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Journal Article
J. Sarrazin, Levesque, C., Juniper, S. K., and Tivey, M. K., Mosaic community dynamics on Juan de Fuca Ridge sulphide edifices: Substratum, temperature and implications for trophic structure, Cahiers de Biologie Marine, vol. 43, pp. 275–279, 2002.
G. Thompson, Mottl, M. J., and Rona, P. A., Morphology, mineralogy and chemistry of hydrothermal deposits from the TAG area, 26 degrees N Mid-Atlantic Ridge, Chemical Geology, vol. 49, pp. 243–257, 1985.
R. E. Thresher, Adkins, J., and Thiagarajan, N., Modal analysis of the deep-water solitary scleractinian, Desmophyllum dianthus, on SW Pacific seamounts: inferred recruitment periodicity, growth, and mortality rates, CORAL REEFS, vol. 30, pp. 1063–1070, 2011.
R. E. Thresher, Adkins, J., and Thiagarajan, N., Modal analysis of the deep-water solitary scleractinian, Desmophyllum dianthus, on SW Pacific seamounts: inferred recruitment periodicity, growth, and mortality rates, CORAL REEFS, vol. 30, pp. 1063–1070, 2011.
D. R. Yoerger, Bradley, A. M., Jakuba, M. V., Tivey, M. A., German, C. R., Shank, T. M., and Embley, R. W., Mid-ocean ridge exploration with an autonomous underwater vehicle, Oceanography, vol. 20, pp. 52–61, 2007.
M. A. Tivey and Schouten, H., Micro-magnetic field measurements near the ocean floor, Oceanus, vol. 35, pp. 82–88, 1992.
C. J. Wolfe, Purdy, M., Toomey, D. R., and Solomon, S. C., Microearthquake characteristics and crustal velocity structure at 29 degrees N on the Mid-Atlantic Ridge: The architecture of a slow spreading segment, Journal of Geophysical Research, vol. 100, pp. 24,424–449,472, 1995.
D. M. Karl, Taylor, G. T., Novitsky, J. A., Jannasch, H. W., Wirsen, C. O., Pace, N. R., Lane, D. J., Olsen, G. J., and Giovannoni, S. J., A microbiological study of Guaymas Basin high temperature hydrothermal vents, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 35, pp. 777–791, 1988.
J. H. Tuttle and Jannasch, H. W., Microbial utilization of thiosulfate in the deep sea, Limnology and Oceanography, vol. 21, pp. 697–701, 1976.
S. Meyer, Wegener, G., Lloyd, K. G., Teske, A., Boetius, A., and Ramette, A., Microbial habitat connec ivity across spatial scales and hydrothermal temperature gradients at Guaymas Basin, FRONTIERS IN MICROBIOLOGY, vol. 4, 2013.
A. Teske, Wegener, G., Chanton, J. P., White, D., MacGregor, B., Hoer, D., de Beer, D., Zhuang, G., Saxton, M. A., Joye, S. B., Lizarralde, D., S. Soule, A., and S. Ruff, E., Microbial Communities Under Distinct Thermal and Geochemical Regimes in Axial and Off-Axis Sediments of Guaymas Basin, Frontiers in Microbiology, vol. 12, p. 633649, 2021.
F. Dowell, Cardman, Z., Dasarathy, S., Kellermann, M. Y., Lipp, J. S., S Ruff, E., Biddle, J. F., McKay, L. J., MacGregor, B. J., Lloyd, K. G., Albert, D. B., Mendlovitz, H., Hinrichs, K. - U., and Teske, A., Microbial Communities in Methane- and Short Chain Alkane-Rich Hydrothermal Sediments of Guaymas Basin, FRONTIERS IN MICROBIOLOGY, vol. 7, 2016.
L. M. Nigro, Harris, K., Orcutt, B. N., Hyde, A., Clayton-Luce, S., Becker, K., and Teske, A., Microbial communities at the borehole observatory on the Costa Rica Rift flank (Ocean Drilling Program Hole 896A), FRONTIERS IN MICROBIOLOGY, vol. 3, 2012.
J. H. Tuttle, Wirsen, C. O., and Jannasch, H. W., Microbial activities in the emitted hydrothermal waters of the Galapagos Rift vents, Marine Biology, vol. 73, pp. 293–299, 1983.
B. N. Orcutt, D'Angelo, T., Wheat, C. G., and Trembath-Reichert, E., Microbe-mineral biogeography from multi-year incubations in oceanic crust at North Pond, Mid-Atlantic Ridge, Environmental Microbiology, 2020.
M. Kurr, Huber, R., Konig, H., Jannasch, H. W., Fricke, H., Trincone, A., Kristiansson, J. K., and Stetter, K. O., Methanopyrus kandleri, gen. and sp. nov. represents a novel group of hyperthermophilic methanogens growing at 110C, Archives of Microbiology, vol. 156, pp. 239–247, 1991.
C. Joseph, Campbell, K. A., Torres, M. E., Martin, R. A., Pohlman, J. W., Riedel, M., and Rose, K., Methane-derived authigenic carbonates from modern and paleoseeps on the Cascadia margin: Mechanisms of formation and diagenetic signals, Tracing Phanerozoic hydrocarbon seepage from local basins to the global Earth system, vol. 390, pp. 52–67, 2013.
J. Labidi, Young, E. D., Giunta, T., Kohl, I. E., Seewald, J., Tang, H., Lilley, M. D., and Früh-Green, G. L., Methane thermometry in deep-sea hydrothermal systems: evidence for re-ordering of doubly-substituted isotopologues during fluid cooling, Geochimica et Cosmochimica Acta, 2020.
R. L. Hansman, Thurber, A. R., Levin, L. A., and Aluwihare, L. I., Methane fates in the benthos and water column at cold seep sites along the continental margin of Central and North America, Deep Sea Research Part I: Oceanographic Research Papers, vol. 120, pp. 122–131, 2017.
J. M. Bernhard, Morrison, C. R., Pape, E., Beaudoin, D. J., M Todaro, A., Pachiadaki, M. G., Kormas, K. Ar, and Edgcomb, V. P., Metazoans of redoxcline sediments in Mediterranean deep-sea hypersaline anoxic basins, BMC BIOLOGY, vol. 13, 2015.
N. Lampadariou, Syranidou, E., Sevastou, K., and Tselepides, A., Meiobenthos from biogenic structures of the abyssal time-series station in the NE Pacific (Station M), Deep-Sea Research Part Ii-Topical Studies in Oceanography, vol. 173, 2020.
H. P. Johnson and Tivey, M. A., Magnetic properties of zero-age oceanic crust; a new submarine lava flow on the Juan de Fuca Ridge, Geophysical Research Letters, vol. 22, pp. 175–178, 1995.
F. Szitkar, Tivey, M. A., Kelley, D. S., Karson, J. A., Fruh-Green, G. L., and Denny, A. R., Magnetic exploration of a low-temperature ultramafic-hosted hydrothermal site (Lost City, 30 degrees N, MAR), EARTH AND PLANETARY SCIENCE LETTERS, vol. 461, pp. 40–45, 2017.
D. K. Smith, Tivey, M. A., Gregg, P., and Kong, L., Magnetic anomalies at the Puna Ridge, a submarine extension of Kilauea Volcano: Implications for lava deposition, Journal of Geophysical Research, vol. 106, pp. 16,16–47,6, 2001.
G. Ito, Garcia, M. O., Smith, J. R., Taylor, B., Flinders, A., Jicha, B., Yamasaki, S., Weis, D., Swinnard, L., and Blay, C., A low-relief shield volcano origin for the South Kaua\''\}i Swell}, GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, vol. 14, pp. 2328–2348, 2013.

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