Ackman, R.G., P.M. Jangaard, R.D. Burgher, M.L. Hughes,
and W.A. MacCallum. 1963. Observations on the oil and component
fatty acids of the oil from Newfoundland capelin. J. Fish. Res.
Bd. Canada 20:591-596.
Ackman, R.G., and C.A. Eaton. 1966. Some
commercial Atlantic herring oils; fatty acid composition. Journal
of the Fisheries Research Board of Canada 23:991-1006.
Ackman, R.G., P.J. Ke, W.A. MacCallum, and D.R. Adams. 1969. Newfoundland
capelin lipids: fatty acid composition and alterations during frozen
storage. Journal Fisheries Research Board of Canada 26(8):2037-2060.
Agnisola, C., D.J. McKenzie, E.W. Taylor, C.L. Bolis
and B. Tota. 1996. Cardiac performance in relation to oxygen supply
varies with dietary lipid composition in sturgeon. Am. J. Physiol.
271 R:417-425.
Aidos, I., S. Lourenco, A. Van Der Padt, J.B. Luten,
and R.M. Boom. 2002. Stability of crude herring oil produced
from fresh byproducts: Influence of temperature during storage. Journal
of Food Science 67(9):3314-3320.
Aitchison, J. 1992. On criteria for measures
of compositional difference. Mathematical Geology 24:365-379.
Anelich, L.E., L.C. Hoffman, and M.J. Swanepoel. 2001. The
influence of packaging methodology on the microbiological and fatty
acid profiles of refrigerated African catfish fillets. Journal
of Applied Microbiology 91:22-28.
Barros P., and J.C. Holst. 1995. Identification of geographic
origin of Norwegian spring-spawning herring (Clupea harengus L.)
based on measurements of scale annuli. ICES J. Mar. Sci. 52: 863-872.
Begg, G.A., K.D. Friedland, and J.B. Pearce. 1999. Stock
identification and its role in stock assessment and fisheries management:
an overview. Fisheries Research 43:1-8.
Bell, J.G., J.R. Dick, A.H. McVicar, J.R. Sargent and
K.D. Thompson. 1993. Dietary sunflower, linseed and fish oils
affect phospholipid fatty acid composition, development of cardiac
lesions, phospholipase activity and eicosanoid production in Atlantic
salmon (Salmo salar). Prostaglandins, Leukotrienes, Essential
Fatty Acids 49:665-673.
Bembo, D.G., G.R. Carvalho, N. Cingolani, and T.J. Pitcher. 1996. Electrophoretic
analysis of stock structure in Northern Mediterranean anchovies, Engraulis
encrasicolus. ICES Journal of Marine Science 53:115-128.
Budge, S.M., S.J. Iverson, W.D. Bowen, and R.G. Ackman. 2002. Among-
and within-species variability in fatty acid signatures of marine fish
and invertebrates on the Scotian Shelf, Georges Bank, and Southern
Gulf of St. Lawrence. Can. J. Fish. Aquat. Sci. 59:886-898.
Caballero, M.J., A. Obach, G. Rosenlund, D. Montero,
M. Gisvold, M.S. Izquierdo. 2002. Impact of different dietary
lipid sources on growth, lipid digestibility, tissue fatty acid composition
and histology of rainbow trout, Oncorhynchus mykiss. Aquaculture
214:253-271.
Campana, S.E. and J.D. Neilson. 1985. Microstructure
of fish otoliths. Can. J. Fish. Aquat. Sci:42: 1014-1032.
Campana, S.E. and J.A. Gagne. 1995. Cod
stock discrimination using ICPMS elemental assays of otoliths. Pages
671-691 In: Secor D.H., J.M. Dean , S.E. Campana (eds), New developments
in fish otolith research. University of South Carolina Press,
Columbia.
Castell, J.D., L.D. Boston, R.J. Miller, and T. Kenchington. 1995. The
potential identification of the geographic origin of lobster eggs from
various wild stocks based on fatty acid composition. Can. J.
Fish. Aquat. Sci. 52:1135-1140.
Cordier, M., G. Brichon, J-M. Weber, and G. Zwingelstein. 2002. Changes
in the fatty acid composition of phospholipids in tissues of farmed
sea bass (Dicentrarchus labrax) during an annual cycle. Roles
of environmental temperature and salinity. Comparative Biochemistry
and Physiology Part B 133:281-288.
Cushing, D.H. and Burd, A.C. 1957. On herring
of the southern North Sea. III. Fish. Invest. Ser. II, Vol. 10,
31 pp.
Czesny, S., K. Dabrowski, J.E. Christensen, J.Van Eenennaam,
and S. Doroshov. 2000. Discrimination of wild and domestic origin
of sturgeon ova based on lipids and fatty acid analysis. Aquaculture
189:145-153.
Das, U.N. 2001. Beneficial effect(s) of n-3 fatty acids
in cardiovascular diseases: but, why and how? Prostaglandins Leukot
Essent Fatty Acids.63:351-62.
Fischer, J., R.L. Haedrich, and P.R. Sinclair. 1997. Interecosystem
impacts of forage fish fisheries. Pages 311-321 in Forage
fishes in marine ecosystems. Proceedings of the International
Symposium on the role of forage fishes in marine ecosystems. Alaska
Sea Grant College Program Report No. 97-01. University of Alaska
Fairbanks, 1997.
Galvin, P., McKinnell, S., Taggart, J.B., Ferguson, A.,
O’Farrell, M., and Cross, T.G., 1995. Genetic stock identification
of Atlantic salmon using single locus minisatellite DNA profiles. J.
Fish Biol. 47:186-199.
Grahl-Nielsen, O. and K.A. Ulvund. 1990. Distinguishing
populations of herring by chemometry of fatty acids. American
Fisheries Society Symposium 7:566-571.
Grahl-Nielsen, O. and O. Mjaavatten. 1992. Discrimination
of striped bass stocks: A new method based on chemometry of the fatty
acid profile in heart tissue. Trans. Amer. Fish. Soc. 121:307-314.
Grahl-Nielsen, O., O. Mjaavatten, and E. Tvedt. 1993. Distinguishing
between different populations of harp seal (Phoca groenlandica)
by chemometry of the fatty acid profiles in the jaw bone. Can.
J. Fish. Aquat. Sci. 50:1400-1404.
Grant W.S. and F.M. Utter. 1984. Biochemical
population genetics of Pacific herring (Clupea pallasi). Canadian
Journal of Fisheries and Aquatic Sciences 41: 856-864.
Grisdale-Helland, B., B. Ruyter, G. Rosenlund,
A Obach, S.J. Helland, M.G. Sandberg, H. Standal and C. Rosjo. 2002.
Influence of high contents of dietary soybean oil on growth, feed utilization,
tissue fatty acid composition, heart histology and standard oxygen
consumption of Atlantic salmon (Salmo salar) raised at two
temperatures. Aquaculture 207:311-329.
Gunn, J.S., I.R. Harrowfield, C.H. Proctor, and R.E.
Thresher. 1992. Electron microprobe microanalysis
of fish otoliths – evaluation of techniques for studying age
and stock discrimination. J. Exp. Mar. Biol. Ecol. 158: 1-36.
Hagen, P., K. Munk, B. Van Alen, and B. White. 1995. Thermal
mark technology for inseason fisheries management: A case study. Alaska
Fisheries Research Bulletin 2(2):143-155.
Hay, D. and P. McCarter. 1997. Larval distribution,
abundance, and stock structure of British Columbia herring. Journal
of Fish Biology 51(Suppl. A): 155-175.
Hay, D.E. and S.M. McKinnell. 2002. Tagging
along: association among individual Pacific herring (Clupea
pallasi) revealed by tagging. Can. J. Fish. Aquat. Sci.
59:1960-1968.
Hazel, J.R. 1984. Effects of temperature
on the structure and metabolism of cell membranes in fish. American
Journal of Physiology 246:460-470.
Henderson, R.J., and D.R. Tocher. 1987. The
lipid composition and biochemistry of freshwater fish. Progress
in lipid research: 281-347.
Hourston, A.S. 1982. Homing by Canada’s
west coast herring to management units and divisions as indicated by
tag recoveries. Can. J. Fish. Aquatic Sci 39(10): 1414-1422.
Huberty, C. J. 1994. Applied Discriminant Analysis.
Wiley Series in Probability and Mathematical Statistics. John Wiley
and Sons, Inc. New York.
Huse, G., S. Railsback, and A. Ferno. 2002. Modelling
changes in migration pattern of herring: collective behavior and numerical
domination. Journal of Fish Biology 60:571-582.
Iverson, S.J., K.J. Frost, and L.F. Lowry. 1997. Fatty
acid signatures reveal fine scale structure of foraging distribution
of harbor seals and their prey in Prince William Sound, Alaska. Mar.
Ecol. Prog. Ser. 151: 255-271.
Iverson, S.J., J.E. McDonald, Jr., and L.K. Smith. 2001. Changes
in the diet of free-ranging black bears in years of contrasting food
availability revealed through milk fatty acids. Canadian Journal
of Zoology 79:2268-2279.
Jobling, M., A.V. Larsen, B. Andreassen, T. Sigholt,
and R.L. Olsen. 2002. Influence of dietary shift on temporal
changes in fat deposition and fatty acid composition of Atlantic salmon
post-smolt during the early phase of seawater rearing. Aquaculture
Research 33:875-889.
Joensen, H. and O. Grahl-Nielsen. 2000. Discrimination
of Sebastes viviparus, Sebastes marinus, and Sebastes
mentella from Faroe Islands by chemometry of the fatty acid profile
in the heart and gill tissues and in the skull oil. Comparative
Biochemistry and Physiology, Part B 126:69-79.
Joensen, H., P. Steingrund, I. Fjallstein, and O. Grahl-Nielsen. 2000. Discrimination
between two reared stocks of cod (Gadus morhua) from the Faroe
Islands by chemometry of the fatty acid composition in the heart tissue. Marine
Biology 136: 573-580.
Joyce, T.L., D.G. Evans, and R. Riffe. 1996. Otolith
marking of pink salmon in Prince William Sound hatcheries, 1995, Exxon
Valdez Oil Spill Restoration Project Annual Report (Restoration Project
95320C), Alaska Department of Fish and Game, Commercial Fisheries Management
and Development Division, Cordova, AK.
Kiessling, A., J. Pickova, L. Johansson, T. Åsgård,
T. Storebakken, K-H. Kiessling. 2001. Changes in fatty
acid composition in muscle and adipose tissue of farmed rainbow trout
(Oncorhynchus mykiss) in relation to ration and age. Food
Chemistry 73:271-284.
Kirsch, P.E., S.J. Iverson, W.D. Bowen, S.R. Kerr, and
R.G. Ackman. 1998. Dietary effects on the fatty acid signature
of whole Atlantic cod (Gadus morhua). Can. J. Fish.
Aquat. Sci. 55:1378-1386.
Kreps, E.M., M.A. Chebotareva and V.N. Akulin. 1969. Fatty acid composition
of the brain and body phospholipids of the anadromous salmon, Oncorhynchus
nerka, from fresh-water and marine habitat. Comp. Biochem. Physiol.
31:419-430.
Letcher, B.H., and T.L. King. 1999. Targeted
stock identification using multilocus genotype ‘familyprinting’. Fisheries
Research 43:99-111.
Logerwell, E.A., and N.B. Hargreaves. 1997. Seabird
impacts on forage fish: Population and behavioral interactions. Pages
191-195 In: Forage fishes in marine ecosystems. Proceedings
of the International Symposium on the role of forage fishes in marine
ecosystems. Alaska Sea Grant College Program Report No. 97-01. University
of Alaska Fairbanks, 1997.
MacKenzie, K., and P. Abaunza. 1998. Parasites
as biological tags for stock discrimination of marine fish: a guide
to procedures and methods. Fisheries Research 38:45-56.
McKenzie, D.J. 2001. Effects of dietary fatty acids on
the respiratory and cardiovascular physiology of fish. Comp. Bio. Physio.
Pt A. 128:607-627.
McQuinn, I.H. 1997. Metapopulations and the
Atlantic herring. Reviews in Fish Biology and Fisheries 7(3):297-329.
Mjaavatten, O., C. Levings, and P. Poon. 1998.
Variation in the fatty acid composition of juvenile chinook and coho
salmon from Fraser river estuary determined by multivariate analysis;
role of environment and genetic origin. Comparative Biochemistry
and Physiology 120B: 291-309.
Mundy, P.R. 1996. Sustainable management
of mixed stock salmon fisheries: The contemporary paradigm. Fisheries
and Aquatic Sciences, Lake Oswego, Oregon, USA. April
8, 1996.
Navarro, J.C., L.A. McEvoy, F. Amat, and J.R. Sargent. 1995. Effects
of diet on fatty acid composition of body zones in larvae of the sea
bass Dicentrarchus labrax: a chemometric study. Mar.
Biol. 124:177-183.
O’Connell, M., M.C. Dillon, J.M. Wright, P. Bentzen,
S. Merkouris, and J. Seeb. 1998. Genetic structuring among
Alaskan Pacific herring populations identified using microsatellite
variation. Journal of Fish Biology 53:150-163.
Oliva, M.E., and I. Ballón. 2002. Metazoan
parasites of the Chilean hake Merluccius gayi gayi as a tool
for stock discrimination. Fisheries Research 56:313-320.
Otis, E.O., W.R. Bechtol, and W.A. Bucher. 1998. Coping
with a challenging stock assessment situation: the Kamishak Bay sac-roe
herring fishery. Pages 557-573 in Fishery Stock Assessment
Models, ed. F. Funk, T.J. Quinn II, J. Heifetz, J.N. Ianelli, J.E.
Powers, J.F. Schweigert, P.J. Sullivan, and C.-I. Zhang, Alaska Sea
Grant College Program Report No. AK-SG-98-01, University of Alaska
Fairbanks.
Otis, E.O., and R. Heintz. 2003. Evaluation
of two methods to discriminate Pacific herring (Clupea pallasi)
stocks along the northern Gulf of Alaska. Exxon Valdez Oil Spill
Restoration Project Final Report (Restoration Project 02538), Alaska
Department of Fish and Game, Division of Commercial Fisheries, Homer,
Alaska. 48 pp.
Overholtz, W.J. 2002. The Gulf of Maine-Georges
Bank Atlantic herring (Clupea harengus): spatial pattern analysis
of the collapse and recovery of a large marine fish complex. Fisheries
Research 57:237-254.
Pawson, M.G., and S. Jennings. 1996. A critique
of methods for stock identification in marine capture fisheries. Fisheries
Research 25:203-217.
Peng, J., Y. Larondelle, D. Pham, R.G. Ackman, and X.
Rollin. 2003. Polyunsaturated fatty acid profiles of whole
body phospholipids and triacylglycerols in anadromous and landlocked
Atlantic salmon (Salmo salar L.) fry. Comparative Biochemistry
and Physiology Part B 134:335-348.
Pickova, J., D.C. Paresh, P. Larsson, and A. Kiessling. 1997. Early
embryonic cleavage pattern, hatching success, and egg-lipid fatty acid
composition: comparison between two cod (Gadus morhua) stocks. Can.
J. Fish. Aquat. Sci. 54:2410-2416.
Radtke, R.L. and D.J. Shafer. 1992. Environmental
sensitivity of fish otolith microchemistry. Aust. J . Mar. Freshwater
Res. 43: 935-951.
Rajasilta, M. 1992. Relationship between
food, fat, sexual maturation, and spawning time of Baltic herring (Clupea
harengus membras) in the Archipelago Sea. Can. J. Fish.
Aquat. Sci. 49: 644-654.
Rollin, X., J. Peng, D. Pham, R. Ackman, and Y. Larondelle. 2003. The
effects of dietary lipid and strain difference on polyunsaturated fatty
acid composition and conversion in anadromous and landlocked salmon. Comparative
Biochemistry and Physiology Part B 134:349-366.
Ross, W.R. and A. Packard. 1990. Use of scale
patterns and shape as discriminators between wild and hatchery striped
bass stocks in California. In N.C. Parker, A.E. Giorgi, R.C.
Heidinger, D.B. Jester, Jr., E.D. Prince, and G.A. Winans (eds.) Fish
Marking Techniques, American Fisheries Society Symposium 7. 879
pp.
Rowell, K. A. 1981. Separation of spawning stocks of
Bering Sea herring based on scale growth patterns. In B.R. Melteff
and V.G. Westpestad (ed.) Proceedings Alaska herring symposium. Alaska
Sea Grant Report No. 80-4. Fairbanks, Alaska.
Schweigert, J.F., and R.E. Withler. 1990. Genetic
differentiation of Pacific herring based on enzyme electrophoresis
and mitochondrial DNA analysis. In N.C. Parker, A.E. Giorgi,
R.C. Heidinger, D.B. Jester, Jr., E.D. Prince, and G.A. Winans (eds.)
Fish Marking Techniques, American Fisheries Society Symposium 7. 879
pp.
Schweigert, J.F. 1990. Comparison of
morphometric and meristic data against truss networks for describing
Pacific herring stocks. In N.C. Parker, A.E. Giorgi, R.C.
Heidinger, D.B. Jester, Jr., E.D. Prince, and G.A. Winans (eds.) Fish
Marking Techniques, American Fisheries Society Symposium 7. 879
pp.
Schweigert, J.F. 1997. Role of Pacific herring
in the British Columbia marine ecosystem. Pages 655-681 in Forage
fishes in marine ecosystems. Proceedings of the International
Symposium on the role of forage fishes in marine ecosystems. Alaska
Sea Grant College Program Report No. 97-01. University of Alaska
Fairbanks, 1997.
Secor, D.H. 1992. Application
of otolith microchemistry analysis to investigate anadromy in Chesapeake
Bay striped bass Morone saxatilis. Fish. Bull. 90: 798-806.
Smith, P.J., and A. Jamieson. 1986. Stock
discreteness in herrings: A conceptual revolution. Fisheries
Research 4:223-234.
Stenslokken K.O., L. Sundin, and G.E. Nilsson. 2002. Cardiovascular
effects of prostaglandin F(2 alpha) and prostaglandin E(2) in Atlantic
cod (Gadus morhua). J Comp Physiol [B] 172:363-369.
Stephenson, R.L. 1999. Stock complexity in
fisheries management: a perspective of emerging issues related to populations
subunits. Fisheries Research 43:247-249.
Swain, D.P., and C.J. Foote. 1999. Stocks
and chameleons: the use of phenotypic variation in stock identification. Fisheries
Research 43:113-128.
Tanasichuk, R.W., D.M. Ware, W. Shaw, and G.A. McFarlane. 1991. Variations
in diet, daily rations, and feeding periodicity of Pacific hake (Merluccius
productus), and spiny dogfish (Squalus acanthias) off
the lower west coast of Vancouver Island. Can. J. Fish. Aquat.
Sci. 48: 2118-2128.
Tester, A.L. 1949. Populations of herring
(Clupea pallasi) in the coastal waters of British Columbia. J.
Fish. Res. Board Can. 7:403-420.
Thomassen, M., and C. Røsjø. 1989. Different
fats in feed for salmon: influence on sensory parameters, growth rate
and fatty acids in muscle and heart. Aquaculture 79:129-135.
Viga, A., and O. Grahl-Nielsen. 1990. Genotypic
and phenotypic fatty acid composition in the tissues of salmon, Salmo
salar. Comp. Biochem. Physiol. 96B: 721-727.
Waldman, J.R. 1999. The importance of comparative
studies in stock analysis. Fisheries Research 43: 237-246.
Waples, R. S. 1998. Separating the wheat from the chaff:
patterns of genetic differentiation in high gene flow species. Journal
of Heredity 89:438-450.
Westpestad, V.G. and E. Moksness. 1989. Observations
on growth and survival during the early life history of Pacific herring Clupea
pallasi from Bristol Bay, Alaska in a marine mesocosm. Fishery
Bulletin 88(1):191-200.
Wheeler, J.P. and G.H. Winters. 1984. Homing
of Atlantic herring (Clupea harengus harengus) in Newfoundland
waters as indicated by tagging data. Can. J. Fish. Aquatic Sci.
41(1): 108-117.