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Action Selection and Arm Rehabilitation After Stroke

Targeted Engagement of the Motor Action Selection Network During Arm Rehabilitation After Stroke

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02785419
Enrollment
32
Registered
2016-05-27
Start date
2015-12-08
Completion date
2020-12-31
Last updated
2021-07-23

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Stroke

Keywords

Rehabilitation, Upper Extremity, Physical Therapy

Brief summary

After stroke, individuals often have persistent difficulty using the arm and hand in everyday functional tasks that reduces quality of life. Currently available rehabilitation techniques are not adequate and new protocols are needed that are based on an understanding of how brain regions work together to produce skilled movement. This research project aims to improve our understanding of how the brain controls movement after stroke and determine whether a period of motor practice that targets specific brain regions through the addition of action selection demands leads to improved arm function. We hypothesize that arm motor function and the ability to efficiently activate the action selection motor circuit during movement will improve after training.

Detailed description

Rehabilitation of arm impairment after stroke includes the repetitive practice of functional tasks. In healthy adults, planning plays a vital role in the control of skilled movement, however, the behavioral and neural correlates of planning have largely been unexplored in individuals recovering from stroke. Action selection is an important motor planning process that engages dorsal premotor cortex (PMd) in controls. While PMd activation is a commonly reported neural correlate of motor recovery after stroke, the role of PMd in action selection and motor training are not known. Therefore, the purpose of this study is to determine the effect of training that includes action selection demands on the behavioral and neural correlates of movement after stroke. Thirty-eight individuals in the chronic phase of stroke will be recruited. After completion of clinical measures of impairment and function, all participants with stroke will complete a motor action selection task and functional MRI followed by arm training. Arm training will consist of three weeks (15 sessions) of arm motor training (1.5 hours per session) that includes action selection demands on movement. Follow-up clinical testing will occur at the end of treatment and three weeks later.

Interventions

BEHAVIORALArm Training with Action Selection

Treatment occurs in 1.5 hour sessions, 5 times a week for 3 weeks. In each treatment session, you will practice functional tasks with your weaker arm and hand. Additionally, you will be given cues on a computer screen that dictate your movement response (action selection). Practice will be scaled to match your current level of function and progressed over time as able.

Sponsors

University of South Carolina
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* At least 18 years old * Had stroke at least 6 months ago * Right-hand dominant prior to stroke * Some continued arm and hand weakness * Some ability to move the arm and hand that is weaker from the stroke

Exclusion criteria

* Acute medical issues that would interfere with participation * Another neurologic diagnosis that may impact movement (e.g. Parkinson's Disease) * Cannot undergo MRI scanning * Severe apraxia or hemispatial neglect * Pain in the arm that interferes with movement * Difficulty maintaining attention or following directions

Design outcomes

Primary

MeasureTime frameDescription
Action Research Arm TestChange from baseline to end of treatment (3 weeks)Behavioral assessment of arm function. Scores range from 0 to 57 with a higher score equating to better function.
Brain activation during functional MRIChange from baseline to end of treatment (3 weeks)Brain activation during movement will be captured with functional MRI. Analyses will investigate changes in magnitude of activation.
Brain connectivity during functional MRIChange from baseline to end of treatment (3 weeks)Brain activation during movement will be captured with functional MRI. Analyses will investigate changes in connectivity between brain regions.

Secondary

MeasureTime frame
9-Hole Peg TestChange from baseline to end of treatment (3 weeks)
Upper Extremity Fugl-Meyer Motor AssessmentChange from baseline to end of treatment (3 weeks)
Confidence in Arm and Hand Movements QuestionnaireChange from baseline to end of treatment (3 weeks)
Grip StrengthChange from baseline to end of treatment (3 weeks)
Stroke Impact Scale Hand DomainChange from baseline to end of treatment (3 weeks)
Box & Blocks TestChange from baseline to end of treatment (3 weeks)

Countries

United States

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026