Biomedical subjects
P VANAMEE
Publications and source records attributed to P VANAMEE.
Respiratory alkalosis in hepatic coma.
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Electrolyte alterations in liver disease and hepatic coma.
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Physiologic alterations resulting from carbohydrate, protein and fat patients following gastrectomy: the relationship of these changes to the dumping syndrome.
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Respiratory alkalosis accompanying ammonium toxicity.
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Evaluation of respiratory compensation in metabolic alkalosis.
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Postoperative course following total right hepatic lobectomy.
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The effect of ventilatory insufficiency on respiratory compensations in metabolic acidosis and alkalosis.
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Renal mechanisms involved in bicarbonate absorption.
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Common electrolyte abnormalities encountered in bowel surgery; mechanism of hypochloremic alkalosis, hypokalemic alkalosis and hyperchloremic acidosis.
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The antigenicity of rat collagen.
A method is described for preparing purified collagen from the tail tendons of rats with minimal alteration from its native state. This purified collagen is soluble in dilute acetic acid and when injected intraperitoneally into rabbits induces complement-fixing antibodies in low titer. It has been demonstrated by the use of certain immunological tests, enzymatic analyses, and electron microscopy that these antibodies are probably directed specifically toward collagen rather than toward accompanying impurities such as tissue proteins or polysaccharides. Evidence is presented suggesting that collagen exhibits species specificity.
Observations with the electron microscope on the solvation and reconstitution of collagen.
The course of events in the solvation and reconstitution of collagen obtained from rat tail tendon is described as seen with the electron microscope. Under the influence of 0.01 per cent acetic acid the collagen fibers swell and dissociate into submicroscopic filaments, the smallest of which are probably beyond the resolution of the electron microscope. These filaments can be made to reconstitute into fibers either by the addition of neutral salts to the acid solution or by raising the pH. The structural form of the resulting fibers is influenced by the concentration of the salt and by the pH of the solution employed. Saline-concentrations around 1 per cent and pH's ranging from 4.8 to 6.8 lead to the formation of needle-shaped crystals, or tactoids, showing the striated structure characteristic of collagen. Saline concentrations outside of this range (0.5 per cent and 5.0 per cent) lead to the formation of long fibrils without evidence of striations. pH's on the alkaline side of 6.8 bring about the formation of long slender fibers. Some of the possible reasons for these different fiber forms are discussed. Apparently fibers are formed in vitro by the lateral and longitudinal association of the filaments seen in the original solutions. Some of the fibers thus formed may in turn associate laterally and longitudinally to form the larger fibers. The formation of the needle-shaped crystals appears to be an orderly process since it leads to the formation of a periodicity in the fibers. The striations in the smaller fibers are uniform and regularly spaced at around 210 A. With continued growth of these fibers there is a simultaneous development of a more obvious and precise banding. It is evident that two out of each group of three regularly spaced striae are more prominent. This produces the macroperiod of collagen measuring around 640 A in length.
The artificial kidney in the treatment of renal failure and hyperuricemia in patients with lymphoma and leukemia.
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[The treatment of refractory edematous states with the combination of arginine monohydrochloride and mercurial diuretics].
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