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Author Title [ Type(Asc)] Year
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Thesis
J. H. Knowles, Experiments and numerical simulations of the dynamics of an R.O.V. thruster during maneuvering, Massachusetts Institute of Technology and Woods Hole Oceanographic Institution, Cambridge, Mass. and Woods Hole, Mass., 1996.
R. J. Kinzler, Experimental constraints on the generation and evolution of mid-ocean ridge basalts, Massachusetts Institute of Technology, Cambridge, Mass., 1991.
M. C. Kleinrock, Detailed structural studies of the propagator system near 95.5 degrees W along the Galapagos spreading axis, University of California, San Diego, San Diego, Calif., 1988.
Journal Article
K. Kobayashi, Fujioka, K., Fujiwara, T., Iwabuchi, Y., and Kitazato, H., Why is the Palau Trench so deep? Deep-sea trench without plate convergence, Proceedings of the Japan Academy. Series B: Physical and Biological Sciences, vol. 73, pp. 89–94, 1997.
K. Kobayashi, Fujioka, K., Fujiwara, T., Iwabuchi, Y., and Kitazato, H., Why is the Palau Trench so deep? Deep-sea trench without plate convergence, Proceedings of the Japan Academy. Series B: Physical and Biological Sciences, vol. 73, pp. 89–94, 1997.
M. J. Mottl, Wheat, G., Baker, E., Davis, E., Feely, R., Grehan, A., Kadko, D., Lilley, M., Massoth, G., Moyer, C., and Sansone, F., Warm springs discovered on 3.5 Ma oceanic crust, eastern flank of the Juan de Fuca Ridge, Geology, vol. 26, pp. 51–54, 1998.
W. W. Chadwick, Paduan, J. B., Clague, D. A., Dreyer, B. M., Merle, S. G., Bobbitt, A. M., Caress, D. W., Philip, B. T., Kelley, D. S., and Nooner, S. L., Voluminous eruption from a zoned magma body after an increase in supply rate at Axial Seamount, Geophysical Research Letters, vol. 43, pp. 12,063–12,070, 2016.
A. G. Hochstaedter, Gill, J. B., Kusakabe, M., Newman, S., Pringle, M., Taylor, B., and Fryer, P., Volcanism in the Sumisu Rift I: Major element, volatile and stable isotope geochemistry, Earth and Planetary Science Letters, vol. 100, pp. 179–194, 1990.
J. L. Morton, Holmes, M. L., and Koski, R. A., Volcanism and massive sulfide formation at a sedimented spreading center, Escanaba Trough, Gorda Ridge, northeast Pacific Ocean, Geophysical Research Letters, vol. 14, pp. 769–772, 1987.
G. J. Kurras, Fornari, D. J., Edwards, M. H., Perfit, M. R., and Smith, M. C., Volcanic morphology of the East Pacific Rise Crest 9 degrees 49'-52': Implications for volcanic emplacement processes at fast-spreading mid-ocean ridges, Marine Geophysical Researches, vol. 21, pp. 23–41, 2000.
V. D. Wanless, Perfit, M. R., Ridley, W. I., Wallace, P. J., Grimes, C. B., and Klein, E. M., Volatile abundances and oxygen isotopes in basaltic to dacitic lavas on mid-ocean ridges: The role of assimilation at spreading centers, Chemical Geology, vol. 287, pp. 54–65, 2011.
K. M. Gillis, Thonpson, G., and Kelley, D. S., A view of the lower crustal component of hydrothermal systems at the Mid-Atlantic Ridge, Journal of Geophysical Research, vol. 98, pp. 19,519–597,619, 1993.
C. G. Wheat, Jannasch, H. W., Kastner, M., Plant, J. N., DeCarlo, E. H., and Lebon, G., Venting formation fluids from deep sea boreholes in a ridge flank setting: ODP Sites 1025 and 1026, Geochemistry, Geophysics, Geosystems, vol. 5, p. Article no. Q08007, 2004.
J. R. Brown and Karson, J. A., Variations in axial processes on the Mid-Atlantic Ridge: the median valley of the MARK area, Marine Geophysical Researches, vol. 10, pp. 109–138, 1988.
C. R. Fisher, Childress, J. J., Arp, A. J., Brooks, J. M., Distel, D. L., Dugan, J. A., Felbeck, H., Fritz, L. W., Hessler, R. R., Johnson, K. S., Kennicutt, M. C., Lutz, R. A., Macko, S. A., Newton, A., Powell, M. A., Somero, G. N., and Soto, T., Variation in the hydrothermal vent clam, Calyptogena magnifica, at Rose Garden vent on the Galapagos Spreading center, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 35, pp. 1811–1832, 1988.
Y. Marcon, Kelley, D., Thornton, B., Manalang, D., and Bohrmann, G., Variability of Natural Methane Bubble Release at Southern Hydrate Ridge, Geochemistry Geophysics Geosystems, 2021.
K. M. Kalanetra and Nelson, D. C., Vacuolate-attached filaments: highly productive Ridgeia piscesae epibionts at the Juan de Fuca hydrothermal vents, MARINE BIOLOGY, vol. 157, pp. 791–800, 2010.
K. A. Ludwig, Shen, C. C., Kelley, D. S., Cheng, H., and Edwards, R. L., U-Th systematics and ages of carbonate chimneys at the Lost City Hydrothermal Field, Geochimica et Cosmochimica Acta, vol. 75, pp. 1869–1888, 2011.
T. K. P. Gregg, Fornari, D. J., Perfit, M. R., Ridley, W. I., and Kurz, M. D., Using submarine lava pillars to record mid-ocean ridge eruption dynamics, Earth and Planetary Science Letters, vol. 178, pp. 195–214, 2000.
G. W. Luther, Glazer, B. T., Ma, S., Trouwborst, R. E., Moore, T. S., Metzger, E., Kraiya, C., Waite, T. J., Druschel, G., Sundby, B., Taillefert, M., Nuzzio, D. B., Shank, T. M., Lewis, B. L., and Brendel, P. J., Use of voltammetric solid-state (micro)electrodes for studying biogeochemical processes: Laboratory measurements to real time measurements with an in situ electrochemical analyzer (ISEA), Marine Chemistry, vol. 108, pp. 221–235, 2008.
D. Schuller, Kadko, D., and Smith, C. R., Use of 210Pb/226Ra disequilibria in the dating of deep-sea whale falls, Earth and Planetary Science Letters, vol. 218, pp. 277–289, 2004.
M. E. Sturm, Goldstein, S. J., Klein, E. M., Karson, J. A., and Murrell, M. T., Uranium-series age constraints on lavas from the axial valley of the Mid-Atlantic Ridge, MARK area, Earth and Planetary Science Letters, vol. 181, pp. 61–70, 2000.
M. E. Sturm, Goldstein, S. J., Klein, E. M., Karson, J. A., and Murrell, M. T., Uranium-series age constraints on lavas from the axial valley of the Mid-Atlantic Ridge, MARK area, Earth and Planetary Science Letters, vol. 181, pp. 61–70, 2000.
C. A. Kellogg and Pratte, Z. A., Unexpected diversity of Endozoicomonas in deep-sea corals, Marine Ecology Progress Series, vol. 673, pp. 1-15, 2021.
A. - L. Reysenbach, Liu, Y. T., Banta, A. B., Beveridge, T. J., Kirshtein, J. D., Schouten, S., Tivey, M. K., Von Damm, K. L., and Voytek, M. A., A ubiquitous thermoacidophilic archaeon from deep-sea hydrothermal vents, Nature, vol. 442, pp. 444–447, 2006.

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