290
D. J. RANDALL
Mayer, N., Maetz, J., Chan, D. K. O., Forster, M., and Chester Jones, I. (1967).
Cortisol, a sodium excreting factor in the eel (Anguilla anguilla L.) adapted
to sea water. Nature 214, 1118-1120.
Miles, H. M., and Smith, L. S. (1968). Ionic regulation in migrating juvenile coho
salmon, Oncorhynchus Kisutch. Comp. Biochem. Physiol. 26, 381498.
Muir, B. S. ( 1967). Personal communication.
Muir, B. S. (1969). Gill dimensions as a function of fish size, 1. Fisheries Res.
Muir, B. S. (1970). Contribution to the study of blood pathways in teleost gills.
Muir, B, S., and Buckley, R. M. (1967). Gill ventilation in Remora remora. Copeia
Muir, B. S., and Hughes, G. M. (1969). Gill dimensions for three species of tuna.
J. Erptl. Biol. 51, 271-285.
Muir, B. S., and Kendall, J. I. (1968). Structural modifications in the gills of tunas
and some other oceanic fishes. Copeia 388-398.
Nakano, T., and Tomlinson, N. ( 1967). Catecholamine and carbohydrate concentrations in Rainbow trout (Salmo gairdneri) in relation to physial disturbance. 1.
Fisheries. Res. Board Can. 24, 1701-1715.
Newstead, J. D. (1967). Fine structure of the respiratory lamellae of teleostean gills.
Z. Zellforsch. Mikroskop. Anat. 79, 396-428.
Nicloux, M. (1923). Action de l’oxyde de carbone sur les poissons et capacitk
respiratoire du sang de ces animaux. Compt. Rend. SOC. Biol. 89, 1328-13331.
Ostlund, E., and FBnge, R. (1962). Vasodilation by adrenaline and noradernaline
and the effects of some other substances on perfused gills. Comp. Biochem.
Physwl. 5, 307409.
Board Can. 26, 165-170.
Copeia 19-28.
581-586.
Parry, G. (1966). Osmotic adaptation in fishes, Biol. Reu. 41, 392-444.
Pasztor, V. M., and Kleerekoper, H. (1962). The role of the gill musculature in
teleosts. Can. 1. Zool. 40, 785-802.
Peyraud, C., and Serfaty, A. (1964). Le rythme respiratoire de la carp (Cyprinus
Carpio L.) et ses relations avec le taux de d’oxyghe dissous dans le biotope.
Hydrobiologia 23, 165-178.
Phillips, A. M., Jr. (1947). The effect of asphyxia upon the red cell content of fish
blood. Copeia 183-186.
Piiper, J., and Baumgarten-Schumann, D. (1968a). The effectiveness of 0, and C0,
exchange in the gills of the dogfish (Scyliorhinus stellaris). Resp. Physiol. 5,
338-349.
Piiper, J., and Baumgarten-Schumann, D. (196813). Carriage of O2 and COz by
water and blood in gas exchange of the dogfish (Scyliorhinus stellaris). Resp.
Physiol. 5, 326-337.
Piiper, J., and Schumann, D. (1967). Efficiency of oxygen exchange in tlie gills of
the dogfish. ( Scyliorhinus stellaris). Resp. Physiol. 2, 135-148.
Pocklington, P. ( 1968). B.Sc. Honours Thesis, Dalhousie University.
Rahn, H. (1966a). Aquatic gas exchange: Theory. Resp. Physiol. 1, 1-12.
Rahn, H. (1966b). Evolution of gas exchange in vertebrates. I n “Studies in Pulmonary Physiology, Mechanics, Chemistry and Circulation of the Lung,” Vol. 2,
pp. 42-54. Aerospace Med. Res. Lab.
Rahn, H. (1967). Gas transport from tlie external environment to the cell. Ciba
Found. Symp., Development of the Lung pp. 3-23.
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