View clinical trials related to Spinal Cord Injuries.
Filter by:A traumatic spinal cord injury (TSCI) often causes an unprecedented change in functioning by altering bodily structure and function. More specifically, the direct consequences of TSCI to the motor, sensory and autonomic nervous system not only challenge an individual's independency but also the ability to make a positive adjustment to life after injury. In line with this, TSCI survivors often experience threats to their livelihood and becoming integrated members of society. Health systems therefore need to be ready to respond to the myriad of challenges following a TSCI by providing access to specialized and comprehensive services. The provision of specialized care in a time-sensitive manner has shown to be crucial for survival and recovery of functioning after a traumatic spinal cord injury (TSCI). However, little is known about the provision of TSCI care in different international contexts; information which is required for strengthening policy and practice.
Our goal is to enhance repeated exposure to acute intermittent hypoxia (rAIH)/training-induced aftereffects on upper and lower limb function recovery in humans with chronic spinal cord injury (SCI).
Purpose: To examine the safety of the use of two wheelchair cushions for healthy individuals with intact sensation and individuals post stroke and spinal cord injury with impaired sensation. The new Ease Alternating Pressure wheelchair cushion will be compared to a static air cushion to examine interface pressure and skin responses in the areas of the buttock and posterior thighs when subjects sit without moving (static condition) and during upper extremity reaching activities (active condition). In addition, comfort, ease of transfer, and postural stability will be monitored while sitting on both cushions under both static and active conditions.
This is a single blind randomized controlled trial study which will conducted on people with paraplegia wheelchair users. The objectives of this study is to investigates the effects of 16 weeks of 'Graded Exercise Integrated Education' over conventional physical therapy on physical fitness, exercise self-efficacy and the level of physical activity. There will be a significant difference between the experimental and control group.
Most spinal cord injuries (SCI) are anatomically incomplete - some nerve circuits remain intact, even if the individual cannot feel or control them. Activating spared nerve circuits may improve functional recovery. With this goal, the Investigators have developed a form of electrical stimulation over the cervical spinal cord that can activate muscles in both hands simultaneously and comfortably. This technique, called cervical electrical stimulation (CES), works at the skin surface - no surgery or other invasive procedures are required. The long-term goal is to use CES to strengthen residual circuits to hand muscles after SCI. Regaining control over hand function represents the top priority for individuals with cervical SCI. In the current study, the Investigators first need to better understand how CES works. In the first half of this study, the Investigators will take a systematic approach to determining how CES interacts with other circuits in the spinal cord and the brain. In the second half of the study, the Investigators will test combinations of CES with active hand and wrist movements to find ways to enhance physical movement with CES. These experiments will improve understanding of electrical stimulation in SCI, and may set the table for future treatments to prolong any short-term benefits observed in this study.
Persons with spinal cord injury (SCI) are confronted with a multitude of psychological and physiological changes post-injury leading to seemingly insurmountable barriers to participating in daily life. After injury persons with SCI engage in fewer social interactions, spend more time sedentary, and are less likely to leave the home. This leads to restricted social participation that, in turn, contributes to greater psychological problems and negatively impacts the lives of adults with SCI. Intense, structured exercise has substantial potential benefits for improving psychosocial wellbeing among persons with SCI, but accessible exercise options are few and cannot achieve high intensities of whole-body exercise. This work will use approaches to overcome the barriers to intense exercise. The investigators will use hybrid functional electrical stimulation row training (FESRT) to allow for a more intense exercise stimulus, potentially having a greater impact on psychosocial wellbeing. There is initial evidence that persons with mobility impairments who are highly physically active demonstrate better psychosocial wellbeing compared with those who have low levels of physical activity. A limitation to understanding the influence of exercise on psychosocial wellbeing is the lack of robust and time-dependent measures. The investigators will use a smartphone-based research application to measure psychosocial well-being, thus decreasing self-report bias and capturing in-the-moment behavioral and self-report data.
The purpose of the current study is to investigate the effects of powered exoskeleton (EKSO) on cardiovascular performance as measured by resting blood pressure and heart rate, peak oxygen consumption during walking, energy expenditure, whole and regional body composition assessments. The effects of exoskeleton training on walking kinematics including stand-up time, walking time, distance covered and speed of walking will also be evaluated.
The global prevalence of spinal cord injury is estimated between 236 to 4187/Million. A spontaneous recovery of the sense-motoric function is decreasing with the time after injury and is only seen sporadically after 1 to 2 years. Treatment options are mainly limited to improvement of the quality of life. The present prospective randomized study is intended as a double-blind, placebo controlled multi-center investigation. Patients suffering from chronic paraplegia (lesion between THII and THX, ASIA A = complete central lesion) at least for 1 year after the initial trauma without spontaneous remission of the last 6 months are considered to be included in the study. Meeting the inclusion criteria and signing the informed consent, patients are treated in one of the two study centers. At study inclusion, a baseline evaluation comprising neurological, neurophysiological, functional and clinical investigation is performed. Patients dedicated to the ESWT intervention group will be treated once a week over 6 weeks with local non-invasive low energy extracorporeal shockwave therapy (=6 treatments with an electrohydraulic device). The follow-up will include neurological, neurophysiological, clinical as well as functional evaluation at the time points 6 weeks, 3 months and 6 months. Additionally, patients will be provided with a diary for documentation of drug adaptation, grade of spasticity and pain. Those patients dedicated to the Placebo ESWT group, will receive the identical scheme in treatment (but without application of shockwaves) and follow-up as the patients in the ESWT group. However, after positive completion of the study, these patients will be offered ESWT as well.
The aim of this study is to verify the efficacy of body weight-support treadmill training combined with high-frequency rTMS in improving the sensory-motor function of adult patients with chronic incomplete thoracolumbar spinal cord injury.
Researchers are trying to evaluate and recommend sustainable and effective health and wellness programs for people with spinal cord injury (SCI) and other physical disabilities.