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Biomedical subjects

Y Koretsune

Publications and source records attributed to Y Koretsune.

62 records · Page 4Linked to original sources

Hemodynamic and metabolic effects of vasodilator therapy for heart failure in acute myocardial infarction.

Hemodynamic effects of vasodilator agents (molsidomine, nitroglycerin, isosorbide dinitrate or prostaglandin I2) were studied in 53 patients with acute myocardial infarction. In 20 of these patients, effect on cardiac metabolism were also studied. Patients were divided into four groups according to the Forrester subset and hemodynamic effects of these agents were evaluated by the cardiac index (CI)-preload (PAEDP) relationship. In patients of Forrester subset II and IV, vasodilators were capable of producing a considerable reduction in preload without a significant decrease in cardiac output. However, in patients of Forrester subset IV, five of six patients had only a minimal improvement in cardiac performance with vasodilator therapy because of a severe pump failure. In these patients, a combination therapy with dopamine was necessary to maintain the cardiac output. In patients with Forrester subset III, vasodilator therapy decreased cardiac index and preload was also reduced. Thus, for these patients vasodilators could not be indicated but volume infusion may be indicated. In patients with Forrester subset I, although vasodilator therapy decreased cardiac output, coronary sinus flow and myocardial oxygen consumption were also decreased, indicating that the vasodilator therapy is also beneficial for patients even without heart failure because of the protective effect of unloading on ischemic myocardium. Three nitrate agents, i.e., molsidomine, nitroglycerin and isosorbide dinitrate, demonstrated the similar effect on hemodynamics; mean blood pressure and PAEDP decreased by 7-10% and 20-29%, respectively, while systemic vascular resistance was not significantly decreased. In contrast to nitrates, PGI2 decreased mean blood pressure and systemic vascular resistance significantly, whereas a decrease in PAEDP was minimal.(ABSTRACT TRUNCATED AT 250 WORDS)

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Acute effects of intravenous trapidil on hemodynamics, coronary circulation and myocardial metabolism in man.

The acute effects of intravenous trapidil on hemodynamics, coronary circulation and myocardial metabolism were evaluated in 19 patients (Group I: 10 patients of chest pain syndrome; Group II: 9 patients of coronary heart disease). The heart rate increased (p less than 0.05) and aortic pressure decreased (p less than 0.01) during a 6-min study period. Pulmonary arterial end-diastolic pressure decreased slightly in both groups and cardiac output increased prominently in Group II. Myocardial oxygen consumption did not change significantly 3 and 6 min after trapidil injection. Coronary sinus flow increased slightly (statistically not significant) despite a decrease in aortic pressure, and thus, coronary vascular resistance decreased significantly in both groups. Coronary A-V O2 difference decreased 3 min after trapidil injection and no significant change in the lactate extraction ratio was observed. The diameter of the left main coronary artery increased by about 6% after an administration of trapidil. These results suggest that trapidil has the beneficial effect of coronary vasodilation and it increases cardiac output, despite a decrease in the preload, without a significant increase in myocardial oxygen consumption. The latter may be due to an afterload reduction effect of this drug.

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