Spinal Cord Injuries

168

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

Condition / disease
Location
Status: Recruiting

Hybrid HIIT-FES Cycling Program on Individuals With Spinal Cord Injury to Improve Health

Project Summary/Abstract Obesity and metabolic syndrome (obesity, dyslipidemia, hyperglycemia, hypertension) are epidemic in the spinal cord injured (SCI) population. A recent study assessing the body composition and metabolic syndrome rates of 72 motor complete chronic SCI individuals revealed an obesity rate of over 90% and a metabolic syndrome rate of 60%. These results are significantly higher than in the general population. As such individuals with SCI typically have systemic inflammation and an accelerated trajectory towards cardiometabolic disease, and early mortality. Although the accelerated trajectory is multi-factorial, substantial evidence implicates sedentary behavior and low physical activity levels as significant contributing factors. Exercise strategies for individuals with SCI have included upper body arm crank exercise (ACE), functional electrical stimulation leg cycling exercise (FES-LCE), or a combination of the two (FES Hybrid Exercise). These modalities have yielded modest improvements in physical fitness and cardiometabolic risk profiles in individuals with SCI. FES-LCE reportedly increased lean-to-fat mass ratio, enhanced peripheral blood flow and vasoreactivity, and increased bone mass in the paralyzed legs. In addition, FES-LCE improves metabolic function as evidenced by increased glucose disposal. There is evidence that high-intensity interval training exercise can increase muscle mass and improve cardiovascular fitness with considerably less time commitment than non-interval activities. However, given many individuals with SCI respond poorly to the onset of training a primer exercise program for the extremely deconditioned muscles is recommended for optimal results. The investigators intend to investigate the optimization of benefits by using a novel hybrid FES cycling protocol (FES legs cycling plus voluntary arms cycling) combined with high intensity interval training (HIIT) and preceded by a preparatory muscle strengthening program called "peripheral remodeling intermittent muscular exercise (PRIME) to prepare the deconditioned muscles for the more intense exercise in the hybrid HIIT-FES cycling program. The investigators hypothesize that individuals in the PRIME + hybrid HIIT-FES cycling program will demonstrate significantly greater cardiometabolic health and functional benefits than the control group receiving standard of care range of motion exercises.

Participants needed: 12
Trial details
Age: 21-70Biological sex: AllType: InterventionalSponsor: William Carey UniversityUpdated: Jul 2, 2026Locations: 1
Eligibility criteria

men and women ages 21-70 years [+3]

pressure wounds on buttocks or feet [+6]

Status: Not yet recruiting

Impact of Transcutaneous Spinal Stimulation on Blood Pressure and Orthostasis in Spinal Cord Injury

The purpose of this study is to learn whether stimulation applied to the spinal cord through the skin (called transcutaneous spinal stimulation) can help control blood pressure in people with a spinal cord injury. The main questions this study attempts to solve: 1. What are the immediate effects of spinal cord transcutaneous stimulation on BP? 2. Does stimulation produce lasting improvements in BP regulation and subsequently, daily function?

Participants needed: 10
Trial details
Age: 18-75Biological sex: AllType: InterventionalSponsor: Kessler FoundationUpdated: Jun 29, 2026Locations: 1
Eligibility criteria

Individuals with a SCI ≥ 1 year after injury [+4]

Current illness (e.g., infection, a pressure injury that might interfere with th... [+8]

Status: Recruiting

Repetitive Transcranial Magnetic Stimulation Therapy in Spinal Cord Injury Related Neuropathic Pain

The aim of our study is to investigate the effect of different protocols of high-frequency Repetitive Transcranial Magnetic Stimulation (rTMS) therapy added to the rehabilitation program on neuropathic pain,depression, quality of life and quality of sleep compared to each other and placebo group in participants with spinal cord injury.

Participants needed: 63
Trial details
Age: 18-75Biological sex: AllType: InterventionalSponsor: Afyonkarahisar Health Sciences UniversityUpdated: Jun 26, 2026Locations: 1
Eligibility criteria

Having an important comorbid disease such as severe heart disease (aortic stenos... [+14]

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

Using Smartphones to Improve Physical Activity Levels of Individuals With Spinal Cord Injury

The overarching goal of this research study is to evaluate a sensor-enabled, just-in-time adaptive intervention (JITAI) strategy to increase and sustain physical activity levels among individuals with spinal cord injury (SCI) in their communities. A primary objective of this study is to evaluate the integration of a JITAI with a web-based physical activity intervention program. We hypothesize that the integration of web-based physical activity intervention program with JITAI will result in significantly higher physical activity levels compared to the standard web-based physical activity intervention program alone. A secondary objective of this study is to extend existing algorithms that use commercial wearable technology to robustly detect physical activity behaviors to facilitate the delivery of tailored just-in-time actionable feedback and physical activity recommendations for individuals with SCI.

Participants needed: 196
Trial details
Phase: Phase 2Age: 18-75Biological sex: AllType: InterventionalSponsor: Temple UniversityUpdated: Jun 24, 2026Locations: 1
Eligibility criteria

18-75 years of age [+6]

any secondary complications that medically restrict their activity in any way su... [+1]

Status: Recruiting

Development of a Novel Evaluation Scale of Mental Body Representation (MBR) for Adults With Spinal Cord Injury

The purpose of this study is twofold: (1) Develop a new evaluation scale for mental body representations (MBR, i.e., body awareness and visuospatial body maps) for adults with spinal cord injury (SCI) with and without neuropathic pain. (2) Assess the psychometric properties of usability, reliability, and validity of the new evaluation scale This is a cross-sectional observational study design. For Aim 1, this study will involve initial item generation for a novel MBR evaluation scale for SCI through email communication, and individual interviews proctored remotely through Zoom, or, if preferred by the participant, in-person. For Aim 2, the study will include a Zoom call for consenting and questionnaires, as well as an in-person visit where participants will be tested with the new SCI-BodyMap evaluation scale, and a questionnaire asking about the usability and satisfaction of the new evaluation scale.

Participants needed: 80
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: University of MinnesotaUpdated: Jun 18, 2026Locations: 1
Eligibility criteria

Uninjured adults (from the contact list with the Brain Body Mind lab or through... [+5]

Uncontrolled seizure disorder; [+4]

Status: Recruiting

ARC-IM System to Manage Symptomatic Blood Pressure Instability Secondary to Chronic Spinal Cord Injury

Empower BP is a pivotal, interventional, multicenter, prospective, randomized, controlled double-blinded study to evaluate the safety and effectiveness of the ARC-IM System in managing symptomatic blood pressure instability in individuals with chronic SCI (\>1 year after SCI). The primary effectiveness outcome will be evaluated through subject-reported ADFSCI and seated blood pressure assessments at 3 months post-implant. Following a baseline screening period and the surgical implantation of the ARC-IM System, subjects will be randomized with a 2:1 ratio into an active or control arm for 3 months. All the subjects will undergo therapy activation sessions (into either Group 1: active intervention, or Group 2: intervention aimed to mimic the active intervention without the active component) within 21 days of the surgical implant and will then commence independent at-home use of ARC-IM Therapy. At the 3 Month timepoint, after all assessments are conducted, all subjects will transition to the open-label period in order to receive the active version of the ARC-IM System in an open-label fashion. All subjects will undergo therapy programming sessions following Month 3.

Participants needed: 60
Trial details
Age: 18-75Biological sex: AllType: InterventionalSponsor: ONWARD Medical, Inc.Updated: Jun 16, 2026Locations: 13
Eligibility criteria

Aged 18 years or above, and no older than 75 years at the time of enrollment. [+14]

Subject has an autoimmune etiology of spinal cord dysfunction/injury. [+20]

Status: Recruiting

Cuneiform Nucleus (CnF) Deep Brain Stimulation for Gait Facilitation Following Spinal Cord Injury

This is a study about deep brain stimulation (DBS) as an investigational treatment for walking impairment following spinal cord injury (SCI). The purpose of this study is to assess the feasibility and inform on the safety, and efficacy of CnF DBS to improve gait in SCI patients with incomplete injury who cannot effectively walk overground

Participants needed: 6
Trial details
Age: 22-70Biological sex: AllType: InterventionalSponsor: University of MiamiUpdated: Jun 12, 2026Locations: 2
Eligibility criteria

Male or female subjects between ages of 22-70 [+7]

Individuals with high-moderate to severe depression -Beck Depression Inventory I... [+14]

Status: Recruiting

Assessment of the Efficacy and Safety of EESS in Patients With Incomplete Spinal Cord Injuries

Neurological disability caused by traumatic lesions of the spinal cord is a significant challenge for medicine and society. These lesions, leading to sublesional central nervous system dysfunction, include sensorimotor, vesico-sphincter and genito-sexual disorders. To date, there is no treatment that enables spinal cord function to be restored. Preclinical studies have been able to demonstrate the recovery of locomotor activity with a combination of locomotor training, pharmacological intervention and epidural electrical stimulation of the lumbosacral spinal cord (EESS) in adult rats with spinal cord transection. An American team have recently been able to show that EESS, combined with locomotor training, caused neurological improvement in four paraplegic patients, with electromyographic muscular activation patterns similar to those observed during walking. In fact, these authors also showed an improvement, under stimulation, of the VS and GS functions, but with no detailed documentation. Starting with a conceptual and preclinical rationale, and with proof of clinical concept demonstrated in several reported cases, we propose a clinical trial with an original cross-over design to validate the hypothesis that EESS combined with training in patients with incomplete spinal cord injuries would, with a good tolerance profile, allow motor, vesico-sphincter (VS) and genito-sexual (GS) disorders to be restored in patients with incomplete spinal cord injuries.

Participants needed: 14
Trial details
Age: 18-65Biological sex: AllType: InterventionalSponsor: Hopital FochUpdated: Jun 11, 2026Locations: 2
Eligibility criteria

Aged between 18 and 65 years inclusive [+14]

Significant cerebral lesion on a previous cerebral MRI [+14]

Status: Not yet recruiting

Development of a Pain Rehabilitation Program for Chronic Pain After SCI

Pain rehabilitation programs are essential for optimal treatment of chronic pain and are usually based on the biopsychosocial model. This is, however, not standard care for people with chronic pain after a spinal cord injury (SCI) due to a biomedical focused perspective of SCI and lack of adapted programs. The aims of this feasibility study: 1. Develop a new digital pain rehabilitation program, adapted for the needs of people living with an SCI. 2. To investigate the feasibility and acceptability of a new digital pain rehabilitation program.

Participants needed: 32
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Umeå UniversityUpdated: Jun 9, 2026Locations: 1
Eligibility criteria

two years since injury [+1]

severe cognitive impairment [+2]

Status: Not yet recruiting

Dorsal Root Ganglion Stimulation After Lower Motor Neuron Damage

The purpose of this study is to study sensorimotor circuit activity generated in response to temporarily implanted dorsal root ganglion stimulation by recording from muscles of the lower extremities as well as functional outcomes achieved over a 10-day rehabilitation program in an individual with lower motor neuron injury.

Participants needed: 1
Trial details
Age: 18-70Biological sex: AllType: InterventionalSponsor: Peter J. Grahn, Ph.D.Updated: Jun 3, 2026Locations: 1
Eligibility criteria

Traumatic and non-traumatic spinal cord injury (SCI) [+4]

Currently a prison inmate, or awaiting trial, related to criminal activity [+14]

Status: Recruiting

Feasibility of the BrainGate2 Neural Interface System in Persons With Tetraplegia

The purpose of this study is to obtain preliminary device safety information and demonstrate proof of principle (feasibility) of the ability of people with tetraplegia to control a computer cursor and other assistive devices with their thoughts.

Participants needed: 3
Trial details
Age: 18-80Biological sex: AllType: InterventionalSponsor: Leigh R. Hochberg, MD, PhD.Updated: Jun 2, 2026Locations: 2
Eligibility criteria

Between 18 and 80 years of age. [+3]

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

Status: Recruiting

BrainGate2: Feasibility Study of an Intracortical Neural Interface System for Persons With Tetraplegia

The purpose of this study is to obtain preliminary device safety information and demonstrate proof of principle (feasibility) of the ability of people with tetraplegia to control a computer cursor and other assistive devices with their thoughts.

Participants needed: 27
Trial details
Age: 18-80Biological sex: AllType: InterventionalSponsor: Leigh R. Hochberg, MD, PhD.Updated: Jun 1, 2026Locations: 6
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... [+3]

Status: Recruiting

Acute and Chronic Repercussion of Spinal Cord Stimulation After Spinal Cord Injury

The purpose of this research is to learn about how the participant's body is able to balance changes in blood pressure, and how spinal cord stimulation affects these changes as well as immune \& cardiovascular function in participants with spinal cord injury.

Participants needed: 80
Trial details
Age: 18-50Biological sex: AllType: InterventionalSponsor: Mayo ClinicUpdated: May 28, 2026Locations: 1
Eligibility criteria

Age 18-50. [+5]

History of clinically diagnosed cardiovascular disease, diabetes, autonomic neur... [+6]

Status: Recruiting

Longitudinal Autonomic Characterization as a Predictor for Secondary Medical Complications Post-SCI

The purpose of this research is to learn about how the body is able to balance changes in blood pressure, how that changes over time, and how these changes impact a participant's risk of developing medical problems.

Participants needed: 18
Trial details
Age: 18-75Biological sex: AllType: InterventionalSponsor: Mayo ClinicUpdated: May 28, 2026Locations: 1
Eligibility criteria

18-75 years old [+3]

Symptoms of cardiovascular (including, but not limited to: hypertension, stroke,... [+3]

Status: Recruiting

Deciphering Preserved Autonomic Function After Spinal Cord Injury

This study looks to characterize gradients of dysfunction in the autonomic nervous system after spinal cord injury. The autonomic nervous system plays key roles in regulation of blood pressure, skin blood flow, and bladder health- all issues that individuals with spinal cord injury typically suffer. Focusing on blood pressure regulation, the most precise metric with broad clinical applicability, the investigators will perform laboratory-based tests to probe the body's ability to generate autonomic responses. For both individuals with spinal cord injury and uninjured controls, laboratory-based experiments will utilize multiple parallel recordings to identify how the autonomic nervous system is able to inhibit and activate signals. The investigators anticipate that those with autonomic dysfunction after spinal cord injury will exhibit abnormalities in these precise metrics. The investigators will further have research participants wear a smart watch that tracks skin electrical conductance, heart rate, and skin temperature, which can all provide clues as to the degree of autonomic dysfunction someone may suffer at home. The investigators will look to see if any substantial connections exist between different degrees of preserved autonomic function and secondary autonomic complications from spinal cord injury. In accomplishing this, the investigators hope to give scientists important insights to how the autonomic nervous system works after spinal cord injury and give physicians better tools to manage these secondary autonomic complications.

Participants needed: 69
Trial details
Age: 18-50Biological sex: AllType: InterventionalSponsor: Mayo ClinicUpdated: May 28, 2026Locations: 1
Eligibility criteria

Adult onset, traumatic spinal cord injury. [+2]

History of cardiovascular disease, hypertension, neurologic disorders (with exce... [+5]

Status: Recruiting

Pain Phenotyping in Patients With Neuropathic Pain After Spinal Cord Injury

The development of neuropathic pain is one of the most debilitating sequels after a spinal cord injury (SCI). The overall aim of this study is to investigate potential underlying pathophysiological mechanisms of neuropathic pain after SCI. The functionality of the nociceptive pathway in humans as well as its plastic changes following SCI will be inferred with sophisticated sensory and pain phenotyping using quantitative sensory testing (i.e., psychophysical measures), objective neurophysiological measures of pain processing and the recording of pain-related autonomic responses (i.e., galvanic skin response, cardiovascular measures and pupil dilation). In addition, the interplay between the somatosensory and autonomic nervous system and its association with the development and maintenance of neuropathic pain after SCI will be investigated.

Participants needed: 300
Trial details
Age: 18-80Biological sex: AllType: ObservationalSponsor: University of ZurichUpdated: May 15, 2026Locations: 1
Eligibility criteria

Aged between 18-80 years [+14]

Inability to follow study instructions [+3]

Status: Recruiting

Nomad P-KAFO Study

The goal of this clinical trial is to evaluate the impact of using the Nomad powered KAFO in people who have had a musculoskeletal or neurological injury that has affected their ability to walk. The main questions it aims to answer are to quantify the effectiveness of the Nomad in improving mobility, balance, frequency of falls, and quality of life in individuals with lower-extremity impairments compared to their own brace, over three months of daily home and community use. Participants will: * Wear a sensor that records everyday activities and mobility. * Perform measures of mobility and different activities of participation using their own brace. * Perform measures of mobility and different activities of participation using the Nomad powered KAFO

Participants needed: 36
Trial details
Age: 18-89Biological sex: AllType: InterventionalSponsor: Shirley Ryan AbilityLabUpdated: May 11, 2026Locations: 1
Eligibility criteria

Regular and compliant use of a unilateral or bilateral KAFO or SCO or other pass... [+2]

Flexion contracture in the knee and/or hip joint in excess of 15 degrees [+3]

Status: Recruiting

Improving Adherence to Spinal Cord Injury Exercise Guidelines Using Smartphone Technology and E-coaching

The goal of this research is to increase physical activity among individuals with a spinal cord injury (SCI) through a customized, interactive smartphone-based health app and e-coaching using three phases: (1) leading focus groups of potential app users and clinicians to gain information regarding health apps preferences for optimal consumer use, (2) conducting a usability study of the customized app to determine the quality and implement further changes for optimization, and (3) conducting a sequential multiple assignment randomized trial (SMART) to determine the most effective adaptive intervention to improve exercise adherence. A SMART trial will be used to determine when and how to adapt dosage, timing, and delivery to increase adherence and address low-response behaviors. In Stage-I, the investigators will compare outcomes among participants using a generic, non-interactive exercise app (Group 1) to a customized, interactive app that can gain information through frequent Ecological Momentary Assessments (EMA) that will be used to modify each participant's exercise programs (Group 2). After 12 weeks, participants who are not meeting the exercise guidelines at least 50% of the time will also be asked to participate in motivational interviewing-based e-coaching either two or four times per month in addition to their originally assigned intervention (Stage-II). By completing these three phases, this project addresses deficiencies in exercise levels and compliance by implementing an individualized exercise prescription, an adaptive intervention for low responders, a way to address barriers to exercise, and a free smartphone app for broad implementation.

Participants needed: 50
Trial details
Age: 18-80Biological sex: AllType: InterventionalSponsor: Shirley Ryan AbilityLabUpdated: May 11, 2026Locations: 1
Eligibility criteria

Individual with diagnosis of SCI, formal or informal caregiver of an individual... [+3]

Severe visual or cognitive problems that would affect the ability to complete th... [+18]

Status: Recruiting

Bacteriophage Therapy in Spinal Cord Injury Patients With Bacteriuria

This is a Phase 1b study to assess the safety, tolerability, PK, and PD of investigational phage therapy (IP) in adults with SCI and bladder colonization (ASB). It is a single-center, randomized, double-blind, placebo-controlled study in adults with SCI with neurogenic bladders and bacteriuria who use indwelling catheters, or who require intermittent catheterization for bladder drainage.

Participants needed: 30
Trial details
Phase: Phase 1Age: 18+Biological sex: AllType: InterventionalSponsor: Barbara TrautnerUpdated: May 5, 2026Locations: 2
Eligibility criteria

Provision of signed and dated informed consent form. [+6]

Unable to provide informed consent for themselves. [+14]

Status: Recruiting

Transcutaneous Spinal Cord Stimulation Combined With Arm Bike for Cardiovascular Recovery in SCI

Spinal cord injury (SCI) can make it hard for the body to self-regulate some of its automatic functions like blood pressure, breathing, and heart rate. This can also make it hard for those living with SCI to exercise or complete their usual daily activities. The goal of this randomized trial is to test combinatory therapy of moderate arm-crank exercise paired with non-invasive transcutaneous spinal cord stimulation (tSCS) for cardiovascular recovery in adults aged 21-65 following chronic motor-complete spinal cord injury (SCI) at or above the thoracic sixth spinal segment (≥T6). The main questions the study aims to answer are: * Conduct tSCS mapping to determine the most effective location and stimulation intensity for BP control in individuals with motor-complete SCI ≥ T6. * Evaluate the effects 8 weeks of targeted tSCS paired with arm-crank exercise compared to sham stimulation with exercise on improving cardiovascular function in individuals with motor-complete SCI ≥T6. * Evaluate the dosage-response of 8 weeks vs. 16 weeks of targeted tSCS paired with arm-crank exercise on cardiovascular function in individuals with motor-complete SCI ≥T6. * Explore the mechanisms involved in cardiovascular recovery with long-term tSCS paired with arm-crank exercise. Participants will: * Receive either transcutaneous spinal cord stimulation or "sham" spinal cord stimulation while exercising on an arm-crank bicycle in the first 8 weeks. * Come in for approximately 60 visits over a 6-month period. This includes 2, 8-week periods where the investigators will ask participants to come in 3x per week for spinal cord stimulation and exercise. * During assessment visits the researchers will perform a variety of exams including a neurologic, cardiovascular, pulmonary, physical, and autonomic exam, and will ask questions about quality of life and functioning. Assessment procedures also include stool sample and nasal swab collection. Researchers will compare those who receive tSCS and do moderate arm-crank exercise to those who receive a sham stimulation and do moderate arm-crank exercise to see if tSCS is effective at improving cardiovascular and autonomic functioning in those with SCI.

Participants needed: 16
Trial details
Age: 21-65Biological sex: AllType: InterventionalSponsor: University of WashingtonUpdated: May 6, 2026Locations: 1
Eligibility criteria

Are between 21-65 years of age. [+13]

Have autoimmune etiology of spinal cord dysfunction/injury [+19]

Status: Recruiting

Locomotor and Bladder Function in Individuals With Acute Spinal Cord Injury

The loss of movement and walking ability significantly affects quality of life after spinal cord injury. In addition, bladder dysfunction consistently ranks as one of the top disorders affecting quality of life after spinal cord injury. The overall objective of this study is to demonstrate that epidural stimulation may be a method for improving stepping, standing and bladder function in individuals with spinal cord injury. With the use of epidural stimulation, the investigators propose to investigate how well the participant can stand and walk and how well the participant's bladder can store or hold urine as well as void or empty urine. The results of this study may aid in the development of treatments to help individuals with spinal cord injuries that are unable to stand or walk and have impaired bladder function.

Participants needed: 16
Trial details
Age: 18-65Biological sex: AllType: InterventionalSponsor: Claudia AngeliUpdated: May 4, 2026Locations: 1
Eligibility criteria

At least 18 years of age [+9]

ventilator dependent [+4]

Status: Recruiting

Non-invasive BCI-controlled Assistive Devices

Injuries affecting the central nervous system may disrupt the cortical pathways to muscles causing loss of motor control. Nevertheless, the brain still exhibits sensorimotor rhythms (SMRs) during movement intents or motor imagery (MI), which is the mental rehearsal of the kinesthetics of a movement without actually performing it. Brain-computer interfaces (BCIs) can decode SMRs to control assistive devices and promote functional recovery. Despite rapid advancements in non-invasive BCI systems based on EEG, two persistent challenges remain: First, the instability of SMR patterns due to the non-stationarity of neural signals, which may significantly degrade BCI performance over days and hamper the effectiveness of BCI-based rehabilitation. Second, differentiating MI patterns corresponding to fine hand movements of the same limb is still difficult due to the low spatial resolution of EEG. To address the first challenge, subjects usually learn to elicit reliable SMR and improve BCI control through longitudinal training, so a fundamental question is how to accelerate subject training building upon the SMR neurophysiology. In this study, the investigators hypothesize that conditioning the brain with transcutaneous electrical spinal stimulation, which reportedly induces cortical inhibition, would constrain the neural dynamics and promote focal and strong SMR modulations in subsequent MI-based BCI training sessions - leading to accelerated BCI training. To address the second challenge, the investigators hypothesize that neuromuscular electrical stimulation (NMES) applied contingent to the voluntary activation of the primary motor cortex through MI can help differentiate patterns of activity associated with different hand movements of the same limb by consistently recruiting the separate neural pathways associated with each of the movements within a closed-loop BCI setup. The investigators study the neuroplastic changes associated with training with the two stimulation modalities.

Participants needed: 100
Trial details
Age: 18-80Biological sex: AllType: InterventionalSponsor: University of Texas at AustinUpdated: May 1, 2026Locations: 1
Eligibility criteria

good general health [+8]

Subjects with motor disabilities [+6]

Status: Recruiting

Diet and Exercise Solutions to Postprandial Hypotension

The purpose of this study is to determine if a low glycemic diet and lower-body electrical stimulation can reduce postprandial hypotension in individuals with chronic spinal cord injury.

Participants needed: 13
Trial details
Age: 18-65Biological sex: AllType: InterventionalSponsor: Ohio State UniversityUpdated: Apr 27, 2026Locations: 1
Eligibility criteria

Spinal cord injury (SCI) between C4 and T12 who require use of wheelchair for da... [+2]

Currently pregnant of breast-feeding [+8]

Status: Not yet recruiting

NO AD: Use of Nitric Oxide (NO) Donors for the Prevention of Autonomic Dysreflexia (AD) During Bowel Care Following SCI

This project aims to evaluate the safety and efficacy of using a short-acting drug to reduce the maximal blood pressure during dangerous blood pressure spikes that happen during bowel care in individuals with spinal cord injury. the investigators will monitor the physiological effects of this drug during at-home bowel care to best understand the drug's effects in typical use.

Participants needed: 26
Trial details
Phase: Phase 2Age: 19-80Biological sex: AllType: InterventionalSponsor: Simon Fraser UniversityUpdated: Apr 23, 2026
Eligibility criteria

participants must have had a traumatic spinal cord injury at least one year ago [+2]

cauda equina or conus lesions [+10]