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Spinal Cord Injuries clinical trials

View clinical trials related to Spinal Cord Injuries.

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NCT ID: NCT04132596 Completed - Clinical trials for Spinal Cord Injuries

Spinal Stimulation in Chronic Spinal Cord Injury

Start date: November 11, 2019
Phase: N/A
Study type: Interventional

Electrical spinal stimulation combined with activity-based rehabilitation (ABR) can improve motor and autonomic function in individuals suffering from varying degrees of paralysis. Spinal stimulation studies have included invasive implanted devices and non-invasive transcutaneous systems using different combinations of stimulation current, waveform, amplitude, duration and spinal levels targeted. Invasive and non-invasive systems have been demonstrated to permit individuals with chronic spinal cord injury (SCI), previously considered to have complete injuries on the International Standards for the Neurological Classification of Spinal Cord Injuries (ISNCSCI) scale (Classification A), to regain some degree of voluntary and autonomic function during periods of stimulation. The aim of this study is to evaluate the effects of a novel non-invasive transcutaneous electrical spinal cord stimulation system (tSCS) combined with activity-based rehabilitation in patients who have paralysis of their legs and/or arms. We will examine participants for any changes in sensory, motor or autonomic function. We will use a transcutaneous spinal cord stimulator that has been designed to deliver safe and tolerable bursts of high frequency pulsed current that minimise the capacitance efforts of the skin surface and maximise conductance of a second waveform using low frequency current to target neural structures. We aim to investigate this form of neuromodulation with a small group of individuals with chronic spinal cord injury. Our goal is to observe and describe any short term or lasting changes in function that can safely and comfortably be derived from this combination of spinal stimulation and activity-based rehabilitation. If this therapy can cause lasting improvements in sensory, motor, respiratory or autonomic function, then this may lead to a greater degree of functional independence for these individuals.

NCT ID: NCT04130295 Completed - Clinical trials for Spinal Cord Injuries

Influence of Wearable Intensive Nerve Stimulation on Spasticity and Function in Persons With Spinal Cord Injury

Start date: October 15, 2019
Phase: N/A
Study type: Interventional

Spasticity is muscle spasms, bouncing (clonus) or stiffness that can negatively impact the quality of life of people with spinal cord injury (SCI). In people with spinal cord injury, spasticity can limit muscle control of the arms and hands and cause pain, discomfort, and frustration. Transcutaneous electrical stimulation has been shown to reduce spasticity after SCI. However, this type of stimulation's effects during prolonged, at-home use has not been well studied. Additionally, traditional stimulation techniques are often only available in the clinic. Therefore, this study aims to identify if wearable intensive nerve stimulation decreases spasticity in the legs of people with SCI, and if this intervention is usable and desirable to individuals with SCI.

NCT ID: NCT04123847 Active, not recruiting - Clinical trials for Spinal Cord Injuries

Standing, Stepping and Voluntary Movement Spinal Cord Epidural Stimulation

Start date: November 2, 2020
Phase: N/A
Study type: Interventional

This study will determine the level of functional gain, below the injury for voluntary control of movements, and recovery standing and stepping function as a result of activation of spinal circuits with scES in humans with severe paralysis. Training will consist of practicing stepping, standing and voluntary movements in the presence of specific scES configurations designed specific for stepping (Step-scES), specific for standing (Stand-scES) and for the voluntary movements of the legs and trunk (Vol-scES). Ability to step, stand, move voluntarily, as well as cardiovascular, respiratory, bladder, bowel and sexual function will be assessed in these individuals with chronic severe spinal cord injury.

NCT ID: NCT04117854 Recruiting - Clinical trials for Spinal Cord Injuries

Spinal Cord Injury in the Pediatric Population - an International Multicenter Study

SINpedSCI
Start date: October 1, 2018
Phase:
Study type: Observational

INTRODUCTION: Due to the low incidence of pediatric spinal cord injury (SCI) and the high demand for knowledge and research, international cooperation is needed to build a solid and shared understanding of the extent of the problem, and also uniformity in treatment and measurement methods. The aim of the study is to map organization of care and rehabilitation of children and adolescents < 18 years of age with SCI, to explore qualitatively psychosocial aspects of individuals and to establish use of common outcome measures in 10 rehabilitation units from seven countries, cooperating within the Sunnaas International Network in Rehabilitation (SIN); China, USA, Russia, Israel, Palestine, Norway and Sweden. METHOD: In Phase I two cross-sectional studies will be conducted to set the scene for the outcome studies following in Phase II (2020-2022). Phase I consists of a quantitative descriptive study using a websurvey to describe and compare the systems of care and delivery of inpatient rehabilitation services for pediatric SCI patients. In addition, a qualitative study will explore the psychosocial aspects of living with a childhood acquired SCI. Two adolescents, aged 13-17 years and at least 6 months post-acute treatment, from each unit will interviewed using a semi-structured interview guide. Ethical approval has been applied for in each unit, and the study is registered at ClinicalTrial-gov. A workshop for the 24 study team members, where the main focus was to ensure that data collection is conducted in a good manner, was held in May 2018, and data collection is expected finalized by 2020. Phase II (planning stage) will consist of methodological outcome studies. DISCUSSION: Phase I of the study will broaden the body of knowledge on pediatric SCI internationally, thus enabling comparison, discussion and development of organizational models and quality of care and rehabilitation for young persons with SCI. Phase II will contribute to the use of common and reliable outcome measures for these patients.

NCT ID: NCT04114604 Completed - Clinical trials for Spinal Cord Injuries

Respiratory Capacity and Swallowing Function in Spinal Disorders: A Pilot Study

Start date: March 30, 2017
Phase:
Study type: Observational

This study is part of a larger grant, for which the overall goal is to collect measurements of liquid flow through the oropharynx (i.e., mouth and throat) during swallowing.The focus of this study is to evaluate the flow of liquids of varying consistency in the spinal disorder population.

NCT ID: NCT04110561 Completed - Clinical trials for Spinal Cord Injuries

Evaluation of Safety and Performance of the Atalante System With Patients With Lower Limb Paralysis

Start date: May 5, 2018
Phase: N/A
Study type: Interventional

The study is a prospective, open, bicentric and observational study. It is conducted to assess the safety and performance of the Atalante exoskeleton system with patients with lower limb paralysis. The principal objective is to assess the performance of the Atalante system in performing ambulatory functions with motor complete SCI patients characterized by the success rate in performing a 10mWT at the last session of training with the Atalante system.

NCT ID: NCT04109586 Recruiting - Obesity Clinical Trials

Diet and Fat Mass After Traumatic Spinal Cord Injury

Start date: September 15, 2019
Phase: N/A
Study type: Interventional

This is a randomized clinical controlled trial (RCT) to investigate the impact of a personalized nutritional intervention on functional and clinical outcomes the first year after traumatic spinal cord injury. The long term goal is to prevent gain of body fat mass and obesity.

NCT ID: NCT04105296 Not yet recruiting - Clinical trials for Spinal Cord Injuries

Epidural Stimulation After Spinal Cord Injury

ESL-SCI
Start date: January 2020
Phase: Phase 1/Phase 2
Study type: Interventional

The purpose of the current study is to determine the effects of applying epidural stimulation (ES) on motor control recovery in Veterans with SCI. The intervention will be accompanied with the use of a powered exoskeleton (EKSO®) for 6 months to facilitate standing and to produce step-like movement in persons with chronic motor complete (AIS A or B) SCI and level of injury below C5 . Walking speed, distance, muscle activation pattern as measured by surface EMG and walking parameters including stand-up time, walking time, distance will be considered primary outcome variables. Cardiovascular performance, as measured by resting blood pressure and heart rate, peak oxygen consumption during walking, energy expenditure, whole and regional body composition assessments will also be measured. The effects of training (ES+EKSO) on , and speed of walking will also be evaluated.

NCT ID: NCT04105114 Recruiting - Clinical trials for Spinal Cord Injuries

Transformation of Paralysis to Stepping

Start date: September 30, 2019
Phase: Early Phase 1
Study type: Interventional

The main goal of the project is to develop multiple noninvasive neuromodulatory strategies to facilitate full weight bearing stepping overground in people with paralysis. We will determine the effectiveness of combining noninvasive spinal cord stimulation and the administration of buspirone (a monoaminergic agonist) in facilitating locomotor activity in a gravity-neutral apparatus, during body weight supported stepping on a treadmill, when stepping overground in an assistive robotic exoskeleton, or during full weight bearing stepping overground in a rolling walker. Our objective is to identify the experimental variables that define the efficacy of these novel neuromodulatory techniques over a 5 year period in 15 participants with severe spinal cord injury who are at least one year post-injury.

NCT ID: NCT04102826 Recruiting - Clinical trials for Incomplete Spinal Cord Injury

Restoration of Arm Function in People With High-level Tetraplegia

Start date: September 29, 2021
Phase: N/A
Study type: Interventional

Functional electrical stimulation (FES) has been used to activate paralysed muscles and restore movement after spinal cord injury and stroke. This technology involves the application of low-level electrical currents to the nerves and muscles to cause muscle contraction where the user's ability to achieve that through voluntary means has been lost. Providing control of muscle contraction in a coordinated way can mean that users are able once again to produce functional movements in otherwise paralysed limbs. Routine clinical use is limited to the prevention of drop foot in the lower limb following stroke and occasional therapeutic use in the hand and shoulder. Systems providing functional reach and grasp, however, have not achieved clinical or commercial success. This project aims to develop methods for personalising assistive technology to restore arm function in people with high-level spinal cord injury. The investigators will use a combination of electrical stimulation to elicit forces in muscles no longer under voluntary control, and mobile arm supports to compensate for insufficient muscle force where necessary. The investigators will use computational models specific to an individual's functional limitations to produce patient-specific interventions. The project will be in three phases: building a model to predict the effects of electrical stimulation on a paralysed arm with arm support, development of methodologies using this model to optimise the arm support and stimulation system, and testing of stimulation controllers designed using this approach.