View clinical trials related to Spinal Cord Injuries.
Filter by:To investigate the clinical effect of detrusor botulinum toxin A (BoNT-A) injection on neurogenic detrusor overactivity (NDO) and renal function and to compare the difference of expressions of sensory receptors and nerve growth factor (NGF) in the bladder wall of patients respond and not respond to BoNT-A injections in chronic spinal cord injured (SCI) patients.
This phase II/III clinical trial is designed to evaluate the safety and efficacy of autologous Mesenchymal Stem Cells (MSC) transplanted directly into the injured spinal cord.
Despite many years of research, an incomprehensible amount of scientific efforts worldwide and billions of dollars invested, no effective therapy resulting in major neurological or functional recovery is available to date for traumatic spinal cord injury (tSCI). Although there is increasing experimental evidence from animal models that surgical decompression of the spinal cord improves recovery after tSCI, clinical studies have not shown conclusive data yet. The main explanations for this lack of convincing evidence are relatively small sample sizes in previous studies, their predominantly retrospective nature, suboptimal measurement methods for the assessment of neurological deficits, and inappropriate recording and documentation of potential confounding factors.
The purpose of this trial is to determine the efficacy of spinal cord stimulation, using wire leads, to produce an effective cough in patients with spinal cord injuries.
Researchers from the University of South Florida's Rehabilitation Engineering program are looking for volunteers to participate in a research study for experimental evaluation of wheelchair-mounted robotic arms (WMRAs). Participants will operate commercially available and developmental WMRAs in a physical test environment. The study will serve to identify desirable design features of WMRAs and input devices so that future production systems may further increase the quality of life of potential users. The study will also promote both the justification of prescribing WMRAs to enhance quality of life through the proposed standard testing method, and awareness for the emerging assistive robotics industry.
The goal of this proposal is to investigate the efficacy of a complimentary approach of evoked resistance training and testosterone replacement therapy on the changes in body composition and metabolic profile after SCI. The proposed method could become a recommended and simple intervention especially for individuals with limited access and poor tolerance to exercise. The rationale is based on the evidence that individuals with SCI experience decline in anabolic hormones which may be responsible for the deterioration in body composition and metabolic profiles and leads to increase obesity, type 2 diabetes mellitus, dyslipidemia and subsequently cardiovascular disease. The designed study will provide explanation to the adaptations in the energy source of the muscle cells in response to training.
Maintenance of bone mass following spinal cord injury (SCI) is essential to fracture prevention and the associated morbidity of bed rest and further secondary complications. Intravenous (IV) zoledronic acid (ZA) is an FDA-approved drug that has been shown to be more effective than other agents in reducing bone mass resorption and leg fractures in post-menopausal women, but has not been studied in patients with acute SCI. This will be a randomized, double-blind, placebo-controlled trial of IV ZA to prevent bone loss early after SCI. Up to 48 subjects will be randomized to receive a one-time dose of 5 mg of IV ZA versus placebo within 21 days of an SCI.
The purpose of this study is to evaluate the efficacy of a replicable, psychologically-based group education intervention, Re-Inventing Yourself after Spinal Cord Injury (SCI), which aims to enhance personal self-efficacy. A structured six-week, manualized, group therapy intervention that delivers positive psychology concepts within a cognitive-behavioral therapy-based model has been created for the purpose of developing a resilient and optimistic sense of efficacy for people with SCI. Concepts covered within this intervention include: reframing and restructuring a person's method of looking at events, building confidence by focusing on personal strengths, developing methods of recognizing and appreciating the good in one's life and expressing gratitude for positive attributes. The goals of this intervention are to increase personal self-efficacy, enhance emotional well-being and improve participation in society for people with SCI living in the community. The investigators hypothesize that persons receiving the intervention will demonstrate improved SCI-specific and overall self-efficacy as compared to waitlist controls.
The effect of intrathecal transplantation of autologous adipose tissue derived mesenchymal stem cells in the patients with spinal cord injury, Phase I Clinical study.
The purpose of this study is to determine the efficacy, safety, and tolerability of treatment with dalfampridine in combination with locomotor training in persons with chronic, motor incomplete SCI.