Hemiparesis Clinical Trial
Official title:
Neural Mechanisms of Motor Recovery With Technology Assisted Training for Post-stroke Hemiparesis
Stroke is a leading cause of disability that often impairs arm function and activities of daily living. The costs of rehabilitation are significant and practical constraints often limit therapy to the first few months after stroke. However many studies have shown that patients in the later stages post-stroke can still continue to benefit from rehabilitation. Technology-assisted therapy may offer a means to efficiently provide ongoing therapies to patients in the later stages (>6 months) post-stroke. This study will determine which patients are best able to benefit from this therapy approach, and will also expand our knowledge of which brain structures need to be intact for patients to benefit from technology-assisted training. The results of this study will help to improve rehabilitation and quality of life for disabled Americans.
Study Description: This study will investigate the neural mechanisms of technology-assisted-training for post-stroke hemiparesis by using functional near-infrared-spectroscopy (fNIRS). Patients with hemiparesis affecting the arm will be brought in for 3 weeks of technology-assisted-training while having fNIRS recordings of their brain activity. Analysis of these brain activation patterns will help determine what areas of the brain are necessary to respond to this type of training. Objectives: 1) to investigate brain network activity changes that occur during technology-assisted-training and 2) to determine the baseline residual brain network connectivity required for patients to respond to robot-assisted-training. Endpoints: The study will evaluate increases in cortical connectivity between bilateral primary motor areas, angular gyrus and parietal operculum to test the hypothesis that cortical connectivity in these areas will positively correlate with improvement in technology-assisted-assessments. The study will also assess baseline connectivity of the angular gyrus and parietal operculum to sensorimotor networks to test the hypothesis that cortical connectivity in these areas will predict reductions in arm motor impairments that occur with technology-assisted-training. Study Population: Patients of either gender with chronic (at least 6 months or more) hemiparesis of the arm caused by a single unilateral stroke will be recruited from Baltimore city and the surrounding counties. ;
Status | Clinical Trial | Phase | |
---|---|---|---|
Completed |
NCT01662960 -
Visual Feedback Therapy for Treating Individuals With Hemiparesis Following Stroke
|
N/A | |
Completed |
NCT03780296 -
Implementing Technology Enhanced Real Time Action Observation Therapy in Persons With Chronic Stroke
|
N/A | |
Recruiting |
NCT03605381 -
MORbidity PRevalence Estimate In StrokE
|
||
Recruiting |
NCT05163210 -
Effectiveness of AOT Based on Virtual Reality in Stroke Rehabilitation.
|
N/A | |
Terminated |
NCT04113525 -
Transcutaneous Spinal and Peripheral Stimulation and Wrist Robotic Therapy for Patients With Spastic Stroke
|
N/A | |
Completed |
NCT01948739 -
Brain Machine Interface Control of an Robotic Exoskeleton in Training Upper Extremity Functions in Stroke
|
N/A | |
Not yet recruiting |
NCT03237520 -
Comparing Virtual Reality Therapy With Modified-CIMT Versus Modified-CIMT Alone in Hemiparetic Children
|
N/A | |
Completed |
NCT03080454 -
The Role of Trans-spinal Direct Current Stimulation (tsDCS) in Treating Patients With Hand Spasticity After Stroke
|
Phase 1/Phase 2 | |
Suspended |
NCT01519843 -
Post Stroke Motor Learning
|
N/A | |
Completed |
NCT01651533 -
Mental Practice in Chronic, Stroke Induced Hemiparesis
|
N/A | |
Completed |
NCT01106755 -
Effects of Ground Level Gait Training With Body Weight Support (BWS) and Functional Electrical Stimulation (FES)
|
N/A | |
Active, not recruiting |
NCT00170716 -
Safety and Effectiveness of Cortical Stimulation in the Treatment of Stroke Patients With Upper Extremity Hemiparesis
|
Phase 3 | |
Completed |
NCT04286997 -
VARA (Virtual and Augmented Reality Applications in Rehabilitation): Motor Rehabilitation Protocol With GRAIL for Patients Affected by Hemiparesis
|
N/A | |
Completed |
NCT05856669 -
The Effects of Mirror-Based Virtual Reality Systems and Recalibration Software on Upper Extremity Function in Individuals Experiencing Hemiparesis Post-Stroke
|
N/A | |
Recruiting |
NCT05801874 -
Gait and Posture Analysis in Hemiparetic Patients Through Optoelectronic Systems, "Smart" Tools and Clinical Evaluation
|
||
Recruiting |
NCT05590988 -
Sensorimotor Arm Rehabilitation After Stroke
|
N/A | |
Completed |
NCT04536987 -
Robot Therapy for Rehabilitation of Hand Movement After Stroke
|
Phase 2 | |
Recruiting |
NCT04694833 -
Telerehabilitation Through Serious Games in Virtual Reality in a Stroke Population (AutoRReVi)
|
N/A | |
Completed |
NCT03965403 -
Upper Extremity Rehabilitation With the BURT Robotic Arm
|
N/A | |
Not yet recruiting |
NCT03638570 -
Altered Connections in the Spinal Cord to Reduce Hand Impairment After Stroke
|
N/A |