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“Metabolic and blood gas transport characteristics of the hydrothermal vent bivalve Calyptogena magnifica”, Physiological Zoology, vol. 57, pp. 648–662, 1984.
, “Blood gas transport in Riftia pachyptila”, in Hydrothermal vents of the Eastern Pacific: An overview, Vienna, Va.: INFAX, 1985, pp. 289–300.
, “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.
, “Physiology, morphology, and biochemical composition of Riftia pachyptila at Rose Garden in 1985”, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 35, pp. 1745–1758, 1988.
, “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.
, “Autotrophic carbon assimilation by the chemoautotrophic symbionts of Riftia pachyptila”, Biological Bulletin, vol. 177, pp. 372–385, 1989.
, “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.
, “Sulfide-driven autotrophic balance in the bacterial symbiont-containing hydrothermal vent tubeworm Riftia pachyptila Jones”, Biological Bulletin, vol. 180, pp. 135–153, 1991.
, “Nutritional interactions at Galapagos hydrothermal vents: Inferences from stable carbon and nitrogen isotopes”, Marine Ecology Progress Series, vol. 103, pp. 45–55, 1994.
, “Sulfide binding in the body fluids of hydrothermal vent alvinellid polychaetes”, Physiological Zoology, vol. 70, pp. 578–588, 1997.
, “The burden of independence: Inorganic carbon utilization strategies of the sulphur chemoautotrophic hydrothermal vent isolate Thiomicrospira crunogena and the symbionts of hydrothermal vent and cold seep vestimentiferans”, Cahiers de Biologie Marine, vol. 39, pp. 379–381, 1998.
, “Carbon dioxide use by chemoautotrophic endosymbionts of hydrothermal vent vestimentiferans: affinities for carbon dioxide, absence of carboxysomes, and delta C-13 values”, Marine Biology, vol. 135, pp. 25–34, 1999.
, “An autoradiographic examination of carbon fixation, transfer and utilization in the Riftia pachyptila symbiosis”, Marine Biology, vol. 136, pp. 621–632, 2000.
, “Earthquake-induced changes in a hydrothermal system on the Juan de Fuca mid-ocean ridge”, Nature, vol. 407, pp. 174–177, 2000.
, “Hemoglobin from a deep-sea hydrothermal-vent copepod”, Biological Bulletin, vol. 199, pp. 95–99, 2000.
, “Tubeworm succession at hydrothermal vents: Use of biogenic cues to reduce habitat selection error?”, Oecologia, vol. 123, pp. 275–284, 2000.
, “Predation structures communities at deep-sea hydrothermal vents”, Ecological Monographs, vol. 72, pp. 365–382, 2002.
, “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.
, “Chemical defense of hydrothermal vent and hydrocarbon seep organisms: a preliminary assessment using shallow-water consumers”, Marine Ecology Progress Series, vol. 275, pp. 11–19, 2004.
, “Composition of a One-Year-Old Riftia pachyptila Community Following a Clearance Experiment: Insight to Succession Patterns at Deep-Sea Hydrothermal Vents”, Biological Bulletin, vol. 207, pp. 177–182, 2004.
, “The color of the trophosome: elemental sulfur distribution in the endosymbionts of Riftia pachyptila (Vestimentifera; Siboglinidae)”, Marine Biology, vol. 146, pp. 895–901, 2005.
, “Epifaunal community structure associated with Riftia pachyptila aggregations in chemically different hydrothermal vent habitats”, Marine Ecology Progress Series, vol. 305, pp. 67–77, 2005.
, “A new bathymodioline mussel symbiosis at the Juan de Fuca hydrothermal vents”, Marine Biology, vol. 148, pp. 109–116, 2005.
, “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.
, “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.
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