126
Goldman, J. C. (1980) Physiological processes, nutrient availablilty,
and the concept of relative growth rate in marine phytoplankton
ecology. In: Falkowski P. (ed.), Primary Productivity in the Sea.
Brookhaven Symposia in Biology No. 31.
Plenum Press, N.Y.,
p.179.
Holm-Hansen, 0., C.J. Lorenzen, R.W. Holmes and J.D.H. Strickland
(1965). Fluorometric determination of chlorophyll. J. Cons.
Perm. Int. Explor. Mer 30: 3-15.
Jensen, A., B. Rystad and L. Skoglund (1972) The use of dialysis
cul t~res in phytoplankton studies.
J. exp. mar. Biol. Ecol. 8:
241-248.
Jensen, A. and B. Rystad (1973) Semi-continuous monitoring of the
capacity of sea water for supporting growth of phytoplankton.
J. expo mar. Biol. Ecol. 11: 275-285.
Landry, M.R. and R.P. Hassett (1982) Estimating the grazing impact of
marine microzooplankton. Mar. Biol. 67(3): 283-288.
Nelson, D.M. and L.E. Brand (1979) Cell division periodicity in 13
species
of
marine
phytoplankton
on
a
light/dark
cycle.
J. Phycol. 15: 67-75.
Owens, O. v-H., P. Dresler, C.C. Crawford, M.A. Taylor and H.H.
Seliger (1977)
Phytoplankton cages for the measurement in situ
of the growth rates of mixed natural populations.
Sci. 18: 325-333.
Chesapeake
Sakshaug, E. (1977) Limiting nutrients and maximum growth rates for
diatoms in Narragansett Bay.
J. expo mar. Biol. Ecol. 28:
109-123.
Sakshaug, E. and A. Jensen (1978) The use of cage cultures in studies
of
the
biochemisty
and ecology
of marine
phytoplankton.
Oceanogr. Mar. Biol. Ann. Rev. 16: 81-106.
Sakshaug, E. (1980). Problems in the methodology of studying
phytoplankton. In: Morris, I. (ed.) The Physiological Ecology of
Phytoplankton. Univ. of California Press p. 57.
Goldman, J. C. (1980) Physiological processes, nutrient availablilty,
and the concept of relative growth rate in marine phytoplankton
ecology. In: Falkowski P. (ed.), Primary Productivity in the Sea.
Brookhaven Symposia in Biology No. 31.
Plenum Press, N.Y.,
p.179.
Holm-Hansen, 0., C.J. Lorenzen, R.W. Holmes and J.D.H. Strickland
(1965). Fluorometric determination of chlorophyll. J. Cons.
Perm. Int. Explor. Mer 30: 3-15.
Jensen, A., B. Rystad and L. Skoglund (1972) The use of dialysis
cul t~res in phytoplankton studies.
J. exp. mar. Biol. Ecol. 8:
241-248.
Jensen, A. and B. Rystad (1973) Semi-continuous monitoring of the
capacity of sea water for supporting growth of phytoplankton.
J. expo mar. Biol. Ecol. 11: 275-285.
Landry, M.R. and R.P. Hassett (1982) Estimating the grazing impact of
marine microzooplankton. Mar. Biol. 67(3): 283-288.
Nelson, D.M. and L.E. Brand (1979) Cell division periodicity in 13
species
of
marine
phytoplankton
on
a
light/dark
cycle.
J. Phycol. 15: 67-75.
Owens, O. v-H., P. Dresler, C.C. Crawford, M.A. Taylor and H.H.
Seliger (1977)
Phytoplankton cages for the measurement in situ
of the growth rates of mixed natural populations.
Sci. 18: 325-333.
Chesapeake
Sakshaug, E. (1977) Limiting nutrients and maximum growth rates for
diatoms in Narragansett Bay.
J. expo mar. Biol. Ecol. 28:
109-123.
Sakshaug, E. and A. Jensen (1978) The use of cage cultures in studies
of
the
biochemisty
and ecology
of marine
phytoplankton.
Oceanogr. Mar. Biol. Ann. Rev. 16: 81-106.
Sakshaug, E. (1980). Problems in the methodology of studying
phytoplankton. In: Morris, I. (ed.) The Physiological Ecology of
Phytoplankton. Univ. of California Press p. 57.
