Fetal cerebrovascular response to chronic hypoxia--implications for the prevention of brain damage

Aida Salihagić-Kadić1, Marijana Medić, Domagoj Jugović

  • 1Department of Physiology, School of Medicine, University Zagreb, Zagreb, Croatia. asalih@mef.hr

Insights

Fetal hypoxia can cause brain lesions, but the

Area of Science:

  • Perinatal medicine
  • Fetal physiology
  • Neurology

Background:

  • Fetal hypoxia is a major cause of perinatal morbidity and mortality.
  • Hypoxic insult can lead to perinatal brain lesions and neurological disabilities.
  • The 'brain sparing effect,' or blood flow redistribution to the fetal brain, is an adaptive response to hypoxia.

Purpose of the Study:

  • To investigate the relationship between fetal hypoxia and perinatal brain lesions.
  • To evaluate the effectiveness of the cerebral/umbilical (C/U) ratio in predicting neurological outcomes.
  • To introduce and validate a new hypoxia index for quantifying fetal hypoxic exposure.

Main Methods:

  • Utilized Doppler ultrasound to measure the C/U ratio (cerebral resistance index/umbilical resistance index).
  • Analyzed data from animal models and human fetuses, including growth-restricted and hypoxic cases.
  • Developed and calculated a novel 'hypoxia index' based on daily C/U ratio reduction.

Main Results:

  • The brain sparing effect does not always prevent brain lesions in severe or prolonged hypoxia.
  • Cerebrovascular variability loss and increased resistance characterize fetal deterioration in hypoxia.
  • Perinatal brain lesions can occur even before the loss of cerebrovascular variability in hypoxic fetuses.

Conclusions:

  • The novel hypoxia index, quantifying cumulative oxygen deficit, shows promise for predicting adverse neurological outcomes.
  • This parameter may enable sensitive and reliable prediction and prevention of neurological issues in pregnancies with fetal hypoxia.
  • Early detection and intervention based on the hypoxia index could improve fetal brain health outcomes.