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Clinical Trial Summary

Cerebral Palsy (CP) is the most common cause of childhood physical disability. Early CP diagnosis and intervention are crucial to improving outcomes in these patients. Constraint-induced movement therapy (CIMT) has become a standard therapeutic intervention for children with unilateral CP. CIMT utilizes restraining of the unaffected upper limb to stimulate the use of the paretic upper limb enhancing neuroplasticity in the affected cerebral hemisphere. Transcranial magnetic stimulation (TMS) is a safe non-invasive technique that stimulates the brain using repetitive magnetic pulses to enhance neuroplasticity. TMS has been shown to improve symptoms of children with neurodevelopmental disorders such as CP. It is predicted that a combined therapy that uses CIMT and TMS is could improve mobility in children with unilateral CP. To determine if combined therapy is beneficial to children with CP and if use of this therapy is feasible for families, the investigators would like to conducted a feasibility trial. In this trial the investigators will enrol 10 children who have unilateral CP, the participants will either receive: 1. CIMT and TMS or; 2. CIMT and fake TMS, fake TMS consist of a child sitting near the TMS machine but not receiving any TMS. The aim of this project is to determine if it is feasible to conduct a large randomized control trial to compare the effects of combined CIMT and TMS versus CIMT and fake TMS.The investigators also hope that by conducting this trial they can identify any benefits that the addition of TMS may have in children with CP.


Clinical Trial Description

Cerebral Palsy (CP) is the most common cause of childhood physical disability. Early CP diagnosis and intervention are crucial in optimizing neuroplasticity and improving outcomes. One such intervention is constraint-induced movement therapy (CIMT), a therapeutic approach used in children with unilateral CP. CIMT utilizes restraining of the unaffected upper limb to stimulate the use of the paretic upper limb enhancing neuroplasticity in the affected cerebral hemisphere.CIMT is more effective than other rehabilitation approaches in improving upper limb function and has become a standard therapeutic intervention for children with unilateral CP. Repetitive transcranial magnetic stimulation (TMS) is a safe non-invasive technique that stimulates the brain using repetitive magnetic pulses to enhance neuroplasticity. TMS has been shown to produce lasting modulation of cortical activity and improve clinical symptoms of children with neurodevelopmental disorders including CP. A recent Canadian study, the PLASTIC Champs trial, demonstrated that combining TMS and CIMT for children with unilateral CP secondary to perinatal stroke produced greater improvements in upper limb function when compared to CIMT or TMS alone. Though promising, there are three features of the Plastic Champs trial that could limit its generalizability. First, it took place in a very special, intensive setting of daily CIMT/TMS during a 14-day camp. Second is the single cause of CP studied. And finally, it included only school-age children. To date, no research study has evaluated if findings from the PLASTIC Champs trial could be replicated when utilizing the combination of CIMT and TMS in a regular clinical environment, and among younger children. A feasibility study is an appropriate first step towards our plan of performing a definitive RCT on the topic. In this trial the investigators will enrol 10 children who have unilateral CP, they will either receive: 1. CIMT and TMS or; 2. CIMT and fake TMS, fake TMS consist of a child sitting near the TMS machine but not receiving any TMS. The Investigators seek to evaluate whether, in younger children, the addition of TMS to the more commonly used, intermittent outpatient regimen of CIMT improves the motor outcomes of the upper limb. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT04902521
Study type Interventional
Source University of Manitoba
Contact Florencia Ricci, MD, PhD
Phone 2042586549
Email fricci@hsc.mb.ca
Status Recruiting
Phase N/A
Start date June 1, 2022
Completion date December 2023

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