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K. M. Mullaugh, Luther, G. W., Ma, S., Moore, T. S., Yucel, M., Becker, E. L., Podowski, E. L., Fisher, C. R., Trouwborst, R. E., and Pierson, B. K., Voltammetric (micro)electrodes for the in situ study of Fe2+ oxidation kinetics in hot springs and S2O3-2- production at hydrothermal vents, Electroanalysis, vol. 20, pp. 280–290, 2008.
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.
B. W. Govenar, Fisher, C. R., and Shank, T. M., Variation in the diets of hydrothermal vent gastropods, Deep-Sea Research Part II: Topical Studies in Oceanography, vol. 121, pp. 193–201, 2015.
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.
N. Le Bris, Govenar, B., LeGall, C., and Fisher, C. R., Variability of physico-chemical conditions in 9 degrees 50'N EPR diffuse flow vent habitats, Marine Chemistry, vol. 98, pp. 167–182, 2006.
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S. Gollner, Zekeley, J., Govenar, B., Le Bris, N., Nemeschkal, H. L., Fisher, C. R., and Bright, M., Tubeworm-associated permanent meiobenthic communities from two chemically different hydrothermal vent sites on the East Pacific Rise, Marine Ecology Progress Series, vol. 337, pp. 39–49, 2007.
L. S. Mullineaux, Fisher, C. R., Peterson, C. H., and Schaeffer, S. W., Tubeworm succession at hydrothermal vents: Use of biogenic cues to reduce habitat selection error?, Oecologia, vol. 123, pp. 275–284, 2000.
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.
C. R. Fisher, Toward an appreciation of hydrothermal-vent animals: their environment, physiological ecology, and tissue stable isotope values, in Seafloor Hydrothermal Systems: Physical, Chemical, Biological, and Geochemical Interactions, S. E. Humphris, Ed. Washington, D.C.: American Geophysical Union, 1995, pp. 297–316.
B. W. Govenar, Bergquist, D. C., Urcuyo, I. A., Eckner, J. T., and Fisher, C. R., Three Ridgeia piscesae assemblages from a single Juan de Fuca Ridge sulphide edifice: Structurally different and functionally similar, Cahiers de Biologie Marine, vol. 43, pp. 247–252, 2002.
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.
C. R. Fisher, Temperature and sulphide tolerance of hydrothermal vent fauna, Cahiers de Biologie Marine, vol. 39, pp. 283–286, 1998.
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J. J. Childress, Fisher, C. R., Favuzzi, J. A., Kochevar, R., Sanders, N. K., and Alayse, A. M., Sulfide-driven autotrophic balance in the bacterial symbiont-containing hydrothermal vent tubeworm Riftia pachyptila Jones, Biological Bulletin, vol. 180, pp. 135–153, 1991.
J. F. Flores, Fisher, C. R., Carney, S. L., Green, B. N., Freytag, J. K., Schaeffer, S. W., and Royer, W. E., Sulfide binding is mediated by zinc ions discovered in the crystal structure of a hydrothermal vent tubeworm hemoglobin, Proceedings of the National Academy of Sciences of the United States of America, vol. 102, pp. 2713–2718, 2005.
P. Martineu, Juniper, S. K., Fisher, C. R., and Massoth, G. J., Sulfide binding in the body fluids of hydrothermal vent alvinellid polychaetes, Physiological Zoology, vol. 70, pp. 578–588, 1997.
J. J. Childress, Fisher, C. R., Favuzzi, J. A., and Sanders, N. K., Sulfide and carbon dioxide uptake by the hydrothermal vent clam, Calyptogena magnifica and its chemoautotrophic symbionts, Physiological Zoology, vol. 64, pp. 1444–1470, 1991.
C. R. Fisher and Childress, J. J., Substrate oxidation by trophosome tissue from Riftia pachyptila Jones (Phylum pogonophora), Marine Biology Letters, vol. 5, pp. 171–183, 1984.
E. L. Becker, Macko, S. A., Lee, R. W., and Fisher, C. R., Stable isotopes provide new insights into vestimentiferan physiological ecology at Gulf of Mexico cold seeps, Naturwissenschaften, vol. 98, pp. 169–174, 2011.
C. R. Fisher, II, K. M. C., and Brooks, J. M., Stable carbon isotopic evidence for carbon limitation in hydrothermal vent vestimentiferans, Science, vol. 247, pp. 1094–1096, 1990.
E. L. Becker, Lee, R. W., Macko, S. A., Faure, B. M., and Fisher, C. R., Stable carbon and nitrogen isotope compositions of hydrocarbon-seep bivalves on the Gulf of Mexico lower continental slope, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 57, pp. 1957–1964, 2010.
M. P. Miglietta, Hourdez, S., Cowart, D. A., Schaeffer, S. W., and Fisher, C. R., Species boundaries of Gulf of Mexico vestimentiferans (Polychaeta, Siboglinidae) inferred from mitochondrial genes, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 57, pp. 1916–1925, 2010.
G. Sancho, Fisher, C. R., Mills, S. W., Micheli, F., Johnson, G. A., Lenihan, H. S., Peterson, C. H., and Mullineaux, L. S., Selective predation by the zoarcid fish Thermarces cerberus at hydrothermal vents., Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 52, pp. 837–844, 2005.
J. M. Brooks, Wiesenburg, D. A., Roberts, H., Carney, R. S., MacDonald, I. R., Fisher, C. R., Guinasso, N. L., Sager, W. W., McDonald, S. J., Burke, R. A., Aharon, P., and Bright, T. J., Salt, seeps and symbiosis in the Gulf of Mexico, EOS, Transactions, American Geophysical Union, vol. 71, pp. 1772–1773, 1990.

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