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Content:
Chapter 1 Chairman's starting comments (pages 414–416): S. Zuckerman
Chapter 2 The organic Excretion of Sodium and its Relation to mobile Water (pages 417–429): E. J. Conway
Chapter three rules of Intracellular Potassium and dating of this rules to Renal Excretion of Sodium and Potassium (pages 430–438): J. A. Luetscher
Chapter four the relationship of Carbohydrate and Potassium Metabolism, with regards to the Adrenal Cortex (pages 439–445): F. Verzar
Chapter five Steroids and Acid?Base Equilibrium (pages 446–454): Raoul Lecoq
Chapter 6 The Interrelationship among the Adrenal Cortex, Posterior Pituitary and Anterior Pituitary in Water Metabolism (pages 455–462): Robert Gaunt
Chapter 7 Antidiuretic task in Rat Serum (pages 463–469): H. Heller
Chapter eight Hormonal impacts at the Water Metabolism of New?Born and younger Animals (pages 470–480): H. Heller
Chapter nine The effect of Sodium Chloride on Water Diuresis and its Relation to the Adrenal (pages 481–498): H. W. Hays
Chapter 10 comparability of the impression of Cortisone Acetate and of Deoxycorticosterone Acetate upon Water stability (pages 499–516): Charles A. Winter
Chapter eleven initial stories at the Sensitivity of Adrenalectomized canine to the Antidiuretic Hormone of the Posterior Pituitary Gland (pages 517–525): Mary P. Lockett
Chapter 12 The influence of Adrenalectomy and Deoxycorticosterone at the Water content material of Mammary Tissue (pages 526–529): S. J. Folley
Chapter thirteen The Sodium?Retaining job of the Corticoid Fraction of Urine of Edematous sufferers (pages 530–541): John A. Luetscher, Quentin B. Deming and Ben B. Johnson
Chapter 14 The position of the Liver in Water Metabolism (pages 542–552): James H. Birnie
Chapter 15 Relationships among Tissue development and Water and Electrolyte stability (pages 553–559): D. F. Cole
Chapter sixteen The Distribution of Water, Electrolytes, Nitrogen and Chondroitin Sulphate in Hyaline Cartilages (pages 560–578): Lillian Eichelberger, Thomas D. Brower and Michael Roma
Chapter 17 Chairman's final feedback (pages 579–583): S. Zuckerman

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Additional resources for Ciba Foundation Symposium - Hormonal Influences in Water Metabolism (Book II of Colloquia on Endocrinology), Volume IV

Sample text

We have therefore put forward the working hypothesis that a local disturbance of the enzyme reaction which fixes potassium in the muscle exists in rheumatoid arthritis. This causes pain and reflex inhibition and this can be restored t o normal with adrenal corticosteroids, leading to quick changes of activity. I mention this as a sideline which shows where an understanding of the connection of these enzyme reactions with cortical hormones might lead in the future. Summary The fact which I wish to emphasize is that the uptake of potassium is coupled with the energy.

CONWAY first hour of the suspension in N/10 KC1, it may be assumed that the carrier is not excreted out with the sodium but operates in a cycle of carriage and release in the cell wall or membrane. Pursuing the matter further from this stage, the carrier substance may be regarded as of one of two kinds:( a ) The sodium is carried in a completely unionized state, sharing an electron with its carrier; the undissociated salt fraction of a polyphosphate may here be considered as an example. ( b ) An electro-adsorption complex with a respiratory catalyst.

I wondered whether the content of water was normal throughout. CONWAY:Offhand, I cannot give you the exact data for that, but the changes were not impressive. SCHILD: There was one point I wasn’t quite clear about. ” Does that mean that the potassium actually went in in exchange for sodium? In that case it would not necessarily require free energy if it was only an exchange. One way of getting around the active extrusion would be t o assume that some of the sodium is adsorbed to a surface or dissolved in a small compartment in a higher concentration possibly than outside.

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