ROBERTSON, O.H., M.A. KRUPP, S.F. THOMAS, C.B. FAVOUR, S. HANE, and B.C. WEXLER :
Hyperadrenocorticism in spawning migratory and nonmigratory rainbow trout (Salmo
gairdneriz); comparison with pacific salmon (Genus Oncorhynchus). Gen. comp oEndocr.
1,473-484 (1961).
- B.C. WEXLER: Hyperplasia of the adrenal cortical tissue in Pacific salmon (Genus Oncorhynchus) and rainbow trout (Salmo gairdneriz) accompanying sexual maturation and
spawning. Endocrinology 65, 225-238 (1959).
ROBINSON, K.W. and W.V. MACFARLANE: Plasma antidiuretic activity in marsupials during
exposure to heat. Endocrinology 60, 679-680 (1957).
ROCHE, J., G . SALVATORE, et 1. COVELLI: Metabolisme de 131let fonction thyroidienne chez
la larve (ammoncoete) d'un cyclostome Petromyzon planeri. Compo Biochem. Physiol.
2, 90-99 (1961).
ROMER, A.S.: Vertebrate Paleontology 2nd ed. Chicago : University Press 1955.
- Major steps in vertebrate evolution. Science 158, 1629-1637 (1967).
Roy, B.P.: Distribution of neurohypophyseal hormones in some elasmobranch fishes. Gen.
cornp , Endocr. 12, 326-338 (1969).
RUIBAL, R. : The adaptive value of bladder water in the toad, Bufo cognatus. Physiol. Zoo1.
35,218-223 (1962).
SALADINO, A.]., P.]. BENTLEY, and B.F. TRUMP: Ion movements in cell injury. Effect of
amphotericin B on the ultrastructure and function of the epithelial cells of the toad bladder.
Amer. ]. Path. 54,421-466 (1969).
SANDOR, T., J. LAMOUREUX, and A. LANTHIER : Adrenal cortical function in reptiles. The
in vitro biosynthesis of adrenal cortical steroids by adrenal slices of two common North
American turtles, the slider turtle (Pseudemys scripta elegans) and the painted turtle
(Chrysemys picta picta). Steroids 4, 213-227.(1964).
SAWYER, W.H. : Effect of posterior pituitary extract on permeability of frog skin to water.
Amer. J. Physio1. 164,44-48 (1951).
- Differences in antidiuretic responses of rats to the intravenous administration of lysine
and arginine vasopressin. Endocrinology 63, 694-698 (1958).
- Oxytocic activity in the neural complex of two ascidians, Chelyosoma productum and
Pyura haustor . Endocrinology 65, 520-523 (1959).
- Increased water permeability of the bullfrog (Rana catesbeiana) bladder in vitro in response to synthetic oxytocin and arginine vasotocin and to neurohypophysial extracts
from non-mammalian vertebrates. Endocrinology 66, 112-120 (1960).
- Active neurohypophysial principles from a cyclostome (Petromyzon marinus) and two
cartilaginous fishes (Squalus acanthias and Hydrolagus collet). Gen . compoEndocr. 5,427439 (1965).
- Diuretic and natriuretic responses of lungfish (Protopterus aethiopicus) to arginine vasotocin. Amer. J. Physio1. 210, 191-197 (1966a).
- Biological assays for neurohypophysial principles in tissues and in blood. In: The Pituitary Gland, Vol. 3, pp . 288-306, Ed. by G.W. HARRIS and B.T. DONOVAN. London:
Butterworths 1966 b.
- Evolution of antidiuretic hormones and their functions . Amer . J. Med. 42, 678-6l:l6
(1967a).
- Chromatographic and pharmacological characteristics of the active neurohypophysial
principles of the spiny dogfish Squalus acanthias . Gen. compoEndocr. 9,303-311 (1967b).
- Phrlogenetic aspects of the neurohypophysial hormones. In: Handbuch d. expo Pharmaco. Vol. 23, pp. 717-747, Ed. by B. BERDE. Heidelberg and Berlin: Springer-Verlag 1968.
- The active neurohypophysial principles of two primitive bony fishes, the bichir (Polypterus senegalis) and the African lungfish (Protopterus aethiopicus). J. Endocr. 44,421435 (1969).
- Vasopressor, diuretic and natriuretic responses by lungfish to arginine vasotocin. Amer.
J. Physiol. 218, 1789-1794 (1970).
- H .A. BERN: Examination of the caudal neurosecretory system of Tilapia mossambica
(Teleostei, Cichlidae) for the presence of neurohypophysial-like activity . Amer. Zoo1.
3, 334 (1963).
- R.J. FREER, and T-C. TSENG: Characterization of a principle resembling oxytocin in the
280
Hyperadrenocorticism in spawning migratory and nonmigratory rainbow trout (Salmo
gairdneriz); comparison with pacific salmon (Genus Oncorhynchus). Gen. comp oEndocr.
1,473-484 (1961).
- B.C. WEXLER: Hyperplasia of the adrenal cortical tissue in Pacific salmon (Genus Oncorhynchus) and rainbow trout (Salmo gairdneriz) accompanying sexual maturation and
spawning. Endocrinology 65, 225-238 (1959).
ROBINSON, K.W. and W.V. MACFARLANE: Plasma antidiuretic activity in marsupials during
exposure to heat. Endocrinology 60, 679-680 (1957).
ROCHE, J., G . SALVATORE, et 1. COVELLI: Metabolisme de 131let fonction thyroidienne chez
la larve (ammoncoete) d'un cyclostome Petromyzon planeri. Compo Biochem. Physiol.
2, 90-99 (1961).
ROMER, A.S.: Vertebrate Paleontology 2nd ed. Chicago : University Press 1955.
- Major steps in vertebrate evolution. Science 158, 1629-1637 (1967).
Roy, B.P.: Distribution of neurohypophyseal hormones in some elasmobranch fishes. Gen.
cornp , Endocr. 12, 326-338 (1969).
RUIBAL, R. : The adaptive value of bladder water in the toad, Bufo cognatus. Physiol. Zoo1.
35,218-223 (1962).
SALADINO, A.]., P.]. BENTLEY, and B.F. TRUMP: Ion movements in cell injury. Effect of
amphotericin B on the ultrastructure and function of the epithelial cells of the toad bladder.
Amer. ]. Path. 54,421-466 (1969).
SANDOR, T., J. LAMOUREUX, and A. LANTHIER : Adrenal cortical function in reptiles. The
in vitro biosynthesis of adrenal cortical steroids by adrenal slices of two common North
American turtles, the slider turtle (Pseudemys scripta elegans) and the painted turtle
(Chrysemys picta picta). Steroids 4, 213-227.(1964).
SAWYER, W.H. : Effect of posterior pituitary extract on permeability of frog skin to water.
Amer. J. Physio1. 164,44-48 (1951).
- Differences in antidiuretic responses of rats to the intravenous administration of lysine
and arginine vasopressin. Endocrinology 63, 694-698 (1958).
- Oxytocic activity in the neural complex of two ascidians, Chelyosoma productum and
Pyura haustor . Endocrinology 65, 520-523 (1959).
- Increased water permeability of the bullfrog (Rana catesbeiana) bladder in vitro in response to synthetic oxytocin and arginine vasotocin and to neurohypophysial extracts
from non-mammalian vertebrates. Endocrinology 66, 112-120 (1960).
- Active neurohypophysial principles from a cyclostome (Petromyzon marinus) and two
cartilaginous fishes (Squalus acanthias and Hydrolagus collet). Gen . compoEndocr. 5,427439 (1965).
- Diuretic and natriuretic responses of lungfish (Protopterus aethiopicus) to arginine vasotocin. Amer. J. Physio1. 210, 191-197 (1966a).
- Biological assays for neurohypophysial principles in tissues and in blood. In: The Pituitary Gland, Vol. 3, pp . 288-306, Ed. by G.W. HARRIS and B.T. DONOVAN. London:
Butterworths 1966 b.
- Evolution of antidiuretic hormones and their functions . Amer . J. Med. 42, 678-6l:l6
(1967a).
- Chromatographic and pharmacological characteristics of the active neurohypophysial
principles of the spiny dogfish Squalus acanthias . Gen. compoEndocr. 9,303-311 (1967b).
- Phrlogenetic aspects of the neurohypophysial hormones. In: Handbuch d. expo Pharmaco. Vol. 23, pp. 717-747, Ed. by B. BERDE. Heidelberg and Berlin: Springer-Verlag 1968.
- The active neurohypophysial principles of two primitive bony fishes, the bichir (Polypterus senegalis) and the African lungfish (Protopterus aethiopicus). J. Endocr. 44,421435 (1969).
- Vasopressor, diuretic and natriuretic responses by lungfish to arginine vasotocin. Amer.
J. Physiol. 218, 1789-1794 (1970).
- H .A. BERN: Examination of the caudal neurosecretory system of Tilapia mossambica
(Teleostei, Cichlidae) for the presence of neurohypophysial-like activity . Amer. Zoo1.
3, 334 (1963).
- R.J. FREER, and T-C. TSENG: Characterization of a principle resembling oxytocin in the
280
