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Echo-Doppler evaluation of the effects of heart rate increments on left atrial pump function in normal human subjects
S Iliceto1, G D'Ambrosio, V Marangelli
1Institute of Cardiovascular diseases, University of Bari, Italy.
Insights
This study investigated the active and passive roles of the atrium in left ventricular filling during increased heart rates. Findings reveal distinct contributions of atrial systole and passive filling to overall cardiac function.
Area of Science:
- Cardiology
- Physiology
- Echocardiography
Background:
- The role of atrial contribution to left ventricular filling at higher heart rates is not fully understood.
- Distinguishing between active (atrial systole) and passive (reservoir function) atrial roles is crucial for cardiac assessment.
Purpose of the Study:
- To quantify the active and passive contributions of the atrium to left ventricular filling during elevated heart rates.
- To differentiate the effects of atrial systole versus passive filling using Doppler echocardiography.
Main Methods:
- Two-dimensional echo-Doppler study with right atrial pacing to control heart rate.
- Analysis of transmitral flow velocity curves, including peak flow velocity and time-velocity integrals.
- Superimposition of Doppler curves to separate active and passive atrial flow components.
Main Results:
- Pulsed Doppler identified distinct parameters of atrial contribution, such as peak flow velocity and early to atrial peak flow velocity ratio.
- A novel method of superimposing Doppler curves allowed for the quantification of active and passive atrial flow.
- The study successfully differentiated the active contribution of atrial systole from passive diastolic filling.
Conclusions:
- The study provides a method to precisely measure the active and passive components of atrial contribution to ventricular filling.
- Understanding these distinct roles is vital for assessing cardiac function, particularly in conditions affecting heart rate and atrial function.
Abstract:
It is commonly believed that the atrial contribution to left ventricular filling increases during heart rate increments. However, the relative contribution of the pump function (atrial systole) and of the passive role (diastasis and reservoir) of the atrium to end-diastolic left ventricular filling is not well known. In order to investigate this problem, we performed a two-dimensional echo-Doppler study during right atrial pacing. Transmitral flow velocity curves were obtained by means of pulsed Doppler. Pacing was performed (1) at the lowest heart rate at which it was possible to obtain a stable capture of the atria, (2) at the heart rate at which the early and late Doppler filling waves almost completely overlapped. In both stages pacing was interrupted for a few seconds to obtain some post-pacing beats. Doppler tracing recorded at rest, during pacing and in the immediate post-pacing beats were analysed to obtain well-known parameters of atrial contribution; atrial peak flow velocity, early to atrial peak flow velocity ratio, and time-velocity integral of the atrial wave. Furthermore, in order to distinguish end-diastolic passive flow from the active contribution of atrial systole to filling, we superimposed the envelope of the last Doppler curve obtained during atrial pacing over the envelope of the first post-pacing curve. In this way the area of the atrial wave of the paced beat was divided by the mid-diastolic part of the post-pacing one into two areas, the integrals of which correspond to the active and passive atrial contribution respectively.(ABSTRACT TRUNCATED AT 250 WORDS)
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