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Published on: January 7, 2018
The consequences of fetal growth restriction on brain structure and neurodevelopmental outcome
Suzanne L Miller1, Petra S Huppi2, Carina Mallard3
1The Ritchie Centre, Hudson Institute of Medical Research, and The Department of Obstetrics and Gynaecology, Monash University, Clayton, Victoria, Australia.
Insights
Fetal growth restriction (FGR) impairs fetal brain development, leading to structural and functional deficits. This review details FGR
Area of Science:
- Neuroscience
- Developmental Biology
- Obstetrics
Background:
- Fetal growth restriction (FGR) affects 3-9% of pregnancies, causing significant perinatal mortality and morbidity.
- Placental insufficiency leading to chronic fetal hypoxia is the primary cause of FGR.
- The fetal adaptive response of 'brain sparing' does not guarantee normal brain development.
Purpose of the Study:
- To review the complex changes in fetal brain structure and function resulting from FGR.
- To synthesize evidence from human and experimental animal studies on FGR's neurodevelopmental impact.
- To highlight the influence of FGR onset, severity, and delivery timing on brain outcomes.
Main Methods:
- Comprehensive review of existing human and experimental animal studies on FGR.
- Analysis of structural and functional brain alterations in FGR fetuses and neonates.
- Correlation of FGR characteristics with neurodevelopmental outcomes.
Main Results:
- FGR is associated with reduced total brain volume, altered cortical structure, decreased cell numbers, and myelination deficits.
- Impaired brain connectivity includes neuronal migration deficits, reduced dendritic processes, and less efficient neural networks.
- Timing, severity of FGR, and gestational age at delivery significantly influence neurodevelopmental outcomes.
Conclusions:
- FGR causes significant structural brain alterations, impacting connectivity and development.
- These structural changes lead to observable short- and long-term functional deficits in children.
- Understanding FGR's impact on brain development is crucial for improving perinatal care and long-term outcomes.
Abstract:
Fetal growth restriction (FGR) is a significant complication of pregnancy describing a fetus that does not grow to full potential due to pathological compromise. FGR affects 3-9% of pregnancies in high-income countries, and is a leading cause of perinatal mortality and morbidity. Placental insufficiency is the principal cause of FGR, resulting in chronic fetal hypoxia. This hypoxia induces a fetal adaptive response of cardiac output redistribution to favour vital organs, including the brain, and is in consequence called brain sparing. Despite this, it is now apparent that brain sparing does not ensure normal brain development in growth-restricted fetuses. In this review we have brought together available evidence from human and experimental animal studies to describe the complex changes in brain structure and function that occur as a consequence of FGR. In both humans and animals, neurodevelopmental outcomes are influenced by the timing of the onset of FGR, the severity of FGR, and gestational age at delivery. FGR is broadly associated with reduced total brain volume and altered cortical volume and structure, decreased total number of cells and myelination deficits. Brain connectivity is also impaired, evidenced by neuronal migration deficits, reduced dendritic processes, and less efficient networks with decreased long-range connections. Subsequent to these structural alterations, short- and long-term functional consequences have been described in school children who had FGR, most commonly including problems in motor skills, cognition, memory and neuropsychological dysfunctions.
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