quote: Little EE. 1983. Behavioral function of olfaction and taste in fish. In Northcutt RG, Davis RE, eds, Fish Neurobiology. The University of Michigan Press, Ann Arbor, MI, USA, pp 352–376.
Hara TJ. 1986. Role of olfaction in fish behavior. In Pilcher TJ, ed, The Behavior of Teleost Fishes. The Johns Hopkins University Press, Baltimore, MD, USA, pp 152–176.
Washington State Department of Ecology. 1997. 1998 Washington State water quality assessment; Section 305 (b) report. Publication 97-13. Department of Ecology, Olympia, WA, USA.
Alberts B, Bray D, Lewis J, Raff M, Roberts K,Watson JD. 1989. Molecular Biology of the Cell, 2nd ed. Garland, New York, NY, USA, pp 791–836.
Thommesen G. 1983. Morphology, distribution, and specificity of olfactory receptor cells in salmonid fishes. Acta Physiol Scand 117:241–249.
Muller JF, Marc RE. 1984. Three distinct morphological classes of receptors in fish olfactory organs. J Comp Neurol 222:482–495.
Eisthen HL. 1992. Phylogeny of the vomeronasal system and of receptor cell types in the olfactory and vomeronasal epithelia of vertebrates. Microscopy Res Tech 23:1–21.
Chapman GA. 1978. Toxicities of cadmium, copper, and zinc to four juvenile stages of chinook salmon and steelhead. Trans Am Fish Soc 107:841–847.
Thompson BE, Hara TJ. 1977. Chemosensory bioassay of toxicity of lake waters contaminated with heavy metals from mining effluents. Water Pollut Res Can 12:179–189.
Hara TJ. 1981. Behavioral and electrophysiological studies of chemosensory reactions in fish. In Laming PR, ed, Brain Mechanisms of Behaviour in Lower Vertebrates. Cambridge University Press, Cambridge UK, pp 123–136.
Brown SB, Evans RE, Thompson BE, Hara TJ. 1982. Chemoreception and aquatic pollutants. In Hara TJ, ed, Chemoreception in Fishes. Elsevier Scientific, Amsterdam, The Netherlands, pp 363–393.
Riddle DR, Wong LD, Oakley B. 1993. Lectin identification of olfactory receptor neuron subclasses with segregated central projections. J Neurosci 13:3018–3033.
Cancalon P. 1982. Degeneration and regeneration of olfactory cells induced by ZnSO4 and other chemicals. Tissue Cell 14:717–733.
Wood CM, et al. 1997. Environmental toxicology of metals. In Bergman HL, Dorward-King EJ, eds, Reassessment of Metals Criteria for Aquatic Life Protection. Society of Environmental Toxicology and Chemistry, Pensacola, FL, USA, pp 31–56.
Pankow JF. 1991. Aquatic Chemistry Concepts. Lewis, Chelsea, MI, USA, pp 359–389.
Hara TJ. 1994. Olfaction and gustation in fish: An overview. Acta Physiol Scand 152:207–217.
Rehnberg BC, Schreck CB. 1986. Acute metal toxicology of olfaction in coho salmon: Behavior, receptors, and odor-metal complexation. Bull Environ Contam Toxicol 36:579–586.
Zielinski BS, Hara TJ. 1992. Ciliated and microvillar receptor cells degenerate and then differentiate in the olfactory epithelium of rainbow trout following olfactory nerve section. Microscopy Res Tech 23:22–27.
Hara TJ, Brown SB, Evans RE. 1983. Pollutants and chemoreception in aquatic organisms. In Nriagu JO, ed, Aquatic Toxicology.John Wiley & Sons, New York, NY, USA, pp 247–306.
Hasler AD, Scholz AT. 1983. Olfactory Imprinting and Homing in Salmon. Springer-Verlag, Berlin, Germany, p 134.
Scholz AT, Cosse CK, Cooper JC, Horrall RM, Hasler AD, Daly RI, Poff RJ. 1978. Homing of rainbow trout transplanted in Lake Michigan: A comparison of three procedures used for imprinting and stocking. Trans Am Fish Soc 107:439–443
Gratzek, John B. (Editor); Aquariology: The Science of Fish Health Management; Tetra Press Publication, 1992
Love, R. Malcolm; The Chemical Biology of Fishes; Academic Press, 1970
Moyle, Peter B. and Cech Jr., Joseph J.; Fishes: An Introduction to Ichthyology; Prentice-Hall Inc., 2000
Reebs, Stephen; Fish Behavior In The Aquarium And In The Wild; Cornell University Press, 2001
Zupanc, Gunther K. H.; Fish And Their Behavior; Tetra Press, 1985
Stoskopf, Michael K.; Fish Medicine; W. B. Saunders Company, 1993
Brain Res Brain Res Rev. 2001 Aug;36(1):46-59
Buck, L. B. and Axel, R. (1991). A novel multigene family may encode odorant receptors: A molecular basis for odor recognition. Cell 65, 175–187.
Dubin, A. E. and Dionne, V. E. (1994). Action potentials and chemosensitive conductance in the dendrites of olfactory neurons suggest new features for odor transduction. J. Gen. Physiol. 103, 181–201.
Frings, S., Seifert, R., Godde, M. and Kaupp, U. B. (1995). Profoundly different calcium permeation and blockage determine the specific function of distinct cyclic nucleotide-gated channels. Neuron 15, 169–179.
Gold, G. H. (1999). Controversial issues in vertebrate olfactory transduction. Annu. Rev. Physiol. 61, 857–871.
Hallani, M., Lynch, J. W. and Barry, P. H. (1998). Characterization of calcium-activated chloride channels in patches excised from the dendritic knob of mammalian olfactory receptor neurons. J.Membr. Biol. 161, 163–171.
Hamill, O. P., Marty, A., Neher, E., Sakmann, B. and Sigworth, F. J. (1981). Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patches. Pflügers Arch. 391, 85–100.
Kleene, S. J. (1993). Origin of the chloride current in olfactory transduction. Neuron 11, 123–132.
Kleene, S. J. and Pun, R. Y. (1996). Persistence of the olfactory receptor current in a wide variety of extracellular environments. J. Neurophysiol. 75, 1386–1391.
Kurahashi, T. (1989). Activation by odorants of cation-selective conductance in the olfactory receptor cell isolated from the newt. J. Physiol., Lond. 419, 177–192.
Kurahashi, T. and Yau, K.-W. (1993). Co-existence of cationic and chloride components in odorant-induced current of vertebrate olfactory receptor cells. Nature 363, 71–74.
Leinders-Zufall, T., Greer, C. A., Shepherd, G. M. and Zufall, F. (1998). Imaging odor-induced calcium transients in single olfactory cilia: specificity of activation and role in transduction. J. Neurosci. 18, 5630–5639.
Lowe, G., Nakamura, T. and Gold, G. H. (1989). Adenylate cyclase mediates olfactory transduction for a wide variety of odorants. Proc. Natl. Acad. Sci. USA 86, 5641–5645.
Nakamura, T. and Gold, G. H. (1987). A cyclic nucleotidegated conductance in olfactory receptor neurons. Nature 325, 442–444.
Nevitt, G. A., Dittman, A. H., Quinn, T. P. and Moody, W. J., Jr (1994). Evidence for a peripheral olfactory memory in imprinted salmon. Proc. Natl. Acad. Sci. USA 91, 4288–4292.
Nevitt, G. A. and Moody, W. J., Jr (1992). An electrophysiological characterization of ciliated olfactory receptor cells of the coho salmon Oncorhynchus kisutch. J. Exp. Biol. 166, 1–17.
Schild, D. and Restrepo, D. (1998). Transduction mechanisms in vertebrate olfactory receptor cells. Physiol. Rev. 78, 429–466.
Shoji, T., Fujita, K., Ban, M., Hiroi, O., Ueda, H. and Kurihara, K. (1994). Olfactory responses of chum salmon to amino acids are independent for large differences in salt concentrations between fresh and sea water. Chem. Senses 19, 609–615.
Suzuki, N. (1978). Effects of different ionic environments on the responses of single olfactory receptors in the lamprey. Comp. Biochem. Physiol. 61A, 461–467.
Suzuki, N. (1982). Responses of olfactory receptor cells to electrical and chemical stimulation. In Chemoreception in Fishes (ed. T. J. Hara), pp. 93–108. Amsterdam: Elsevier.
Suzuki, N. (1994). IP3-activated ion channel activities in olfactory receptor neurons from different vertebrate species. In Olfaction and Taste XI (ed. K. Kurihara, N. Suzuki and H. Ogawa), pp. 173–177.
Zeiske, E., Theisen, B. and Breucker, H. (1992). Structure, development and evolutionary aspects of the peripheral olfactory system. In Fish Chemoreception (ed. T. J. Hara), pp. 13–39. London: Chapman & Hall.