290
R.G. Ackman
Albers. e.S.; Kattner, G.; Hagen, W. The compositions of wax esters, triacylglycerols and
phospholipids in Arctic and Antarctic copepods: evidence of energetic adaptions. Mar.
Chern. 55:347-358; 1996.
Ando, Y.; Nishimura, K.; Aoyanagi, N.; Takagi, T. Stereospecific analysis of fish oil
triacyl-sn-glycerols. J. Am. Oil. Chern. Soc. 69:417-424; 1992.
Arts, M.T.; Robarts, R.D.; Evans, M.S. Energy reserve lipids of zooplanktonic crustaceans
from an oligotrophic saline lake in relation to food resources and temperature. Can. J.
Fish. Aquat. Sci. 50:2404-2420; 1993.
Bakes, M.J.; Nichols, P.R. Lipid, fatty acid and squalene composition of liver oil from six
species of deep-sea sharks collected in southern Australian waters. Compo Biochem.
Physiol. IIOB:267-275; 1995.
Bautista, M.N.; del Valle, M.J.; Orejana, F.M. Lipid and fatty acid composition of brackishwater and freshwater-reared milkfish (Chanos chanos Froskal). Aquaculture 96:241248; 1991.
Bell, J.G.; Ashton, I.; Secombes, C.J.; Weitzel, B.R.; Dick, J.R.; Sargent, J.R. Dietary lipid
affects phospholipid fatty acid compositions, eicosanoid production and immune function in Atlantic salmon (Salmo salar). Prostaglandins Leukotrienes Essential Fatty Acids
54: 173-182; 1996.
Bell, J.G.; Ghioni, e.; Sargent, J.R. Fatty acid compositions of 10 freshwater invertebrates
which are natural food organisms of Atlantic salmon parr (Salmo salar): a comparison
with commercial diets. Aquaculture 128:301-313; 1994.
Bell, J.G.; Dick, J.R.; McVicar, A.H.; Sargent, J.R.; Thompson, K.D. Dietary suntlower,
linseed and fish oils affect phospholipid fatty acid composition, development of cardiac
lesions, phospholipase activity and eicosanoic production in Atlantic salmon (Salmo
salar). Prostaglandins Leukotrienes Essential Fatty Acids 49:665-673; 1993.
Bell. M.Y.; Sargent, J.R. Fatty acid analyses of phospho glycerides from tissues of the clam
Chlamys islandica (Muller) and the starfish Ctenodiscus crispatus (Retzius) from Balsfjorden, northern Norway. J. Exp. Mar. BioI. Ecol. 87:31-40; 1985.
Bligh, E.G.; Dyer, W.J. A rapid method of total lipid extraction and purification. Can. J.
Biochem. Physiol. 37:911-917; 1959.
Bordier, e.G.; Sellier, N.; Foucault, A.P.; Le Goffic, F. Purification and characterization of
deep sea shark Centrophorus squamosus liver oil I-O-alkylglycerol ether lipids. Lipids
31 :521-528; 1996.
Brosche, T. Methyl enol ethers as artifacts in capillary gas chromatographic profiles of
aldehyde dimethyl acetals. J. Chromatogr. 345:219-227; 1985.
Bruner, K.A.; Fisher, S.W.; Landrum, P.F. The role of the zebra mussel, Dreissena polymorpha, in contaminant cycling; I. The effect of body size and lipid content on the
bioconcentration of PCBs and PAHs. J. Great Lakes Res. 20:725-734; 1994.
Castell, J.D.; Mason, E.G.: Covey, J.F. Cholesterol requirements of juvenile American
lobster (Homaru.l' americanus). J. Fish. Res. Bd. Can. 32:1431-1435; 1975.
Cavaletto, J.F.; Nalepa, T.F.; Dermott, R.; Gardner, W.S.; Quigley, M.A.; Lang, G.A.
Seasonal variation of lipid composition, weight, and length in juvenile Diporeia spp.
(Amphipoda) from Lakes Michigan and Ontario. Can. J. Fish. Aquat. Sci. 53:20442051; 1996.
Cavaletto, J.F.; Vanderploeg, H.A.; Gardner, W.S. Wax esters in two species of freshwater
zooplankton. Limnol. Oceanogr. 34:785-789; 1989.
Chandumpai, A.; Dal1, W.; Smith, D.M. Lipid-class composition of organs and tissues of
the tiger prawn Penaeus esculentus during the moulting cycle and during starvation. Mar.
Biol. 198:235-245; 1991.
R.G. Ackman
Albers. e.S.; Kattner, G.; Hagen, W. The compositions of wax esters, triacylglycerols and
phospholipids in Arctic and Antarctic copepods: evidence of energetic adaptions. Mar.
Chern. 55:347-358; 1996.
Ando, Y.; Nishimura, K.; Aoyanagi, N.; Takagi, T. Stereospecific analysis of fish oil
triacyl-sn-glycerols. J. Am. Oil. Chern. Soc. 69:417-424; 1992.
Arts, M.T.; Robarts, R.D.; Evans, M.S. Energy reserve lipids of zooplanktonic crustaceans
from an oligotrophic saline lake in relation to food resources and temperature. Can. J.
Fish. Aquat. Sci. 50:2404-2420; 1993.
Bakes, M.J.; Nichols, P.R. Lipid, fatty acid and squalene composition of liver oil from six
species of deep-sea sharks collected in southern Australian waters. Compo Biochem.
Physiol. IIOB:267-275; 1995.
Bautista, M.N.; del Valle, M.J.; Orejana, F.M. Lipid and fatty acid composition of brackishwater and freshwater-reared milkfish (Chanos chanos Froskal). Aquaculture 96:241248; 1991.
Bell, J.G.; Ashton, I.; Secombes, C.J.; Weitzel, B.R.; Dick, J.R.; Sargent, J.R. Dietary lipid
affects phospholipid fatty acid compositions, eicosanoid production and immune function in Atlantic salmon (Salmo salar). Prostaglandins Leukotrienes Essential Fatty Acids
54: 173-182; 1996.
Bell, J.G.; Ghioni, e.; Sargent, J.R. Fatty acid compositions of 10 freshwater invertebrates
which are natural food organisms of Atlantic salmon parr (Salmo salar): a comparison
with commercial diets. Aquaculture 128:301-313; 1994.
Bell, J.G.; Dick, J.R.; McVicar, A.H.; Sargent, J.R.; Thompson, K.D. Dietary suntlower,
linseed and fish oils affect phospholipid fatty acid composition, development of cardiac
lesions, phospholipase activity and eicosanoic production in Atlantic salmon (Salmo
salar). Prostaglandins Leukotrienes Essential Fatty Acids 49:665-673; 1993.
Bell. M.Y.; Sargent, J.R. Fatty acid analyses of phospho glycerides from tissues of the clam
Chlamys islandica (Muller) and the starfish Ctenodiscus crispatus (Retzius) from Balsfjorden, northern Norway. J. Exp. Mar. BioI. Ecol. 87:31-40; 1985.
Bligh, E.G.; Dyer, W.J. A rapid method of total lipid extraction and purification. Can. J.
Biochem. Physiol. 37:911-917; 1959.
Bordier, e.G.; Sellier, N.; Foucault, A.P.; Le Goffic, F. Purification and characterization of
deep sea shark Centrophorus squamosus liver oil I-O-alkylglycerol ether lipids. Lipids
31 :521-528; 1996.
Brosche, T. Methyl enol ethers as artifacts in capillary gas chromatographic profiles of
aldehyde dimethyl acetals. J. Chromatogr. 345:219-227; 1985.
Bruner, K.A.; Fisher, S.W.; Landrum, P.F. The role of the zebra mussel, Dreissena polymorpha, in contaminant cycling; I. The effect of body size and lipid content on the
bioconcentration of PCBs and PAHs. J. Great Lakes Res. 20:725-734; 1994.
Castell, J.D.; Mason, E.G.: Covey, J.F. Cholesterol requirements of juvenile American
lobster (Homaru.l' americanus). J. Fish. Res. Bd. Can. 32:1431-1435; 1975.
Cavaletto, J.F.; Nalepa, T.F.; Dermott, R.; Gardner, W.S.; Quigley, M.A.; Lang, G.A.
Seasonal variation of lipid composition, weight, and length in juvenile Diporeia spp.
(Amphipoda) from Lakes Michigan and Ontario. Can. J. Fish. Aquat. Sci. 53:20442051; 1996.
Cavaletto, J.F.; Vanderploeg, H.A.; Gardner, W.S. Wax esters in two species of freshwater
zooplankton. Limnol. Oceanogr. 34:785-789; 1989.
Chandumpai, A.; Dal1, W.; Smith, D.M. Lipid-class composition of organs and tissues of
the tiger prawn Penaeus esculentus during the moulting cycle and during starvation. Mar.
Biol. 198:235-245; 1991.
