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Assessment and Evaluation of the High Risk Neonate: The NICU Network Neurobehavioral Scale
Published on: August 25, 2014
Neurodevelopmental Correlates of Brain Magnetic Resonance Imaging Abnormalities in Extremely Low-birth-weight Infants
Silvia Martini1, Jacopo Lenzi2, Vittoria Paoletti3
1Neonatal Intensive Care Unit, IRCCS AOUBO, Bologna, Italy; Department of Medical and Surgical Sciences, University of Bologna, Bologna, Italy.
Insights
Brain abnormalities in extremely low-birth-weight (ELBW) infants at term-equivalent age (TEA) are linked to neurodevelopmental outcomes. Early MRI findings can predict and guide interventions for better development in ELBW infants.
Area of Science:
- Neonatal neuroscience
- Developmental pediatrics
- Pediatric radiology
Background:
- Extremely low-birth-weight (ELBW) infants face risks of impaired brain growth and structural abnormalities.
- Neurodevelopmental outcomes in ELBW infants require early identification and intervention.
Purpose of the Study:
- To evaluate the relationship between brain growth and structural abnormalities at term-equivalent age (TEA) and neurodevelopment over the first two years.
- To determine if brain MRI findings can predict neurodevelopmental trajectories in ELBW infants.
Main Methods:
- Retrospective cohort study of ELBW infants (2009-2018) with brain MRI at TEA.
- MRI scans analyzed using a validated quali-quantitative score for white and gray matter.
- Neurodevelopment assessed using Griffiths scales at 6, 12, 18, and 24 months; generalized estimating equations used for analysis.
Main Results:
- White matter volume reduction and delayed myelination correlated with poorer general development, social skills, and eye-hand coordination.
- Cystic white matter lesions were linked to worse motor outcomes; white matter signal abnormalities and corpus callosum thinning associated with poorer nonverbal cognition.
- Deep gray matter volume reduction correlated with worse developmental trajectories.
Conclusions:
- Specific MRI abnormalities at TEA are associated with distinct neurodevelopmental skills in ELBW infants.
- Brain MRI at TEA may aid in predicting neurodevelopmental outcomes, family counseling, and targeted interventions.
- Early neuroimaging can inform strategies to improve neurodevelopmental outcomes in ELBW neonates.
Objective:
To evaluate the relationship between impaired brain growth and structural brain abnormalities at term-equivalent age (TEA) and neurodevelopment in extremely low-birth-weight (ELBW) infants over the first 2 years.
Methods:
ELBW infants born from 2009 through 2018 and undergoing brain magnetic resonance imaging (MRI) at TEA were enrolled in this retrospective cohort study. MRI scans were reviewed using a validated quali-quantitative score, including several white and gray matter items. Neurodevelopment was assessed at 6, 12, 18, and 24 months using the Griffiths scales. The independent associations between MRI subscores and the trajectories of general and specific neurodevelopmental functions were analyzed by generalized estimating equations.
Results:
One hundred-nine ELBW infants were included. White matter volume reduction and delayed myelination were associated with worse general development (b = -2.33, P = .040; b = -6.88, P = .049 respectively), social skills (b = -3.13, P = .019; b = -4.79, P = .049), and eye-hand coordination (b = -3.48, P = .009; b = -7.21, P = .045). Cystic white matter lesions were associated with poorer motor outcomes (b = -4.99, P = .027), while white matter signal abnormalities and corpus callosum thinning were associated with worse nonverbal cognitive performances (b = -6.42, P = .010; b = -6.72, P = .021, respectively). Deep gray matter volume reduction correlated with worse developmental trajectories.
Conclusions:
Distinctive MRI abnormalities correlate with specific later developmental skills. This finding may suggest that TEA brain MRI may assist with neurodevelopmental prediction, counseling of families, and development of targeted supportive interventions to improve neurodevelopment in ELBW neonates.
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