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866                                                        The Toxicology of Fishes


                       Fox, G. A. (1991). Practical causal inference for ecoepidemiologists. J. Toxicol. Environ. Health, 33, 359–373.
                       Gassmann, M., Kvietikova, I., Rolfs, A., and  Wenger, R. H. (1997). Oxygen- and dioxin-regulated gene
                          expression in mouse hepatoma cells. Kidney Int., 51, 567–574.
                       Giesy, J. P., Newsted, J., and Garling, D. L. (1986). Relationships between chlorinated hydrocarbon concen-
                          trations and rearing mortality of Chinook salmon (Oncorhynchus tschawytscha) eggs from Lake Michigan.
                          J. Great Lakes Res., 12, 82–98.
                       Giesy, J. P., Ludwig, J. P., and Tillitt, D. E. (1994). Deformities in birds of the Great Lakes region: assigning
                          causality. Environ. Sci. Technol., 28(3), 128A–135A.
                       Giesy, J. P., Maybury, S. A., Kannan, K., Jones, P. D., Newsted J. L., and Coady, K. (2006). Perfluorinated
                          compounds in the North American Great Lakes, in Handbook of Environmental Chemistry, Hites, R., Ed.,
                          Springer-Verlag, Heidelberg, pp. 393–438.
                       Gilbert, N. L., Cloutier, M. J., and Spear, P. A. (1995). Retinoic acid hydroxylation in rainbow trout (Onco-
                          rhynchus mykiss) and the effect of a coplanar PCB, 3,3′,4,4′-tetrachlorobiphenyl. Aquat. Toxicol.,  32,
                          177–187.
                       Gilbertson, M., Kubiak,  T., Ludwig, J., and Fox, G. (1991). Great Lakes embryo mortality, edema, and
                          deformities syndrome (GLEMEDS) in colonial fish-eating waterbirds: similarity to chick-edema disease.
                          J. Toxicol. Environ. Health, 33, 455–520.
                       Goldberg, E. D. (1963).  Radioactive Dating.  International Atomic  Energy Agency,  Vienna, Austria,  pp.
                          121–131.
                       Golling, G., Amsterdam, A., Sun, Z., Antonelli, M., Maldonado, E., Chen, W., Burgess, S., Haldi, M., Artzt,
                          K., Farrington, S., Lin, S. Y., Nissen, R. M., and Hopkins, N. (2002). Insertional mutagenesis in zebrafish
                          rapidly identifies genes essential for early vertebrate development. Nat. Genet., 31, 135–140.
                       Gooch, J. W. and Matsumura, F. (1985). Evaluation of toxic components of toxaphene in Lake Michigan lake
                          trout. J. Agric. Food Chem., 33, 844–848.
                       Gooch, J. W., Elskus, A. A., Kloepper-Sams, P. J., Hahn, M. E., and Stegeman, J. J. (1989). Effects of ortho-
                          and non-ortho-substituted polychlorinated biphenyl congeners on the hepatic monooxygenase system in
                          scup (Stenotomus chrysops). Toxicol. Appl. Pharmacol., 98, 422–433.
                       Goodyear, C. D., Edsall, T. A., Ormsby-Dempsey, D. M., Moss, G. D., and Polanski, P. E. (1982). Atlas of
                          the Spawning and Nursery Areas of the Great Lakes Fishes. Vol. IV. Lake Michigan, FWS/OBS-82/52.
                          U.S. Fish and Wildlife Service, Washington, D.C.
                       Grinwis, G. C. M., Bessilink, H. T., van den Brandhof, E. J., Bulder, A. S., Engelsma, M. Y., Kuiper, R. V.,
                          Wester, P. W., Vaal, M. A., Vethaak, A. D., and Vos, J. G. (2000). Toxicity of TCDD in European flounder
                          (Platichthys flesus) with emphasis on histopathology and cytochrome P450 1A induction in several organ
                          systems. Aquat. Toxicol., 50, 387–401.
                       Gu, Y. Z., Hogenesch, J. B., and Bradfield, C.A. (2000). The PAS superfamily: sensors of environmental and
                          developmental signals. Annu. Rev. Pharmacol. Toxicol., 40, 519–561.
                       Guiney, P., D., Cook, P. M., Casselman, J. M., Fitzsimons, J. D., Simonin, H. A., Zabel, E. W., and Peterson,
                          R. E. (1996). Assessment of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD)-induced sac fry mortality in
                          lake trout (Salvelinus namaycush) from different regions of the Great Lakes. Can. J. Fish. Aquat. Sci.,
                          53, 2080–2092.
                       Guiney, P. D., Smolowitz, R. M., Peterson, R. E., and Stegeman, J. J. (1997). Correlation of 2,3,7,8-tetrachlo-
                          rodibenzo-p-dioxin induction of cytochrome P4501A in vascular endothelium with toxicity in early life
                          stages of lake trout. Toxicol. Appl. Pharmacol., 143, 256–273.
                       Guiney, P. D., Walker, M. K., Spitsbergen, J. M., and Peterson, R. E. (2000). Hemodynamic dysfunction and
                          cytochrome P4501A mRNA expression induced by 2,3,7,8-tetrachlorodibenzo-p-dioxin during embryonic
                          stages of lake trout development. Toxicol. Appl. Pharmacol., 168, 1–14.
                       Hagedorn, M., Kleinhans, F. W, Artemov, D., and Pilatus, U. (1998). Characterization of a major permeability
                          barrier in the zebrafish embryo. Biol. Reprod., 59, 1240–1250.
                       Hahn, M. E. (2002). Aryl hydrocarbon receptors: diversity and evolution. Chem.-Biol. Interact., 141, 131–160.
                       Hahn, M. E. and Hestermann, E. V. (2008). Receptor-mediated mechanisms of toxicity, in The Toxicology of
                          Fishes, Di Giulio, R. T. and Hinton, D. E., Eds., Taylor & Francis, Boca Raton, FL, pp. 235–272.
                       Hahn, M. E. and Karchner, S. I. (1995). Evolutionary conservation of the vertebrate Ah (dioxin) receptor:
                          amplification and sequencing of the PAS domain of a teleost Ah receptor cDNA. J. Biochem., 310, 383–387.
                       Hahn, M. E., Poland,  A., Glover, E., and Stegeman, J. J. (1992).  The  Ah receptor in marine animals:
                          phylogenetic distribution and relationship to P4501A inducibility. Mar. Environ. Res., 34, 87–92.
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