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RecruitingPARKINSON DISEASE (Disorder)Multiple SclerosisStroke

Cognitive Recovery Via Sensor-based Robotic Upper Limb Rehabilitation in Neurological Disorders

Eligible age

18–75 yrs

Accepts

All genders

Locations

1 state

Healthy volunteers

No

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About this study

The goal of this clinical trial is to learn if sensor-based robotic upper limb rehabilitation can improve cognitive and motor functions in adults with neurological and neurodegenerative disorders, including Parkinson's disease, multiple sclerosis, and stroke. The main questions it aims to answer are: Does sensor-based robotic rehabilitation improve cognitive functions such as attention, memory, and executive functions? Does this rehabilitation lead to better motor recovery and daily functioning compared to conventional therapy? Researchers will compare the experimental group receiving robotic rehabilitation with cognitive tasks to the control group receiving conventional therapy to see if the robotic approach leads to greater improvements in both cognitive and motor outcomes. Participants will: Receive upper limb rehabilitation using robotic devices and virtual reality-based exercises or conventional therapy Complete a series of neuropsychological assessments before and after the intervention to measure cognitive changes Complete motor function tests before and after the intervention to evaluate physical improvements Participate in 25 training sessions, 2-3 times per week, each lasting 60 minutes

Sponsor: IRCCS Centro Neurolesi Bonino Pulejo

You may qualify if…

  • Age 18-75 years;
  • FMA-UL 0-31: eligible for exoskeletons and robotic devices with high support. (Armeo Power, Amadeo, Motore)
  • FMA-UL 32-47: eligible for end-effectors with medium support. (Armeo Spring, Hand Tutor, Diego)
  • FMA-UL 48-52: eligible for sensor-based with low support. (Pablo, Diego, Armeo Senso)
  • MoCA: ≤ 20

You may not qualify if…

  • Severe cognitive disorders
  • Behavioral disorders
  • Sensory disorders

Where it's recruiting

Maine

Messina

Source: ClinicalTrials.gov · NCT07384143 · last updated 2026-02-03

Cognitive Recovery Via Sensor-based Robotic Upper Limb Rehabilitation · TrialPath