View clinical trials related to Spinal Cord Injuries.
Filter by:The aim of this study is to understand what happens to muscle and bone in spinal cord injured males after four months of training using stand training, with body weight support (BWS), with testosterone replacement therapy (TRT), and electrical stimulation (ES). Specifically, researchers will investigate nerve, muscle, and bone changes in the lower limbs in response to stand training and ES when combined with TRT compared to i) standing alone with TRT; ii) stand training alone with placebo; iii) stand training alone and ES with placebo.
The purpose of this study was to evaluate the effects of an exercise program proposed by the CHORDATA® Method on the functionality, maximal isometric torque, muscle activity and muscle thickness of trunk muscles in patients with traumatic spinal cord injury. The hypothesis is that the CHORDATA® Method could reduce the deleterious effects of the traumatic spinal cord injury.
The European Home Mechanical Ventilation Registry (EHMVR) will enable a thorough evaluation of HMV by documenting the characteristics of HMV patients and their treatment. This will facilitate a prospective, observational study to identify the primary indications for HMV, describe patterns of HMV use in European countries, and characterize changes in the initiation and utilization of HMV over time. The registry will target all adult individuals who have an indication for HMV. In the EHMVR, patient data from routine clinical care will be documented using an electronic case report form (eCRF). The eCRF will record: patient demographic data; diagnostic information (including primary diagnosis, 6-minute walk time, the presence of depression, and quality of life); blood gases; ventilation treatment (including type of ventilator, modes and settings, interfaces used); follow-up data (including failure rates, side effects, technical issues). An initial Pilot Phase will be launched with the aim to enrol at least 200 patients over a 6-month period to determine the feasibility of the registry. Steering committee members and their institutions will be the main participants in the Pilot Phase. After completion of the Pilot Phase, the registry will be expanded across Europe with the goal of enrolling approximately 10,000 patients over 5 years.
The primary objective of this study is to achieve successful walking skills using exoskeletal walking devices over the course of 36 sessions in 3 months at specific velocities and distances in people with chronic SCI who are wheelchair dependent for community mobility. The secondary objectives are to determine if this amount of exoskeletal walking is effective in improving bowel function and body composition in the same patient population. The exploratory objectives are to address additional questions concerning the retention or non-retention of the positive changes, the effects of the increased physical activity from this intervention on vagal tone, orthostatic tolerance, lipid profile, total testosterone, estradiol levels, and quality of life (QOL). A Phase III randomized clinical trial (RCT) will be performed using a crossover design and employing an exoskeletal-assisted walking intervention. The experimental arm will be compared to a usual activities (UA) arm, as the control, in 64 persons with chronic SCI (>6 month post injury) who are wheelchair-dependent for outdoor mobility in the community. The WALK arm will consist of supervised exoskeletal-assisted walking training, three sessions per week (4-6 h/week) for 36 sessions for their second 12-week period. The UA arm will consist of identification of usual activities for each participant, encouragement to continue with these activities and attention by study team members throughout the 12-week UA arm. These activities will be recorded in a weekly log. The investigators hypotheses are that 1) this exoskeletal intervention will be successful in training ambulatory skills in this patient population, 2) the exoskeletal intervention will be better than a control group in improving body composition, bowel function, metabolic parameters and quality of life in the same population.
This study is designed to assess the strategy of using spinal cord stimulation to improve the ability to move in spinal cord injured humans.
Following spinal cord injury autonomic regulation of the cardiovascular system is impaired, which results in a variety of measurable abnormalities in blood pressure. Evidence of causality has been documented in the general medical literature with findings of improved cognitive function following acute increases in blood pressure using the anti-hypotensive agent Midodrine Hydrochloride (midodrine). Additionally, a recent report documented an inverse association between blood pressure and depression suggesting that low blood pressure may confer greater risk than high blood pressure. Midodrine is a drug approved by the Food and Drug Administration to treat low blood pressure in the general population. Midodrine is not approved in the United States to treat low blood pressure in persons with spinal cord injury. Therefore, its use in this study is investigational. The first objective is to characterize the relationship between blood pressure, cerebral blood flow velocity and cognitive function after a single dose of midodrine compared to placebo. Second objective is to determine the long-term safety and efficacy of midodrine administration.
The purpose of this study is to evaluate the safety of cross sequential escalating doses of AST-OPC1 administered among 5 cohorts at a single time-point between 21 and 42 days post injury, inclusively, to subjects with subacute cervical spinal cord injuries (SCI).
This is an double blinded, cross-over study to determine the effect of Oxymetazoline gel on anal resting pressure and fecal incontinence in patients with spinal cord injury. Approximately 17 subjects are expected to complete this 10 weeks study that will include two treatment periods of 4 weeks each, and one 2 weeks wash out period.
The research will examine the effects of enhanced peer mentor interactions on facilitating a successful transition to community living following traumatic spinal cord injury (SCI). Participants in the research will be assigned to either (1) the control group that will receive traditional peer mentor types of interactions or (2) to the intervention group that will receive an enhanced peer mentor program called the One-on-One Initiative. Assignment to one of these two groups will occur randomly on admission to Shepherd Center; the only stratifying criteria is injury level - C6 and above vs. C7 and below.
The purpose of this study is to determine how the nervous system controlling leg muscles is altered following spinal cord injury and how they may be affected by brief periods of low oxygen inhalation over time. The investigators hypothesize: - Acute intermittent hypoxia (AIH) exposure will increase maximum voluntary leg strength in persons with incomplete cervical spinal cord injury (SCI) - AIH exposure will increase multijoint reflex excitability of leg muscles in persons with incomplete cervical SCI - AIH exposure will increase walking performance in persons with incomplete cervical SCI