Ride-On toys could help kids with cerebral palsy use their weaker arm
NCT ID NCT07342348
First seen Jun 24, 2026 · Last updated Sep 11, 2026 · Updated 2 times
Summary
This study tests whether using a ride-on toy for 6 weeks can help children with cerebral palsy use their weaker arm and hand more. Ten children will wear a mitten on their stronger hand to encourage using the other hand while driving and playing. Researchers will measure changes in arm function and daily use through parent reports and video tests.
What this could mean
Our plain-language read of the trial. This is informational only, not medical advice or a prediction.
- Active substance
- power mobility training on a ride-on toy
- What this could lead to
- If it works, this could offer a fun, motivating way to help children with cerebral palsy use their weaker arm and hand more in daily activities.
- What could go wrong
- This is a very small, early exploratory study with only 10 children. It may not show clear benefits, and results may not apply to all children with cerebral palsy.
This is an AI summary of the original study and may miss details. Read our disclaimer.
Study facts
What this study's own registry entry says, in plain language.
- Phase
-
Not a phased trial
Phase numbers describe drug development. The registry uses this when they do not apply, as it does for trials of devices, procedures or behaviour changes, and for observational studies.
- Participants
-
About 10 people
The number the study aims to enrol. It can still change while the study runs.
- Expected to start
-
Jan 2028
An estimate. Start dates often move.
- Expected to finish
-
Dec 2029
An estimate. End dates often move.
- Lead sponsor
-
Other sponsor
The registry's catch-all category, for sponsors it does not file as a company, a government agency, or a research network.
Who can take part
This study's own entry requirements. Only the study team can say for certain whether you qualify.
- Ages
-
3 to 8 years
- Sex
-
Anyone
- Healthy volunteers
-
Not accepted
This study is not open to healthy volunteers. The entry requirements below say who it is open to.
Show the full entry requirements Hide the full entry requirements
Copied word for word from the study's registry entry, so the wording is the study team's rather than ours.
Inclusion Criteria: * Diagnosis of cerebral palsy * Demonstrates significantly less functional use of one arm and hand * Can get on and off the a ride-on toy with minimal assistance from the researchers * Can maintain a sitting position on the a ride-on toy * Has sufficient functional vision to safely maneuver the a ride-on toy * Has their own bicycle helmet that fits them well and is in good working condition Exclusion Criteria: * Hand or arm surgery within the past 6 months * Their weight exceeds device limits (more than 120 pounds) * They do not demonstrate sufficient balance and control in sitting to safely use the ride-on toy * If they cannot safely participate in arm- and hand-use focused power mobility training activities.
Get updates
Get notified about this study
Sign up to get updates when this study changes or when new studies for Cerebral palsy are added.
Genom att skicka in godkänner du våra Användarvillkor
Conditions
The condition(s) this trial relates to.
As listed by the trial registrant
The condition terms exactly as the trial's registrant entered them.
How to take part
Only the study team decides who joins. These are the ways to reach them.
-
The places running it
1 site. The list below names each one and where it is.
-
The official record
ClinicalTrials.gov lists the study team's own contact details, including names and phone numbers. We don't republish those.
-
A doctor treating you
A doctor who knows your case can contact a study site on your behalf, and can tell you whether this study is worth pursuing at all.
Contacts and locations
Locations
-
Grand Valley State University
Grand Rapids, Michigan, 49504, United States
More trials for these conditions
Other studies related to the condition(s) this trial covers.
- Zapping the spine while wearing a robotic ankle: a new way to help kids walk?
- Can virtual reality rewire balance and leg control in cerebral palsy?
- AI learns to spot the two cues that define cerebral palsy motor levels
- Zapping the spine: a Non-Invasive device aims to loosen stiff muscles and improve walking in cerebral palsy
- Robots map how brain and nerve injuries disrupt everyday arm tasks
- Can modified music tunes boost balance in kids with cerebral palsy?