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Correlation analysis of ductus venosus velocity indices and fetal cardiac function
1Center for Advanced Fetal Care, Department of Obstetrics, Gynecology and Reproductive Sciences, University of Maryland School of Medicine, Baltimore, MD, USA.
Insights
Ductus venosus (DV) velocity ratios correlate with fetal cardiac function, offering insights beyond the pulsatility index for veins (PIV). Analyzing these ratios aids in diagnosing fetal cardiac dysfunction when PIV is abnormal.
Area of Science:
- Cardiovascular Physiology
- Fetal Medicine
- Diagnostic Imaging
Background:
- The ductus venosus pulsatility index for veins (DV-PIV) is a marker for fetal cardiac function.
- Elevated DV-PIV may indicate cardiac dysfunction, but its precise relationship with myocardial function requires further investigation.
Purpose of the Study:
- To investigate the association between DV velocity ratios and myocardial cardiac function in fetuses.
- To determine if DV velocity ratios provide additional information beyond DV-PIV in assessing fetal cardiac health.
Main Methods:
- Doppler ultrasound measurements of the DV, atrioventricular valves, and ventricular inflow/outflow were analyzed.
- DV velocity ratios and DV pulsatility index for veins (PIV) were calculated and correlated with echocardiographic parameters like E/A ratios and myocardial performance index (MPI).
Main Results:
- DV-PIV correlated significantly with DV velocity ratios but not with E/A ratios or MPI.
- Specific DV velocity ratios (S/v, v/D, S/D) showed relationships with tricuspid/mitral E/A ratios and left ventricular MPI.
- No association was found between a-wave-related DV velocity ratios and cardiac function.
Conclusions:
- DV velocity ratios offer a more detailed assessment of fetal cardiac function than DV-PIV alone.
- In fetuses with elevated DV-PIV, analyzing DV velocity ratios or performing direct cardiac evaluation is recommended to understand the cause of dysfunction.
Objective:
To examine the relationships between the ductus venosus (DV) pulsatility index for veins (PIV), individual DV velocity ratios and diastolic and global myocardial cardiac function.
Methods:
Doppler measurements of the DV, atrioventricular (AV) valves and ventricular in- and outflow were analyzed. The DV-PIV and velocity ratios for individual phases (systole (S), end-systolic relaxation (v), early diastole (D), atrial systole (a), and S/v, S/D, S/a, v/D, v/a and D/a ratios) were calculated. The ratio of early and late diastolic peak velocities across AV valves was calculated (E/A ratio). Left modified myocardial performance index (MPI) was calculated from time intervals between valve clicks defining isovolumetric contraction/relaxation and ejection times. All values were transformed to Z-scores. The distributions of DV velocity ratios and DV-PIV were correlated with cardiac Doppler parameters.
Results:
A total of 1163 examinations from 213 fetuses, most of which were at risk for cardiac dysfunction, were included in the study. In 742 the PIV was normal and in 421 PIV was elevated > 2 SD above the normal mean. The DV-PIV correlated with velocity ratios (P < 0.0001) but not with E/A ratios and the MPI. S/v and v/D ratios were related to tricuspid and mitral E/A ratios and left ventricular MPI. The S/D ratio was only related to both E/A ratios. There was no relationship between a-wave-related velocity ratios and cardiac function.
Conclusions:
Velocity ratios of the DV show relationships with cardiac function that are not reflected by the PIV alone. In cases of suspected fetal cardiac dysfunction based on elevated DV-PIV, analysis of velocity ratios or direct cardiac evaluation is suggested to determine the underlying pathophysiology.
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