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  1. Mapping the secondary response to traumatic brain injury using spatial transcriptomics shows acute 4-aminopyridine treatment mitigates axonal and molecular pathology
  2. Persistent hypersomnia following repetitive mild experimental traumatic brain injury: Roles of chronic stress and sex differences
  3. Genetic inactivation of SARM1 axon degeneration pathway improves outcome trajectory after experimental traumatic brain injury based on pathological, radiological, and functional measures
  4. Transplantation of induced neural stem cells (iNSCs) into chronically demyelinated corpus callosum ameliorates motor deficits
  5. Genetic detection of Sonic hedgehog (Shh) expression and cellular response in the progression of acute through chronic demyelination and remyelination
  6. Transplanted Adult Neural Stem Cells Express Sonic Hedgehog In Vivo and Suppress White Matter Neuroinflammation after Experimental Traumatic Brain Injury
  7. Myelin and oligodendrocyte lineage cells in white matter pathology and plasticity after traumatic brain injury
  8. White matter involvement after TBI: Clues to axon and myelin repair capacity
  9. Components of Myelin Damage and Repair in the Progression of White Matter Pathology After Mild Traumatic Brain Injury
  10. Comparison of Cortical and White Matter Traumatic Brain Injury Models Reveals Differential Effects in the Subventricular Zone and Divergent Sonic Hedgehog Signaling Pathways in Neuroblasts and Oligodendrocyte Progenitors
  11. Oligodendrocyte Lineage and Subventricular Zone Response to Traumatic Axonal Injury in the Corpus Callosum