230
P.F. Landrum and S.w. Fisher
Kucklick, 1.R.; Bidelman, T.F.: McConnell, L.L.; Walla, M.D.; Ivanov, G.P Organochlorines in the water and biota of Lake Baikal, Siberia. Environ. Sci. Techno!. 28:3137; 1994.
Kukkonen, 1.; Landrum, P.F. Distribution of organic carbon and organic xenobiotics among
different particle-size fractions in sediments. Chemosphere 32: 1063-1076; 1996.
Kukkonen, 1.: Landrum. PF. Effects of sediment-bound polydimethylsiloxane on the bioavailability and distribution of benzo(a)pyrene in lake sediment to Lumbriculus variegatus. Environ. Toxicol. Chern. 14:523-531; 1995.
Laher, 1.M.; Rigler, M.W.; Vetter, R.D.; Barrowman, 1.A.; Patton, 1.S. Similar bioavailability and lymphatic transport of benzo(a)pyrene when administered to rats in
different amounts of dietary fat. 1. Lipid Res. 25: 1337-1342: 1984.
Lake, 1.L.; Rubenstein, N.T.; Lee, H .. II; Lake, c.A.: Heltshe, J.; Pavignano, S. Equilibrium
partitioning and bioaccumulation of sediment-associated contaminants by infaunal organisms. Environ. Toxicol. Chern. 9: 1095-1106: 1990.
Lal, B.; Singh, T.P. Impact of pesticides on lipid metabolism in the freshwater catfish,
Clarias batrachus, during the vitellogenic phase of its annual reproductive cycle. Ecotoxicol. Environ. Safety 13:13-23; 1987.
Landrum. PF. Toxicokinetics of organic xenobiotics in the amphipod, Pontoporeia hoyi:
role of physiological and environmental variables. Aquat. Toxicol. 12:245-271; 1988.
Landrum, P.F.; Dupuis, W.S. Toxicity and toxicokinetics of pentachlorophenol and carbaryl
to Pontoporeia hovi and Mysis relicta. In: Landis, W.G.; Van der Schalie, W. H., eds.
Aquatic Toxicology and Risk Assessment, 13th vol. ASTM STP 1096. Philadelphia:
American Society for Testing and Materials: 1990:p. 278-289.
Landrum, P.F.; Faust, W.R. The role of sediment composition on the bioavailability of
laboratory-dosed sediment-associated contaminants to the amphipod, Diporeia spp.
Chern. Speciat. Bioavail. 6:85-92; 1994.
Landrum, PF.: Faust, W.R. Effect of variation in sediment composition on the uptake rate
coefficient for selected PCB and PAH congeners by the amphipod, Diporeia spp. In:
Mayes, M.A.; Barron, M.G., eds. Aquatic Toxicology and Risk Assessment, vol. 14.
ASTM STP 1124. Philadelphia: American Society for Testing and Materials; 1991 :p.
263-279.
Landrum, P.F.; Robbins, 1.A. Bioavailability of sediment associated contaminants: a review
and simulation model. In: Baudo, R.; Giesy, 1.P.; Muntau. H., eds. Sediments: Chemistry
and Toxicity of In-Place Pollutants. Chelsea. MI: Lewis Publishers; 1990:p. 237-263.
Landrum, P.F.; Dupuis, W.S.; Kukkonen, 1. Toxicity and toxicokinetics of sedimentassociated pyrene in Diporeia spp.: examination of equilibrium partitioning theory and
residue effects for assessing hazard. Environ. Toxico!. Chern. 13: 1769-1780; 1994.
Landrum, PF.; Lee. H.; Lydy, M.1. Toxicokinetics in aquatic systems: model comparisons
and use in hazard assessment. Environ. Toxicol. Chern. II: 1709-1725; 1992.
Landrum, P.E; Eadie, B.I.: Faust, W.R. Toxicokinetics and toxicity of a mixture of
sediment-associated polycyclic aromatic hydrocarbons to the amphipod Diporeia spp.
Environ. Toxico!. Chern. 10:35-46; 1991.
Lassiter, R.R.; Hallam, T.G. Survival of the fattest: Implications for acute effects of
lipophilic chemicals on aquatic populations. Environ. Toxico!. Chern. 9:585-595; 1990.
LeBlanc, G.A. Trophic level differences in bioconcentration of chemicals: Implications in
assessing environmental biomagnification. Environ. Sci. Techno!. 29: 154-160; 1995.
Lee, H., II. Models. muddles and mud: predicting bioaccumulation of sediment associated
pollutants. In: Burton, G.A., ed. Sediment Toxicity Assessment. Ann Arbor, MI: Lewis
Publishers; 1992:p. 73-94.
P.F. Landrum and S.w. Fisher
Kucklick, 1.R.; Bidelman, T.F.: McConnell, L.L.; Walla, M.D.; Ivanov, G.P Organochlorines in the water and biota of Lake Baikal, Siberia. Environ. Sci. Techno!. 28:3137; 1994.
Kukkonen, 1.; Landrum, P.F. Distribution of organic carbon and organic xenobiotics among
different particle-size fractions in sediments. Chemosphere 32: 1063-1076; 1996.
Kukkonen, 1.: Landrum. PF. Effects of sediment-bound polydimethylsiloxane on the bioavailability and distribution of benzo(a)pyrene in lake sediment to Lumbriculus variegatus. Environ. Toxicol. Chern. 14:523-531; 1995.
Laher, 1.M.; Rigler, M.W.; Vetter, R.D.; Barrowman, 1.A.; Patton, 1.S. Similar bioavailability and lymphatic transport of benzo(a)pyrene when administered to rats in
different amounts of dietary fat. 1. Lipid Res. 25: 1337-1342: 1984.
Lake, 1.L.; Rubenstein, N.T.; Lee, H .. II; Lake, c.A.: Heltshe, J.; Pavignano, S. Equilibrium
partitioning and bioaccumulation of sediment-associated contaminants by infaunal organisms. Environ. Toxicol. Chern. 9: 1095-1106: 1990.
Lal, B.; Singh, T.P. Impact of pesticides on lipid metabolism in the freshwater catfish,
Clarias batrachus, during the vitellogenic phase of its annual reproductive cycle. Ecotoxicol. Environ. Safety 13:13-23; 1987.
Landrum. PF. Toxicokinetics of organic xenobiotics in the amphipod, Pontoporeia hoyi:
role of physiological and environmental variables. Aquat. Toxicol. 12:245-271; 1988.
Landrum, P.F.; Dupuis, W.S. Toxicity and toxicokinetics of pentachlorophenol and carbaryl
to Pontoporeia hovi and Mysis relicta. In: Landis, W.G.; Van der Schalie, W. H., eds.
Aquatic Toxicology and Risk Assessment, 13th vol. ASTM STP 1096. Philadelphia:
American Society for Testing and Materials: 1990:p. 278-289.
Landrum, P.F.; Faust, W.R. The role of sediment composition on the bioavailability of
laboratory-dosed sediment-associated contaminants to the amphipod, Diporeia spp.
Chern. Speciat. Bioavail. 6:85-92; 1994.
Landrum, PF.: Faust, W.R. Effect of variation in sediment composition on the uptake rate
coefficient for selected PCB and PAH congeners by the amphipod, Diporeia spp. In:
Mayes, M.A.; Barron, M.G., eds. Aquatic Toxicology and Risk Assessment, vol. 14.
ASTM STP 1124. Philadelphia: American Society for Testing and Materials; 1991 :p.
263-279.
Landrum, P.F.; Robbins, 1.A. Bioavailability of sediment associated contaminants: a review
and simulation model. In: Baudo, R.; Giesy, 1.P.; Muntau. H., eds. Sediments: Chemistry
and Toxicity of In-Place Pollutants. Chelsea. MI: Lewis Publishers; 1990:p. 237-263.
Landrum, P.F.; Dupuis, W.S.; Kukkonen, 1. Toxicity and toxicokinetics of sedimentassociated pyrene in Diporeia spp.: examination of equilibrium partitioning theory and
residue effects for assessing hazard. Environ. Toxico!. Chern. 13: 1769-1780; 1994.
Landrum, PF.; Lee. H.; Lydy, M.1. Toxicokinetics in aquatic systems: model comparisons
and use in hazard assessment. Environ. Toxicol. Chern. II: 1709-1725; 1992.
Landrum, P.E; Eadie, B.I.: Faust, W.R. Toxicokinetics and toxicity of a mixture of
sediment-associated polycyclic aromatic hydrocarbons to the amphipod Diporeia spp.
Environ. Toxico!. Chern. 10:35-46; 1991.
Lassiter, R.R.; Hallam, T.G. Survival of the fattest: Implications for acute effects of
lipophilic chemicals on aquatic populations. Environ. Toxico!. Chern. 9:585-595; 1990.
LeBlanc, G.A. Trophic level differences in bioconcentration of chemicals: Implications in
assessing environmental biomagnification. Environ. Sci. Techno!. 29: 154-160; 1995.
Lee, H., II. Models. muddles and mud: predicting bioaccumulation of sediment associated
pollutants. In: Burton, G.A., ed. Sediment Toxicity Assessment. Ann Arbor, MI: Lewis
Publishers; 1992:p. 73-94.
