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Toxicokinetics in Fishes 149
Schmieder, P.K. and Henry, T.R. 1988. Plasma binding of 1-butanol, phenol, nitrobenzene and pentachlo-
rophenol in the rainbow trout and rat: a comparative study. Comp. Biochem. Physiol., 91C: 413–418.
Schmieder, P.K. and Weber, L.J. 1992. Blood and water flow limitations on gill uptake of organic chemicals
in the rainbow trout (Oncorhynchus mykiss). Aquat. Toxicol., 24: 103–122.
Schrap, S.M. 1991. Bioavailability of organic chemicals in the aquatic environment. Comp. Biochem. Physiol.,
100C: 13–16.
Schulthess, G. and Hauser, H. 1995. A unique feature of lipid dynamics in small intestinal brush border
membrane. Mol. Membr. Biol., 12: 105–112.
Schultz, I.R. and Hayton, W.L. 1993. Toxicokinetics of trifluralin in rainbow trout. Aquat. Toxicol., 26:
287–306.
Schultz, I.R. and Hayton, W.L. 1994. Body size and the toxicokinetics of trifluralin in rainbow trout. Toxicol.
Appl. Pharmacol., 129: 138–145.
Schultz, I.R. and Hayton, W.L. 1997. Influence of body fat on trifluralin toxicokinetics in rainbow trout
(Oncorhynchus mykiss). Environ. Toxicol. Chem., 16: 997–1001.
Schultz, I.R., Hayton, W.L., and Kemmenoe, B.H. 1995. Disposition and toxicokinetics of diquat in channel
catfish. Aquat. Toxicol., 33: 297–310.
Schultz, I.R., Barron, M.G., Newman, M.C., and Vick, A.M. 1999. Blood flow distribution and tissue allometry
in channel catfish (Ictalurus punctatus). J. Fish Biol., 54: 1275–1286.
Schultz, I.R., Orner, G., Merdink, J.L., and Skilman, A. 2001. Dose–response relationships and pharmacoki-
netics of vitellogenin in rainbow trout after intravascular administration of 17alpha-ethynylestradiol. Aquat.
Toxicol., 51: 305–318.
Schuurmann, G. and Klein, W. 1988. Advances in bioconcentration prediction. Chemosphere, 17: 1551–1574.
Schuytema, G.S., Krawczyk, D.F., Griffis, W.L., Nebeker, A.V., Robideaux, M.L., Brownawell, B.J., and
Westall, J.C. 1988. Comparative uptake of hexachlorobenzene by fathead minnows, amphipods and
oligochaete worms from water and sediment. Environ. Toxicol. Chem., 7: 1035–1045.
2+
Shears, M.A. and Fletcher, G.L. 1983. Regulation of Zn uptake from the gastrointestinal tract of a marine
teleost, the winter flounder, Pseudopleuronectes americanus. Can. J. Fish Aquat. Sci., 40: 197– 205.
Shrable, J.B., Tiemeier, O.W., and Deyoe, L.W. 1969. Effects of temperature on the rate of digestion by
channel catfish. Prog. Fish-Culturist, 31: 131–138.
Smith, L.S. 1989. Digestive functions in teleost fishes, in Fish Nutrition, 2nd ed., Halver, J.E., Ed., Academic
Press, San Diego, CA, pp. 331–421.
Smith, L.S. and Bell, G.R. 1975. A Practical Guide to the Anatomy and Physiology of Pacific Salmon,
Miscellaneous Special Publication 27, Department of the Environment, Fisheries and Marine Service,
Ottawa, Canada.
Solem, L.E., Kolanczyk, R.C., and McKim III, J.M. 2003. An in vivo microdialysis method for the qualitative
analysis of hepatic phase I metabolites of phenol in rainbow trout (Oncorhynchus mykiss). Aquat. Toxicol.,
62: 337–347.
Southworth, G.R., Keffer, C.C., and Beauchamp, J.J. 1980. Potential and realized bioconcentration: a com-
parison of observed and predicted bioconcentration of azaarenes in the fathead minnow (Pimephales
promelas). Environ. Sci. Technol., 14: 1529–1531.
Spacie, A. and Hamelink, J.L. 1982. Alternative models for describing the bioconcentration of organics in
fish. Environ. Toxicol. Chem., 1: 309–320.
Spacie, A., McCarty, L.S., and Rand, G.M. 1995. Bioaccumulation and bioavailability in multiphase systems,
in Fundamentals of Aquatic Toxicology, 2nd ed., Rand, G.M., Ed., Taylor & Francis, New York, pp.
493–521.
Statham, C.N., Melancon, Jr., M.J., and Lech, J.J. 1976. Bioconcentration of xenobiotics in trout bile: a
proposed monitoring aid for some waterborne chemicals. Science, 193: 680–681.
Steffensen, J.F. and Lornholt, J.P. 1992. The secondary vascular system, in Fish Physiology, Vol. 12, Hoar,
W.S., Randall, D.J., and Farrell, A.P., Eds., San Diego, CA: Academic Press, pp. 185–213.
Stehly G.R. and Hayton W.L. 1989a. Disposition of pentachlorophenol in rainbow trout (Salmo gairdneri):
effect of inhibition of metabolism. Aquat. Toxicol., 14: 131–148.
Stehly G.R. and Hayton W.L. 1989b. Errors in the use of the accelerated bioconcentration test, in Aquatic
Toxicology and Environmental Fate, Suter II, G.W. and Lewis, M.A., Eds., American Society for Testing
and Materials, Philadelphia, PA, pp 573–584.
Stehly, G.R. and Hayton, W.L. 1989c. Metabolism of pentachlorophenol by fish. Xenobiotica, 19: 75–81.