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The 4-vessel Sampling Approach to Integrative Studies of Human Placental Physiology In Vivo
Published on: August 2, 2017
The effect of umbilical venous constriction on placental development, cord length and perinatal outcome
Svein Magne Skulstad1, Svein Rasmussen, Silje Seglem
1Institute of Clinical Medicine, Department of Obstetrics and Gynaecology, University of Bergen, Bergen, Norway. svein.skulstad@uib.no
Background:
Umbilical vein constriction at the fetal abdominal inlet is a common finding after week 13, when the period of umbilical herniation is brought to an end.
Aims:
To test the hypothesis that a constricting umbilical ring within physiological ranges affects fetal hemodynamics by either pooling blood in the placenta or restricting nutrient transfer to the fetus and thus shift the birthweight/placental weight (BW/PW) ratio. A constriction could also cause pressure changes and elongation of the cord and possibly be a disadvantage during labour.
Study Design:
Cross-sectional.
Subjects:
359 Low-risk singleton pregnancies at 13-40 weeks of gestation.
Outcome Measures:
Standard deviation score (z-score) and regression analysis were used to determine the effect of umbilical vein constriction (expressed by increased blood velocity) on birthweight/placental weight ratio (BW/PW), cord length, Apgar score and emergency delivery due to fetal distress.
Results:
Umbilical venous constriction had a mild but significant effect on BW/PW in male (p=0.018) but not in female fetuses. Increased constriction was also associated with increased length of the cord but only in female fetuses (p=0.019). Cord length was positively related to birthweight and placental weight, but an increased length of the cord was also associated with decreasing BW/PW ratio for the male fetuses only (p=0.044). Increasing degree of venous constriction was associated with Apgar score < or =7 at 1 (p=0.009) but not at 5 min after birth and was not associated with emergency delivery.
Conclusion:
Physiological umbilical venous constriction exerts a mild but significant gender-specific hemodynamic impact on intrauterine development.
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