View clinical trials related to Spinal Cord Injuries.
Filter by:A crossover trial with spinal cord injury volunteers will be conducted. Three sessions will be performed once a week in a counterbalanced order and at least with seven days washout period to minimize carry-over effects. In each session, volunteers will be submitted to quantity and quality of sleep, type of eating, fatigue and motivation level, Ashworth scale spasticity, cortical brain activity measures through simple pulse transcranial magnetic stimulation (pTMS), spinal cord activity measures through electrical stimulation and non-invasive brain stimulation (rTMS)
The purpose of this study is to investigate whether robotic exoskeleton training can improve walking performance after SCI as compared to conventional physical therapy.
This study is a cross-sectional study investigating the impact of assistive forces applied by the body-weight support system "the FLOAT" on the study participants. The study is conducted at the University Hospital Balgrist in Zurich over a period of around 3 years. During this time measurements on approximately 140 able bodied subjects and 60 patients with an incomplete spinal cord injury will take place. The study participants are invited for a single visit of around 140 min duration to the University Hospital Balgrist. During this visit the study participants will repeatedly perform various activities of daily living (free walking, standing up and sitting down, stair climbing and balancing) with and without assistive forces from the body-weight support system. While performing the tasks, the study participants' motions and muscle activities will be measured to evaluate the naturalness of their movements. In addition, the collected data permits us to compare different movement patterns and make conclusions about effective and optimal movement support. Obtaining this knowledge will help us to shape the therapy of these activities to be tailored to the patients and to train these movements with the help of the FLOAT under optimal conditions.
This is a phase I/IIa, randomized, double-blind, two-arms, two-dose administration, placebo controlled, two-way crossover clinical trial in which 10 patients from 18 to 65 years of age affected with chronic traumatic spinal cord will enter the study with the objective to assess the safety and to obtain efficacy data in intrathecal administration of expanded Wharton's jelly mesenchymal stem cells.
The primary purpose of this study is to explore the benefits of vibration dumbbell resistance training over standard dumbbell resistance training for improving upper limb strength, function and pain among manual wheelchair users with paraplegia.
This study is a prospective multi-center trial designed to determine the safety profile and efficacy of modest (33ºC) intravascular hypothermia following acute cervical (C1 to C8) Spinal Cord Injury (SCI).
This study is to test whether pelvis perturbation training paired with transcutaneous spinal direct current stimulation (tsDCS) will be effective in improving dynamic balance and locomotor function in humans with SCI. One group will receive pelvis perturbation training paired with tsDCS, one group will receive pelvis perturbation training paired with sham, and one group will receive treadmill training only.
The UPnRIDE Powered Wheelchair device is a product which changes people position from sitting to standing and standing to sitting. The product provides indoor and outdoor mobility. The main purpose of this study is to evaluate the safety of the UPnRIDE powered wheelchair as an outdoor and indoor mobility device by individuals with walking impairment.
The purpose of this research device study is to learn more about the autonomic nervous system. This system uses nerves to send information from the brain to the rest of the body by electrical signaling and has two divisions, the sympathetic and the parasympathetic branches. It has been thought that electrical stimulation devices could be used to restore balance to the nervous system. Because most of the imbalance seems to happen due to too much sympathetic activity, the investigator plans to focus on the parasympathetic branch. Specifically, the investigator hopes to restore balance by targeting the vagus nerve, which is the main communicator of the parasympathetic branch. The study will examine whether the investigator can decrease sympathetic activity and chronic inflammation by increasing parasympathetic activity. This is a device study that will examine the use of non-invasive vagal nerve stimulation to attenuate inflammatory stress and sympathetic hyperactivity in persons with Spinal Cord Injury and Non-Disabled Controls.
Spinal Cord Injury (SCI) is a devastating condition that leads to permanent functional and neurological deficits in injured individuals. The limited ability of the Central Nervous System (CNS) to spontaneously regenerate impairs axonal regeneration and functional recovery of the spinal cord. The leading causes are motor-vehicle crashes, sports-associated accidents, falls, and violence-related injuries. Unfortunately, there is still no effective clinical treatment for SCI. In recent years, tissue engineering and regenerative medicine based approaches have been proposed as alternatives for SCI repair/regeneration. Mesnchymal stem cells (MSC) use in SCI showed promising results in several studies. Our aim is to assess and compare the safety and effectiveness of autologous BM-MSC vs autologous AT-MSC in these patients.