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Eva Balla

Publications and source records attributed to Eva Balla.

2 recordsLinked to original sources

Reverse ventricular remodeling and improved functional capacity after ventricular resynchronization in advanced heart failure.

BACKGROUND: Ventricular resynchronization is a non-pharmacological treatment for advanced heart failure refractory to drug therapy and with intraventricular conduction delay. We describe the time course of echocardiographic and functional recovery after resynchronization in 31 patients (mean age 67 +/- 8 years). METHODS: We evaluated NYHA class, echocardiogram, respiratory function, and cardiopulmonary test before pacemaker implantation (baseline), after 1-3 months (short-term evaluation), and 10-15 months afterwards (long-term evaluation, n = 21 patients). Mortality at 1 year was considered. RESULTS: Both at short and long-term, patients improved NYHA class, ventricular function, and ventricular volumes. Already at short-term, we observed an increase in oxygen consumption at peak exercise (12.6 +/- 0.6 vs 10.5 +/- 0.5 ml/kg/min), oxygen consumption at anaerobic threshold (9.8 +/- 0.6 vs 8.3 +/- 0.6 ml/kg/min) and oxygen pulse (8.3 +/- 0.5 vs 7.5 +/- 0.5 ml/beat). Ventilatory efficacy (VE/VCO2 slope) and alveolo-capillary diffusion (estimated by the measurement of lung diffusion capacity for carbon monoxide - DLCO) improved only at long-term (VE/VCO2: 40.7 +/- 1.6 vs 45.3 +/- 1.8; DLCO: 70.3 +/- 2.7 vs 59.4 +/- 5.9% of predicted, p = 0.05). The 1-year mortality was 9.7%. CONCLUSIONS: Ventricular resynchronization is linked to a fast and prolonged recovery of NYHA class, echocardiographic variables and stress tolerance. The improvement of indexes known to carry a prognostic value confirms that ventricular resynchronization can positively interfere with the evolution of the disease.

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Simultaneous vs. sequential biventricular pacing in dilated cardiomyopathy: an acute hemodynamic study.

AIMS: Simultaneous biventricular pacing improves left ventricular (LV) systolic performance in patients with dilated cardiomyopathy and intraventricular conduction delay. We tested the hypothesis that further improvements can be obtained using sequential biventricular pacing by optimizing both atrioventricular and interventricular delays. METHODS AND RESULTS: In 12 patients, LV pressure, right ventricular (RV) pressure and respective rates of change of pressure (dP/dt) were acutely measured during biventricular pacing with different atrioventricular and interventricular (VVi) intervals ranging from -60 to +40 ms. The average increase vs. baseline in maximum LV dP/dt was higher for sequential than for simultaneous biventricular pacing (VDD mode: 35+/-20 vs. 29+/-18%, P<0.01; DDD mode: 38+/-23 vs. 34+/-25%, P<0.01), with a minority of patients accounting for most of the difference. The mean optimal VVi was -25+/-21 ms in VDD mode and -25+/-26 ms in DDD mode. With these settings, RV dP/dt was not significantly different from baseline. QRS shortening was not predictive of LV dP/dt increase. CONCLUSION: A significant increase of LV dP/dt with no change in RV dP/dt can be obtained by sequential biventricular pacing as compared to simultaneous biventricular pacing. The highest LV dP/dt is achieved when LV is stimulated before RV. The hemodynamic advantage might be of clinical significance in selected cases.

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