Cerebellar volume as an imaging marker of development in infants with tuberous sclerosis complex

Siddharth Srivastava1, Anna K Prohl1, Benoit Scherrer1

  • 1From the Departments of Neurology (S.S., K.K., M.S.) and Radiology (A.K.P., B.S., S.K.W.), Boston Children's Hospital, Harvard Medical School, Boston, MA; and Department of Pediatrics (D.A.K.), Division of Neurology, Cincinnati Children's Hospital Medical Center, OH.

Neurology
|March 25, 2018
PubMed

Insights

In infants with tuberous sclerosis complex (TSC), cerebellar volume correlates with neurodevelopmental outcomes. Specifically, larger cerebellar volumes in TSC2 mutation patients predict better cognitive and motor skills.

Area of Science:

  • Neuroscience
  • Pediatrics
  • Genetics

Background:

  • Tuberous sclerosis complex (TSC) is a genetic disorder affecting multiple organs, including the brain.
  • Neurodevelopmental challenges are common in infants with TSC.
  • The cerebellum plays a crucial role in motor control and cognitive functions.

Purpose of the Study:

  • To investigate the relationship between cerebellar structure volumes and neurodevelopmental outcomes in 1-year-old infants with TSC.
  • To identify potential imaging biomarkers for predicting neurodevelopmental trajectories in TSC.

Main Methods:

  • A cohort of 70 infants (12 months old) with TSC (TSC1 or TSC2 mutations) was analyzed.
  • Relative volumes of cerebellar structures were measured using MRI and the PSTAPLE algorithm.
  • Cerebellar volumes were correlated with Mullen Scales of Early Learning (MSEL) scores.

Main Results:

  • In patients with TSC2 mutations, a 1% increase in total cerebellar volume was associated with a 10-point increase in MSEL composite score (p < 0.001).
  • Positive correlations were observed between cerebellar structure volumes and expressive language, visual reception, receptive language, gross motor, and fine motor skills in TSC2 patients.
  • No statistically significant relationship was found between cerebellar volume and MSEL composite scores in patients with TSC1 mutations.

Conclusions:

  • Cerebellar volume may serve as a predictive biomarker for neurodevelopmental severity in infants with TSC, particularly those with TSC2 mutations.
  • Cerebellar volume loss, potentially due to Purkinje cell degeneration, might be linked to poorer neurodevelopmental outcomes in TSC2 patients.
Abstract

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