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Measurement of Fronto-limbic Activity Using an Emotional Oddball Task in Children with Familial High Risk for Schizophrenia
Published on: December 2, 2015
Prenatal and neonatal brain structure and white matter maturation in children at high risk for schizophrenia
John H Gilmore1, Chaeryon Kang, Dianne D Evans
1Conte Schizophrenia Research Center and Department of Psychiatry, University of North Carolina at Chapel Hill, NC 27599-7160, USA. jgilmore@med.unc.edu
Insights
Neonates with a genetic risk for schizophrenia showed larger brain volumes, particularly males. This suggests potential early brain development differences in males at high risk for schizophrenia.
Area of Science:
- Neuroscience
- Developmental Psychology
- Genetics
Background:
- Schizophrenia is a neurodevelopmental disorder linked to brain structure and white matter abnormalities.
- The timing of these abnormalities, particularly in relation to genetic risk, remains largely unknown.
Purpose of the Study:
- To identify structural brain abnormalities in the prenatal and neonatal periods associated with genetic risk for schizophrenia.
- To investigate early brain development in offspring of mothers with schizophrenia.
Main Methods:
- Prospective study using prenatal ultrasound and neonatal magnetic resonance imaging (MRI) and diffusion tensor imaging.
- Compared offspring of mothers with schizophrenia (N=26) to matched controls (N=26).
- Assessed prenatal measurements and neonatal brain volumes (intracranial, CSF, gray matter, white matter, lateral ventricles) and white matter diffusion properties.
Main Results:
- No significant differences in prenatal head circumference or lateral ventricle width between groups.
- High-risk neonates showed a trend towards larger intracranial, CSF, and lateral ventricle volumes.
- Male high-risk infants had significantly larger intracranial, CSF, total gray matter, and lateral ventricle volumes; females did not differ from controls.
- No group differences observed in white matter diffusion tensor properties.
Conclusions:
- Male neonates with genetic risk for schizophrenia exhibited larger brain volumes compared to controls.
- Female neonates at genetic risk did not show similar volumetric differences.
- This study provides preliminary evidence suggesting potential abnormalities in early neonatal brain development in males genetically at risk for schizophrenia.
Objective:
Schizophrenia is a neurodevelopmental disorder associated with abnormalities of brain structure and white matter, although little is known about when these abnormalities arise. This study was conducted to identify structural brain abnormalities in the prenatal and neonatal periods associated with genetic risk for schizophrenia.
Method:
Prenatal ultrasound scans and neonatal structural magnetic resonance imaging (MRI) and diffusion tensor imaging were prospectively obtained in the offspring of mothers with schizophrenia or schizoaffective disorder (N=26) and matched comparison mothers without psychiatric illness (N=26). Comparisons were made for prenatal lateral ventricle width and head circumference, for neonatal intracranial, CSF, gray matter, white matter, and lateral ventricle volumes, and for neonatal diffusion properties of the genu and splenium of the corpus callosum and corticospinal tracts.
Results:
Relative to the matched comparison subjects, the offspring of mothers with schizophrenia did not differ in prenatal lateral ventricle width or head circumference. Overall, the high-risk neonates had nonsignificantly larger intracranial, CSF, and lateral ventricle volumes. Subgroup analysis revealed that male high-risk infants had significantly larger intracranial, CSF, total gray matter, and lateral ventricle volumes; the female high-risk neonates were similar to the female comparison subjects. There were no group differences in white matter diffusion tensor properties.
Conclusions:
Male neonates at genetic risk for schizophrenia had several larger than normal brain volumes, while females did not. To the authors' knowledge, this study provides the first evidence, in the context of its limitations, that early neonatal brain development may be abnormal in males at genetic risk for schizophrenia.
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