View clinical trials related to Spinal Cord Injuries.
Filter by:The purpose of this study is to learn about the effect of sleep apnea and low oxygen on muscle strength and lung function in people with chronic spinal cord injury.
Spasticity (tightening, spasming and/or contractions of muscles) is a commonly encountered consequence of injuries to the central nervous system. Spasticity has an adverse effect on quality of life and function of patients with spinal cord injuries, stroke and cerebral palsy. Conventional management consists of medication, injections of botulinum toxin and occasionally extensive surgical interventions. Several studies have examined the use of repetitive magnetic stimulation of the brain and of peripheral nerves to produce long-term depression of spasticity. Recently, Theta burst sequence low-dose magnetic stimulation has been shown to mark unused synaptic connections for deletion. By using pulsed magnetic stimulation of the spinal cord the abnormal connections arising from injury may be identified for deletion, therefore potentially minimising the mis-firing circuits. The investigators plan, in this pilot study, to test whether firstly the application of pulsed magnetic stimulation of the spinal cord is achievable in patients with spinal cord injury (SCI) and secondly whether it has an effect on lower limb spasticity. These results will be used to help design a larger trial, to expand the numbers of participants and variety of pathologies treated. Participants (in-patients at the Midland Centre for Spinal Injuries) with stable SCI will be randomised to receive either intermittent pulsed magnetic stimulation or no stimulation. Patients will be blinded as to whether they are receiving stimulation (the machine will be active up and placed in the same position for both groups, except the sham group will have the stimulation coil applied in an orientation that does not deliver the magnetic field to the spinal cord).
To assess how safe the exoskeleton, EksoGT, is to use for acute inpatient rehabilitation, if it helps people to walk better than with traditional walking training methods, or if they have any other effects (better or worse) on recovery.
The overall purpose of this project is to test the feasibility of a manual wheelchair propulsion program which aims to reduce the chance of development of upper limbs pain and injury.
Pressure injuries are a major problem in patients with no or limited mobility and sensation such as paraplegics. Changes in skin physiology like changes in skin perfusion, oxygenation and humidity may explain and help to detect pressure injury development earlier. Thus, these parameters may be used for continuous monitoring of skin health. So far, there is no measuring technology available which would allow to measure continuously and quantitatively the physiological parameters, which are essential in the development of pressure injuries, over a long period of time in the clinical setting. The goal of this pilot study is to test whether this wearable technology can be used for measurements of skin parameter and whether temperature, pressure, humidity, perfusion, and oxygenation can be measured safely and accurately. 10 healthy individuals and 10 individuals with spinal cord will be enrolled for measurements with this newly developed device over the ischium for 30 minutes. The reproducibility of the measurements will be investigated.
The purpose of the study is to examine the impact of a transitional exercise intervention implemented in the community for people with SCI on psychological well-being, social factors, and physiological health.
This clinical trial will examine the efficacy of continuous positive airway pressure (CPAP) therapy in improving psychosocial, neurocognitive and behavioral consequences of moderate-to-severe sleep-related breathing disorders (SRBDs) in people living with spinal cord injury (SCI).
This study will examine whether supplementation with the serotonin and dopamine precursors, 5HTP and L-DOPA can alter central nervous system excitability and improve motor function after incomplete and complete spinal cord injuries.
Incomplete cervical spinal cord injury (SCI) makes up half of all the newly admitted patients. For these individuals, the use of their upper limbs is critical for managing daily activities and self-care and impacts their quality of life. For home-based monitored rehabilitation, also called telerehabilitation, there are various rehabilitation equipment that are used. No studies have systematically gathered information regarding the perceptions of individuals with SCI regarding these equipment, training, and feasibility within the home. Further, their perceptions of the usability of high vs low end equipment is also not explored. In this study, investigators plan to gather survey and interview data from individuals with SCI regarding their experience with using rehabilitation equipment that uses games, muscle stimulation, and object manipulation. This study will inform the development of a tele-rehabilitation intervention in the future.
The goal of this study is to assess the function of the lungs and the muscles are used to breathe after individuals receive respiratory training, spinal cord stimulation, a combination of respiratory training and stimulation, a combination of arm training and stimulation, or a combination of trunk training and stimulation. The respiratory, arm, and trunk training combined with the spinal stimulation interventions are being used to activate the spinal cord below the level of injury. Investigators will be looking for changes in the function of the lungs and trunk muscles before, during, and after these task-specific and non-task-specific interventions for breathing to determine which one has the greatest effect. The results of this study may aid in the development of treatments to help individuals with spinal cord injuries that have impaired lung, arm, and trunk function.