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Updated: Jul 29, 2026

Fetal Echocardiography and Pulsed-wave Doppler Ultrasound in a Rabbit Model of Intrauterine Growth Restriction
Published on: June 29, 2013
Ultrasonography and fetal growth: key perinatal factors
1University of California, Berkeley 94720, USA.
Insights
Prenatal ultrasound measurements, particularly femur length, can predict neonatal length. Fetal growth patterns correlate with postnatal development, aiding in the prediction of small-for-gestational-age infants.
Area of Science:
- Prenatal and postnatal growth assessment
- Fetal biometry and development
- Longitudinal growth studies
Background:
- Intrauterine growth retardation (IUGR) impacts postnatal development.
- Accurate fetal growth assessment is crucial for predicting neonatal outcomes.
- Understanding prenatal predictors of growth is essential for early intervention.
Purpose of the Study:
- To determine if fetal growth can predict prenatal and postnatal development.
- To investigate the relationship between intrauterine growth retardation and postnatal growth.
- To establish reliable methods for estimating fetal length and weight.
Main Methods:
- Longitudinal study of 257 fetuses using ultrasound from 15 weeks' gestation.
- Measurements included femur length, biparietal diameter, head circumference, abdominothoracic diameter, and estimated body weight.
- Correlation of prenatal femur length with neonatal length and postnatal growth up to 2 years.
Main Results:
- Femur length multiplied by approximately 7 accurately estimates total fetal and neonatal length.
- Prenatal length-distance data and postnatal growth velocity curves show consistent deceleration until 2 years.
- Combining biparietal diameter, abdominothoracic diameter, and femur length improves prediction of small-for-gestational-age infants.
Conclusions:
- Femur length is a reliable predictor of fetal and neonatal length.
- Prenatal growth assessment provides insights into postnatal growth trajectories.
- Multivariate fetal measurements enhance the prognostic accuracy for identifying growth-restricted neonates.
Abstract:
To assess whether children can be predetermined prenatally to be either normally or abnormally grown and what the relationships are between intrauterine growth retardation and postnatal growth, we undertook a longitudinal study of fetal growth measuring fetuses ultrasonically. We measured 257 fetuses antenatally for femur length, biparietal diameter, head circumference (by formula calculation), abdominothoracic diameter, and body weight (by formula calculation). We chose femur length because it can be measured fairly accurately from 15 weeks' gestation to term and would represent linear growth. We noted that there is a peak length velocity before 15 weeks' gestation. In 61 fetuses, we found that by measuring the femur length within 1 week before birth, plotting that femur length against the total length measured when the baby is newly born, and multiplying the femur length by 7.0538, we derived a good estimate of total body length, with a small SD of +/- 0.0493. Thus we indicate that multiplying femur length by 7 during the second half of gestation gives a good indication and prediction of total fetal and neonatal length. Further, assessment of postnatal growth by examination of the prenatal length distance data from 15 weeks to term for femur length, and assessment of the body length of these subjects as infants from birth to 2 postnatal years, showed that the velocity curves of both phases steadily decelerate until 2 years. Also, predictive curves for fetal weight were constructed by use of Hadlock's formula for estimating fetal weight from fetal femur length and head and body measurements. It appeared that adding one biparietal diameter to the abdominothoracic diameter measurement and femur length is a better prognosticator for small-for-gestational-age infants than any measurement alone.
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