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Updated: May 23, 2026

3D Modeling of the Lateral Ventricles and Histological Characterization of Periventricular Tissue in Humans and Mouse
Published on: May 19, 2015
Prenatal isolated mild ventriculomegaly is associated with persistent ventricle enlargement at ages 1 and 2
Amanda E Lyall1, Sandra Woolson, Honor M Wolfe
1Department of Psychiatry, University of North Carolina, Chapel Hill, NC 27599, United States.
Background:
Enlargement of the lateral ventricles is thought to originate from abnormal prenatal brain development and is associated with neurodevelopmental disorders. Fetal isolated mild ventriculomegaly (MVM) is associated with the enlargement of lateral ventricle volumes in the neonatal period and developmental delays in early childhood. However, little is known about postnatal brain development in these children.
Methods:
Twenty-eight children with fetal isolated MVM and 56 matched controls were followed at ages 1 and 2 years with structural imaging on a 3T Siemens scanner and assessment of cognitive development with the Mullen Scales of Early Learning. Lateral ventricle, total gray and white matter volumes, and Mullen cognitive composite scores and subscale scores were compared between groups.
Results:
Compared to controls, children with prenatal isolated MVM had significantly larger lateral ventricle volumes at ages 1 and 2 years. Lateral ventricle volume at 1 and 2 years of age was significantly correlated with prenatal ventricle size. Enlargement of the lateral ventricles was associated with increased intracranial volumes and increased gray and white matter volumes. Children with MVM had Mullen composite scores similar to controls, although there was evidence of delay in fine motor and expressive language skills.
Conclusions:
Children with prenatal MVM have persistent enlargement of the lateral ventricles through the age of 2 years; this enlargement is associated with increased gray and white matter volumes and some evidence of delay in fine motor and expressive language development. Further study is needed to determine if enlarged lateral ventricles are associated with increased risk for neurodevelopmental disorders.
Insights
Children with mild ventriculomegaly (MVM) show persistent enlarged lateral ventricles through age 2. This is linked to increased brain matter and subtle delays in fine motor and language skills.
Area of Science:
- Neuroimaging
- Developmental Pediatrics
- Pediatric Neurology
Background:
- Enlarged lateral ventricles in fetuses suggest abnormal prenatal brain development, linked to neurodevelopmental disorders.
- Fetal isolated mild ventriculomegaly (MVM) is associated with neonatal enlarged lateral ventricles and early childhood developmental delays.
- Postnatal brain development in children with fetal MVM requires further investigation.
Purpose of the Study:
- To investigate postnatal brain development in children with fetal isolated mild ventriculomegaly (MVM).
- To compare brain volumes and cognitive development between children with MVM and controls up to age 2.
Main Methods:
- Followed 28 children with fetal isolated MVM and 56 controls at ages 1 and 2 years.
- Utilized 3T MRI for structural brain imaging and Mullen Scales of Early Learning for cognitive assessment.
- Compared lateral ventricle, gray matter, white matter volumes, and cognitive scores between groups.
Main Results:
- Children with MVM had significantly larger lateral ventricle volumes at ages 1 and 2, correlating with prenatal size.
- Enlarged ventricles were associated with increased intracranial, gray, and white matter volumes.
- MVM group showed similar overall cognitive scores but delays in fine motor and expressive language skills.
Conclusions:
- Prenatal MVM leads to persistent lateral ventricle enlargement through age 2, associated with increased brain volumes.
- Evidence suggests fine motor and expressive language delays in children with MVM.
- Further research is needed to ascertain the long-term neurodevelopmental risks associated with enlarged lateral ventricles.
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