Cervical Spinal Cord Injury

22

Review clinical trials related to Cervical Spinal Cord Injury. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

Feasibility of the BrainGate2 Neural Interface System in Persons With Tetraplegia (BG-Tablet-01)

People with brainstem stroke, advanced amyotrophic lateral sclerosis (ALS, also known as Lou Gehrig's disease), or other disorders can become unable to move or speak despite being awake and alert. In this project, the investigators seek to further translate knowledge about interpreting brain signals related to movement, and to further develop an intracortical brain-computer interface (iBCI) that could restore rapid and intuitive use of communication apps on tablet computers by people with paralysis.

Participants needed: 6
Trial details
Age: 18-80Biological sex: AllType: InterventionalSponsor: Leigh R. Hochberg, MD, PhD.Updated: Jun 25, 2026Locations: 1
Eligibility criteria

Clinical diagnosis of spinal cord injury, brainstem stroke, muscular dystrophy,... [+3]

Visual impairment such that extended viewing of a computer monitor would be diff... [+2]

Status: Recruiting

Spinal Cord Associative Plasticity Study

Spinal cord associative plasticity (SCAP) is a combined cortical and spinal electrical stimulation technique developed to induce recovery of arm and hand function in spinal cord injury. The proposed study will advance understanding of SCAP, which is critical to its effective translation to human therapy. The purpose of the study is to: 1. Determine whether signaling through the spinal cord to the muscles can be strengthened by electrical stimulation. 2. Improve our understanding of the spinal cord and how it produces movement. 3. Determine whether spinal surgery to relieve pressure on the spinal cord can improve its function. Aim 1 is designed to advance mechanistic understanding of spinal cord associative plasticity (SCAP). Aim 2 will determine whether SCAP increases spinal cord excitability after the period of repetitive pairing. In rats, SCAP augments muscle activation for hours after just 5 minutes of paired stimuli. Whereas Aims 1 and 2 focused on the effects of paired stimulation in the context of uninjured spinal cord, Aim 3 assesses whether paired stimulation can be effective across injured cord segments. Aim 3 will incorporate the experiments from Aim 1 and 2 but in people with SCI, either traumatic or pre-operative patients with myelopathy in non-invasive experiments, or targeting myelopathic segments in intraoperative segments.

Participants needed: 92
Trial details
Phase: Early Phase 1Age: 18-80Biological sex: AllType: InterventionalSponsor: Columbia UniversityUpdated: Jun 18, 2026Locations: 3
Eligibility criteria

Age between 18-80 years. [+4]

Personal or extensive family history of seizures; [+23]

Status: Recruiting

Low Volume Nose Resistance Breathing Exercise With Incentive Spirometer in Patient With Cervical Spinal Cord Injuries

This randomized clinical trial aims to evaluate the effectiveness of combining Low Volume Nose Resistance Breathing Exercises (LVNRBE) with Incentive Spirometry (IS) on respiratory outcomes in patients with cervical spinal cord injury (SCI). Respiratory complications are a major concern in cervical SCI due to impaired respiratory muscle function, leading to reduced lung volumes, dyspnea, ineffective cough, and sputum retention. The study will recruit 42 inpatients aged 18-38 years with cervical SCI (C4-C7), randomly divided into two groups: Data Analysis: Statistical tests (paired and independent t-tests) will determine intra- and intergroup differences using SPSS v25, with significance set at p \< 0.05. * Group A (Intervention): Receives LVNRBE using an Acapella device plus IS for 20 minutes, three times daily, five days a week for four weeks. * Group B (Control): Receives conventional respiratory physiotherapy with the same frequency and duration. Outcomes will be assessed pre- and post-intervention using: * Pulmonary Function Tests (FVC, FEV1), * Modified Borg Dyspnea Scale, * Cough Frequency Scale, * Sputum Grading Scale.

Participants needed: 42
Trial details
Age: 18-38Biological sex: AllType: InterventionalSponsor: Riphah International UniversityUpdated: Jun 12, 2026Locations: 1
Eligibility criteria

Diagonosed cervical spine injury C4-C7 [+6]

Uncontrolled hypertension [+4]

Status: Recruiting

Nerve Transfer Surgery to Restore Upper-limb Function After Cervical Spinal Cord Injury

The goal of this prospective, open-label cohort study is to assess functional outcomes in individuals with cervical spinal cord injury who have undergone nerve transfer surgery to restore upper limb function. The main questions it aims to answer are: * Does nerve transfer improve hand function in individuals with cervical spinal cord injury? * What factors are associated with functional improvement following nerve transfer? Researchers will compare functional outcomes at 24 months post-surgery to 1) baseline outcomes and 2) individuals with cervical spinal cord injury who did not undergo nerve transfer. Participants who have received nerve transfer surgery as part of their regular medical care will complete functional hand tests, electrodiagnostic assessments, and questionnaires on independence and mood every 3 months for 24 months after surgery.

Participants needed: 40
Trial details
Age: 18-70Biological sex: AllType: ObservationalSponsor: University of British ColumbiaUpdated: May 29, 2026Locations: 4Duration: 2 Years
Eligibility criteria

Traumatic, motor-complete cervical SCI (AIS A or B) [+8]

Inability or unwillingness to participate in post-operative rehabilitation (in p... [+1]

Status: Recruiting

Brain Controlled Spinal Cord Stimulation in Participants With Cervical Spinal Cord Injury for Upper Limb Rehabilitation

Cervical spinal cord stimulation can elicit arm and hand movements through recruitment of proprioceptive neurons in the dorsal roots. In participants with cervical spinal cord injury, the spare roots bellow the lesion can be used to reactivate motor function. Decoding of motor intentions can be achieved through implantable electrocorticography (ECoG) devices. In this study, the investigators will use an investigational system using ECoG signal recording over the motor cortex to drive muscle specific electrical epidural spinal cord stimulation (EES). The investigators will assess the safety and preliminary efficacy of this system in 3 participants.

Participants needed: 3
Trial details
Age: 18-75Biological sex: AllType: InterventionalSponsor: Ecole Polytechnique Fédérale de LausanneUpdated: Apr 23, 2026Locations: 1
Eligibility criteria

Must provide Informed Consent as documented by signature (Appendix Informed Cons... [+31]

Status: Recruiting

Connect-One: Early Feasibility Study of Connexus® Brain-Computer Interface (BCI)

The Connect-One Study is an early feasibility study to obtain preliminary device safety information for the Connexus Brain-Computer Interface (BCI). The Connexus BCI is intended to be used as: (1) an assistive communication device to decode imagined language correlates and speech for patients with impaired communication as a result of severe loss of voluntary motor control; and (2) to provide control of computer devices for individuals with severe loss of voluntary motor control of the upper extremity.

Participants needed: 2
Trial details
Age: 22-75Biological sex: AllType: InterventionalSponsor: ParadromicsUpdated: Apr 14, 2026Locations: 3
Eligibility criteria

Clinical diagnosis of a progressive neuromuscular disease or a neurological inju... [+5]

Cognitive impairment or psychiatric illness that could impact the ability to com... [+4]

Status: Recruiting

Augmenting Rehabilitation Outcomes and Functional Neuroplasticity Using Epidural Stimulation of Cervical Spinal Cord

The goal of this study is to investigate the effects of cervical epidural spinal stimulation with upper extremity training. This is an investigational study. The device used for epidural spinal stimulation (ESS) to deliver spinal stimulation is called the CoverEdgeX 32 Surgical Lead system. This device is approved by the Food and Drug Administration (FDA) for the treatment of severe pain and to manage chronic pain when other treatments have not been effective. In this study, the device is considered an investigational device because it is not approved for use in the treatment of spinal cord injury

Participants needed: 12
Trial details
Age: 22-65Biological sex: AllType: InterventionalSponsor: The Methodist Hospital Research InstituteUpdated: Apr 8, 2026Locations: 1
Eligibility criteria

All participants must provide a signed and dated informed consent form. [+14]

Currently involved in another rehabilitation training study. [+11]

Status: Recruiting

Spinal Stimulation for Upper Extremity Recovery in the Home

The purpose of this research is to evaluate the safety, feasibility, and tolerability of non-invasive spinal stimulation used in the home and/or community in combination with a functional home exercise program for the upper extremities (arm/hand function) as well as their combined impacts on changes in upper extremity function. The expected duration of participation in this study is about 31-33 hours over a 13-25-week period. Enrollees in this study will be randomly assigned to one of two groups: 1) upper extremity functional task-specific training combined with non-invasive transcutaneous spinal stimulation, or 2) waitlist control, which involves the same intervention, but with a 12-week delayed start. Participants complete initial testing (one time if in group one and three times \[at weeks 0, 8, and 12\] if in group two), 24 1-hour training sessions (2x/week in home with caregiver/companion support and 1x/week with research team in person or via video conference for 8 weeks), a post-treatment evaluation, and a final evaluation (4 weeks after post-treatment).

Participants needed: 46
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Craig HospitalUpdated: Mar 31, 2026Locations: 1
Eligibility criteria

Age 18 or older [+12]

Experience unstable chronic cardiac or respiratory complaints [+8]

Status: Recruiting

Nerve Transfer to Improve Function in High Level Tetraplegia

The goal of this observational study is to determine if nerve transfer surgeries improve upper extremity function and quality of life in patients with a high level cervical spinal cord injury. Participants will: * undergo standard of care pre- and post-op testing and study exams * complete pre- and post-questionnaires * undergo standard of care nerve transfer surgeries * follow-up with surgeon at 6/12/18/24/36 and potentially at 48 months * attend therapy at local therapist for up to 2 years postop.

Participants needed: 30
Trial details
Age: 18-80Biological sex: AllType: ObservationalSponsor: Washington University School of MedicineUpdated: Mar 11, 2026Locations: 10
Eligibility criteria

18-80 years of age [+6]

Active infection at the operative site or systemic infection [+7]

Status: Recruiting

Precise Robotically IMplanted Brain-Computer InterfacE

The PRIME Study is a first-in-human early feasibility study to evaluate the initial clinical safety and device functionality of the Neuralink N1 Implant and R1 Robot device designs in participants with tetraparesis or tetraplegia. The N1 Implant is a skull-mounted, wireless, rechargeable implant connected to electrode threads that are implanted in the brain by the R1 Robot, a robotic electrode thread inserter.

Participants needed: 15
Trial details
Age: 22-75Biological sex: AllType: InterventionalSponsor: Neuralink CorpUpdated: Jan 9, 2026Locations: 2
Eligibility criteria

Severe quadriplegia (tetraplegia) due to spinal cord injury or amyotrophic later... [+3]

Moderate to high risk for serious perioperative adverse events [+10]

Status: Recruiting

Feasibility and Safety of a Combined Augmented Reality and Functional Electrical Stimulation System

Cervical spinal cord injury (cSCI) can result in substantial loss of upper-limb function, with associated socio-economic impact on affected individuals and the healthcare system. Evidence suggests that non-invasive neuromodulation such as functional electrical stimulation (FES) therapy can contribute to regaining upper-limb function, which is a top priority for this population. This pilot study will involve individuals with cSCI using a device that combines augmented reality (AR) and functional electrical stimulation (FES) for 20, one-hour sessions over a 10-week period. The sessions will include upper-limb rehabilitation where individuals will interact with different objects with the aid of the AR +FES system. The primary objective is to assess safety and feasibility, measured by the absence of serious adverse events and participants' ability to independently set up and use the system. Secondary objectives include adherence to the intervention and user feedback through structured interviews. Exploratory outcomes will examine preliminary efficacy using clinical measures such as the Spinal Cord Independence Measure (SCIM) and the Graded Redefined Assessment of Strength, Sensation and Prehension (GRASSP).

Participants needed: 7
Trial details
Phase: Early Phase 1Age: 18-65Biological sex: AllType: InterventionalSponsor: University Health Network, TorontoUpdated: Dec 23, 2025Locations: 1
Eligibility criteria

Chronic cervical SCI [+2]

Any disease or injury other than the SCI that may be affecting grasping performa... [+4]

Status: Recruiting

Targeting Cervical Epidural Spinal Cord Stimulation for Functional Recovery

The proposed study seeks to understand how the cervical spinal cord should be stimulated after injury through short-term physiology experiments that will inform a preclinical efficacy trial. The purpose of this study is to determine which cervical levels epidural electrical stimulation (EES) should target to recruit arm and hand muscles effectively and selectively in spinal cord injury (SCI).

Participants needed: 36
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Columbia UniversityUpdated: Nov 24, 2025Locations: 2
Eligibility criteria

Not listed

Status: Recruiting

VOICE: An Early Feasibility Study of a Precise Robotically Implanted Brain-Computer Interface for Communication Restoration

The VOICE Study is an early feasibility study to evaluate the initial clinical safety and efficacy of the N1 and R1 Systems device design concept in providing an ability to communicate. The Neuralink N1 Implant is intended to provide the ability to communicate to individuals with severe and irreversible speech production impairment. It is indicated for adults with neurological conditions of the central speech pathways who have impaired upper limb function. The N1 Implant is a skull-mounted, wireless, rechargeable implant connected to electrode threads that are implanted in the brain by the R1 Robot, a robotic electrode thread inserter.

Participants needed: 6
Trial details
Age: 22-75Biological sex: AllType: InterventionalSponsor: Neuralink CorpUpdated: Nov 4, 2025Locations: 1
Eligibility criteria

Life expectancy ≥ 12 months. [+2]

Moderate to high risk for serious perioperative adverse events [+8]

Status: Recruiting

GB-PRIME: An Early Feasibility Study of a Precise Robotically Implanted Brain-Computer Interface for the Control of External Devices

The GB-PRIME Study is an early feasibility study designed to assess the clinical safety and functionality of the Neuralink N1 Implant and R1 Robot. This study involves participants who have tetraparesis, tetraplegia, or a diagnosis that may lead to these conditions. The N1 Implant is a wireless, rechargeable device mounted on the skull, connected to electrode threads that are inserted into the brain by the R1 Robot, which is a robotic device specifically designed for this procedure.

Participants needed: 7
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Neuralink CorpUpdated: Aug 17, 2025Locations: 2
Eligibility criteria

(a) A diagnosis of a spinal cord injury, brain stem stroke, or other neurologica... [+3]

Moderate to high risk for serious perioperative adverse events [+10]

Status: Recruiting

Efficacy of a Brain-Computer Interface Controlled Functional Electrical Stimulation Therapy for Spinal Cord Injury Neurorehabilitation

The study's main goal is to determine the efficacy of a therapy with brain-computer interface controlled functional electrical stimulation for neurorehabilitation of spinal cord injury patients' upper limbs. For this purpose, a randomized controlled trial will be performed to compare the clinical and physiological effects of the brain-computer interface therapy with those of a sham intervention comprised by the application of functional electrical stimulation independently of brain-computer interface control.

Participants needed: 32
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Instituto Nacional de RehabilitacionUpdated: Jun 25, 2025Locations: 1
Eligibility criteria

Spinal Cord Injury at neurological levels C6 or C7 [+4]

Severe attention deficits [+8]

Status: Recruiting

UAE-PRIME: A Feasibility Study of a Precise Robotically Implanted Brain-Computer Interface for the Control of External Devices

The UAE-PRIME Study is a feasibility study designed to assess the initial clinical safety and functionality of the Neuralink N1 Implant and R1 Robot. This study involves participants who have tetraparesis, tetraplegia, or a diagnosis that may lead to these conditions. The N1 Implant is a wireless, rechargeable device mounted on the skull, connected to electrode threads that are inserted into the brain by the R1 Robot, which is a robotic device specifically designed for this procedure.

Participants needed: 10
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Neuralink CorpUpdated: Jun 5, 2025Locations: 1
Eligibility criteria

(a) A diagnosis of a spinal cord injury (>12 months), stroke (>12 months), or ot... [+3]

Moderate to high risk for serious perioperative adverse events [+9]

Status: Recruiting

CAN-PRIME: Precise Robotically Implanted Brain-Computer Interface for the Control of External Devices

The CAN-PRIME Study is to test the safety and functionality of Neuralink's N1 Implant and R1 Robot in people who have difficulty moving their arms and legs (tetraparesis or tetraplegia). The N1 Implant is a small, wireless device placed in the skull. It connects to tiny threads inserted into the brain by the R1 Robot, which is a machine designed to carefully place these threads. This study will help researchers learn how well the implant and robot work and if they are safe for use.

Participants needed: 6
Trial details
Age: 19+Biological sex: AllType: InterventionalSponsor: Neuralink CorpUpdated: May 31, 2025Locations: 1
Eligibility criteria

Severe quadriplegia (tetraplegia) due to spinal cord injury or amyotrophic later... [+3]

Moderate to high risk for serious perioperative adverse events [+10]

Status: Recruiting

Study of Individualized, Precise and Standardized Cervical Open-door Surgery for Cervical Spinal Stenosis

To evaluate the safety and effectiveness of individualized, precise and standardized open-door posterior cervical surgery through a single-center, exploratory clinical study, so as to provide a more reliable basis for the treatment of cervical spinal stenosis.

Participants needed: 500
Trial details
Age: 28-85Biological sex: AllType: InterventionalSponsor: Xijing HospitalUpdated: Apr 9, 2025Locations: 1
Eligibility criteria

The age of 28-85 years old; Through systematic clinical and imaging examination,... [+2]

Cervical radiculopathy [+8]

Status: Recruiting

Neurostimulation for Respiratory Function After Spinal Cord Injury

The purpose of this research study is to learn more about the connections between the brain, nerves, and diaphragm after experiencing a cervical spinal cord injury (SCI).The main question it aims to answer is: Changes in respiratory function and recovery using stimulation and respiratory exercise training in spinal cord-injured individuals. Participants will complete a maximum of 55 study visits. They will be asked to complete about 40 treatment sessions which include multiple stimulation sessions over the scalp and neck, followed by about 60 minutes of respiratory training. Assessment sessions will be completed prior at baseline, after 20 sessions and after 40 sessions of study treatment.

Participants needed: 10
Trial details
Age: 18-85Biological sex: AllType: InterventionalSponsor: Shirley Ryan AbilityLabUpdated: Apr 4, 2025Locations: 1
Eligibility criteria

Male and females between ages 18-85 years [+4]

Any illness or condition that based on the research team's assessment, will comp... [+13]

Status: Recruiting

Robot-assisted Vs. Conventional Occupational Therapy of the Upper Limb in Individuals with Cervical Spinal Cord Injury

The goal of this clinical trial is to learn the effects of robot-assisted therapy using the ArmeoSpring on upper limb function compared to conventional occupational therpay in individuals with cervical spinal cord injury (cSCI). The main questions it aims to answer are: \- Which of the two forms of therapy, robot-assisted therapy or conventional occupational therapy, is more effective in terms of improving arm and hand function? The study is designed as a cross-over trial, which means that each participant will receive both therapy forms consecutively, whereas the order is assigned randomly (either robot-assisted therapy first and then occupational therapy, or vice versa). In addition to their clinical routine therapy , participants will: * complete a baseline assessment * practice one therapy form (either robot-assisted or occupational therapy) with one arm for 6 weeks (3 x 30 min per week) * complete a intermediate assessment * practice the other therapy form (either occupational or robot-assisted therapy) with one arm for 6 weeks (3 x 30 min per week) * complete a post assessment * complete a follow-up assessment (if the post assessment was completed prior to 150 days post-injury)

Participants needed: 40
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Swiss Paraplegic Research, NottwilUpdated: Mar 10, 2025Locations: 1
Eligibility criteria

Informed Consent signed by the subject [+6]

Inability to follow the procedures of the investigation [+7]

Status: Recruiting

Nerve Transfers Plus Electrical Stimulation to Improve Hand Function in Cervical Spinal Cord Injury

The goal of this prospective observational study is to determine whether brief intraoperative electrical stimulation and temporary postoperative electrical stimulation improve motor and/or pain outcomes for patients with cervical spinal cord injury undergoing standard of care nerve transfer surgery to improve hand function. The main hypotheses include: Hypothesis #1: Brief intraoperative electrical stimulation of the donor nerves will result in improved motor outcomes (hand function) compared to standard nerve transfer surgery in patients with cervical spinal cord injuries. Hypothesis #2: Placement of a temporary peripheral nerve stimulator for 60 days of postoperative electrical stimulation will result in improved pain outcomes compared to standard nerve transfer surgery in patients with cervical spinal cord injuries. Researchers will prospectively enroll patients with cervical spinal cord injury and no hand function who will undergo standard of care nerve transfer surgery combined with standard of care brief intraoperative electrical stimulation and temporary postoperative electrical stimulation. Motor and pain outcomes will be compared to a retrospective group of patients who underwent nerve transfer surgery without intraoperative or postoperative electrical stimulation. Participants will receive standard medical care (nothing experimental) as part of this study. Participants will: * Have a preoperative assessment including physical examination, electrodiagnostic studies, functional electrical stimulation, and will complete questionnaires assessing function and quality of life * Agree upon a surgical plan, including the specific nerve transfers to be performed and whether to include brief intraoperative electrical stimulation and/or temporary postoperative electrical stimulation before being considered for enrollment in the study * Will undergo standard of care nerve transfer surgery, with at least one nerve transfer targeting improvement in hand function and will receive brief intraoperative electrical stimulation of the donor nerves and placement of a temporary peripheral nerve stimulator * Will follow-up with the surgeon 3, 6, 12, 24, and 36 months after the surgery * Will have a physical examination and will complete questionnaires at the postoperative visits * Will participate in hand therapy following the operation * Will be eligible for placement of a permanent peripheral nerve stimulator, depending on response to the temporary peripheral nerve stimulator.

Participants needed: 10
Trial details
Age: 18-65Biological sex: AllType: ObservationalSponsor: Stanford UniversityUpdated: Feb 19, 2025Locations: 1
Eligibility criteria

Cervical spinal cord injury, ASIA A or ASIA B [+9]

Contraindication to electrical stimulation, including any implanted electronic d... [+7]

Status: Recruiting

Dysphagia After Anterior Cervical Spine Surgery

The purpose of this research project is to investigate the incidence of impaired swallowing (dysphagia) after anterior cervical spine surgery (ACSS) and to study the long-term effect of dysphagia on nutritional status 12 ± 3 months later. Furthermore, to investigate the effect of a new rehabilitation method for dysphagia among individuals with swallowing dysfunction after ACSS.

Participants needed: 60
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Umeå UniversityUpdated: Dec 11, 2024Locations: 1
Eligibility criteria

All patients enrolled at the University Hospital of Umeå who have undergone ACSS... [+1]

Patients <18 years of age [+3]