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Updated: Jun 13, 2026

Assessment and Evaluation of the High Risk Neonate: The NICU Network Neurobehavioral Scale
Published on: August 25, 2014
A common neonatal image phenotype predicts adverse neurodevelopmental outcome in children born preterm
J P Boardman1, C Craven, S Valappil
1Institute of Clinical Sciences, Imperial College London and MRC Clinical Sciences Centre, Hammersmith Hospital, Du Cane Road, London W12 0NN, UK. j.boardman@imperial.ac.uk
Insights
Diffuse white matter injury in preterm infants is linked to specific brain structural changes and later cognitive impairment. Neonatal brain imaging may predict developmental outcomes in high-risk infants.
Area of Science:
- Neuroscience
- Radiology
- Developmental Pediatrics
Background:
- Diffuse white matter injury is prevalent in preterm infants.
- This injury is a potential cause of later cognitive deficits.
- The specific brain structures affected by this injury are not fully understood.
Purpose of the Study:
- To investigate if diffuse white matter injury is associated with focal tissue loss in deep grey nuclei.
- To determine if this imaging phenotype correlates with neurodevelopmental impairment at two years of age.
Main Methods:
- Magnetic resonance imaging (MRI) was used to assess 80 preterm infants and 20 controls.
- Diffuse white matter injury was identified by abnormal apparent diffusion coefficient values.
- Deformation-based morphometry analyzed morphological differences, and neurodevelopmental assessments were performed at two years.
Main Results:
- A common imaging phenotype was observed in 66/80 preterm infants, including diffuse white matter injury and reduced tissue volume in the thalamus, globus pallidus, and white matter tracts.
- This abnormal imaging phenotype was significantly associated with lower developmental quotients (DQ=92) at two years compared to controls (DQ=112).
Conclusions:
- Specific neural systems are vulnerable to maldevelopment following preterm birth.
- Neonatal brain imaging phenotypes can serve as biomarkers for injury mechanisms and therapeutic interventions in preterm infants.
Abstract:
Diffuse white matter injury is common in preterm infants and is a candidate substrate for later cognitive impairment. This injury pattern is associated with morphological changes in deep grey nuclei, the localization of which is uncertain. We test the hypotheses that diffuse white matter injury is associated with discrete focal tissue loss, and that this image phenotype is associated with impairment at 2years. We acquired magnetic resonance images from 80 preterm infants at term equivalent (mean gestational age 29(+6)weeks) and 20 control infants (mean GA 39(+2)weeks). Diffuse white matter injury was defined by abnormal apparent diffusion coefficient values in one or more white matter region (frontal, central or posterior white matter at the level of the centrum semiovale), and morphological difference between groups was calculated from 3D images using deformation based morphometry. Neurodevelopmental assessments were obtained from preterm infants at a mean chronological age of 27.5months, and from controls at a mean age of 31.1months. We identified a common image phenotype in 66 of 80 preterm infants at term equivalent comprising: diffuse white matter injury; and tissue volume reduction in the dorsomedial nucleus of the thalamus, the globus pallidus, periventricular white matter, the corona radiata and within the central region of the centrum semiovale (t=4.42 p<0.001 false discovery rate corrected). The abnormal image phenotype is associated with reduced median developmental quotient (DQ) at 2years (DQ=92) compared with control infants (DQ=112), p<0.001. These findings indicate that specific neural systems are susceptible to maldevelopment after preterm birth, and suggest that neonatal image phenotype may serve as a useful biomarker for studying mechanisms of injury and the effect of putative therapeutic interventions.
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