5. ACID-BASE BALANCE
207
Garcia Romeu, F., and Motais, R. (1966). Mise en 6vidence d’bchanges Na+/NH,+
chez l’anguille deau dorrce. Comp. Biochem. Physiol. 17, 1201-1204.
Haning, Q. C., and Thompson A. M. ( 1965 ). A comparative study of tissue carbon
dioxide in vertebrates. Comp. Biochem. Physiol. 15, 17-26.
Harms, H., and Bartels, H. ( 1961 ). C02-Dissoziationskuren des menschlichen Blutes
bei Temperaturen von 5-37°C und unterschiedlicher 02-Sattigung. Arch. Ges.
Physiol. 272, 384-392.
Hartman, F. A,, Lewis, L. A., Brownell, K. A., Shelden, F. F., and Walther, R. W.
(1941). Some blood constituents of the normal skate. Physiol. 2001. 14, 476-486.
Harvey, H. W. (1966). “The Chemistry and Fertility of Sea Waters.” Cambridge
Univ. Press, London and New York.
Henderson, L. J. (1932). “Blut” (German transl. by M. Tennenbaum). Steinkopff,
Dresden.
Hochachka, P. W. (1961). The effect of physical training on oxygen debt and
glycogen reserves in trout. Can. J. Zool. 39, 767-776.
Hoffert, J. R. (1966). Olservations on ocular fluid dynamics and carbonic anhydrase
in tissues of lake trout (Salvelinus Namaycush). Comp. Biochem. Physiol. 17,
Hoffcrt, J. R., and Fromm, P. 0. (1966). Effect of carbonic anhydrase inhibition on
aqueous humor and blood bicarbonate ion in the teleost (Salvelinus Namaycush).
Comp. Biochem. Physiol. 18, 333340.
Larimer, J. L., and Schmidt-Nielsen, K. (1960). A comparison of blood carbonic
anhydrase of various mammals. Comp. Biochem. Physiol. 1, 19-23.
Lenfant, C., and Johansen, K. (1966). Respiratory function in the elasmobranch
Squalus suckleyi. Respiration Physiol. 1, 13-29.
Maren, T. H. (1962). Ionic composition of cerebrospinal fluid and aqueous humor
of the dogfish, Squalus acanthias. 11. Carbonic anhydrase activity and inhibition. Comp. Biochem. Phytiol. 5, 201-215.
Maren, T. H. ( 1967). Carbonic anhydrase: Chemistry, physiology and inhibition.
Physiol. Reu. 47, 595-781.
Mersch, F. D. ( 1964). Der Temperatureinfluss auf die COz-Dissoziationskurven von
Rattenleberhomogenaten. Inaugural Dissertation, Justus Liebig University,
Giessen.
107-1 14.
Netter, H. ( 1959). “Theoretische Biochemie.” Springer, Berlin.
Pereira, R. S., and Sawaya, P. (1957). Contribution A l’6tude de la composition
chimique du sang de certains s6laciens du Br6sil. Univ. de Sa0 Paulo, Fac.
Filosof., Cienc. Letras, 2001. 21, 85-92.
Prosser, C. L., and Brown, F. A. ( 1961 ). “Comparative Animal Physiology.” Saunders,
Philadelphia, Pennsylvania.
Rahn, H. (1967). Gas transport from the external environment to the cell. Ciba
Found. Symp. Develop. Lung. pp. 3-29.
Robertson, J. D. (1954). The chemical composition of the blood of some aquatic
chordates, including members of the Tunicata, Cyclostomata and Osteichthyes.
1. Erptl. Riol. 31, 424-442.
Robin, E. D. ( 1961 ), Of men and mitochondria-intracellular and subcellular acidbase relations. New Erigl. ]. Mcd. 265, 780-785.
Robin, E. D., Murdaugh, H. V., and Weiss, E. (1964). Acid-he, fluid and
electrolyte metabolism in the elasmobranch. I. Ionic composition of erythrocytes,
muscle and brain. 1. Cellirlar Comp. Phytiol. 64, 409-422.
Robin, E. D., Murdaugh, H. V., and Millen, J. E. (1966). Acid-base, fluid and
207
Garcia Romeu, F., and Motais, R. (1966). Mise en 6vidence d’bchanges Na+/NH,+
chez l’anguille deau dorrce. Comp. Biochem. Physiol. 17, 1201-1204.
Haning, Q. C., and Thompson A. M. ( 1965 ). A comparative study of tissue carbon
dioxide in vertebrates. Comp. Biochem. Physiol. 15, 17-26.
Harms, H., and Bartels, H. ( 1961 ). C02-Dissoziationskuren des menschlichen Blutes
bei Temperaturen von 5-37°C und unterschiedlicher 02-Sattigung. Arch. Ges.
Physiol. 272, 384-392.
Hartman, F. A,, Lewis, L. A., Brownell, K. A., Shelden, F. F., and Walther, R. W.
(1941). Some blood constituents of the normal skate. Physiol. 2001. 14, 476-486.
Harvey, H. W. (1966). “The Chemistry and Fertility of Sea Waters.” Cambridge
Univ. Press, London and New York.
Henderson, L. J. (1932). “Blut” (German transl. by M. Tennenbaum). Steinkopff,
Dresden.
Hochachka, P. W. (1961). The effect of physical training on oxygen debt and
glycogen reserves in trout. Can. J. Zool. 39, 767-776.
Hoffert, J. R. (1966). Olservations on ocular fluid dynamics and carbonic anhydrase
in tissues of lake trout (Salvelinus Namaycush). Comp. Biochem. Physiol. 17,
Hoffcrt, J. R., and Fromm, P. 0. (1966). Effect of carbonic anhydrase inhibition on
aqueous humor and blood bicarbonate ion in the teleost (Salvelinus Namaycush).
Comp. Biochem. Physiol. 18, 333340.
Larimer, J. L., and Schmidt-Nielsen, K. (1960). A comparison of blood carbonic
anhydrase of various mammals. Comp. Biochem. Physiol. 1, 19-23.
Lenfant, C., and Johansen, K. (1966). Respiratory function in the elasmobranch
Squalus suckleyi. Respiration Physiol. 1, 13-29.
Maren, T. H. (1962). Ionic composition of cerebrospinal fluid and aqueous humor
of the dogfish, Squalus acanthias. 11. Carbonic anhydrase activity and inhibition. Comp. Biochem. Phytiol. 5, 201-215.
Maren, T. H. ( 1967). Carbonic anhydrase: Chemistry, physiology and inhibition.
Physiol. Reu. 47, 595-781.
Mersch, F. D. ( 1964). Der Temperatureinfluss auf die COz-Dissoziationskurven von
Rattenleberhomogenaten. Inaugural Dissertation, Justus Liebig University,
Giessen.
107-1 14.
Netter, H. ( 1959). “Theoretische Biochemie.” Springer, Berlin.
Pereira, R. S., and Sawaya, P. (1957). Contribution A l’6tude de la composition
chimique du sang de certains s6laciens du Br6sil. Univ. de Sa0 Paulo, Fac.
Filosof., Cienc. Letras, 2001. 21, 85-92.
Prosser, C. L., and Brown, F. A. ( 1961 ). “Comparative Animal Physiology.” Saunders,
Philadelphia, Pennsylvania.
Rahn, H. (1967). Gas transport from the external environment to the cell. Ciba
Found. Symp. Develop. Lung. pp. 3-29.
Robertson, J. D. (1954). The chemical composition of the blood of some aquatic
chordates, including members of the Tunicata, Cyclostomata and Osteichthyes.
1. Erptl. Riol. 31, 424-442.
Robin, E. D. ( 1961 ), Of men and mitochondria-intracellular and subcellular acidbase relations. New Erigl. ]. Mcd. 265, 780-785.
Robin, E. D., Murdaugh, H. V., and Weiss, E. (1964). Acid-he, fluid and
electrolyte metabolism in the elasmobranch. I. Ionic composition of erythrocytes,
muscle and brain. 1. Cellirlar Comp. Phytiol. 64, 409-422.
Robin, E. D., Murdaugh, H. V., and Millen, J. E. (1966). Acid-base, fluid and
