Key result
Increasing the atrioventricular delay significantly decreased diastolic filling time and peak atrial reverse flow wave (P<0.001), and increased the systolic/total PVF-VTI ratio (P<0.001).
Why the study?
Does altering the atrioventricular delay (AVD) impact the pulmonary venous flow pattern (PVFP) in patients with a DDD pacemaker and diastolic dysfunction?
Does altering the atrioventricular delay (AVD) impact the pulmonary venous flow pattern (PVFP) in patients with a DDD pacemaker and diastolic dysfunction?
p-value: p=<0.001
Increasing the atrioventricular delay in patients with DDD pacemakers significantly alters the pulmonary venous flow pattern, providing critical systolic measurements that can help optimize diastolic filling time and atrial pressure, particularly in heart failure patients.
Longer AV delay alters pulmonary venous flow in DDD patients; leaves open whether optimization improves diastolic parameters or outcomes.
UNLABELLED: This study evaluated the impact of the atrioventricular delay (AVD) on the pulmonary venous flow pattern (PVFP). METHODS: Transthoracic Doppler PVFP were obtained during atrial and ventricular pacing at a fixed rate of 70 beats/min in 20 patients equipped with a DDD pacemaker, diastolic dysfunction linked to an impaired relaxation, a mean ejection fraction of 49%, and AV block. Two subgroups were analyzed equally: group I: seven patients with a normal ejection fraction and group II: 13 patients with decreased ejection fraction. Three different AVDs were studied: short (50 ms), intermediate (150 ms), and long (250 ms). RESULTS: As the AVD increased, the diastolic filling time and the peak atrial reverse flow wave decreased (P < 0.001). There was a decreasing D wave and no significant change in the peak velocity of the S wave. The S wave became biphasic in all patients at the longest AVD of 250 ms. The systolic (S) velocity time integral (VTI) of the pulmonary wave and the systolic/total PVF-VTI ratio increased significantly (P < 0.001). A similar response was seen in both group of patients. CONCLUSIONS: These data correlated the AVD with PVFP, supplying critical systolic information completing the diastolic data obtained from mitral Doppler patterns. These systolic measurements were especially useful for patients with heart failure and a DDD pacemaker, in order to obtain the longest diastolic filling time at the lowest atrial pressure.
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Douchet et al. (1998) studied DDD pacemaker with AV block and diastolic dysfunction (n=20). Atrioventricular delay (AVD) adjustment vs. Different AVD lengths was evaluated on Pulmonary venous flow pattern (PVFP) parameters (p=<0.001). Increasing the atrioventricular delay significantly decreased diastolic filling time and peak atrial reverse flow wave (P<0.001), and increased the systolic/total PVF-VTI ratio (P<0.001).
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