Effect of age and neurofibromatosis type 1 status on white matter integrity in the optic radiations

Author:

de Blank Peter12ORCID,Berman Jeffrey I3,Prelack Marisa4,Sollee John R4,Lane Adam12,Waldman Amy T4,Fisher Michael J5

Affiliation:

1. University of Cincinnati Medical Center Department of Pediatrics, Cincinnati, Ohio, USA

2. Division of Oncology, Cincinnati Children’s Hospital Medical Center, Cincinnati, Ohio, USA

3. Department of Radiology, The Children’s Hospital of Philadelphia, Philadelphia, Pennsylvania, USA

4. Division of Neurology, The Children’s Hospital of Philadelphia, Philadelphia, Pennsylvania, USA

5. Division of Oncology, The Children’s Hospital of Philadelphia, Philadelphia, Pennsylvania, USA

Abstract

Abstract Background Adults with neurofibromatosis type 1 (NF1) have decreased white matter integrity, but differences in children with NF1 have not been described. Defining normal values for diffusion tensor imaging (DTI) measures, especially in the optic radiations, is important to the development of DTI as a potential biomarker of visual acuity in children with optic pathway glioma. This study examines the effect of age and NF1 status on DTI measures in children. Methods In this retrospective study, MR imaging including DTI was conducted in 93 children (40 children with NF1 and 53 healthy controls) between 0 and 14 years of age. Regression models of age, sex, and NF1 status on DTI measures were evaluated, and tract-based spatial statistics (TBSS) compared DTI measures in age-matched NF1 to non-NF1 cohorts. Results Fractional anisotropy, radial diffusivity, and mean diffusivity in white matter tracts of the optic radiations varied with age and were best modeled by a logarithmic function. Age-related DTI measure change was different in NF1 versus non-NF1 subjects. Normal values and 95% confidence intervals for age 0.5–12 years were derived for both groups. Differences in DTI measures between NF1 and non-NF1 groups at a range of ages were shown diffusely throughout the cerebral white matter using TBSS. Conclusions Children with NF1 demonstrate increased diffusion throughout the brain compared to children without NF1 suggesting a potentially altered developmental trajectory of optic radiation microstructure. Defining normal values for white matter integrity in children with NF1 may help target early intervention efforts in this vulnerable group.

Funder

Neurofibromatosis Therapeutic Acceleration Program

Publisher

Oxford University Press (OUP)

Subject

Electrical and Electronic Engineering,Building and Construction

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