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Increased prefrontal activation in adolescents born prematurely at high risk during a reading task
Richard E Frye1, Benjamin Malmberg, Laura Desouza
1Division of Child and Adolescent Neurology, University of Texas Health Science Center, Houston, TX 77030, USA. richard.e.frye@uth.tmc.edu
Insights
Adolescents born at high-risk prematurely show increased prefrontal cortex activation during reading tasks. This suggests functional brain reorganization in high-risk premature individuals, impacting cognitive development.
Area of Science:
- Neuroscience
- Developmental Neuroscience
- Cognitive Neuroscience
Background:
- Premature birth is associated with white matter abnormalities and cognitive deficits.
- Functional brain reorganization in premature individuals remains understudied.
- Understanding cortical changes is crucial for addressing cognitive risks.
Purpose of the Study:
- To investigate cortical reorganization in adolescents born prematurely using magnetoencephalography (MEG).
- To examine differences in brain activation patterns related to prematurity risk and reading ability.
- To identify specific brain regions involved in reading tasks among these adolescents.
Main Methods:
- Utilized magnetoencephalography (MEG) to record brain activity during rhyme tasks.
- Localized equivalent current dipoles to map neural activity.
- Analyzed data from 31 adolescents categorized by birth risk (term, low-risk premature, high-risk premature) and reading ability.
Main Results:
- High-risk premature adolescents exhibited greater dipole number (NOD) in the left prefrontal cortex during real-word rhyme tasks.
- Good and average readers born at high-risk showed increased NOD in the left prefrontal area during non-word rhyme tasks.
- Time course analysis confirmed heightened left prefrontal activation in high-risk premature individuals.
Conclusions:
- Adolescents born at high-risk prematurely demonstrate altered prefrontal cortical activation during reading.
- These findings suggest a functional reorganization of the prefrontal cortex in high-risk premature individuals.
- The study highlights potential neural adaptations in response to premature birth and associated risks.
Abstract:
Although individuals born prematurely have subtle white matter abnormalities and are at risk for cognitive dysfunction, few studies have examined functional reorganization in these individuals. In this study we use magnetoencephalography (MEG) to examine cortical reorganization related to prematurity. Thirty-one adolescents systemically selected from a longitudinal study on child development based on gestational age, birth weight and neonatal complications (full term, low-risk premature, high-risk premature) and reading ability (good, average or poor) performed two reading-based rhyme tasks during MEG recording. Equivalent current dipoles were localized every 4 ms during the 150 ms to 550 ms period following the onset of the word presentation. The association of the mean number of dipole (NOD) with birth risk, reading ability and latency was examined. During the real-word rhyme task, adolescents born at high-risk demonstrated a greater NOD in the left prefrontal area than those born at low-risk and term. During the non-word rhyme task, good and average readers born at high-risk demonstrated a greater NOD in the left prefrontal area than good and average readers born at low-risk and term. Time course analysis confirmed increased activation in the left prefrontal regions of those born at high-risk. This study suggests that adolescents born prematurely at high-risk, as compared to those born at low-risk and term, demonstrate increased prefrontal cortical activation during a reading task. These results suggest a reorganization of the prefrontal cortex in adolescents born prematurely at high-risk.
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