-
Cushing, C.E., Cummins, K.W., Minshall, G.W., and
Vannote, R.L., 1983, Periphyton, chlorophyll a,
and diatoms of the Middle Fork of the Salmon River,
Idaho: Holarctic Ecology, v. 6, p. 221-227.
-
Darley, W.M., 1982, Algal biology: A physiological
approach: Oxford, U.K., Blackwell Scientific
Publications, 168 p.
-
Descy, J.P., 1979a, Etude quantitative du peuplement
algal benthique en vue de l'etablissement d'une
methodologie d'estimation biologique de la qualite des
eaux courantes: Liege, France, Recherche et Technique
au service de l'environment, p. 159 -206.
-
_____ 1979b, A new approach to water quality estimation
using diatoms: Nova Hedwigia, v. 64, p. 305-323.
-
Fairchild, G.W., and Lowe, R.L., 1984, Artificial
substrates which release nutrients: Effects on
periphyton and invertebrate succession: Hydrobiologia,
v. 66, p. 29-37.
-
Fairchild, G.W., Lowe, R.L., and Richardson, W.G., 1985,
Algal periphyton growth on nutrient-diffusing
substrates: An in-situ bioassay: Ecology, v. 66, p.
465-472.
-
Flint, R., Richards, W.R.C., and Goldman, C.R., 1977,
Adaptation of styrofoam substrate to benthic algal
productivity studies in Lake Tahoe, California-Nevada:
Journal of Phycology, v. 13, p. 407-409.
-
Goldsborough, L.G., Robinson, G.G.C., and Gurney, S.E.,
1986, An enclosure/substratum system for in-situ
ecological studies of periphyton: Archives fur
Hydrobiologie, v. 106, p. 373-393.
-
Graham, A.A., McCaughan, D.J., and McKee, F.S., 1988,
Measurement of surface area of stones: Hydrobiologia,
v. 157, p. 85-87.
-
Gurtz, M.E., 1993, Design of biological components of
the National Water-Quality Assessment Program, chapter
15, in Loeb, S.L., and Spacie, A., eds.,
Biological monitoring of freshwater ecosystems: Boca
Raton, Fla., Lewis Publishers, p. 3 23-354.
-
Hickman, M., and Round, F.E., 1970, Primary production
and standing crops of epipsammic and epipelic algae:
British Journal of Phycology, v. 5, no. 2, p.
247-255.
-
Hirsch, R.M., Alley, W.M., and Wilber, W.G., 1988,
Concepts for a national water-quality assessment
program: U.S. Geological Survey Circular 1021, 42 p.
-
Horner, R.R., and Welch, E.B., 1981, Stream periphyton
development in relation to current velocity and
nutrients: Canadian Journal of Fisheries and Aquatic
Sciences, v. 38, p. 449-457.
-
Horowitz, A.J., 1991, A primer on sediment-trace element
chemistry (2d ed.): Chelsea, Mich., Lewis Publishers,
136 p.
-
Humphrey, K.P., and Stevenson, R.J., 1992, Responses of
benthic algae to pulses in current and nutrients during
simulations of subscouring spates: Journal of the North
American Benthological Society, v. 11, no. 1, p.
37-48.
-
Kolbe, R.W., 1927, Zur okologie, morphologie, und
systematic der brackwasser-diatomeen: Jena,
Pflanzenforschung, v. 7, p. 1-146.
-
Kolkwitz, R., and Marsson, M., 1908, Okologie der
pflanzlichen saprobien: Stuttgart, Ber. Deut. Bot.
Ges., v. 26, p. 505-519.
-
Korte, V.L., and Blinn, D.W., 1983, Diatom colonization
on artificial substrata in pool and riffle zones studied
by light and scanning electron microscopy: Journal of
Phycology, v. 19, p. 332-341.
-
Lamberti, G.A., and Resh, V.H., 1985, Comparability of
introduced tiles and natural substrates for sampling
lotic bacteria, algae and macroinvertebrates:
Freshwater Biology, v. 15, p. 21-30.
-
Lang, S., and Austin, A., 1984, Vertical distribution of
biomass and species composition of a periphytic
community on an artificial substrate in an oligotrophic
water-supply lake: Archives fur Hydrobiologie, v. 99,
p. 269-286.