Faculty of Health Sciences, University of Southampton
Southampton, SO17 1BJ, United Kingdom
NCT Number: NCT01405378
Every five minutes someone in the UK has a stroke. It is the main cause of long-term disability among adults in the UK despite a fall in age-specific stroke incidence, with a growing number of survivors remaining dependent for activities of daily living. While most people with stroke regain walking ability, upper limb problems with no voluntary arm and hand activity, affecting a third of people after stroke, has a poor prognosis. Transcranial direct current stimulation (tDCS) is a non-invasive procedure used to polarise brain regions through the application of weak direct currents and has the potential to develop into a useful aid to treatment strategies in neurorehabilitation. Recent literature into the application of tDCS in people with arm and hand impairments after stroke has shown promising results on upper limb function measures like the Jebsen-Taylor hand function test. Furthermore, a recent pilot study evaluated a six-week training programme combining tDCS with robot-assisted hand training and reported significant improvements in upper limb function. However, the robot in the latter study focused on single-plane distal movements only and long-term effects of the tDCS were not assessed. Recent robotic developments included robots with three rotational degrees-of-freedom for the upper limb, but the effectiveness of this type of robot combined with tDCS in early stroke settings is unknown. Ethical Approval was sought from NHS NRES Committee South Central- Southampton B (Ref: 11/SC/0345) to conduct this study.
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Notify Me18 year–80 year
All sexes
Interventional
Early Phase 1
Southampton, SO17 1BJ, United Kingdom
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Administration of Robot Therapy:
Therapy will be administered by making use of the Armeo Robot. Sessions will involve high-intensity, repetitive, task-oriented movements directed by video screens. Administration of tDCS:
Anodal tDCS will be administered using a CE marked transcranial Direct Current Stimulator (Newronika Italy). Direct current will be transferred by a saline-soaked pair of surface sponge electrodes (35 cm2).
Time frame: Will be used, exactly before commencing training programme (day 1), at the end of the 8 week training programme and at 3 months follow-up
Measures sensorimotor function of the upper limb (Sanford et al. 1993; Fugl-Meyer et al. 1975)
Time frame: Will be used, exactly before commencing training programme (day 1), at the end of the 8 week training programme and at 3 months follow-up
Corticospinal excitability will be measured by the administration of focal TMS using a figure-of-eight coil to the M1 area of the affected hemisphere. The 'hot spot' will be established by using neuronavigation equipment called Brain Sight (Rogue Research Inc.). The amplitude of the MEPs and recruitment curve of the anterior deltoid (proximal muscle) and extensor digitorum communis (distal muscle) will be subsequently recorded using electromyography.
University of Southampton
Other
Combining Transcranial Direct Current Stimulation (tDCS) With Robot Therapy for the Impaired Upper Limb in Stroke Rehabilitation.
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