View clinical trials related to Spinal Cord Injuries.
Filter by:Incomplete spinal cord injuries (SCI) are the most frequent neurologic category, comprising 66.7% of all SCI cases. People with incomplete SCI may retain some ability to move the legs and therefore the capacity to regain walking. Studies that show functional improvement in locomotion via electrical stimulation of lumbosacral circuits suggest that the underlying mechanisms are neuromodulation of lumbosacral spinal cord automaticity and sensory feedback. Both epidural and transcutaneous spinal stimulation are demonstrating exciting potential to improve limb function for people after chronic SCI. Available treatment options for SCI are less than satisfactory and most often do not achieve full restoration of function. Recent experimental results suggest an exciting new approach of using electrical spinal stimulation to enable users to regain control of their weak or paralyzed muscles. Using surgically-implanted electrodes, epidural stimulation results in remarkable improvements of lower extremity function as well as autonomic functions such as bladder function and sexual function. In addition to epidural stimulation, over only the last few years a novel strategy of skin surface electrical spinal stimulation has also demonstrated exciting potential for improving walking function. Using a high-frequency stimulation pulse, current can pass through the skin without discomfort and activate the spinal cord; this results in patterned stepping movements for people without SCI and improved lower extremity function following SCI. This study will directly compare skin-surface transcutaneous stimulation with implanted epidural stimulation for improving lower extremity function.
The aim of this study is to determine the effects of rehabilitation on dexterous hand movements and cortical motor map changes in tetraplegic patients following nerve transfer surgery. The working hypothesis is that robot-assisted, intensive rehabilitation will support the return of hand and arm function and strengthen the cortical representations of targeted muscles. The investigators will assess this through TMS mapping and clinical measures of hand and arm function.
To determine the efficacy of a novel combinatorial treatment involving early surgical intervention and long-term weight-bearing walking training in spinal cord injury (SCI) patients clinically diagnosed as complete or American Spinal Injury Association Impairment Scale Class A (AIS-A).
Children who suffer a spinal cord injury in the neck region have difficulty using their hands due to paralysis and/or weakness of their arms and hand muscles. The purpose of this project is to test the safety, comfort, and practicality of a new therapy that stimulates the spinal cord to facilitate activation of arm and hand muscles while practicing grasping, pinching, and reaching movements. The long-term goal is to provide better therapies that will improve the ability of children with SCI to more successfully play and accomplish everyday tasks using their arms and hands, similar to before their injury.
Lower extremity (LE) function of patients with a spinal cord injury (SCI) will be assessed in an observational project with a cross-sectional and a longitudinal study design. The main goal is to identify kinematic and kinetic parameters to precisely characterize LE function and in parallel the impairment and limitation in SCI patients throughout rehabilitation in acute patients and in chronic patients to define LE function and LE recovery.
This study seeks to evaluate whether the speed (cadence) of lower extremity robotic movement has an impact on orthostatic hypotension and upright tolerance when training with the ErigoPro robotic tilt-stepper. It is hypothesized more frequent short-lasting leg movements (faster cadence) reduces the occurrence/severity of orthostatic hypotension better than less frequent longer-lasting leg movements (slower cadence).
A group of 6 able-bodied healthy volunteers will receive Neostigmine (NEO) and Glycopyrrolate (GLY) intravenously and via 2 methods of Iontophoresis (ION): one-patch and two-patch administration, with subsequent blood draws over 1 hour in order to measure the pharmacokinetic behavior of the drugs in-vivo.
Current treatment strategies of acute cervical spinal cord injuries remain limited. Treatment options that provide meaningful improvements in patient quality of like and long-term functional independence will provide a significant public health impact. Specific aim: Measure the efficacy of nerve transfer surgery in the treatment of patients with complete spinal cord injuries with no hand function. Optimize the efficiency of nerve transfer surgery by evaluating patient outcomes in relation to patient selection and quality of life and functional independence.
Vibration therapy is a possible alternative to drug-based treatments for spasticity following SCI. Research indicates that it may provide temporary relief from spasticity, but many interventions under investigation are not portable and therefore access is limited. The aim of this study is to investigate the feasibility of using a portable vibrating device to decrease UE spasticity.
Studies have been conducted on the effectiveness of inspiratory muscle training on tetraplegics, and less has been reported on expiratory muscle training on paraplegics; especially in Pakistan there was no such study done up-to my knowledge. Paraplegic individuals develop pulmonary complications due to prolonged general immobilization of body and ineffective cough due to respiratory muscle weakness. This study will identify the effects of expiratory muscle training using "Expiratory Muscle Strength Trainer- 150" in paraplegic individuals in Peshawar, Pakistan