288
D. J. RANDALL
Gameson, A. L. H., and Robertson, K. G. (1955). The solubility of oxygen in pure
water and seawater. J. Appl. Chem. 5, 502.
Carey, W. F. (1967). Gas exchange, cardiac output and blood pressure in free
swilllnling carp ( Cyprinus carpio). P1i.D. Dissertation, University of New York,
Buffalo, New York.
Gray, I. E. (1954). Comparative study of the gill area of marine fishes. Biol. Bull.
Grigg, C. C. (1967). Some respiratory properties of the blood of four species of
antarctic fishes. Comp. Biochem. Physiol. 23, 139-148.
Hall, F. G. (1930). The ability of the common mackeral and certain other marine
fishes to remove dissolved oxygen from sea water. Am. J. Physiol. 93, 417-421.
Hall, F. G., and McCutcheon, F. H. (1938). The affinity of hemoglobin for oxygen
in marine fishes. J . Cellular Comp. Physiol. 11, 205-212.
Haning, Q. C., and Thompson, A. M. (1965). A comparative study of tissue carbon
dioxide in vertebrates. Comp. Biochern. Physisol. 15, 17-26.
Hanson, D. ( 1967). Cardiovascular dynamics and aspects of gas exchange in chondrichthyes. Ph.D. Thesis, University of Washington, Seattle, Washington.
Hazelhoff, E. H., and Evenhuis, 11. H. (1952). Importance of the countercurrent
principle for oxygen uptake in fishes. Nature 169, 77.
Hodgman, C. D., ed. (1943). “Handbook of Chemistry and Physics,” 27th ed. Chem.
Rubber Publ. Co., Cleveland, Ohio.
Hoffert, J. R. (1966). Observations on ocular fluid dynamics and carbonic anhydrase
in tissues of lake trout (Saluelinus namaycush). Comp. Biochem. Physiol. 17,
Hoffert, J. R., and Fromm, P. 0. (1966). Effect of carbonic anhydrase inhibition
on aqueous humor and blood bicarbonate ion in the teleost (Saluelinus namuyc u d i ) . Comp. Biochem. Physiol. 18, 333340.
Holeton, G. F. (1968). Personal communication.
Holeton, G . F., and Randall, D. J. (1967a). Changes in blood pressure in the rainbow trout during hypoxia. J. Exptl. Biol. 46, 297-305.
Holeton, G. F., and Randall, D. J. (196713). The effect of hypoxia upon the partial
pressure of gases in the blood and water afferent and efferent to the gills of
rainbow trout. J. Erptl. Biol. 64, 317327.
Hughes, G. M. (1964). Fish respiratory homeostatis. Symp. SOC. Erptl. Biol. 18,
Hughes, G . M. (1966a). The dimensions of fish gills in relation to their function.
1. Erptl. Biol. 45, 177-195.
Hughes, G. M. (1966b). Species variation in gas exchange. Proc. Roy. SOC. Med. 59,
494-500.
Hughes, G. M. ( 1967). Evolution between air and water. Ciba Found. Sym., Deuelop.
Lung pp. 64-80.
Hughes, G. M., and Datta Munshi, J. S. (1968). Fine structure of the respiratory
surfaces of an air breathing fish, the climbing perch Anahas testudinens (Bloch).
Nature 219, 1382-1384.
Hughes, G. M., and Grimstone, A. V. (1965). The fine structure of the secondary
lamellae of the gills of Gadus polluchius. <)uart. J . Microscop. Sci. 106, 343-553.
Hughcs, G. M., and Shelton, G . (1962). Respiratory niechanisms and their nervous
control in fish. Adoan. Comp. Physiol. Biochem. 1, 275-364.
Hunn, J. B. ( 1967). “Bibliography on the Blood Chemistry of Fishes,” pp. 1-32.
Bur. Sport Fisheries Wild Life, U.S. Govt. Printing Office, Washington, D.C.
107, 219-225.
107-1 14.
81-107.
D. J. RANDALL
Gameson, A. L. H., and Robertson, K. G. (1955). The solubility of oxygen in pure
water and seawater. J. Appl. Chem. 5, 502.
Carey, W. F. (1967). Gas exchange, cardiac output and blood pressure in free
swilllnling carp ( Cyprinus carpio). P1i.D. Dissertation, University of New York,
Buffalo, New York.
Gray, I. E. (1954). Comparative study of the gill area of marine fishes. Biol. Bull.
Grigg, C. C. (1967). Some respiratory properties of the blood of four species of
antarctic fishes. Comp. Biochem. Physiol. 23, 139-148.
Hall, F. G. (1930). The ability of the common mackeral and certain other marine
fishes to remove dissolved oxygen from sea water. Am. J. Physiol. 93, 417-421.
Hall, F. G., and McCutcheon, F. H. (1938). The affinity of hemoglobin for oxygen
in marine fishes. J . Cellular Comp. Physiol. 11, 205-212.
Haning, Q. C., and Thompson, A. M. (1965). A comparative study of tissue carbon
dioxide in vertebrates. Comp. Biochern. Physisol. 15, 17-26.
Hanson, D. ( 1967). Cardiovascular dynamics and aspects of gas exchange in chondrichthyes. Ph.D. Thesis, University of Washington, Seattle, Washington.
Hazelhoff, E. H., and Evenhuis, 11. H. (1952). Importance of the countercurrent
principle for oxygen uptake in fishes. Nature 169, 77.
Hodgman, C. D., ed. (1943). “Handbook of Chemistry and Physics,” 27th ed. Chem.
Rubber Publ. Co., Cleveland, Ohio.
Hoffert, J. R. (1966). Observations on ocular fluid dynamics and carbonic anhydrase
in tissues of lake trout (Saluelinus namaycush). Comp. Biochem. Physiol. 17,
Hoffert, J. R., and Fromm, P. 0. (1966). Effect of carbonic anhydrase inhibition
on aqueous humor and blood bicarbonate ion in the teleost (Saluelinus namuyc u d i ) . Comp. Biochem. Physiol. 18, 333340.
Holeton, G. F. (1968). Personal communication.
Holeton, G . F., and Randall, D. J. (1967a). Changes in blood pressure in the rainbow trout during hypoxia. J. Exptl. Biol. 46, 297-305.
Holeton, G. F., and Randall, D. J. (196713). The effect of hypoxia upon the partial
pressure of gases in the blood and water afferent and efferent to the gills of
rainbow trout. J. Erptl. Biol. 64, 317327.
Hughes, G. M. (1964). Fish respiratory homeostatis. Symp. SOC. Erptl. Biol. 18,
Hughes, G . M. (1966a). The dimensions of fish gills in relation to their function.
1. Erptl. Biol. 45, 177-195.
Hughes, G. M. (1966b). Species variation in gas exchange. Proc. Roy. SOC. Med. 59,
494-500.
Hughes, G. M. ( 1967). Evolution between air and water. Ciba Found. Sym., Deuelop.
Lung pp. 64-80.
Hughes, G. M., and Datta Munshi, J. S. (1968). Fine structure of the respiratory
surfaces of an air breathing fish, the climbing perch Anahas testudinens (Bloch).
Nature 219, 1382-1384.
Hughes, G. M., and Grimstone, A. V. (1965). The fine structure of the secondary
lamellae of the gills of Gadus polluchius. <)uart. J . Microscop. Sci. 106, 343-553.
Hughcs, G. M., and Shelton, G . (1962). Respiratory niechanisms and their nervous
control in fish. Adoan. Comp. Physiol. Biochem. 1, 275-364.
Hunn, J. B. ( 1967). “Bibliography on the Blood Chemistry of Fishes,” pp. 1-32.
Bur. Sport Fisheries Wild Life, U.S. Govt. Printing Office, Washington, D.C.
107, 219-225.
107-1 14.
81-107.
