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S. N. White, Chave, A. D., Reynolds, G. T., Gaidos, E. J., Tyson, J. A., and Van Dover, C. L., Variations in ambient light emission from black smokers and flange pools on the Juan de Fuca Ridge., Geophysical Research Letters, vol. 27, pp. 1151–1154, 2000.
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.
T. J. Waite, Moore, T. S., Childress, J. J., Hsu-Kim, H., Mullaugh, K. M., Nuzzio, D. B., Paschal, A. N., Tsang, J., Fisher, C. R., and Luther, G. W., Variation in sulfur speciation with shellfish presence at a Lau Basin diffuse flow vent site, Journal of Shellfish Research, vol. 27, pp. 163–168, 2008.
V. L. Ferrini, Tivey, M. K., Carbotte, S. M., Martinez, F., and Roman, C., Variable morphologic expression of volcanic, tectonic, and hydrothermal processes at six hydrothermal vent fields in the Lau back-arc basin, Geochemistry, Geophysics, Geosystems, vol. 9, p. Q07022, 2008.
M. J. Cook and DeSanto, J. B., Validation of Geodetic Seafloor Benchmark Stability Using Structure-From-Motion and Seafloor Pressure Data, Earth and Space Science, 2019.
U
J. H. Chen, Wasserburg, G. J., Von Damm, K. L., and Edmond, J. M., The U-Th-Pb systematics in hot springs on the East Pacific Rise at 21 degrees N and Guaymas Basin, Geochimica et Cosmochimica Acta, vol. 50, pp. 2467–2479, 1986.
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.
D. C. Bergquist, Eckner, J. T., Urcuyo, I. A., Cordes, E. E., Hourdez, S., Macko, S. A., and Fisher, C. R., Using stable isotopes and quantitative community characteristics to determine a local hydrothermal vent food web, Marine Ecology Progress Series, vol. 330, pp. 49–65, 2007.
N. K. Sanders and Childress, J. J., The use of single column iron chromatography to measure the concentratrions of the major ions in invertebrate body fluids, Comparative Biochemistry and Physiology. A, Comparative Physiology, vol. 98, pp. 97–100, 1991.
J. J. Childress, Uptake and transport of sulfide in marine invertebrates, in Comparative Physiology: Life in Water and on Land, P. E. Dejours, Ed. New York: Springer, 1987, pp. 231–238.
A. Toulmond, Lallier, F. H., De Frescheville, J., Childress, J. J., Lee, R., Sanders, N. K., and Desbruyeres, D., Unusual carbon dioxide-combining properties of body fluids in the hydrothermal vent tubeworm Riftia pachyptila, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 41, pp. 1447–1456, 1994.
Z. P. McKiness and Cavanaugh, C. M., The ubiquitous mussel: Bathymodiolus aff. brevior symbiosis at the Central Indian Ridge hydrothermal vents, Marine Ecology Progress Series, vol. 295, pp. 183–190, 2005.
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S. A. Bennett, Coleman, M., Huber, J. A., Reddington, E., Kinsey, J. C., McIntyre, C., Seewald, J. S., and German, C. R., Trophic regions of a hydrothermal plume dispersing away from an ultramafic-hosted vent-system: Von Damm vent-site, Mid-Cayman Rise, Geochemistry, Geophysics, Geosystems, vol. 14, pp. 317–327, 2013.
G. N. Somero, Childress, J. J., and Anderson, A. E., Transport, metabolism and detoxification of hydrogen sulfide in animals from sulfide rich marine environments, Reviews in Aquatic Sciences, vol. 1, pp. 591–614, 1989.
L. Prieto and Cowen, J. P., Transparent exopolymer particles in a deep-sea hydrothermal system: Guaymas Basin, Gulf of California, Marine Biology, vol. 150, pp. 1093–1101, 2007.
C. R. Fisher and Childress, J. J., Translocation of fixed carbon from symbiotic bacteria to host tissues in the gutless bivalve Solemya reidi, Marine Biology, vol. 93, pp. 59–68, 1986.
D. M. DeLeo, Glazier, A., Herrera, S., Barkman, A., and Cordes, E. E., Transcriptomic Responses of Deep-Sea Corals Experimentally Exposed to Crude Oil and Dispersant, Frontiers in Marine Science, vol. 8, p. 649909, 2021.
H. Singh, Roman, C., Pizarro, O., Eustice, R., and Can, A., Towards high-resolution imaging from underwater vehicles, International Journal of Robotics Research, vol. 26, pp. 55–74, 2007.
D. Feng, Birgel, D., Peckmann, J., Roberts, H. H., Joye, S. B., Sassen, R., Liu, X. - L., Hinrichs, K. - U., and Chen, D., Time integrated variation of sources of fluids and seepage dynamics archived in authigenic carbonates from Gulf of Mexico Gas Hydrate Seafloor Observatory, Chemical Geology, vol. 385, pp. 129–139, 2014.
G. W. Cairns, Evans, R. L., and Edwards, R. N., A time domain electromagnetic survey of the TAG hydrothermal mound, Geophysical Research Letters, vol. 23, pp. 3455–3458, 1996.
S. M. Maher, Gee, J. S., Cheadle, M. J., and John, B. E., Three-dimensional magnetic stripes require slow cooling in fast-spread lower ocean crust, Nature, vol. 597, pp. 511-515, 2021.
P. Chevaldonne, Fisher, C. R., Childress, J. J., Desbruyeres, D., Jollivet, D., Zal, F., and Toulmond, A., Thermotolerance and the ‘Pompeii worms', Marine Ecology Progress Series, vol. 208, pp. 293–295, 2000.
P. Chevaldonne, Fisher, C. R., Childress, J. J., Desbruyeres, D., Jollivet, D., Zal, F., and Toulmond, A., Thermotolerance and the ‘Pompeii worms', Marine Ecology Progress Series, vol. 208, pp. 293–295, 2000.
J. B. Corliss, The thermal springs of the Galapagos Rift: Their implications for biology and the chemistry of sea water, in Patterns of evolution in Galapagos organisms, R. Bowman, Ed. San Francisco, Calif.: Pacific Division, American Association for the Advancement of Science, 1983, pp. 25–31.
A. M. Quattrini, Baums, I. B., Shank, T. M., Morrison, C., and Cordes, E. E., Testing the depth-differentiation hypothesis in a deepwater octocoral, Proceedings of the Royal Society B: Biological Sciences, vol. 282, p. 20150008, 2015.

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