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Efficacy of Tele-CPASS Compared to In-person CPASS Therapy for Upper Extremity Motor Recovery

Efficacy of Tele-CPASS, a Telerehabilitation Intervention Using Critical Periods After Stroke Study (CPASS) Compared to In-person CPASS for Upper Extremity Motor Recovery

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07661849
Enrollment
42
Registered
2026-06-22
Start date
2025-09-01
Completion date
2029-08-31
Last updated
2026-06-22

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

Conditions

Hemiparesis, Stroke, Stroke Rehabilitation, Upper Extremity Impairments

Keywords

Telerehabilitation, Telehealth, Stroke rehabilitation, Upper extremity recovery, Motor recovery, Critical period plasticity, Wearable sensors, Accelerometry

Brief summary

This study evaluates whether a home-based telerehabilitation program (tele-CPASS) is as effective as an in-person rehabilitation program (CPASS) for improving arm and hand function after stroke. Stroke often leads to long-term difficulty using the affected arm in daily activities, and access to in-person therapy can be limited. This study aims to determine whether therapy delivered remotely can provide similar benefits to standard in-clinic care. Participants who recently experienced a stroke will be randomly assigned to receive 20 hours of upper extremity rehabilitation therapy either in person or through a telehealth platform. Both groups will receive the same type and amount of therapy focused on practicing meaningful, patient-selected daily activities. Participants will complete assessments before treatment, immediately after treatment, and at 6 and 12 months to measure recovery of arm function, real-world arm use, and participation in daily life. The results of this study will help determine whether telerehabilitation can improve access to effective stroke recovery interventions while maintaining clinical effectiveness comparable to in-person therapy.

Detailed description

Stroke is a leading cause of long-term disability, with a substantial proportion of survivors experiencing persistent upper extremity impairment that limits independence in daily activities. While rehabilitation can improve outcomes, access to consistent, high-dose therapy remains a major barrier, particularly in the early months after stroke when recovery potential is highest. The Critical Periods After Stroke Study (CPASS) previously demonstrated that 20 hours of intensive, task-specific upper extremity training delivered within the first six months after stroke leads to clinically meaningful improvements in motor function compared to standard care. Despite this evidence, many patients face challenges accessing in-person outpatient rehabilitation due to transportation limitations, cost, and geographic barriers. Telerehabilitation offers a potential solution by enabling delivery of structured therapy in the home environment. Prior studies suggest that home-based rehabilitation can achieve outcomes comparable to in-clinic care, while increasing accessibility and adherence. However, the efficacy of a telerehabilitation version of CPASS (tele-CPASS) relative to the established in-person CPASS intervention has not been rigorously tested. This study is a randomized, controlled, parallel-group trial designed to evaluate whether tele-CPASS is comparable in efficacy to in-person CPASS for improving upper extremity recovery after stroke. Participants will be enrolled in the early post-stroke period and randomly assigned to one of two groups: (1) in-person CPASS delivered in a clinical setting, or (2) tele-CPASS delivered remotely in the participant's home using a secure telehealth platform. Both groups will receive the same total dose (20 hours) of therapist-guided, task-specific training over approximately 2-3 weeks. Therapy is individualized and based on patient-prioritized functional goals, emphasizing repetitive practice of meaningful daily activities. Study procedures include baseline assessments followed by post-intervention and longitudinal follow-up assessments. In addition to standardized clinical evaluations, this study incorporates objective measurement of real-world arm use using wrist-worn accelerometers. These devices capture continuous movement data during daily life, allowing quantification of functional upper extremity use outside the clinical setting. A structured activity protocol performed in the laboratory and at home, combined with video annotation and machine learning methods, will be used to classify functional versus non-functional arm movements and enhance the ecological validity of outcome measurement. The trial uses a non-inferiority framework to determine whether outcomes achieved with tele-CPASS are not meaningfully worse than those achieved with in-person CPASS. This approach is appropriate given prior evidence supporting the efficacy of the in-person intervention. Demonstrating comparable effectiveness would support tele-CPASS as a scalable and accessible model for delivering high-intensity stroke rehabilitation. By directly comparing remote and in-person delivery of an evidence-based intervention, this study addresses a critical gap in stroke rehabilitation. If successful, tele-CPASS may expand access to effective therapy, reduce barriers to care, and inform future models of rehabilitation delivery that integrate clinic-based and home-based approaches.

Interventions

BEHAVIORALTele-CPASS

Intervention 1: Tele-CPASS Tele-CPASS is a home-based telerehabilitation intervention consisting of 20 hours of therapist-guided, task-specific upper extremity motor training delivered remotely using a telehealth platform for individuals with stroke. Therapy is individualized based on participant-selected functional goals and focuses on repetitive practice of meaningful daily activities to improve arm and hand function after stroke. Participants complete sessions in their home environment with real-time therapist guidance and may be provided with equipment and technology needed to support remote delivery.

BEHAVIORALIn-person CPASS therapy

Intervention 2: In-person CPASS therapy In-person CPASS is a clinic-based rehabilitation intervention consisting of 20 hours of therapist-guided, task-specific upper extremity motor training delivered face-to-face. Therapy is individualized based on participant-selected functional goals and focuses on repetitive practice of meaningful daily activities to improve arm and hand function after stroke. Sessions are conducted in a clinical setting under direct supervision of a therapist.

Sponsors

University of Texas, El Paso
Lead SponsorOTHER
Texas Tech University Health Sciences Center, El Paso
CollaboratorOTHER
The Catholic University of America
CollaboratorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
SINGLE (Outcomes Assessor)

Eligibility

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

Inclusion criteria

* Age 21 years or older * Neuroimaging-confirmed stroke within 40 days prior to enrollment * Persistent hemiparesis resulting in impaired upper extremity function, defined by a score of 0 to 3 on the NIH Stroke Scale motor arm item * Able to participate in all study-related activities, including 1-year follow-up * Short Blessed Memory Orientation and Concentration Scale score less than 8 * Able to follow 2-step commands * Montreal Cognitive Assessment (MoCA) score greater than 25 * No upper extremity injury or condition that limited upper extremity use prior to the stroke

Exclusion criteria

* Inability to provide informed consent * Persistent disabling neurologic condition, such as multiple sclerosis, Parkinsonism, amyotrophic lateral sclerosis, or dementia requiring medication * Clinically significant fluctuations in mental status within 72 hours prior to randomization * Active psychosis, psychosis within the prior 2 years, active substance abuse, or prior substance abuse * Dense sensory loss, defined by a score of 3 or 4 on the NIH Stroke Scale sensory item * Ataxia out of proportion to weakness in the affected arm, defined by a score greater than 1 on the NIH Stroke Scale ataxia item * Not expected to survive 12 months because of other illnesses * Pregnancy * Severe aphasia * Receipt of botulinum toxin or expectation of receiving botulinum toxin during the study period

Design outcomes

Primary

MeasureTime frameDescription
Upper Extremity Motor Function (Action Research Arm Test [ARAT])Baseline, 3 months, 6 months, and 12 monthsThe Action Research Arm Test (ARAT) is a standardized, performance-based measure of upper extremity motor function. It assesses grasp, grip, pinch, and gross movement using a series of functional tasks. Scores range from 0 to 57, with higher scores indicating better motor function.

Secondary

MeasureTime frameDescription
Functional Upper Extremity Use (Accelerometry)Baseline, 3 months, 6 months, and 12 monthsUpper extremity activity is measured using wrist-worn accelerometers on both arms. Data are processed using validated ML algorithms to quantify the amount of functional use of the affected upper extremity during daily activities in home and community environments.
Social Participation (Stroke Impact Scale)Baseline, 3 months, 6 months, and 12 monthsThe Stroke Impact Scale (SIS) is a patient-reported outcome measure assessing perceived participation in social and community activities. Scores range from 0 to 100, with higher scores indicating better participation.

Countries

United States

Contacts

CONTACTDr. Shashwati Geed, PT, PhD
sgeed@utep.edu915-747-7289
PRINCIPAL_INVESTIGATORDr. Shashwati Geed, PT, PhD

Department of Physical Therapy and Movement Sciences, University of Texas at El Paso

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jun 23, 2026