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.

The Journal of Physiology
|November 27, 2015
PubMed

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.

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