Key result
Enhanced external counterpulsation acutely increased right atrial and central aortic diastolic pressure (P<0.0001) and left ventricular dP/dt, but had a neutral effect on myocardial efficiency.
Why the study?
Does enhanced external counterpulsation (EECP) alter invasive left ventricular hemodynamics and myocardial efficiency in patients undergoing diagnostic catheterization?
Does enhanced external counterpulsation (EECP) alter invasive left ventricular hemodynamics and myocardial efficiency in patients undergoing diagnostic catheterization?
p-value: p=<0.0001
Invasive hemodynamic monitoring reveals that EECP acutely increases preload and central aortic diastolic pressure, counterbalancing afterload reduction and resulting in a neutral effect on myocardial efficiency.
Neutral efficiency with EECP reflects balanced preload-afterload shifts in this case; leaves open net hemodynamic effects in broader populations.
Enhanced external counterpulsation (EECP) is a noninvasive technique that provides beneficial effects for patients with chronic, symptomatic angina pectoris. However, the direct left ventricular effects of EECP have not been studied invasively. We examined invasive right atrial pressure and left ventricular hemodynamics during EECP. Ten patients referred for diagnostic evaluation underwent left heart catheterization from the radial artery. At baseline and during EECP, left ventricular pressure and volume were measured using a micromanometer pressure-conductance catheter, along with recording of right atrial and central aortic pressures. Hemodynamics were recorded at different lower extremity cuff configuration and cuff inflation pressures. As cuff inflation pressure increased, EECP resulted in a dose-dependent increase in right atrial and aortic diastolic pressure (P < 0.0001). The increase in ventricular preload resulted in increased left ventricular volume. Maximum positive (P = 0.0003) and negative left ventricular dP/dt (P < 0.0001) increased. Left ventricular diastolic pressure decreased. There was a neutral effect on myocardial mechanical efficiency. In conclusion, EECP acutely increased right atrial and central aortic diastolic pressure. The increase in preload attenuated the reduction in left ventricular diastolic pressure resulting from systolic unloading. The increased preload counterbalanced the afterload reduction, resulting in a neutral effect on myocardial efficiency.
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Michaels et al. (2009) studied referred for diagnostic evaluation (n=10). Enhanced external counterpulsation (EECP) vs. baseline was evaluated on right atrial pressure and left ventricular hemodynamics (p=<0.0001). Enhanced external counterpulsation acutely increased right atrial and central aortic diastolic pressure (P<0.0001) and left ventricular dP/dt, but had a neutral effect on myocardial efficiency.
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