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Published on: November 20, 2015
Preterm birth results in alterations in neural connectivity at age 16 years
Katherine M Mullen1, Betty R Vohr, Karol H Katz
1Department of Pediatrics, Yale University School of Medicine, New Haven, CT 06511, USA.
Insights
Preterm adolescents born with very low birth weight show white matter disorganization and altered language processing compared to term-born peers. These findings suggest potential delays or alternative neural pathway engagement in preterm brains.
Area of Science:
- Neuroscience
- Developmental Pediatrics
- Radiology
Background:
- Very low birth weight preterm (PT) children face elevated risks for brain injury.
- Microstructural brain development may be affected by preterm birth, impacting long-term cognitive and linguistic outcomes.
Purpose of the Study:
- To investigate white matter microstructural integrity in PT adolescents using diffusion tensor imaging (DTI).
- To correlate white matter integrity with cognitive and language test performance in PT adolescents.
Main Methods:
- Diffusion tensor imaging (DTI) was used to assess white matter in 44 PT adolescents (600-1250 g birth weight) and 41 term controls at age 16.
- Participants completed the Wechsler Intelligence Scale for Children-III (WISC), Peabody Picture Vocabulary Test-Revised (PPVT), and Comprehensive Test of Phonological Processing (CTOPP).
Main Results:
- PT subjects exhibited lower IQ scores and poorer phonological awareness compared to term controls.
- Reduced fractional anisotropy (FA) was observed in PT subjects in key white matter tracts, including the uncinate and external capsules, splenium of the corpus callosum, and inferior frontal gyrus.
- FA values in specific white matter tracts correlated with language task performance, indicating a link between white matter integrity and language function in PT adolescents.
Conclusions:
- This study provides evidence of white matter microstructural disorganization in PT adolescents.
- Dual language pathways appear to be present in PT adolescents, with a potential increased reliance on the right hemisphere for phonological tasks.
- Findings suggest either delayed maturation or the engagement of alternative neural pathways for language processing in the preterm brain.
Abstract:
Very low birth weight preterm (PT) children are at high risk for brain injury. Employing diffusion tensor imaging (DTI), we tested the hypothesis that PT adolescents would demonstrate microstructural white matter disorganization relative to term controls at 16 years of age. Forty-four PT subjects (600-1250 g birth weight) without neonatal brain injury and 41 term controls were evaluated at age 16 years with DTI, the Wechsler Intelligence Scale for Children-III (WISC), the Peabody Picture Vocabulary Test-Revised (PPVT), and the Comprehensive Test of Phonological Processing (CTOPP). PT subjects scored lower than term subjects on WISC full scale (p=0.003), verbal (p=0.043), and performance IQ tests (p=0.001), as well as CTOPP phonological awareness (p=0.004), but scored comparably to term subjects on PPVT and CTOPP Rapid Naming tests. PT subjects had lower fractional anisotropy (FA) values in multiple regions including bilateral uncinate fasciculi (left: p=0.01; right: p=0.004), bilateral external capsules (left: p<0.001; right: p<0.001), the splenium of the corpus callosum (p=0.008), and white matter serving the inferior frontal gyrus bilaterally (left: p<0.001; right: p=0.011). FA values in both the left and right uncinate fasciculi correlated with PPVT scores (a semantic language task) in the PT subjects (left: r=0.314, p=0.038; right: r=0.336, p=0.026). FA values in the left and right arcuate fasciculi correlated with CTOPP Rapid Naming scores (a phonologic task) in the PT subjects (left: r=0.424, p=0.004; right: r=0.301, p=0.047). These data support for the first time that dual pathways underlying language function are present in PT adolescents. The striking bilateral dorsal correlations for the PT group suggest that prematurely born subjects rely more heavily on the right hemisphere than typically developing adults for performance of phonological language tasks. These findings may represent either a delay in maturation or the engagement of alternative neural pathways for language in the developing PT brain.
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