1. Moore FD, Olesen KH, McMurrey JD, et al: The Body Cell Mass and its Supporting Environment. Philadelphia-London, W. B. Saunders Co., 1963.
2.
2. Moore FD: Volume and tonicity in body water. Surg Gynec Obstet114:276, 1962.
3.
3. Gauer OH, Henry JP: Circulatory basis of fluid volume control. Physiol Rev43:423, 1963.
4.
4. Gauer OH, Henry JP: Neurohormonal control of plasma volume. Intern Rev Physiol9:145, 1976.
5.
5. Verney EB: The antidiuretic hormone and the factors which determine its release. Proc Roy Soc135:25, 1947.
6.
6. Verney EB: Osmoregulation and antidiuretisches Hormon Ärzt Wschr13:1010, 1958.
7.
7. Gauer OH: Osmocontrol versus volume control. Fed Proc27:1132, 1968.
8.
8. Guyton AC, Taylor AE, Granger HJ: Circulatory Physiology. II. Dynamics and Control of the Body Fluids. Philadelphia-London-Toronto, W. B. Saunders Co., 1975.
9.
9. Dunn FL, Brennan TJ, Nelson AE, et al: The role of blood osmolality and volume in regulating vasopressin secretion in the rat. J Clin Invest52:3212, 1973.
10.
10. Epstein M: Renal effects of head-out water immersion in man: Implications for an understanding of volume homeostasis. Physiol Rev58:529, 1978.
11.
11. Henry JP, Gauer OH, Sieker HO: The effect of moderate changes in blood volume on left and right atrial pressures. Circ Res4:91, 1956.
12.
12. Kaczmarczyk G, Reinhardt HW, Riedel J, et al: Left atrial pressure and postprandial diuresis in conscious dogs on a high sodium intake. Pflügers Arch368:181, 1977.
13.
13. Moses AM, Miller M, Streeten DHP: Quantitative influence of blood volume expansion on the osmotic threshold for vasopressin release. J Clin Endocrinol27:655, 1967.
14.
14. Cross BA, Green JD: Activity of single neurones in the hypothalamus: effect of osmotic and other stimuli. J Physiol148:554, 1959.
15.
15. Hayward JN, Vincent JD: Osmosensitive single neurones in the hypothalamus of unanesthetized monkeys. J Physiol210:947, 1970.
16.
16. Menninger RP, Frazier DT: Effects of blood volume and atrial stretch on hypothalamic single-unit activity. Am J Physiol223:288, 1972.
17.
17. Zuidema GD, Clarke NP: Central localization of the osmotic control center. Am J Physiol188:616, 1957.
18.
18. Jewell PA: The occurrence of vesiculated neurones in the hypothalamus of the dog. J Physiol121:167, 1953.
19.
19. Haberich FJ: Osmoreception in the portal circulation. Fed Proc27:1137, 1968.
20.
20. Haberich FJ, Aziz O, Nowacki PE: Über einen osmorezeptorisch tätigen Mechanismus in der Leber. Pflügers Arch285:73, 1965.
21.
21. Niijima A: Afferent discharges from osmoreceptors in the liver of the guinea pig. Science166:1519, 1969.
22.
22. Andrews WHH, Orbach J: Effect of osmotic pressure on spontaneous afferent discharge in the nerves of the perfused rabbit liver. Pflügers Arch361:89, 1975.
23.
23. Liang CC: The influence of hepatic portal circulation on urine flow. J Physiol214:571, 1971.
24.
24. Ohm W, Haberich FJ: Über den Einfluβ des Druckes im Portalkreislauf auf die Diurese der wachen Ratte. Pflügers Arch306:227, 1969.
25.
25. Guyton AC, Coleman TG: Longterm regulation of the circulation: Interrelationships with body fluid volumes. IN Physical Bases of Circulatory Transport: Regulation and Exchanges. Reeve EBG, Guyton AC (eds), Philadelphia-London, W. B. Saunders Co., 1967, pp 145–190
26.
26. Echt M, Düweling J, Gauer OH, et al: Effective compliance of the total vascular bed and the intrathoracic compartment derived from changes in central venous pressure induced by volume changes in man. Circ Res34:61, 1974.
27.
27. Thornton WE, Hoffler GW: Hemodynamic studies of the legs during weightlessness. IN The Proceedings of the Skylab Life Sciences Symposium. Johnson RS, Dietlein LF (eds), publ. no. JSC-09275, NASA TMX-58154, Washington, D.C., NASA, 1974, pp 623–638.
28.
28. Thornton WE, Hoffler GW, Rummel JA: Anthropometric changes and fluid shifts. IN The Proceedings of the Skylab Life Sciences Symposium. Johnson RS, Dietlein LF (eds), publ. no. JSC-09275, NASA TMX-58154, Washington, D. C, NASA, 1974, pp 637–658.
29.
29. Brennan LA Jr, Malvin RL, Jochim KE, et al: Influence of right and left atrial receptors on plasma concentrations of ADH and renin. Am J Physiol221:273, 1971.
30.
30. Claybaugh JR, Share L: Vasopressin, renin, and cardiovascular response to continuous slow hemorrhage. Am J Physiol224:519, 1973.
31.
31. Johnson AJ, Moore WW, Segar WE: Small changes in left atrial pressure and plasma antidiuretic hormone titers in dogs. Am J Physiol217:210, 1969.
32.
32. Robertson GL, Athar S: The interaction of blood osmolality and blood volume in regulating plasma vasopressin in man. J Clin Endocrinol Metab42:613, 1976.
33.
33. Share L: Role of cardiovascular receptors in the control of ADH release. Cardiology61 (Suppl. 1): 51, 1976.
34.
34. Nonidez JF: Identification of the receptor areas in the venae cavae and pulmonary veins which initiate reflex cardiac acceleration (Bainbridge's Reflex). Am J Anat61:203, 1937.
35.
35. Arndt JO, Brambring P, Hindorf K, et al: The afferent impulse traffic from atrial A-type receptors in cats. Does the A-type receptor signal heart rate?Pflügers Arch326:300, 1971.
36.
36. Linden RJ: Function of cardiac receptors. Circulation48:463, 1973.
37.
37. Linden RJ: Reflexes from receptors in the heart. Cardiology61 (Suppl): 7, 1976.
38.
38. Paintal AS: Cardiovascular receptors. IN Handbook of Sensory Physiology, vol 3, chap. 1, Neil E (ed) Heidelberg-Berlin-New York, Springer, 1971, pp 1–45.
39.
39. Paintal AS: Vagal sensory receptors and their reflex effects. Physiol Rev53:159, 1973.
40.
40. Oberg B, Thoren P: Studies on left ventricular receptors, signalling in non-medullated vagal afferents. Acta Physiol Scand85:145, 1972.
41.
41. Öberg B, Thorén P: Circulatory responses to stimulation of left ventricular receptors in the cat. Acta Physiol Scand88:8, 1973.
42.
42. Szczepanska-Sadowska E: Vagal influences on ADH release in the conscious dogs. Experientia28:35, 1971.
43.
43. Baertschi AJ, Munzer RJ, Ward DG, et al: Right and left B-fiber input to the medulla of the cat. Brain Res98:189, 1975.
44.
44. Andersson B: Regulation of water intake. Physiol Rev58:582, 1978.
45.
45. Kozlowski S, Szczepanska-Sadowska E: Mechanisms of hypovolaemic thirst and interactions between hypovolaemia, hyperosmolality and the anti-diuretic system. IN Control Mechanisms of Drinking. Peters G, Fitzsimons JT, Peters-Haeteli L (eds) Berlin-Heidelberg-New York, Springer Verlag, 1975, pp 25–35.
46.
46. Kozlowski S, Szczepanska-Sadowska E: Antagonistic effects of vasopressin and hypervolaemia on osmotic reactivity of the thirst mechanism in dogs. Pflügers Arch353:59, 1975.
47.
47. Reinhardt HW, Kaczmarczyk G, Eisele R, Arnold B, et al: Left atrial pressure and sodium balance in conscious dogs on a low sodium intake. Pflügers Arch370:59, 1977.