Bihemispheric developmental alterations in basal ganglia volumes following unilateral perinatal stroke

Jordan Hassett1, Helen Carlson2, Ali Babwani1

  • 1Department of Pediatrics, Cumming School of Medicine, University of Calgary, Calgary, AB, Canada.

Neuroimage. Clinical
|August 25, 2022
PubMed

Insights

Perinatal stroke impacts basal ganglia development, with arterial ischemic stroke (AIS) affecting the putamen and periventricular venous infarction (PVI) affecting the caudate. Lesioned putamen volume correlates with motor function in children with perinatal stroke.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Pediatric Neurology

Background:

  • Perinatal stroke, affecting millions of children, leads to lifelong disability.
  • While motor system plasticity is studied, the basal ganglia's role remains underexplored.
  • Perinatal strokes directly impacting the basal ganglia are linked to poorer motor outcomes.

Purpose of the Study:

  • To investigate alterations in bilateral basal ganglia volumes in children with perinatal stroke.
  • To determine the correlation between these volume changes and clinical motor function.

Main Methods:

  • Recruited children (6-19 years) with AIS or PVI and controls.
  • Acquired high-resolution MRI for manual segmentation of caudate and putamen volumes.
  • Assessed motor function using the Assisting Hand Assessment and Box and Blocks test.

Main Results:

  • Arterial ischemic stroke (AIS) showed larger dominant hemisphere caudate and putamen volumes compared to periventricular venous infarction (PVI).
  • Controls had larger non-dominant putamen volumes than AIS, and PVI showed larger non-dominant caudate volumes.
  • Larger non-dominant putamen volumes and putamen volume ratios correlated with better motor function.

Conclusions:

  • Periventricular venous infarction (PVI) primarily impacts the caudate, while arterial ischemic stroke (AIS) affects the putamen.
  • Basal ganglia volume alterations, particularly in the putamen, are associated with motor function after perinatal stroke.
  • The basal ganglia's role in developmental plasticity post-perinatal stroke warrants inclusion in future models.
Abstract