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A Tsanaclis

Publications and source records attributed to A Tsanaclis.

9 recordsLinked to original sources

[The effect of intravenous furosemide on the hemodynamic parameters and colloid osmotic pressure in patients with pulmonary edema].

PURPOSE: To evaluate the effects of intravenous furosemide over hemodynamics variables and colloid osmotic pressure in patients with pulmonary edema. METHODS: Eight patients with pulmonary edema, mean age of 58.3 +/- 7.5 years, 6 men, were evaluated. Hemodynamic monitoring was performed by Swan-Ganz catheter in pulmonary artery to obtain RAP and PAWP, in mmHg, and HR, in bpm. Cardiac output (CO) was obtained by thermodilution method. Cardiac index (CI) in L/min/m2, and systolic index, in ml, arose from variables above. Mean arterial pressure (MAP), in mmHg, was obtained through catheterization of radial artery. patients were treated with 20 mg of intravenous furosemide, and hemodynamic variables were measured before and after 5, 15, 30, 60 and 120 minutes. COP was measured in Weil oncometer (IL 196) at same intervals. RESULTS: A significant reduction of RAP (p = 0.002) and PAWP (p < 0.0001), HR (p = 0.02), COP (p < 0.0001) and gradient between PAWP-COP (p < 0.0001) were observed. RAP and PAWP reduction was greater in the first five minutes and, otherwise, COP reduction was gradual in 120 min. PAWP-COP gradient initially positive, stayed negative during all study. MAP, CI, SI and SVR did not show statistical differences. CONCLUSION: Furosemide administration reduced RAP, PAWP, HR, COP and PAWP-COP gradient, probably by a redistribution of fluid excess in the interstitial to intravascular space, through changes in driving fluid forces, with predominance in colloid osmotic pressure, which reverse fluid from intravascular to interstitial observed in pulmonary edema.

Acute Disease↗

Acute effects of dobutamine and dopamine on renal and respiratory functions in patients on prolonged mechanical ventilation.

1. It is known that positive pressure mechanical ventilation (PPMV) decreases diuresis and increases extravascular water, thereby impairing pulmonary gas exchange. Sympathomimetic amines are commonly used to relieve these effects. To compare the effects of dobutamine (DT) and dopamine (DP) on renal and pulmonary function, we studied 30 patients submitted to continuous PPMV for at least 72 h. All were in stable hemodynamic conditions. Patients had pulmonary insufficiency of different etiology. The drugs were randomly administered by continuous intravenous infusion at the dose of 4 to 6 micrograms kg-1 min-1 for 3 h. An interval of 60 min was allowed to elapse between treatments. 2. A significant increase in arterial pressure and heart rate occurred with both drugs (P less than 0.05). DP increased urinary flow by 93.7% (1.6 +/- 0.1 to 3.1 +/- 0.4 ml/min; P less than 0.05) and Na excretion fraction (NaEF) by 35.5% (P less than 0.05). In contrast, DT reduced NaEF by 58.9% (P less than 0.05) and had no effect on urinary flow. Neither drug altered creatinine clearance. 3. The alveolo-arterial O2 difference (A-aO2D), which was 370 +/- 20 mmHg during the control period, increased to 394 +/- 20 mmHg after DP and decreased to 355 +/- 22 mmHg after DT, the difference being statistically significant (P less than 0.05). Pulmonary shunt (%) and the venous pO2 (mmHg) did not change during the infusion of DP or DT. 4. In conclusion, an acute increase in salt and water excretion does not necessarily lead to an immediate reduction in pulmonary "shunt".(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗