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NOT YET RECRUITING
NCT07798388
NA

Optimizing Gait Rehabilitation After Stroke

Sponsor: University Hospital, Ghent

View on ClinicalTrials.gov

Summary

Following a cerebrovascular accident (CVA, also known as a stroke), hemiparesis occurs on the side opposite to the brain injury. This can lead to problems with walking and balance, as well as with arm movements whilst walking. The arm swing serves several important functions whilst walking, such as improving your balance and energy efficiency, and a good arm swing helps to reduce the likelihood of falling if you lose your balance. That is why regaining the ability to walk independently with the best possible arm swing is a key goal during rehabilitation for people who have had a stroke. This ensures that the risk of falling is minimised and that people can resume their daily lives as effectively as possible. The aim of this study is to gain a better understanding of the abnormalities in arm swing whilst walking in people who have had a stroke, and how we can influence them. To identify these abnormalities, we use surface electromyography, a painless technique that allows us to measure muscle activity whilst walking. To do this, we attach sensors to the muscles whose activity we wish to record. During this study, we are measuring both people who have had a stroke and healthy adults, in order to detect the effects of a stroke on this muscle activity. The data from the healthy adults will be used to investigate whether we observe different muscle activity in people who have had a stroke.

Official title: Optimizing Gait Rehabilitation After Stroke: Neuromechanical Understanding and the Role of VR Feedback to Improve Arm Swing Functionality

Key Details

Gender

All

Age Range

18 Years - Any

Study Type

INTERVENTIONAL

Enrollment

93

Start Date

2026-08-18

Completion Date

2028-06-30

Last Updated

2026-09-01

Healthy Volunteers

Yes

Interventions

OTHER

VR-feedback application

The VR-feedback application targets the arm swing symmetry during gait. The application provides visual real-time feedback on the amplitude and symmetry of shoulder flexion-extension movements, as well as on excessive elbow flexion.

Locations (3)

University Hospital Ghent (UZ Gent), Belgium

Ghent, Oost-Vlaanderen, Belgium

UHasselt - Faculteit Revalidatiewetenschappen

Diepenbeek, Belgium

Universitair Ziekenhuis Antwerpen

Edegem, Belgium