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Network localization of pediatric lesion-induced dystonia.

Rose Gelineau-MorelNomazulu DlaminiJoel BrussAlexander Li CohenAmanda RobertsonDimitrios AlexopoulosChristopher D SmyserAaron D Boes
Published in: medRxiv : the preprint server for health sciences (2024)
We interpret these findings as novel evidence for a unified dystonia brain network that involves the somato-cognitive-action network, which is involved in higher order coordination of movement. Elucidation of this network gives insight into the functional origins of dystonia and provides novel targets to investigate for therapeutic intervention.
Keyphrases
  • deep brain stimulation
  • early onset
  • randomized controlled trial
  • high glucose
  • network analysis
  • resting state
  • young adults
  • diabetic rats
  • brain injury
  • endothelial cells
  • subarachnoid hemorrhage