[A case of temoral arteritis (author's transl)].
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Biomedical subjects
Publications and source records attributed to M Kuroda.
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The interaction of the inhibitory component (TN I) of troponin and F-actin in the presence and absence of tropomyosin was studied by a number of physico-chemical techniques: i.e., gel filtration, ultracentrifugation, flow birefringence, viscosity and dynamic viscoelasticity measurements, and electron microscopy. The results indicated that TN I and F-actin interact with each other more strongly in the presence of tropomyosin than in its absence. The physiological implication of this finding is discussed.
A tryptophan residue in hen's egg-white lysozyme [EC 3.2.1.17] was modified by ozone in an aqueous solution. One of the six tryptophan residues in the enzyme was oxidized to N'-formylkynurenine with concomitant loss of the enzymatic activity. Physicochemical studies of this modified enzyme (OL-I) revealed that the ozonization of lysozyme in aqueous media resulted in little change of the gross molecular conformation. It was deduced that the modified tryptophan residue in OL-I was possibly located in position 62 (or 63) of the protein.
Two cases of pericardial pseudocyst which developed in the course of maintenance hemodialysis are reported. Both patients were usually free of complaints, although there was evidence of the previous pericarditis with recent accumulation of pericardial effusion. As a possible mechanism leading to pericardial pseudocyst formation, distension of a weak area of the thickened pericardium due to an increase in intrapericardial pressure was assumed. Therefore, pericardial pseudocyst is one of the likely complications of patients on maintenance hemodialysis.
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This is a case report involving a 9 year old girl with a teratoma that infaced mainly the bilateral hypothalamus. The girl was observed for 14 months after partial surgical removal. During that time she showed aphagia, adipsia, hypopituitarism, and visual and psychiatric disturbances. Severe hypernatremia also was present, even though large amounts of 5% glucose solution without salt were given I.V. Food and water were given by nasal gastric gavage and later gavage via gastric fistula, but the hypernatremia remained unchanged. When pitressin or spironolacton (anti-aldosterone) were administered, remarkable effect on the hypernatremia couldn't be found. Upon autopsy it was discovered that the bilateral hypothalamus, left subthalamus and ventral part of the thalamus were invaded by teratoma. Comparing many similar clinical reports and manifestations of hypothalamic lesions in experimental animals, it is reasonable to assume that the mechanisms of hypernatremia were caused by the disturbances of ADH secretion, thirst centre and osmoreceptor in the hypothalamus.
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