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The Journal of Experimental Biology|December 24, 2010
The metabolic demands of endosymbiotic chemoautotrophic metabolism on host physiological capacitiesJ J Childress, P R Girguis
Respiration Physiology|January 1, 1988
Oxygen binding characteristics of the hemocyanins of two deep-sea hydrothermal vent crustaceansN K Sanders, A J Arp, J J Childress
The Biological Bulletin|April 29, 2000
Light-limitation on predator-prey interactions: consequences for metabolism and locomotion of deep-sea cephalopodsB A Seibel, E V Thuesen, J J Childress
The Journal of Experimental Biology|November 15, 2000
Reduced enzymatic antioxidative defense in deep-sea fishB J Janssens, J J Childress, F Baguet, et al.
Science (New York, N.Y.)|December 3, 1976
Deep-sea macroplanktonic sea cucumbers: suspended sediment feeders captured from deep submergence vehicleA T Barnes, L B Quetin, J J Childress, et al.
The Biological Bulletin|June 6, 2017
Decline in Pelagic Cephalopod Metabolism With Habitat Depth Reflects Differences in Locomotory EfficiencyB A Seibel, E V Thuesen, J J Childress, et al.
The Journal of Experimental Biology|November 14, 1997
Sulfide acquisition by the vent worm Riftia pachyptila appears to be via uptake of HS-, rather than H2SS K Goffredi, J J Childress, N T Desaulniers, et al.
The Biological Bulletin|March 16, 2017
Physiological Functioning of Carbonic Anhydrase in the Hydrothermal Vent Tubeworm Riftia PachyptilaS K Goffredi, P R Girguis, J J Childress, et al.
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