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Exoskeleton Clinical Trials for Spinal Cord Injury

SCI.help tracks 129 spinal cord injury clinical trials studying exoskeleton, and 31 are open to new participants. Each links to its full ClinicalTrials.gov record. Last refreshed 2026-09-12.

⚠️
This is research, not treatment. A clinical trial is a study. It may involve a placebo, carries unknown risks, and is not a substitute for proven care. Be wary of any "trial" that charges you to take part. Talk with your SCI doctor before enrolling, and read the full eligibility and risks on ClinicalTrials.gov. Not medical advice.

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Open and recruiting (31)

These trials are recruiting, about to recruit, or enrolling by invitation. Status comes straight from ClinicalTrials.gov and can change without notice.

  • RecruitingNCT06215625

    A Feasible Smart Upper Limb Rehabilitation Model for Patients With Stroke and Spinal Cord Injuries

    The goal of this clinical trial is to investigate the effectiveness of the developed application and exoskeleton robot devices for home-based training in stroke patients and patients with spinal cord injuries.

    ExoskeletonArm MovementHand Movement
    Taiwan
  • RecruitingNCT06097000

    A Study of the Safety and Efficacy of Intelligent Powered Exoskeletons in Postoperative Spinal Rehabilitation

    Systematic and professional rehabilitation training is generally effective for patients with lower limb dyskinesia, but most of them lose the chance of recovery due to failure to receive systematic rehabilitation treatment.

    DevicesExoskeletonRehabilitationSurgical ProcedureLeg MovementMotor FunctionWalking Function
    China
  • RecruitingNCT07036107

    A Trial on the Clinical and Socioeconomic Impact of Wearable Exoskeletons for Spinal Cord Injury Rehabilitation in the Spanish Healthcare System

    This clinical trial aims to collect evidence on the clinical benefits and the socioeconomic impact of integrating a novel wearable powered lower-limb exoskeleton for gait rehabilitation in acute/subacute spinal cord injured individuals and to evaluate the efficiency of this technology to the…

    Spain
  • RecruitingNCT06538974

    Adherence to Long-term Exoskeleton Rehabilitation to Treat Lower Limb Weakness and / or Deficiencies in Adult Population

    In 2019, approximately 2.4 billion people worldwide required rehabilitation for various health pathologies, a 63% increase since 1990.

    DevicesExoskeletonRehabilitationBladder FunctionBowel FunctionLeg MovementMental HealthMotor FunctionQuality of Life
    France
  • RecruitingNCT05615766

    Assessment of a Robotic Exoskeleton for Upper Limb Rehabilitation

    Rehabilitation robotics has the potential to facilitate rehabilitation at home and empower people with spinal injuries to self-manage increasing their independence and improving their quality of life.

    ExoskeletonRehabilitationArm MovementHand Movement
    United Kingdom
  • RecruitingNCT06939660

    BCI-Assisted SCS-EXS for Gait Optimization

    The goal of this clinical trial is to evaluate the safety and technical feasibility of a novel brain-machine interface (BCI)-assisted spinal cord stimulation (SCS) and exoskeleton (EXS) system in patients with spinal cord injury (SCI).

    China
  • RecruitingNCT07164846

    Effect of Neuro20 Functional Electrical Stimulation Suit on Autonomic Function, Muscle Performance, and Gait

    This research aims to understand the effect of the Neuro20 Functional Electrical Stimulation Suit on autonomic nervous system function, muscle performance, and gait after amputation or neurologic injury.

    2 US sites · Florida
  • RecruitingNCT05187650

    Effectiveness of a Powered Exoskeleton Combined With FES for Patients With Chronic SCI: a RCT

    While there are a number of prospective studies evaluating powered exoskeletons in SCI patients, to date, not a single well-designed, randomized clinical trial has been published.

    ExoskeletonWalking Function
    Switzerland
  • Enrolling by invitationNCT07732868

    Effects of a Virtual Reality-based Brain-Machine Interface Protocol in Spinal Cord Injury

    Spinal cord injury (SCI) is a highly debilitating pathology, associated with the loss of sensorimotor functions, autonomy and quality of life. Although there is currently no cure, brain-machine interfaces (BMI) have been used as a method of SCI rehabilitation.

    Brain Machine Interface (BMI)DevicesExoskeletonRehabilitationPain ManagementQuality of LifeSensory FunctionWalking Function
    Portugal
  • RecruitingNCT04782947

    Epidural Stimulation and Resistance Training After SCI

    Spinal cord injury (SCI) is a devastating health problem for tens of thousands of military personnel, Veterans and civilians annually. Many persons with SCI must use a wheelchair for their entire life.

    1 US site · Virginia
  • RecruitingNCT05726591

    Evaluating Long-term Use of a Pediatric Robotic Exoskeleton (P.REX/Agilik) to Improve Gait in Children With Movement Disorders

    Background: People with cerebral palsy, spina bifida, muscular dystrophy, or spinal cord injury often have muscle weakness and problems controlling how their legs move. This can affect how they walk. The NIH has designed a robotic device (exoskeleton) that can be worn on the legs while walking.

    1 US site · Maryland
  • Not yet recruitingNCT07418398

    Exoskeletal-assisted Walking Combined With Transcutaneous Spinal Cord Stimulation: Effect on Imaging and Serum Biomarkers of Skeletal Muscle Mass and Bone Strength.

    Immobilization following spinal cord injury (SCI) results in muscle and bone loss below the level of injury, which ultimately predisposes to fracture at several sites throughout the legs and can lead to several medical complications that can devastate quality of life.

    2 US sites · New Jersey, New York
  • RecruitingNCT07062575

    Exoskeleton Training at Home to Assist Participants With Spinal Cord Injuries to Perform Ambulatory Functions.

    The goal of this clinical trial is to to confirm the safety and performance of the ABLE Daily to perform ambulatory functions in home and community settings for people with spinal cord injury.

    Netherlands
  • RecruitingNCT03096197

    Exoskeleton and Spinal Cord Stimulation for SCI

    The overall aim of this project is to assess the effect of combining transcutaneous lumbosacral stimulation (TLS) during Exoskeleton Assisted Walking (EAW) compared to EAW alone without stimulation on walking recovery.

    ExoskeletonWalking Function
    1 US site · New Jersey
  • Enrolling by invitationNCT07030322

    Health and Financial Impact on the Use of a Personal Exoskeleton in the Home and Community: a Case Study

    The goal of this clinical trial is to examine the long-term use of a personal overground robotic exoskeleton in subjects with spinal cord injury. The main aims of this study include: 1. Determine patterns of personal overground robotic exoskeleton use over 12 months. 2.

    1 US site · California
  • RecruitingNCT05926596

    Leg Stretching Using an Exoskeleton on Demand for People With Spasticity

    The purpose of this research study is to develop a protocol using a fully wearable, portable lower-limb exoskeleton for improving leg and walking function in people with movement disorders.

    1 US site · New York
  • RecruitingNCT07461259

    Safety and Feasibility of TWIICE Rise - Phase 2

    The aim of this study is to assess the safety and the feasibility of two versions of TWIICE Rise for exoskeleton-assisted ambulation in patients with a spinal cord injury.

    ExoskeletonWalking Function
    Switzerland
  • RecruitingNCT06772077

    Safety and Usability of the ATLAS 2030 Exoskeleton in Pediatric Patients With Spinal Cord Injury

    The goal of this clinical trial is to analyze the usability and safety of the robotic gait ATLAS 2030 in a cohort of pediatric patients with Spinal Cord Injury, with the aim of extending its indication for use to pediatric spinal cord injury

    ExoskeletonWalking Function
    Spain
  • Not yet recruitingNCT07159360

    Safety, Usability, and Effectiveness of a Gait Exoskeleton for Children and Adolescents With Neurodevelopmental Disorders.

    Neurodevelopmental disorders often result in abnormal development of the Central Nervous System (CNS), frequently causing motor dysfunctions such as the inability to stand and walk.

    DevicesExoskeletonRehabilitationBlood PressurePain ManagementQuality of LifeSpasticityWalking Function
    Mexico, Spain
  • RecruitingNCT04047992

    Seated Balance Using the Indego™

    Exoskeleton-assisted walking (EAW) provides a new mobility option and appears to have potential therapeutic benefits for persons with SCI. However, present day technology is not sufficient to replace the wheelchair.

    1 US site · New York
  • RecruitingNCT06777576

    Self-balancing Personal Exoskeleton for SCI

    This study aims to demonstrate the safety and effectiveness of the personal exoskeleton in individuals with spinal cord injury (SCI).

    ExoskeletonWalking Function
    1 US site · New York
  • RecruitingNCT06814015

    Self-balancing Personal Exoskeleton for SCI (Site 2)

    This study aims to demonstrate the safety and effectiveness of the personal exoskeleton in individuals with spinal cord injury (SCI).

    1 US site · New Jersey
  • RecruitingNCT07222033

    Self-balancing Personal Exoskeleton for SCI (WINY)

    This study aims to demonstrate the safety and effectiveness of the personal exoskeleton in individuals with spinal cord injury (SCI).

    1 US site · New York
  • RecruitingNCT07536386

    Self-balancing Personal Exoskeleton for SCI (WIP)

    This study aims to demonstrate the safety and effectiveness of the personal exoskeleton in individuals with spinal cord injury (SCI).

    France
  • Not yet recruitingNCT07325149

    The Effect of Exoskeletal-assisted Walking Combined With Transcutaneous Spinal Cord Stimulation on Bone Strength.

    Immobilization following spinal cord injury (SCI) results in muscle and bone loss below the level of injury, which ultimately predisposes to fracture at several sites throughout the legs and can lead to several medical complications that can devastate quality of life.

    1 US site · New Jersey
  • RecruitingNCT06998134

    Toward Ubiquitous Lower Limb Exoskeleton Use in Children and Young Adults

    People with cerebral palsy (CP), muscular dystrophy (MD), spina bifida, or spinal cord injury often have muscle weakness, and problems moving their arms and legs. The NIH designed a new brace device, called an exoskeleton, that is worn on the legs and helps people walk.

    1 US site · Maryland
  • RecruitingNCT05921175

    Transcutaneous Spinal Cord Stimulation With Robotic Gait Training in Chronic SCI

    This study is aimed to evaluate whether transcutaneous spinal cord stimulation (tSCS) can augment robotic gait training (RGT) to improve functional mobility in participants with chronic spinal cord injuries.

    Singapore
  • Not yet recruitingNCT07745686

    VALSE: Integration of Neuromodulation and Exoskeleton Systems for Mobility in Individuals With Chronic Spinal Cord Injury

    The purpose of this clinical study is to evaluate the preliminary safety and feasibility of using the VALSE system, which combines spinal cord stimulation with the TWIICE robotic exoskeleton, to support motor recovery and reduce reliance on laboratory-based equipment during rehabilitation in…

    Switzerland
  • Not yet recruitingNCT07380516

    Xo-Motion R Exoskeleton in SCI-Adoption Study

    After spinal cord injury (SCI), many people lose their ability to walk and do not have access to equipment and assistance that could help them regain functional abilities.

    Canada
  • RecruitingNCT07750808

    ZEPU AI9 Exoskeleton Rehabilitation Robot

    The goal of this clinical trial is to learn whether the ZEPU AI9 lower limb exoskeleton robot is feasible, safe, and effective for people with walking difficulty caused by stroke, incomplete spinal cord injury, or orthopedic surgery.

    DevicesExoskeletonRehabilitationSurgical ProcedureLeg MovementMotor FunctionPain ManagementQuality of LifeSpasticityTrunk Control
    Bangladesh
  • RecruitingNCT07735676

    ZEPU-AI1 Gait Robot Training Study (ZEPUAI1RCT)

    Walking problems caused by stroke, spinal cord injury, or orthopedic surgery are common and can seriously limit a person's independence.

    DevicesExoskeletonRehabilitationSurgical ProcedureLeg MovementMotor FunctionQuality of LifeSpasticityTrunk ControlWalking Function
    Bangladesh

Running, but closed to new participants (8)

Active studies that are no longer enrolling. Useful for seeing where the field is heading.

  • Active, not recruitingNCT05218447

    Dosing of Overground Robotic Gait Training With Functional Outcomes and Neuroplasticity After Spinal Cord Injury

    The DOOR SCI project examines dosing effects of robotic gait training (RGT) and transcranial magnetic stimulation (TMS) initiated during inpatient rehabilitation and continued through early outpatient rehabilitation

    ExoskeletonWalking Function
    1 US site · Texas
  • Active, not recruitingNCT01701388

    EKSO Trial: Powered Exoskeleton for Ambulation in Subjects With Spinal Cord Injury (SCI)

    This study seeks to test the safety and efficacy of the Esko device in SCI population and in populations with similar neurological weakness to the SCI population. The device can currently stand from a seated position, walk, and turn and sit down.

    ExoskeletonWalking Function
    1 US site · Illinois
  • Active, not recruitingNCT07621900

    Effects of Lokomat Training on Dynamic Postural Stability in Incomplete Spinal Cord Injury

    The study aims to evaluate the effects of robotic-assisted gait training (Lokomat) on dynamic postural stability in patients with incomplete spinal cord injury (SCI).

    Italy
  • Active, not recruitingNCT06765070

    Efficacy and Usability of the EXPLORER Exoskeleton in Children With Neurodevelopmental Disorders in Natural Environments

    Neurodevelopmental disorders often lead to abnormal development of the Central Nervous System (CNS), frequently causing motor dysfunctions such as an inability to stand and walk.

    DevicesExoskeletonPain ManagementQuality of LifeWalking Function
    Spain
  • Active, not recruitingNCT07669181

    Examination of the Role of Human Exoskeletons in Rehabilitation

    Background and Rationale: Traumatic spinal cord injury (SCI) affects approximately 12,400 individuals annually in the USA, predominantly impacting healthy young adults aged 20-40 years. Complete SCI above the lumbar region results in paraplegia or tetraplegia, severely compromising quality of life.

    DevicesExoskeletonRehabilitationBone StrengthBowel FunctionLeg MovementMental HealthMotor FunctionPain Management
    Hungary
  • Active, not recruitingNCT06463418

    Exoskeleton Training for Spinal Cord Injury Neuropathic Pain (ExSCIP)

    The goal of this feasibility trial is to learn if exoskeleton or robotic walking works to reduce nerve (neuropathic) pain after spinal cord injury.

    ExoskeletonPain Management
    Ireland
  • Active, not recruitingNCT06782113

    Safety and Efficacy of the UNILEXA Exoskeleton for Regular Verticalization and Assisted Walking

    The primary objective of this clinical follow-up is to analyze data regarding the safety of the UNILEXA passive exoskeleton post-market.

    Czechia
  • Active, not recruitingNCT05982171

    Transcutaneous Spinal Cord Stimulation to Promote Walking Recovery After Spinal Cord Injury

    The goal of this clinical trial is to investigate the effects of transcutaneous spinal cord stimulation (TSCS) combined with exoskeleton training, as compared to exoskeleton training alone to improve motor function in individuals with incomplete spinal cord injury who are 12 months or less…

    1 US site · Colorado

Completed and closed (90)

Completed, terminated, withdrawn, or last reported with an unknown status. Completed trials are where published results come from.

  • Terminated NCT03669302 Activity-Dependent Transspinal Stimulation in SCI
  • Unknown NCT03057652 Algorithmic-Based Evaluation and Treatment Approach for Robotic Gait Training
  • Completed NCT03307954 Bone Mineral Density Ekso Therapy Study
  • Unknown NCT04440709 Brain/Neural Hand Exoskeleton Control for Restoration of Bimanual Tasks
  • Completed NCT05643313 Clinical Investigation on Feasibility and Usability of the ABLE Exoskeleton Device for Individuals With Spinal Cord Injury to Perform Skills for Home and Community Environments
  • Completed NCT04876794 Clinical Investigation on Safety, Feasibility and Usability of the ABLE Exoskeleton Device With Spinal Cord Injured Patients in a Hospital Setting
  • Completed NCT05590065 Clinical Investigation on the Impact on Safety, Feasibility and Usability of the Design Changes Performed on ABLE Exoskeleton Device With Spinal Cord Injured Patients in a Hospital Setting
  • Completed NCT07550699 Clinical Investigation to Validate the Safety and Performance of Integrating Functional Electrical Stimulation Into the ABLE Exoskeleton
  • Unknown NCT05883917 Clinical Utility of Robot-Assisted Gait Training in Patients With Spinal Cord Injury Caused by Electrical Burns: A Case Report
  • Unknown NCT05386537 Combining Wearable Robotic Orthosis With Visual and Haptic Feedback to Enhance the Recovery of Upper Extremity Motor Function and ADL in Persons With Acute SCI
  • Completed NCT02862080 Combining tsDCS and Exoskeleton Gait Training on Spinal Excitability in SCI
  • Withdrawn NCT06169657 Comparison of Gait Training Methods in Sub-acute Stroke and Spinal Cord Injury
  • Unknown NCT03544398 Comparison of an Exoskeleten With an End-effector for Assisted Gait Training in Spinal Cord Injury
  • Completed NCT02336321 Daily-life Brain Control Of A Hand Exoskeleton After Cervical Spinal Cord Injury
  • Completed NCT03611803 EFFECTS OF ROBOTIC TRAINING ON VASCULAR HEALTH OF INDIVIDUALS WITH SCI
  • Unknown NCT03340792 Effects of Ambulation Training Utilizing an Exoskeleton Robot on Subjects With Spinal Cord Injury
  • Completed NCT00610974 Enhancing Walking in People With Incomplete Spinal Cord Injury: a Pilot Study
  • Unknown NCT04105296 Epidural Stimulation After Spinal Cord Injury
  • Completed NCT03477123 Evaluation of Robotic Exoskeletons Therapy for Gait Rehabilitation in Patients With Incomplete Spinal Cord Injury.
  • Completed NCT04110561 Evaluation of Safety and Performance of the Atalante System With Patients With Lower Limb Paralysis
  • Completed NCT06939634 Evaluation of Usability and Safety of the System Atalante in Patients With High Paraplegia and Tetraplegia
  • Completed NCT03452059 Evaluation of the Effectiveness and Safety of AI-Robotics
  • Completed NCT04215081 ExoAtlet II For SCI Patients
  • Completed NCT04221373 Exoskeletal-Assisted Walking in SCI Acute Inpatient Rehabilitation
  • Completed NCT02314221 Exoskeletal-assisted Walking to Improve Mobility, Bowel Function and Cardio-Metabolic Profiles in Persons With SCI
  • Completed NCT05176327 Exoskeleton Neurogenic Bowel Dysfunction Study
  • Completed NCT03144830 Exoskeleton Use in Acute Rehab Post Spinal Cord Injury; a Safety and Feasibility Study
  • Completed NCT03410550 Exoskeleton and Spinal Cord Injury
  • Withdrawn NCT04532723 Exoskeleton-Assisted Walking ExoAtlet II
  • Completed NCT07352085 Exoskeleton-assisted Neurorehabilitation
  • Completed NCT04013997 Exoskeleton-assisted Walking in SCI Inpatient Rehabilitation
  • Unknown NCT01943669 Exoskeletons for Spinal Cord Injury: A Feasibility Study
  • Completed NCT06137456 First Report of a New Exoskeleton in Incomplete Spinal Cord Injury
  • Completed NCT04781621 Foundational Ingredients of Robotic Gait Training for People With Spinal Cord Injury During Inpatient Therapy
  • Unknown NCT04055610 Gait Training for Individuals With Paraplegia Using the H-MEX Exoskeleton
  • Completed NCT04973852 High Intensity Training for Neurological Injury Using Overground Exoskeletons in Inpatient Rehabilitation
  • Completed NCT02118194 Home/Work, Community Mobility Skills in the ReWalk Exoskeleton in Persons With SCI
  • Completed NCT06715631 Human Factors Validation Testing of the Wandercraft Personal Exoskeleton
  • Suspended NCT04578665 Human-like Robotic Controllers for Enhanced Motor Learning
  • Completed NCT02104622 Identify Training Strategies for Progressing Exoskeleton Users Towards Everyday Functional Ambulation
  • Completed NCT03011099 Improving Gait Performance in Individuals With Spinal Cord Injuries: an Intervention Using Robotic Exoskeletons
  • Completed NCT05659121 Improving Mobility Via Robotic Exoskeletons in Local Rehabilitation Settings in Singapore
  • Completed NCT02793635 Indego Exoskeleton After SCI
  • Completed NCT02202538 Indego® Exoskeleton; Assessing Mobility for Persons With Spinal Cord Injury (SCI).
  • Terminated NCT02566850 Investigational Study of the Ekso for High-Dosage Use by Individuals With SCI in a Non-Clinical Environment
  • Completed NCT04855916 KAFO Orthoses Versus the ABLE Exoskeleton
  • Completed NCT02600013 Locomotor Training With Exoskeleton EKSO-GT in Patients With Incomplete Motor Spinal Cord Injury in a Hospital Setting
  • Completed NCT07137780 Lokomat® vs RoboGait® Under Different Guidance Force Settings in Motor-Incomplete SCI
  • Completed NCT07128901 Lower-Limb Exoskeleton Technology for Non-Ambulatory Individuals With Spinal Cord Injury
  • Completed NCT03082898 Mobility and Therapeutic Benefits Resulting From Exoskeleton Use in a Clinical Setting (SC140121 Study 1 and 2)
  • Withdrawn NCT04149769 Mobility and Therapeutic Benefits Resulting From Exoskeleton Use in a Home and Community Setting (SC140121 Study 3)
  • Unknown NCT04453943 Modeling, Optimization, and Control Methods for a Personalized Hybrid Walking Exoskeleton
  • Unknown NCT04726059 Motor & Autonomic Concomitant Health Improvements With Neuromodulation & Exercise Training: An SCI RCT
  • Completed NCT04241250 Neuromodulation Techniques After SCI
  • Unknown NCT02324322 Non-Ambulatory SCI Walk Using a Robotic Exoskeleton: Effect on Bone and Muscle
  • Terminated NCT03989752 Overground Walking Program With Robotic Exoskeleton in Long-term Manual Wheelchair Users With Spinal Cord Injury
  • Completed NCT05757830 PURO - PUlmonary Rehabilitation With O-RAGT Platform
  • Suspended NCT05811884 Patient-centered Assessment of the Effects of Powered Exoskeleton Use in People With Spinal Cord Injury
  • Completed NCT06531304 Patient-therapist INTERaction During RObotic GAIT Rehabilitation After Spinal Cord Injury
  • Completed NCT02132702 Performance Attributes and User Progression While Using Ekso
  • Completed NCT03175055 Phoenix Exoskeleton for SCI Users
  • Unknown NCT04568928 Powered Exoskeleton Combined With Functional Electrical Stimulation in Clinical Practice
  • Completed NCT02658656 Powered Exoskeletons in Persons With SCI
  • Unknown NCT05558254 ROBERT® as an Intervention to Enhance Muscle Strength After Spinal Cord Injury
  • Unknown NCT03443700 Randomized Controlled Trial on Robotic Exoskeleton in Spinal Cord Injury: Clinical Outcomes and Cortical Plasticity
  • Unknown NCT02944669 ReWalk Personal Device Postmarket Study
  • Completed NCT06881134 Rehabilitation Combining Spatiotemporal Spinal Cord Stimulation and Real-time Triggering Exoskeleton After Spinal Cord Injury
  • Completed NCT02322125 Restoring Walking With a Powered Exoskeleton After Spinal Cord Injury
  • Unknown NCT05401734 Robot Assisted Gait Training in Persons With a Spinal Cord Injury
  • Completed NCT06805500 Robotic Assisted Balance and Exoskeleton Training (REACTION) in Neurorehabilitation: a Feasibility Study
  • Unknown NCT04250688 Robotic Exoskeleton With Functional Electrical Stimulation in Acute Spinal Cord Injury
  • Completed NCT02749357 Robotic Gait Training in Spinal Cord Injury
  • Completed NCT05473676 Robotic Walking for Children Who Cannot Walk
  • Completed NCT01989806 Robotic-assisted Locomotor Training on Mobility and Cardiopulmonary Function in Patients Suffering From Spinal Cord Injury
  • Terminated NCT02065830 Safety Study of Outdoor and Indoor Mobility in People With Spinal Cord Injury (ROBOtics Spinal Cord Injury EKSO).
  • Unknown NCT05926310 Safety and Feasibility of TWIICE Rise
  • Completed NCT01251549 Safety and Performance Evaluation of ReWalk Reciprocating Gait Orthosis (RGO)
  • Completed NCT05265377 Safety and Usability of the STELO Exoskeleton in People With Acquired Brain Injury and Spinal Cord Injury
  • Unknown NCT03225625 Stem Cell Spinal Cord Injury Exoskeleton and Virtual Reality Treatment Study
  • Completed NCT04964635 TETRAGRIP II - Usability Trial of an FES Orthosis for People With Tetraplegia.
  • Completed NCT05330052 The Effects of a Powered Knee Orthosis on Gait Kinematics of Children With Knee Extension Deficiency
  • Unknown NCT06188130 The Effects of rTMS and tDCS Combined With Robotic Rehabilitation In Patients With Spinal Cord Injury
  • Unknown NCT03548649 The Efficacy and Safety of a New Power Exoskeleton Robot for Improving Walking Ability in Spinal Cord Injury Patients
  • Completed NCT02943915 The WISE Trial - Walking Improvement for SCI With Exoskeleton
  • Completed NCT04807764 Transspinal Stimulation Plus Locomotor Training for SCI
  • Completed NCT04624607 Transspinal-Transcortical Paired Stimulation for Neuroplasticity and Recovery After SCI
  • Unknown NCT05249595 Ultrasound Imaging Based Sensing of Human Ankle Motion Intent and Control Strategies for Ankle Assistance
  • Terminated NCT02720341 VIT-ARMin Virtual, Intensified and Patient-tailored Robotic Arm Therapy With the Exoskeleton Robot ARMin
  • Completed NCT06306352 Vibrotactile Feedback in Exoskeletons
  • Unknown NCT03504826 Walking Rehabilitation After Spinal Cord Injury: Locomotor Training Using Adaptive Robotics

Where this list comes from

Trials are pulled daily from the ClinicalTrials.gov registry and tagged by what they study and what they target. This page reflects the 2026-09-12 refresh of the 2,167 spinal cord injury trials SCI.help tracks. Eligibility criteria, study contacts, exact sites, and results live on each trial's ClinicalTrials.gov record, linked above. The full dataset is public at /data/sci_trials.min.json.

Before contacting a study team, read clinical trials and SCI research, honestly and how to spot a predatory "trial".