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Upper Extremity Paralysis clinical trials

View clinical trials related to Upper Extremity Paralysis.

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NCT ID: NCT03651063 Completed - Clinical trials for Upper Extremity Paralysis

Socially Assistive Robot in Upper-Limb Neurorehabilitation

Start date: May 10, 2019
Phase: N/A
Study type: Interventional

30 one year post stroke patients with upper limb paresis will be recruited to this study. The study is an RCT consists of two groups of intervention: 1. social robot, 2. computer, and one control group with no intervention. the intervention consists of 15 therapy sessions of reach-to-grasp games of the affected upper limb.

NCT ID: NCT03080454 Completed - Stroke Clinical Trials

The Role of Trans-spinal Direct Current Stimulation (tsDCS) in Treating Patients With Hand Spasticity After Stroke

Start date: September 2016
Phase: Phase 1/Phase 2
Study type: Interventional

The purpose of this study is to evaluate if 5 consecutive sessions of PathMaker anodal DoubleStim treatment, which combines non-invasive stimulation of the spinal cord (tsDCS- trans-spinal direct current stimulation) and of the median nerve at the peripheral wrist (pDCS-- peripheral direct current stimulation), can significantly reduce spasticity of the wrist and hand after stroke.

NCT ID: NCT03026712 Completed - Stroke Clinical Trials

Hemiparetic Arm Robotic Mobilization With Non Invasive Electrical Stimulation

hARMonies
Start date: February 2016
Phase: N/A
Study type: Interventional

The two cerebral hemispheres find themselves in a state of balanced mutual inhibition. A stroke with involvement of motor function leads to a reduced excitability in affected hemisphere M1 and to an increased excitability of contralateral M1. Stroke therefore might impair interhemispheric balance, leading to a decreased inhibition of contralesional hemisphere by ipsilesional hemisphere and, in turn, to an increased inhibition of ipsilesional hemisphere by contralesional hemisphere. Permanence of healthy hemisphere hyperactivation in chronic phase after stroke is usually index of little functional recovery and is correlated with a greater ipsilateral structural damage. Robot-mediated physical therapy is an innovative rehabilitation technique that is effective in stroke patients. In this study, the investigators will add a non-invasive brain stimulation protocol with Transcranial stimulation with direct current (tDCS) to the robotic treatment in chronic stroke patients. tDCS is a non-invasive brain stimulation technique that is able to modulate cortical excitability. The hypothesis is that dual t-DCS (ipsilesional excitation and concomitant contralesional inhibition) could restore interhemispheric balance improving the benefits of robotic therapy with Armeo Power®.