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Updated: Jul 28, 2026

The Hypoxic Ischemic Encephalopathy Model of Perinatal Ischemia
Published on: November 18, 2008
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.
Abstract:
Fetal hypoxia is one of the leading causes of perinatal morbidity and mortality. One of the most severe sequels of fetal hypoxic insult is the development of perinatal brain lesions resulting in a spectrum of neurological disabilities, from minor cerebral disorders to cerebral palsy. One of the most important fetal adaptive responses to hypoxia is redistribution of blood flow towards the fetal brain, known as the 'brain sparing effect'. The fetal blood flow redistribution in favor of the fetal brain can be detected and quantified by the Doppler cerebral/umbilical ratio (C/U ratio = cerebral resistance index (CRI)/umbilical resistance index (URI)). Our studies on animal models and human fetuses have demonstrated clearly that this phenomenon cannot prevent the development of perinatal brain lesions in the case of severe or prolonged hypoxia. Fetal deterioration in chronic and severe hypoxia is characterized by the disappearance of the physiological cerebral vascular variability (vasoconstriction and vasodilatation), followed by an increase in cerebral vascular resistance. However, our latest study on growth-restricted and hypoxic human fetuses has shown that perinatal brain lesions can develop even before the loss of cerebrovascular variability. The fetal exposure to hypoxia can be quantified by using a new vascular score, the hypoxia index. This parameter, which takes into account the degree as well as duration of fetal hypoxia, can be calculated by summing the daily % C/U ratio reduction from the cut-off value 1 over the period of observation. According to our results, the use of this parameter, which calculates the cumulative, relative oxygen deficit, could allow for the first time the sensitive and reliable prediction and even prevention of adverse neurological outcome in pregnancies complicated by fetal hypoxia.
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