Sergio, Lauren E.Machula, Anton2026-07-242026-07-242026-02-032026-07-24https://hdl.handle.net/10315/43855Persistent post-concussion symptoms (PPCS) cause debilitating impairments lasting months to years and resist conventional rehabilitation. Cognitive-motor integration (CMI) networks are particularly vulnerable following concussion yet remain an unexplored therapeutic target. We investigated whether augmented reality-based multidomain rehabilitation targeting CMI could induce clinical and neural recovery in adults with chronic PPCS. Seven participants (mean age 50.7 years, 71% female, mean 38.1 months post-injury) completed a twice-weekly, 8-week intervention combining visuospatial working memory, visuomotor transformation, and progressive vestibular challenge. Participants demonstrated large effect size improvements (r = 0.83–0.90) in energy, emotional wellbeing, perceived stress, and dizziness, though statistical power was limited by sample size, with seven measures meeting or exceeding estimated minimal clinically important difference (MCID) thresholds. A neuroimaging subset (n=3) revealed white matter recovery and limbic-striatal-thalamic functional connectivity reorganization. The concordance between behavioral engagement, white matter plasticity, and functional improvement suggests use-dependent neuroplasticity and positions CMI training as a promising approach warranting controlled trials.Author owns copyright, except where explicitly noted. Please contact the author directly with licensing requests.KinesiologyHealth sciencesNeurosciencesClinical and Neural Effects of Multidomain Augmented Reality Rehabilitation in Persistent Post-Concussion SyndromeElectronic Thesis or Dissertation2026-07-24Post-concussion symptomsCognitive-motor integrationAugmented reality rehabilitationNeuroplasticityWhite matter recoveryVisuomotor transformationVestibular rehabilitationWorking memory trainingDiffusion tensor imagingFunctional connectivity