Clinical Trials Logo

Clinical Trial Summary

The purpose of this study is to assess the efficacy of non-invasive (transcutaneous) closed-loop electrical spinal cord stimulation for recovery of upper limb function (Aim 1) and spasticity (Aim 2) following spinal cord injury.


Clinical Trial Description

After being informed about the purpose, study timeline, and procedures, all participants giving written informed consent will undergo repeated baseline measurements throughout four weeks, followed by intensive exercise therapy for six weeks. Next, participants will receive (1) closed-loop stimulation and (2) open-loop stimulation treatment for Aim 1 Section of the study. Stimulation will be delivered non-invasively using skin electrodes on the back of the neck. Each treatment arm will last six weeks. The investigators will determine the order of the treatment arms randomly. For closed-loop stimulation, The investigators will place a sensor on the arm muscles over the skin. This sensor will detect the movement and start the stimulation accordingly. For Aim 2 Section, intervention arms will consist of (1) transcutaneous stimulation, followed by (2) spasticity-reducing stimulation treatment arms. There will be a 6-week waiting period between two stimulation arms where participants will not receive any stimulation or exercise therapy. Treatments will last 90 minutes per session, three sessions per week. Overall participation in the study will last ten months: Four weeks baseline + three treatment periods (each will last six weeks) + six weeks waiting period between stimulation treatments + 12 weeks follow-up. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT05267951
Study type Interventional
Source University of Washington
Contact Fatma Inanici, MD., Ph.D.
Phone 206 787 2692
Email finanici@uw.edu
Status Recruiting
Phase N/A
Start date October 12, 2022
Completion date December 2024

See also
  Status Clinical Trial Phase
Active, not recruiting NCT06321172 - Muscle and Bone Changes After 6 Months of FES Cycling N/A
Completed NCT03457714 - Guided Internet Delivered Cognitive-Behaviour Therapy for Persons With Spinal Cord Injury: A Feasibility Trial
Recruiting NCT05484557 - Prevention of Thromboembolism Using Apixaban vs Enoxaparin Following Spinal Cord Injury N/A
Suspended NCT05542238 - The Effect of Acute Exercise on Cardiac Autonomic, Cerebrovascular, and Cognitive Function in Spinal Cord Injury N/A
Recruiting NCT05503316 - The Roll of Balance Confidence in Gait Rehabilitation in Persons With a Lesion of the Central Nervous System N/A
Not yet recruiting NCT05506657 - Early Intervention to Promote Return to Work for People With Spinal Cord Injury N/A
Recruiting NCT04105114 - Transformation of Paralysis to Stepping Early Phase 1
Recruiting NCT03680872 - Restoring Motor and Sensory Hand Function in Tetraplegia Using a Neural Bypass System N/A
Completed NCT04221373 - Exoskeletal-Assisted Walking in SCI Acute Inpatient Rehabilitation N/A
Completed NCT00116337 - Spinal Cord Stimulation to Restore Cough N/A
Completed NCT03898700 - Coaching for Caregivers of Children With Spinal Cord Injury N/A
Recruiting NCT04883463 - Neuromodulation to Improve Respiratory Function in Cervical Spinal Cord Injury N/A
Active, not recruiting NCT04881565 - Losing Balance to Prevent Falls After Spinal Cord Injury (RBT+FES) N/A
Completed NCT04864262 - Photovoice for Spinal Cord Injury to Prevent Falls N/A
Recruiting NCT04007380 - Psychosocial, Cognitive, and Behavioral Consequences of Sleep-disordered Breathing After SCI N/A
Active, not recruiting NCT04544761 - Resilience in Persons Following Spinal Cord Injury
Terminated NCT03170557 - Randomized Comparative Trial for Persistent Pain in Spinal Cord Injury: Acupuncture vs Aspecific Needle Skin Stimulation N/A
Completed NCT03220451 - Use of Adhesive Elastic Taping for the Therapy of Medium/Severe Pressure Ulcers in Spinal Cord Injured Patients N/A
Recruiting NCT04811235 - Optical Monitoring With Near-Infrared Spectroscopy for Spinal Cord Injury Trial N/A
Recruiting NCT04736849 - Epidural and Dorsal Root Stimulation in Humans With Spinal Cord Injury N/A