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The Biological Bulletin|December 12, 2017
Inorganic N Assimilation and Ammonium Pools in a Deep-Sea Mussel Containing Methanotrophic EndosymbiontsR W Lee, J J ChildressApplied and Environmental Microbiology|June 1, 1994
Assimilation of inorganic nitrogen by marine invertebrates and their chemoautotrophic and methanotrophic symbiontsR W Lee, J J ChildressTrends in Ecology & Evolution|January 18, 2011
Are there physiological and biochemical adaptations of metabolism in deep-sea animals?J J ChildressApplied and Environmental Microbiology|July 6, 2000
Fate of nitrate acquired by the tubeworm Riftia pachyptilaP R Girguis, R W Lee, N Desaulniers, et al.Science (New York, N.Y.)|July 17, 1981
Blood function in the hydrothermal vent vestimentiferan tube wormA J Arp, J J ChildressThe Biological Bulletin|January 12, 2018
THE EFFECT OF pH ON OXYGEN CONSUMPTION AND ACTIVITY IN THE BATHYPELAGIC MYSID GNATHOPHAUSIA INGENST J Mickel, J J ChildressThe Biological Bulletin|December 28, 2017
Oxygen Consumption Rates and Metabolic Enzyme Activities of Oceanic California Medusae in Relation to Body Size and Habitat DepthE V Thuesen, J J ChildressThe Journal of Experimental Biology|May 29, 1998
Life at stable low oxygen levels: adaptations of animals to oceanic oxygen minimum layersJ J Childress, B A SeibelThe Biological Bulletin|January 10, 2018
Adaptations to the Deep-Sea Oxygen Minimum Layer: Oxygen Binding by the Hemocyanin of the Bathypelagic Mysid, Gnathophausia ingens DohrnN K Sanders, J J ChildressThe Biological Bulletin|December 28, 2017
Homeoviscous Properties Implicated by the Interactive Effects of Pressure and Temperature on the Hydrothermal Vent Crab Bythograea thermydronC N Airriess, J J ChildressPageof 18