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C
E. E. Cordes, McGinley, M. P., Podowski, E. L., Becker, E. L., Lessard-Pilon, S., Viada, S. T., and Fisher, C. R., Coral communities of the deep Gulf of Mexico, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 55, pp. 777–787, 2008.
E
H. P. Johnson, Hutnak, M., Dziak, R. P., Fox, C. G., Urcuyo, I., Cowen, J. P., Nabelek, J., and Fisher, C. R., Earthquake-induced changes in a hydrothermal system on the Juan de Fuca mid-ocean ridge, Nature, vol. 407, pp. 174–177, 2000.
H. P. Johnson, Dziak, R. P., Fisher, C. R., Fox, C. G., and Pruis, M. J., Earthquakes' impact on hydrothermal systems may be far-reaching, EOS, Transactions, American Geophysical Union, vol. 82, pp. 233–236, 2001.
C. R. Fisher, Ecophysiology of primary production at deep-sea vents and seeps.   In:   Deep-sea and extreme shallow-water habitats: affinities and adaptations, in Deep-sea and extreme shallow-water habitats : affinities and adaptations, F. Uiblein, Ed. Österreichische Akademie der Wissenschaften, 1996, pp. 311–334.
J. J. Childress, Fisher, C. R., Felbeck, H., Girguis, P., and Girguis, P. R., On the edge of a deep biosphere: Real animals in extreme environments, in Subseafloor Biosphere at Mid-Ocean Ridges, AGU, 2004, pp. 41–49.
K. M. Scott, Fisher, C. R., Vodenichar, J. S., Nix, E., and Minnich, E., Effects of inorganic carbon concentrations, pH, and temperature on autotrophic carbon fixation by the chemoautotrophic symbionts of Riftia pachyptila, Physiological Zoology, vol. 67, pp. 617–638, 1994.
S. L. Carney, Flores, J. F., Orobona, K. M., Butterfield, D. A., Fisher, C. R., and Schaeffer, S. W., Environmental differences in hemoglobin gene expression in the hydrothermal vent tubeworm, Ridgeia piscesae, Comparative Biochemistry and Physiology B-Biochemistry {&} Molecular Biology, vol. 146, pp. 326–337, 2007.
B. Govenar, Le Bris, N., Gollner, S., Glanville, J., Aperghis, A. B., Hourdez, S., and Fisher, C. R., Epifaunal community structure associated with Riftia pachyptila aggregations in chemically different hydrothermal vent habitats, Marine Ecology Progress Series, vol. 305, pp. 67–77, 2005.
R. A. Beinart, Sanders, J. G., Faure, B., Sylva, S. P., Lee, R. W., Becker, E. L., Gartman, A., Luther, G. W., Seewald, J. S., Fisher, C. R., and Girguis, P. R., Evidence for the role of endosymbionts in regional-scale habitat partitioning by hydrothermal vent symbioses, Proceedings of the National Academy of Sciences of the United States of America, vol. 109, pp. E3241–E3250, 2012.
H. M. Page, Fisher, C. R., Fiala-Medioni, A., and Childress, J. J., Experimental evidence for filter-feeding by the hydrothermal vent mussel, Bathymodiolus thermophilus, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 38, pp. 1455–1461, 1991.
B. Govenar and Fisher, C. R., Experimental evidence of habitat provision by aggregations of Riftia pachyptila at hydrothermal vents on the East Pacific Rise, Marine Ecology, vol. 28, pp. 3–14, 2007.

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