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Spinal Cord Injuries clinical trials

View clinical trials related to Spinal Cord Injuries.

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NCT ID: NCT01765153 Completed - Spinal Cord Injury Clinical Trials

Precision Versus Endurance Training to Improve Walking After Chronic Incomplete SCI

Start date: March 2008
Phase: N/A
Study type: Interventional

The objective of the study was to determine the efficacy of two forms of physical therapy training, one emphasizing precise, visually guided walking over obstacles and on targets (Precision Training), the other emphasizing mass practice of walking on a treadmill (Endurance Training). The hypothesis was that visually guided training (Precision) may be especially efficacious because it engages the motor cortex, whose input may facilitate improvements in functional walking. Participants are individuals with a chronic (≥7 months post-injury), motor incomplete spinal cord injury (SCI), with no other problems that would preclude participation in an intensive training program. A randomized, single-blinded, cross-over design was used to randomly allocate participants to start with Precision or Endurance Training, identified as Training Phase I. Training was 5x/wk for 2 months, followed by a 2-month rest period, identified as Rest Period I. Participants then returned for 2-months of training in the other method, identified as Training Phase II, followed by another 2-month rest, Rest Period II. Measures of walking speed, distance, skill, confidence, as well as depression were obtained at least 3 times before any training, then monthly thereafter. Electrophysiological measures were taken before and after each phase of training and period of rest. Change scores were used to determine how each phase of training and rest influenced the scores (see below).

NCT ID: NCT01758692 Completed - Spinal Cord Injury Clinical Trials

Measurement of Autonomic Cardiovascular Integrity in Persons With SCI

Start date: July 2012
Phase:
Study type: Observational

People with a spinal cord injury (SCI) have limited ability to move and feel sensation below the level of the SCI. Doctors and researchers have tests which determine the level of function and sensation, this test was developed by the American Spinal Cord Injury Association (ASIA) and has been modified over the years to improve use and sensitivity. Most recently, the ASIA Injury classification Scale (AIS) was modified in 2011, but this test does not include the evaluation of autonomic nervous system (ANS) impairment. However, people with SCI do have impairment of the ANS and this may adversely affect how organ systems in the body function. Specifically, ANS impairment tends to result in changes in heart rate and blood pressure that may relate to the level of the SCI, but this is not fully understood. In this investigation we hope to develop simple tests which will allow doctors and scientist the ability to measure the amount of ANS impairment to the cardiovascular system, specifically the heart. The first part of the study will be to determine the heart rate response to several tests (administration of drugs and physical challenges) which will change heart rate. These tests will be given to people with and without SCI and the heart rate response will be compared between people with and without SCI. The bigger the difference in the heart rate response to these test between people with and without SCI the greater degree of ANS impairment in the people with SCI. Once this heart rate difference is determined, several simple tests (deep breathing, saliva test, Valsalva) will be performed in people with and without SCI to again compare the heart rate response. The second part of this study will be to determine if the heart rate responses to the first set of tests (administration of drugs and physical challenges) can predict the heart rate response to these simple tests (deep breathing, saliva test, Valsalva). The aim of this study is to develop a simple battery of tests which can be easily used by doctors and scientists to determine the degree of ANS impairment to the heart in persons with SCI.

NCT ID: NCT01753882 Active, not recruiting - Spinal Cord Injury Clinical Trials

Monoaminergic Modulation of Motor Function in Subacute Incomplete Spinal Cord Injury (SCI)

Start date: February 2012
Phase: Phase 1
Study type: Interventional

The primary goal of the proposed clinical trial is to investigate the combined effects of walking training and monoaminergic agents (SSRIs and TIZ) on motor function of individuals in sub-acute (2-7 mo) human motor incomplete Spinal Cord Injury (SCI), with a primary emphasis on improvement in locomotor capability. We hypothesize that the use of these drugs applied early following SCI may facilitate independent stepping ability, and its combination with intensive stepping training will result in improved locomotor recovery following incomplete SCI. Loss of descending control via norepinephrine inputs following spinal cord injury can impair normal sensorimotor function through depressing motor excitability and impairing walking capacity. Replacing these inputs with drugs can alter the excitability and assist with reorganization of locomotor circuits. Assessment of single-dose administration of these agents has been tested in patients with motor incomplete spinal cord injury; only limited changes in walking performance have been noted. The resultant onset of weakness and increase in involuntary reflexes following motor incomplete SCI may partly be a result of damage to descending pathways to the spinal cord that control the release of serotonin. In models of SCI, for example, application of agents that simulate serotonin has been shown to change voluntary motor behaviors, including improvement of walking recovery. In humans following neurological injury, the effects of 5HT agents are unclear. Few previous reports indicate improved motor function following administration of agents which enhance the available serotonin in the brain, although some data suggests that increased serotonin may be beneficial. In this application, we propose to study the effects of clinically used agents that increase or decrease intrinsic serotonin activity in the brain on strength and walking ability following human motor incomplete SCI. Using detailed electrophysiological recordings, and biomechanical and behavioral measures, we will determine the effects of single or chronic doses of these drugs on voluntary and involuntary motor behaviors during clinical measures and walking measures. The novelty of this proposed research is the expectation that agents that increase serotonin activity may increase abnormal reflexes in SCI, but simultaneously help to facilitate motor and walking recovery. Despite potential improvements in voluntary function, the use of pharmacological agents that may enhance spastic motor behaviors following SCI is in marked contrast to the way in which drugs are typically used in the clinical setting.

NCT ID: NCT01750684 Terminated - Clinical trials for Acute Spinal Cord Injury

AC105 in Patients With Acute Traumatic Spinal Cord Injury

AC105
Start date: July 2013
Phase: Phase 2
Study type: Interventional

The principal aim of this study was to establish the feasibility of rapid administration, safety, and tolerability of AC105 in patients with acute spinal cord injury.

NCT ID: NCT01748695 Completed - Clinical trials for Neuropathic Pain Due to Spinal Cord Injury

A Safety, Tolerability and Efficacy Study of V158866 in Central Neuropathic Pain Following Spinal Cord Injury

Start date: June 2013
Phase: Phase 2
Study type: Interventional

The purpose of this study is to investigate whether V158866 is safe and effective for the treatment of neuropathic pain due to spinal cord injury.

NCT ID: NCT01740128 Completed - Clinical trials for Spinal Cord Injuries

Multimodal Exercises to Improve Leg Function After Spinal Cord Injury

Start date: January 1, 2013
Phase: N/A
Study type: Interventional

Many people with spinal cord injury (SCI) retain at least some movement below their injury, but their muscles often have a 'mind of their own'. Typical exercise programs focus on keeping muscles strong and flexible, but don't usually focus on helping patients control their muscles. The investigators' exercise research study will compare two different programs with the specific goal of improving conscious control of patients' muscles below the injury. This study focuses on those with 'chronic' SCI - the injury occurred at least one year prior to enrolling. This is a single center study taking place in the Bronx, NY. The first phase of the study will be observational - the investigators will analyze which nerve connections might remain partially intact through the injury (even if the nerves aren't consciously controlled). Participants with all severity of SCI may participate in this first phase. The second phase of the study will involve people who retain at least slight ability to move their legs and the ability to move the arms against gravity. Each person will undergo two different exercise rehabilitation strategies: weight-supported treadmill training; and balance training combined with skilled arm or hand exercises. The investigators will compare the effects of these exercise programs on a variety of outcomes, including gait speed, balance, strength, and muscle activation in response to brain stimulation. The investigators hypothesize that participants with chronic SCI undergoing combined balance/arm/hand training will show improved outcomes when compared to traditional gait or balance training.

NCT ID: NCT01739023 Completed - Spinal Cord Injury Clinical Trials

Safety of Autologous Human Schwann Cells (ahSC) in Subjects With Subacute SCI

Start date: November 2012
Phase: Phase 1
Study type: Interventional

The purpose of this study is to assess the safety of autologous human Schwann cells (ahSC) transplantation in subjects with subacute SCI. For humans with subacute SCI, we hypothesize that axons might show improved function if myelin repair is induced with the implantation of ahSC. In addition spinal cord cavitation may be reduced, and neural sprouting and plasticity may be enhanced via neurotrophic effects.

NCT ID: NCT01739010 Completed - Spinal Cord Injury Clinical Trials

Hypothermia Following Acute Spinal Cord Injury

Start date: January 2007
Phase:
Study type: Observational

The purpose of this study is to investigate the long term outcome of patients who receive hypothermia treatment for spinal cord injury. At this institution, intravascular hypothermia has been used for certain patients with spinal cord injury for the past two years. This study will collect data from vital signs and examinations while the patient is in the hospital and also when they follow up as an outpatient after they are discharged or go to a rehabilitation center. This data will then be analyzed and compared only to historically published data from previous studies. The aim of this investigation is to determine if intravascular hypothermia results in a beneficial outcome for patients with spinal cord injury.

NCT ID: NCT01730183 Recruiting - Spinal Cord Injury Clinical Trials

To Study the Safety and Efficacy of Autologous Bone Marrow Stem Cells in Patients With Spinal Cord Injury

ABSCI
Start date: November 2012
Phase: Phase 1/Phase 2
Study type: Interventional

This is a Phase I/II, multicenter, prospective, non-randomized, open label study to evaluate the safety/efficacy of autologous bone marrow-derived stem cell transplantation in spinal cord injury patients.

NCT ID: NCT01726881 Enrolling by invitation - Healthy Clinical Trials

Predicting Central Pain Among People With a Spinal Cord Injury by Evaluating Mechanisms Regulating Pain and Efficacy Testing of the TENS Apparatus

Start date: December 2012
Phase: N/A
Study type: Interventional

People with a Spinal Cord Injury can develop chronic pain within months of the injury. Up to 80% of the patients will develop chronic pain called "central pain" and describe the pain as: burning, stabbing, or "like electricity." Central pain mechanism is unknown and therefore treatment is currently not effective. It is hypothesized that chronic pain is associated with impaired function of the systems regulating pain, however, this hypothesis has not been tested among Spinal Cord Injury patients. Presence of such a connection, between the regulating system dysfunction and central pain, will help both predicting the risk of central pain and develop a treatment. The current research objective is to make several sensory measurements which will measure the functioning mechanisms of regulation and control of the pain. These measurements are accepted throughout the world and are based on psychophysical assessment of patients. these Measurements are designed to assess whether Spinal Cord Injury chronic central pain patients demonstrate impairment in the regulation of pain. Finding such a link between central pain and impaired regulation could shed light on the mechanism of central pain. In addition, these measurements are designed to assess whether fresh spinal cord injury patients that have not yet developed central pain demonstrate impairment in the regulation of pain immediately after the injury. By repeated assessments of pain regulation capabilities, which will be made to fresh Spinal Cord Injury patients during the first months of injury, and comparing the results of these measurements between those who will develop center pain and those who will not, we could identify indicators for predicting the risk of central pain. Another goal of the study is to investigate the efficacy of central pain treatment, using a TENS, when the parameters of the TENS treatment will be built according to the level of functioning of the regulating systems of the individual.