Spinal Cord Injuries and Disorders (SCI/D)

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Review clinical trials related to Spinal Cord Injuries and Disorders (SCI/D). Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Not yet recruiting

Cardiac Morphology and Function in Individuals With Autonomic Dysreflexia

This case-control study aims to investigate left ventricular remodeling in individuals with chronic spinal cord injury or disease (SCI/D) (≥10 years) and autonomic dysreflexia (AD) who have no prior cardiovascular history. The primary objective is to compare cardiac changes between 24 individuals with high-level SCI/D (above Th6) who have AD and 24 individuals with low-level SCI/D (below Th10) who do not have AD. A secondary objective examines how factors such as age, sex, injury duration, and physical activity are associated with cardiac remodeling. All 48 participants will undergo cardiac MRI as well as blood measurement of B-type natriuretic peptid to assess cardiac morphology and function. The findings could shed light on a potentially underestimated cardiovascular risk factor in the SCI/D population.

Participants needed: 48
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: Swiss Paraplegic Research, NottwilUpdated: Mar 11, 2026Locations: 1
Eligibility criteria

adults aged 18 years or older [+4]

congenital heart defects [+13]

Status: Not yet recruiting

Using Non-invasive Brain and Spinal Cord Stimulation to Improve Arm and Hand Function After Spinal Cord Injury

Cervical spinal cord injury (SCI) disrupts communication between the brain and spinal circuits, affecting voluntary movement control and contributing to arm and hand impairments, the top recovery priority for people with tetraplegia. Although rehabilitation and emerging neuromodulation approaches can support meaningful gains, many individuals experience persistent limitations in reaching and grasping. Current noninvasive stimulation strategies typically target the brain OR the spinal cord alone, despite strong reciprocal interactions between these structures. Cervical transcutaneous spinal cord stimulation (tSCS) can enhance upper limb function. Cerebellar stimulation, given its key role in sensorimotor integration and modulation of corticospinal excitability, represents a promising but underexplored therapeutic target. Theta burst stimulation (TBS), a rapid form of repetitive transcranial magnetic stimulation (TMS), induces lasting changes in cortical excitability and may promote associative plasticity when paired with spinal cord stimulation. This double-blind, randomized, sham-controlled pilot trial (n=24) will evaluate the feasibility, preliminary efficacy, and mechanisms of combined cerebellar TBS + cervical tSCS in people with chronic cervical SCI (AIS B, C or D). Participants will either receive cerebellar TBS + cervical tSCS, tSCS only, or sham stimulation while engaging in functional task practice such as pinching and grasping 3x/week for 8 weeks. Feasibility outcomes include adherence, retention, and safety. Efficacy will be assessed using the GRASSP strength sub-score and KINARM-based measures of sensorimotor control. Mechanistic outcomes will assess changes in cortical and spinal cord functional connectivity using resting state fMRI, corticospinal excitability using motor evoked potentials, and spinal excitability using the H reflex. Findings will establish whether combined cerebellar TBS and cervical tSCS is feasible, safe, and capable of enhancing upper limb recovery.

Participants needed: 24
Trial details
Age: 19-75Biological sex: AllType: InterventionalSponsor: University of British ColumbiaUpdated: Feb 20, 2026Locations: 1
Eligibility criteria

At least 19 years of age and no older than 75 years at the time of enrollment. P... [+8]

Has any unstable or significant medical condition that is likely to interfere wi... [+5]

Status: Recruiting

Motoneuron Recruitment and Motor Evoked Potential Up-Conditioning (MEP) in Spinal Cord Injury (SCI)

The purpose of this research study is to examine the effect of a brain stimulation training to improve the function of brain-spinal cord- muscle connections. Because brain-to-muscle pathways are very important in our movement control, restoring function of these pathways may improve movement problems after injuries. Spinal cord injury causes damage to the brain-to-muscle connection. However, when the injury is "incomplete", there is a possibility that some of the brain-to-muscle pathways are still connected and may be trained to improve movement function. For examining brain-to-muscle pathways, investigators use a transcranial magnetic stimulator. Investigators hope that the results of this research study will help us develop new treatments for people who have movement disabilities. This study will require about 42 visits over the first 14 weeks, and another 6 visits over an additional 3 months. Each visit will take about 1 ½ hours.

Participants needed: 15
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Medical University of South CarolinaUpdated: Nov 26, 2025Locations: 1
Eligibility criteria

Adult (≥18 yrs old) [+7]

motoneuron injury [+11]