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Journal Article
E. E. Cordes, Bergquist, D. C., and Fisher, C. R., Macro-Ecology of Gulf of Mexico Cold Seeps, Annual Review of Marine Science, vol. 1, pp. 143–168, 2009.
J. Chadwick, Perfit, M., Ridley, I., Kamenov, G., Chadwick, W., Embley, R., le Roux, P., and Smith, M., Magmatic effects of the Cobb hot spot on the Juan de Fuca Ridge, Journal of Geophysical Research, vol. 110, p. B03101, 2005.
J. Chadwick, Perfit, M., Ridley, I., Kamenov, G., Chadwick, W., Embley, R., le Roux, P., and Smith, M., Magmatic effects of the Cobb hot spot on the Juan de Fuca Ridge, Journal of Geophysical Research, vol. 110, p. B03101, 2005.
S. M. Carbotte, Ryan, W. B., Cormier, M. - H., Jin, W., Bergmanis, E. C., Sinton, J., and White, S., Magmatic subsidence of the East Pacific Rise (EPR) 18 degrees14'S revealed through fault restoration of ridge crest bathymetry, Geochemistry, Geophysics, Geosystems, vol. 4, p. Article no. 1008, 2003.
S. M. Carbotte, Ryan, W. B., Cormier, M. - H., Jin, W., Bergmanis, E. C., Sinton, J., and White, S., Magmatic subsidence of the East Pacific Rise (EPR) 18 degrees14'S revealed through fault restoration of ridge crest bathymetry, Geochemistry, Geophysics, Geosystems, vol. 4, p. Article no. 1008, 2003.
S. M. Maher, Gee, J. S., Doran, A. K., Cheadle, M. J., and John, B. E., Magnetic Structure of Fast-Spread Oceanic Crust at Pito Deep, Geochemistry Geophysics Geosystems, vol. 21, 2020.
R. P. Freeman-Lynde, Cita, M. B., Jadoul, F., Miller, E. L., and Ryan, W. B. F., Marine geology of the Bahama Escarpment, Marine Geology, vol. 44, pp. 119–156, 1981.
J. Francheteau, Needham, H. D., Choukroune, P., Juteau, T., Seguret, M., Ballard, R. D., Fox, P. J., Normark, W., Carranza, A., Cordoba, D., Guerrero, J., Rangin, C., Bougault, H., Cambon, P., and Hekinian, R., Massive deep-sea sulphide ore deposits discovered on the East Pacific Rise, Nature, vol. 277, pp. 523–528, 1979.
J. Francheteau, Needham, H. D., Choukroune, P., Juteau, T., Seguret, M., Ballard, R. D., Fox, P. J., Normark, W., Carranza, A., Cordoba, D., Guerrero, J., Rangin, C., Bougault, H., Cambon, P., and Hekinian, R., Massive deep-sea sulphide ore deposits discovered on the East Pacific Rise, Nature, vol. 277, pp. 523–528, 1979.
J. Francheteau, Needham, H. D., Choukroune, P., Juteau, T., Seguret, M., Ballard, R. D., Fox, P. J., Normark, W., Carranza, A., Cordoba, D., Guerrero, J., Rangin, C., Bougault, H., Cambon, P., and Hekinian, R., Massive deep-sea sulphide ore deposits discovered on the East Pacific Rise, Nature, vol. 277, pp. 523–528, 1979.
J. Francheteau, Needham, H. D., Choukroune, P., Juteau, T., Seguret, M., Ballard, R. D., Fox, P. J., Normark, W., Carranza, A., Cordoba, D., Guerrero, J., Rangin, C., Bougault, H., Cambon, P., and Hekinian, R., Massive deep-sea sulphide ore deposits discovered on the East Pacific Rise, Nature, vol. 277, pp. 523–528, 1979.
H. C. Wu, Chen, Y., Yang, C. J., Zhang, J. F., Zhou, H. Y., Peng, X. T., and Ji, F. W., Mechatronic integration and implementation of in situ multipoint temperature measurement for seafloor hydrothermal vent, Science in China Series E-Technological Sciences, vol. 50, pp. 144–153, 2007.
C. Vetriani, Chew, Y. S., Miller, S. M., Yagi, J., Coombs, J., Lutz, T. A., and Barkay, T., Mercury adaptation among bacteria from a deep-sea hydrothermal vent, Applied and Environmental Microbiology, vol. 71, pp. 220–226, 2005.
C. Vetriani, Chew, Y. S., Miller, S. M., Yagi, J., Coombs, J., Lutz, T. A., and Barkay, T., Mercury adaptation among bacteria from a deep-sea hydrothermal vent, Applied and Environmental Microbiology, vol. 71, pp. 220–226, 2005.
J. J. Childress, Arp, A. J., and Fisher, C. R., Metabolic and blood characteristics of the hydrothermal vent tube worm Riftia pachypitila, Marine Biology, vol. 83, pp. 109–124, 1984.
A. J. Arp, Childress, J. J., and Fisher, C. R., Metabolic and blood gas transport characteristics of the hydrothermal vent bivalve Calyptogena magnifica, Physiological Zoology, vol. 57, pp. 648–662, 1984.
M. S. Henry, Childress, J. J., and Figueroa, D., Metabolic rates and thermal tolerances of chemoautotrophic symbioses from Lau Basin hydrothermal vents and their implications for species distributions, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 55, pp. 679–695, 2008.
J. J. Childress, Cowles, D. L., Favuzzi, J. A., and Mickel, T. J., The metabolic rates of deep-sea benthic decapod crustaceans decline with increasing depth primarily due to the decline in temperature, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 37, pp. 929–949, 1990.
J. J. Childress, Cowles, D. L., Favuzzi, J. A., and Mickel, T. J., The metabolic rates of deep-sea benthic decapod crustaceans decline with increasing depth primarily due to the decline in temperature, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 37, pp. 929–949, 1990.
P. R. Girguis and Childress, J. J., Metabolite uptake, stoichiometry and chemoautotrophic function of the hydrothermal vent tubeworm Riftia pachyptila: responses to environmental variations in substrate concentrations and temperature, Journal of Experimental Biology, vol. 209, pp. 3516–3528, 2006.
J. Reveillaud, Anderson, R., Reves-Sohn, S., Cavanaugh, C., and Huber, J. A., Metagenomic investigation of vestimentiferan tubeworm endosymbionts from Mid-Cayman Rise reveals new insights into metabolism and diversity, Microbiome, vol. 6, no. Journal Article, pp. 19 - 19, 2018.
H. Q. Yao, Zhou, H. Y., Peng, X. T., Bao, S. X., Wu, Z. J., Li, J. T., Sun, Z. L., Chen, Z. Q., Li, J. W., and Chen, G. Q., Metal sources of black smoker chimneys, Endeavour Segment, Juan de Fuca Ridge: Pb isotope constraints, Applied Geochemistry, vol. 24, pp. 1971–1977, 2009.
H. Q. Yao, Zhou, H. Y., Peng, X. T., Bao, S. X., Wu, Z. J., Li, J. T., Sun, Z. L., Chen, Z. Q., Li, J. W., and Chen, G. Q., Metal sources of black smoker chimneys, Endeavour Segment, Juan de Fuca Ridge: Pb isotope constraints, Applied Geochemistry, vol. 24, pp. 1971–1977, 2009.
R. Kochevar, Childress, J. J., Fisher, C. R., and Minnich, E., The methane mussel: roles of symbiont and host in the metabolic utilization of methane, Marine Biology, vol. 112, pp. 389–401, 1992.
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.

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