Browse the brown trout reference database (contributions and corrections are welcome)
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  • Naesje, T. F., O. T. Sandlund and R. Saksgard (1998). Selective predation of piscivorous brown trout (Salmo trutta L.) on polymorphic whitefish (Coregonus lavaretus L.). Ergebnisse der Limnologie 50: 283-294.
  • Nakari, T. (1997). Seasonal changes in fish biomarkers. Annales Zoologici Fennici 34 (2): 115-126.
  • Nall, G. H. (1930). The life of the sea trout. London, Seeley, Service & Co. Ltd.
  • Nall, G. H. and M. H. G. Fell (1935). Sea trout of some Lake District rivers. The Salmon and Trout Magazine. 79: 157-173.
  • Naslund, I. (1989). Effects of habitat improvement on the brown trout Salmo trutta L. population of a Northern Swedish stream. Aquacult Fish Manage 20 (4): 463-474.
  • Naslund, I. (1992). Survival and distribution of pond and hatchery-reared 0+ brown trout Salmo trutta L. released in a Swedish stream. Aquacult Fish Manage 23 (4): 477-488.
  • Naslund, I. (1993). Migratory behaviour of brown trout, Salmo trutta L.: Importance of genetic and environmental influences. Ecology of Freshwater Fish 2 (2): 51-57.
  • Naslund, I., E. Degerman and F. Nordwall (1998). Brown trout (Salmo trutta) habitat use and life history in Swedish streams: possible effects of biotic interactions. Canadian Journal of Fisheries and Aquatic Sciences 55 (4): 1034-1042.
  • Naslund, I. and J. Henricson (1996). Growth and sexual maturation of six stocks of brown trout Salmo trutta L. in culture. Aquaculture Research 27 (11): 815-822.
  • Nehring, R. B. and R. M. Anderson (1993). Determination of population limiting critical salmonid habitats in Colorado streams using the physical habitat simulation system. Rivers 4 (1): 1-19.
  • Nehring, R. B., K. G. Thompson and S. Hebein (1998). Impacts of whirling disease on wild trout populations in Colorado. Transactions of the North American Wildlife and Natural Resources Conference. K. Wadsworth. Washington, Wildlife Management Institute: 82-94.
  • Nelson, F. A. (1986). Effect of flow fluctuations on brown trout in the Beaverhead River Montana Usa. N Am J Fish Manage 6 (4): 1987).
  • Neophitou, C. (1986). Growth and population structure of brown trout Salmo trutta fario in homeothermous stream conditions from a management point of view. Aquacult Fish Manage 17 (4): 299-312.
  • Nettles, D. C., J. M. Haynes, R. A. Olson and J. D. Winter (1987). Seasonal movements and habitats of brown trout (Salmo trutta) in South Central Lake Ontario. Journal of Great Lakes Research 13 (2): 168-177.
  • Newman, R. M. (1993). A conceptual model for examining density dependence in the growth of stream trout. Ecology of Freshwater Fish 2 (3): 121-131.
  • Newman, R. M. and T. F. Waters (1984). Size selective predation on Gammarus pseudolimnaeus by trout and sculpins. Ecology 65 (5): 1985).
  • Newman, R. M. and T. F. Waters (1989). Differences in brown trout (Salmo trutta) production among contiguous sections of an entire stream. Canadian Journal of Fisheries and Aquatic Sciences 46 (2): 203-213.
  • Nielsen, E. E., M. M. Hansen and V. Loeschcke (1997). Analysis of microsatellite DNA from old scale samples of Atlantic salmon: A comparison of genetic composition over sixty years. Molecular Ecology, in press. .
  • Nielsen, E. E., M. M. Hansen and K.-L. D. Mensberg (1998). Improved primer sequences for the mitochondrial ND1, ND3/4 and ND5/6 segments in salmonid fishes. Application to RFLP analysis of Atlantic salmon. Journal of Fish Biology, in press .
  • Nielsen, G. (1986). Dispersion of brown trout Salmo trutta L. in relation to stream cover and water depth. Second Symposium On the Ecology of Fluvial Fishes, Lodz, Poland, September 3-6, 1985. Pol Arch Hydrobiol 33 (3-4): 475-488.
  • Nihouarn, A., J. P. Porcher and G. Maisse (1990). Comparison of the performances of two strains of brown trout Salmo trutta L. domestic and hybrid wild X domestic introduced as fry in a brook. Bull Fr Peche Piscic 319: 173-180.
  • Nikinmaa, M., A. Soivio, T. Nakari and S. Lindgren (1983). Hauling stress in brown trout (Salmo trutta) physiological responses to transport in freshwater or saltwater, and recovery in natural brackish water. Aquaculture 34 (1-2): 93-99.
  • Nikolov, I., M. Todorov, J. Stajkov and S. Georgiev (1988). A study of some parameters characterizing semen production and of possibility for cryopreservation of seminal fluid of Salmo trutta fario L. Zhivotnov'D Nauki 25 (7): 85-90.
  • Nilsson, N. A. (1985). Consequences of the rotenone treatment of a subarctic Swedish lake on the fish and zooplankton communities. Inst Freshwater Res Drottningholm Rep 62: xx-xx.
  • Niva, T. (1995). Retention of visible implant tags by juvenile brown trout. Journal of Fish Biology 46 (6): 997-1002.
  • Niva, T. and M. Julkunen (1998). Effect of population fluctuation of vendace (Coregonus albula) on the diet and growth of stocked brown trout (Salma trutta). Ergebnisse der Limnologie 50: 295-303.
  • No, H. K. and T. Storebakken (1991). Pigmentation of rainbow trout with astaxanthin at different water temperatures. Aquaculture 97 (2-3): 203-216.
  • Norberg, B., B. T. Bjornsson, C. L. Brown, U. P. Wichardt, L. J. Deftos and C. Haux (1989). Changes in plasma vitellogenin sex steroids calcitonin and thyroid hormones related to sexual maturation in female brown trout Salmo trutta. Gen Comp Endocrinol 75 (2): 316-326.
  • Norberg, B. and C. Haux (1988). An homologous radioimmunoassay for brown trout (Salmo trutta) vitellogenin. Fish Physiology and Biochemistry 5 (2): 59-68.
  • Nordeng, H. (1994). Life history of Salmonidae in the Salangen watercourse: Summing up of forty years of research. Fauna (Oslo) 47: 8-27.
  • Norrgren, L. and E. Degerman (1993). Effects of different water qualities on the early development of Atlantic salmon and brown trout exposed in-situ. Ambio 22 (4): 213-218.
  • Norris, D. O., S. B. Felt, J. D. Woodling and R. M. Dores (1997). Immunocytochemical and histological differences in the interrenal axis of feral brown trout, Salmo trutta, in metal-contaminated waters. General and Comparative Endocrinology 108 (3): 343-351.
  • Northcote, T. G. (1988). Catching the rise: ascent of experimental approaches in trout stream research and its challenge. Polskie Archiwum Hydrobiologii 35: 231-265.
  • Northcote, T. G. and G. F. Hartman (1988). The biology and significance of stream trout populations (Salmo spp.) living above and below waterfalls. Polskie Archiwum Hydrobiologii 35: 409-442.
  • Novales-Flamarique, I., A. Hendry and C. W. Hawryshyn (1992). The photic environment of a salmonid nursery lake. J Exp Biol 169: 121-141.
  • Nygaard, S. M. R. (1989). Dehydration of rainbow trout following invasions of brown algae. Nor Veterinaertidsskr 101 (1): 26.
  • Nylund, A., S. Alexandersen, J. B. Rolland and P. Jakobsen (1995). Infectious salmon anemia virus (ISAV) in brown trout. Journal of Aquatic Animal Health 7 (3): 236-240.
  • Nylund, A. and P. Jakobsen (1995). Sea trout as a carrier of infectious salmon anaemia virus. Journal of Fish Biology 47 (1): 174-176.
  • Nylund, A., A. M. Kvenseth, B. Krossoy and K. Hodneland (1997). Replication of the infectious salmon anaemia virus (ISAV) in rainbow trout, Oncorhynchus mykiss (Walbaum). Journal of Fish Diseases 20 (4): 275-279.

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