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Journal Article
A. T. Barnes, Quetin, L. B., Childress, J. J., and Pawson, D. L., Deep-sea macroplanktonic sea cucumbers: suspended sediment feeders captured from deep submergence vehicle, Science, vol. 194, pp. 1083–1085, 1976.
T. J. Mickel and Childress, J. J., Effects of pressure and temperature on the EKG and heart rate of the hydrothermal vent crab Bythograea thermydron (Brachyura)., Biological Bulletin, vol. 162, pp. 70–82, 1982.
L. Gorodezky and Childress, J. J., Effects of sulfide exposure history and hemolymph thiosulfate on oxygen-consumption rates and regulation in the hydrothermal vent crab Bythograea thermydron, Marine Biology, vol. 120, pp. 123–131, 1994.
T. J. Mickel and Childress, J. J., Effects of temperature, pressure and oxygen concentration on the oxygen consumption rate of the hydrothermal vent crab Bythograea thermydron (Brachyura), Physiological Zoology, vol. 55, pp. 199–207, 1982.
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.
A. J. Arp and Childress, J. J., Functional characteristics of the blood of the deep sea hydrothermal vent brachyuran crab, Science, vol. 214, pp. 559–561, 1981.
J. F. Grassle, Berg, C. J., Childress, J. J., Hessler, R. R., Jannasch, H. W., Karl, D. M., Lutz, R. A., Mickel, T. J., Rhoads, D. C., Sanders, H. L., Smith, K. L., Somero, G. N., Turner, R. D., Tuttle, J. H., Walsh, P. J., and Williams, A. J., Galapagos '79: Initial findings of a deep-sea biological quest, Oceanus, vol. 22, pp. 2–10, 1979.
C. Airriess and Childress, J. J., Homeoviscous properties implicated by the interactive effects of pressure and temperature on the hydrothermal vent crab Bythograea thermydron, Biological Bulletin, vol. 187, pp. 208–214, 1994.
R. E. Kochevar, Govind, N. S., and Childress, J. J., Identification and characterization of two carbonic anhydrases from the hydrothermal vent tube-worm Riftia pachyptila Jones, Molecular Marine Biology and Biotechnology, vol. 2, pp. 10–19, 1993.
C. R. Fisher, Childress, J. J., Oremland, R. S., and Bidigare, R. R., The importance of methane and thiosulfate in the metabolism of the bacterial symbionts of two deep-sea mussels, Marine Biology, vol. 96, pp. 59–71, 1987.
K. S. Johnson, Beehler, C. L., Sakamoto-Arnold, C. M., and Childress, J. J., In situ measurements of chemical distributions in a deep-sea hydrothermal vent field, Science, vol. 231, pp. 1139–1141, 1986.
J. J. Childress, Lee, R., Sanders, N. K., Felbeck, H., Oros, D., Toulmond, A., Desbruyeres, D., Brooks, J., and II, K. M. C., Inorganic carbon uptake in hydrothermal vent tubeworms facilitated by high environmental pCO2, Nature, vol. 362, pp. 147–149, 1993.
J. J. Childress, Life in sulfidic environments: historical perspective and current research trends, American Zoologist, vol. 35, pp. 83–90, 1995.
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.
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.
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.
J. J. Childress, Fisher, C. R., Brooks, J. M., II, K. M. C., Bidigare, R., and Anderson, A. E., A methanotrophic marine molluscan (Bivalvia, Mytilidae) symbiosis: mussels fueled by gas, Science, vol. 233, pp. 1306–1308, 1986.
C. R. Fisher, Childress, J. J., Arp, A. J., Brooks, J. M., Distel, D. L., Favuzzi, J. A., Felbeck, H., Hessler, R. R., Johnson, K. S., Kennicutt, M. C., Macko, S. A., Newton, A., Powell, M. A., Somero, G. N., and Soto, T., Microhabitat variation in the hydrothermal vent mussel, Bathymodiolus thermophilus, at Rose Garden, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 35, pp. 1769–1791, 1988.
A. E. Anderson, Childress, J. J., and Favuzzi, J. A., Net uptake of CO2 driven by sulfide and thiosulfate oxidatyion in the bacterial symbiont-containing clam Solemya reidi, Journal of Experimental Biology, vol. 133, pp. 1–31, 1987.
C. R. Fisher, Childress, J. J., Macko, A., and Brooks, J. M., Nutritional interactions at Galapagos hydrothermal vents: Inferences from stable carbon and nitrogen isotopes, Marine Ecology Progress Series, vol. 103, pp. 45–55, 1994.
C. R. Fisher and Childress, J. J., Organic carbon transfer from methanotrophic symbionts to the host hydrocarbon seep mussel, Symbiosis, vol. 12, pp. 221–235, 1992.
J. J. Childress and Mickel, T. J., Oxygen and sulfide consumption rates of the vent clam Calyptogena pacifica, Marine Biology Letters, vol. 3, pp. 73–79, 1982.

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