox, Ed. College Station, Tex.: Ocean Drilling Program, Texas A{&}M University, 1996, pp. 15–21.
J. A. Karson, Fruh-Green, G. L., Kelley, D. S., and Williams, E. A., Detachment shear zone of the Atlantis Massif core complex, Mid-Atlantic Ridge, 30 degrees N, Geochemistry, Geophysics, Geosystems, vol. 7, p. Q06016, 2006.
W. R. Bertsche, Pesch, A. J., and Winget, C. L., Description of an experimental undersea manipulator system with force feedback: November 1975. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1976, p. 28.
S. P. Castro, Borton, M. A., Regan, K., de Angelis, I. H., Wrighton, K. C., Teske, A. P., Strous, M., and Ruff, S. E., Degradation of biological macromolecules supports uncultured microbial populations in Guaymas Basin hydrothermal sediments, Isme Journal, 2021.
U. Fehn, Siegel, M. D., Robinson, G. R., Holland, H. D., Williams, D. L., Erickson, A. J., and Green, K. E., Deep-water temperatures in the FAMOUS area, Geological Society of America Bulletin, vol. 88, pp. 488–494, 1977.
L. F. Robinson, Adkins, J. F., Scheirer, D. S., Fernandez, D. P., Gagnon, A. C., and Waller, R. G., Deep-sea scleractinian coral age and depth distributions in the northwest Atlantic for the last 225,000 years, Bulletin of Marine Science, vol. 81, pp. 371–391, 2007.
D. M. Karl, Wirsen, C. O., and Jannasch, H. W., Deep-sea primary production at the Galapagos hydrothermal vents, Science, vol. 207, pp. 1345–1347, 1980.

Pages