HABITAT SELECTION BY AQUATIC INVERTEBRATES
373
LaRow, E. J. (1970). The effect of oxygen tension on the vertical migration of
Cluzobom larvae. Limnol. Oceanogr. 15, 357-362.
Lehmann, U. (1972). Tagesperiodisches Verhalten und Habitatwechsel der
Larven von Potamophylax luctuoew, (Trichoptera). Oecologia, 9, 265-278.
Leighton, D. L. (1966). Studies of food preference in algivorous invertebrates of
Southern California kelp beds. Pacif. Sci. 22, 104-113.
Lewis, A. G. (1959). The vertical distribution of some inshore copepods in
relation to experimentally produced conditions of light and temperature.
Bull. mar. Sci. Gulf. Caribb. 9, 69-78.
Lewis, D. B. (1968). Some aspects of the ecology of Fabricia sabella (Ehr)
(Annelida, Polychaeta). J . Linn. SOC. 47, 515-626.
Lindberg, R. G. (1955). Growth, population dynamics and field behaviour in the
spiny lobster Panulirus interruptus (Randall). Univ. Calq. Publa 2001. 59,
Lindroth, C. H. (1953). Some attempts toward experimental zoogeography.
Lloyd, B. (1931). Muds of the Clyde Sea Area. 11. Bacterial content. J . mar.
Loeb, J. (1893). f h e r Kiinstliche Umwandlung positiv heliotropischer Thiere in
negativ heliotropische und umgekehrt. Pjliigers Arch. ges. Physwl. 54,
Loeb, J. (1894). BeitrBge zur Gehirnphysiologie der Wiirmer. PjZiigers Arch. sea.
Loeb, J. (1904). The control of heliotropic reactions in freshwater crustaceans
by chemicals.
Loeb, J. (1906a).
Columbia University
Press, New York.
Loeb, J. (1906b). Uber die Erregung von positivem Heliotropismus durch Saiire,
insbesondere Kohlensaiire, und von negativem Heliotropismus durch
ultraviolette Strahlen. Pjliigers Arch. ges. Physiol. 115, 564-581.
Lucas, C. E. (1936). On certain inter-relations between phytoplankton and zooplankton under experimental conditions. J . Cona. perm. int. Explor. Mer, 11,
Lyman, F. E. (1943). Swimming and burrowing activities of mayfly nymphs of the
genus Hexagenh. Ann. ent. SOC. Am. 36, 250-256.
Lyman, F. E. (1945). Reactions of certain nymphs of Stenonema (Ephemeroptera) to light as related to habitat preference. Ann. ent. Soo. Am. 38,
Lyon, E. P. (1906). Note on the geotropism of Arbach larvae. Biol. Bull. mar.
Lyster, I. H. J. (1965). The salinity tolerance of polychaete larvae. J . Anim.
Macan, T. T. (1963). “Freshwater Ecology”. Longmans, London.
McCoy, E. and Henrici, A. T. (1937). The distribution of heterotrophic bacteria
in bottom deposits of lakes. J . Bact. 33, 84-85.
McEwen, R. S. (1918). The reactions t o light and to gravity in Drosophila and its
mutants. J . exp. 2001. 25, 49-105.
McGinnis, M. 0. (1911). Reactions of Branchipus serratus to light, heat and
gravity. J . exp. 2001. 10, 227-240.
Mackie, A. M. (1970). Avoidance reactions of marine invertebrates to either
steroid glycosides of starfish or synthetic surface-active agents. J. exp.
mar. Biol. Ecol. 5, 63-69.
157-248.
Ecology, 34, 657-666.
bid. ASS. U . K . 17, 751-766.
81-107.
Ph?/siol. 56, 247-269.
Univ. Calq. Publa Physiol. 2, 1-3.
“ The Dynamics of Living Matter ”.
343-362.
234-236.
biol. Lab., Woods Hole, 12, 21-22.
E d . 34, 517-527.
373
LaRow, E. J. (1970). The effect of oxygen tension on the vertical migration of
Cluzobom larvae. Limnol. Oceanogr. 15, 357-362.
Lehmann, U. (1972). Tagesperiodisches Verhalten und Habitatwechsel der
Larven von Potamophylax luctuoew, (Trichoptera). Oecologia, 9, 265-278.
Leighton, D. L. (1966). Studies of food preference in algivorous invertebrates of
Southern California kelp beds. Pacif. Sci. 22, 104-113.
Lewis, A. G. (1959). The vertical distribution of some inshore copepods in
relation to experimentally produced conditions of light and temperature.
Bull. mar. Sci. Gulf. Caribb. 9, 69-78.
Lewis, D. B. (1968). Some aspects of the ecology of Fabricia sabella (Ehr)
(Annelida, Polychaeta). J . Linn. SOC. 47, 515-626.
Lindberg, R. G. (1955). Growth, population dynamics and field behaviour in the
spiny lobster Panulirus interruptus (Randall). Univ. Calq. Publa 2001. 59,
Lindroth, C. H. (1953). Some attempts toward experimental zoogeography.
Lloyd, B. (1931). Muds of the Clyde Sea Area. 11. Bacterial content. J . mar.
Loeb, J. (1893). f h e r Kiinstliche Umwandlung positiv heliotropischer Thiere in
negativ heliotropische und umgekehrt. Pjliigers Arch. ges. Physwl. 54,
Loeb, J. (1894). BeitrBge zur Gehirnphysiologie der Wiirmer. PjZiigers Arch. sea.
Loeb, J. (1904). The control of heliotropic reactions in freshwater crustaceans
by chemicals.
Loeb, J. (1906a).
Columbia University
Press, New York.
Loeb, J. (1906b). Uber die Erregung von positivem Heliotropismus durch Saiire,
insbesondere Kohlensaiire, und von negativem Heliotropismus durch
ultraviolette Strahlen. Pjliigers Arch. ges. Physiol. 115, 564-581.
Lucas, C. E. (1936). On certain inter-relations between phytoplankton and zooplankton under experimental conditions. J . Cona. perm. int. Explor. Mer, 11,
Lyman, F. E. (1943). Swimming and burrowing activities of mayfly nymphs of the
genus Hexagenh. Ann. ent. SOC. Am. 36, 250-256.
Lyman, F. E. (1945). Reactions of certain nymphs of Stenonema (Ephemeroptera) to light as related to habitat preference. Ann. ent. Soo. Am. 38,
Lyon, E. P. (1906). Note on the geotropism of Arbach larvae. Biol. Bull. mar.
Lyster, I. H. J. (1965). The salinity tolerance of polychaete larvae. J . Anim.
Macan, T. T. (1963). “Freshwater Ecology”. Longmans, London.
McCoy, E. and Henrici, A. T. (1937). The distribution of heterotrophic bacteria
in bottom deposits of lakes. J . Bact. 33, 84-85.
McEwen, R. S. (1918). The reactions t o light and to gravity in Drosophila and its
mutants. J . exp. 2001. 25, 49-105.
McGinnis, M. 0. (1911). Reactions of Branchipus serratus to light, heat and
gravity. J . exp. 2001. 10, 227-240.
Mackie, A. M. (1970). Avoidance reactions of marine invertebrates to either
steroid glycosides of starfish or synthetic surface-active agents. J. exp.
mar. Biol. Ecol. 5, 63-69.
157-248.
Ecology, 34, 657-666.
bid. ASS. U . K . 17, 751-766.
81-107.
Ph?/siol. 56, 247-269.
Univ. Calq. Publa Physiol. 2, 1-3.
“ The Dynamics of Living Matter ”.
343-362.
234-236.
biol. Lab., Woods Hole, 12, 21-22.
E d . 34, 517-527.
