Individualized Neuro-Modulation Paired With Cerebellar Therapy
Start Date
6/30/2026
Completion Date
12/2/2032
Summary
The purpose of this project is to evaluate feasibility and preliminary efficacy of pairing personalized transcranial direct current stimulation (tDCS) with individualized rehabilitation therapy in people with cerebellar damage.
Detailed Description
Cerebellar damage causes debilitating ataxia affecting balance, coordination, speech, and cognition. Rehabilitation therapy is the main treatment for ataxia because pharmacological therapeutics are extremely limited. Non-invasive brain stimulation has shown promise in improving motor function and has an excellent safety profile. However, optimal stimulation sites and efficacy when combined with rehabilitation remain unclear. We hypothesize that three weeks of intensive rehabilitation therapy paired with personalized transcranial direct current stimulation (tDCS) will produce greater functional improvements in people with cerebellar damage compared to therapy with sham stimulation. This double-blind, randomized, sham-controlled trial will enroll participants with cerebellar damage. We will determine stimulation sites using multimodal neuroimaging and electric field modeling and then check their response to stimulation. If they show MRI response to stimulation and it is well-tolerated, they will be eligible to receive 30 hours of training (one hour, twice daily), with active or sham tDCS during one of the daily sessions Primary outcomes are the Scale for Assessment and Rating of Cerebellar Ataxia (SARA) and Patient-Reported Outcome Measure of Ataxia (PROM-Ataxia), assessed pre-treatment, post-treatment, and at 3- and 6-month follow-ups. This research addresses a critical gap in treatment options for cerebellar ataxia by testing whether personalized neuromodulation enhances rehabilitation outcomes.
Eligibility Criteria
Age Range: 18 years to 75 years
Interventions
Therapy
Conditions
Locations
Motion Analysis Lab in the Kennedy Krieger Institute
Baltimore, Maryland 21205
United States