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Paraplegia clinical trials

View clinical trials related to Paraplegia.

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NCT ID: NCT03225625 Enrolling by invitation - Clinical trials for Spinal Cord Injuries

Stem Cell Spinal Cord Injury Exoskeleton and Virtual Reality Treatment Study

SciExVR
Start date: July 1, 2017
Phase: N/A
Study type: Interventional

The SciExVR study will evaluate the potential benefit of autologous bone marrow derived stem cells (BMSC) in the treatment of spinal cord injury with evidence of impaired motor or sensory function. The treatment consists of bilateral paraspinal injections of the BMSC at the level of the injury as well as superior and inferior to that spinal segment followed by an intravenous injection and intranasal placement. Patients undergoing BMSC treatment may also be assigned to use of exoskeletal movement (or equivalent) or virtual reality visualization (or equivalent) to augment upper motor neuron firing and/or receptivity of the sensory neurons. http://mdstemcells.com/sciexvr/

NCT ID: NCT02602639 Enrolling by invitation - Spinal Cord Injury Clinical Trials

Functional Electrical Stimulation With Rowing as Exercise After Spinal Cord Injury

FES
Start date: October 2015
Phase: N/A
Study type: Interventional

Currently, those with spinal cord injury (SCI) demonstrate increased prevalence of obesity (75%) cardiovascular disease (30 - 50%), type II diabetes (21%) and osteoporosis in the legs (100%) when compared to the general population. It is important to identify the modes and intensities of exercise most likely to generate a reduction in these inactivity-related diseases in this population. Therefore, the main purpose of this pilot research project is to implement and test a form of a spinal cord injury-specific exercise, known as FES rowing (FES: functional electrical stimulation).

NCT ID: NCT02327845 Enrolling by invitation - Clinical trials for Amyotrophic Lateral Sclerosis

Phenotype, Genotype & Biomarkers in ALS and Related Disorders

Start date: April 2015
Phase:
Study type: Observational

The goals of this study are: (1) to better understand the relationship between the phenotype and genotype of amyotrophic lateral sclerosis (ALS) and related diseases, including primary lateral sclerosis (PLS), hereditary spastic paraplegia (HSP), progressive muscular atrophy (PMA), and frontotemporal dementia (FTD); and (2) to develop biomarkers that might be useful in aiding therapy development for this group of disorders.