View clinical trials related to Spinal Cord Injuries.
Filter by:The primary goal of this study is to conduct a multi-site RCT to evaluate the replicability and efficacy of the ReInventing Yourself after SCI intervention in improving health and function outcomes for persons with spinal cord injury (SCI). A total of 252 participants will be randomized to one of three research arms: 1) Group treatment plus workbook (Group), 2) individual self-study through YouTube video plus workbook (Indiv), and 3) no treatment, no workbook (Control). Participants randomized to the Group arm will attend 6 virtual weekly group sessions led by a pair of group facilitators and will utilize the study workbook. Indiv arm participants will receive the workbook and will be instructed to independently access YouTube videos of the group session content. Control arm participants will not receive any intervention during the 6 week period. Participants in all three arms will be assessed at identical time points throughout the study: baseline, 6 weeks, 14 weeks, 22 weeks, 30 weeks, and 46 weeks. It is hypothesized that individuals in the Group intervention arm will show greater improvements after the six week intervention in SCI-specific and general self-efficacy, emotional well-being, increased societal participation, less depressive and anxiety symptomatology, and improved resilience than participants in the Indiv and Control arms.
The specific aim of this study is to evoke functional movement in the hand of both healthy individuals and individuals diagnosed with a stable cervical spinal cord injury with non-functional movement of the fingers. The primary purpose of this study is to determine the feasibility of achieving refined hand movements through electrical stimulation of the muscles within the forearm. It is believed that this study will be able to identify specific stimulation parameters and electrode spatial configurations responsible for various refined hand movements. After an eligible individual agrees to participate in this study, s/he will receive transcutaneous electrical stimulation on the forearm in order to evoke different hand and finger movements. The precision, specificity, and extent of these movements will be visually assessed. In order to better evaluate these movements, participants may also be asked to perform various functional tasks with their hand. The grip strength and evoked forces at the fingertips will also be measured using sensors. There will be up to 4 study sessions each week for up to 8 weeks, with each session lasting up to 4 hours. Upon completion of these study sessions, the individual's participation in the study is considered complete.
Aim 1: Determine the neurophysiologic impact of Transcutaneous Spinal Cord Stimulation (TSCS) within a single session. The investigators hypothesize that subjects will demonstrate increased volitional muscle activity and strength with TSCS. This will be assessed by surface EMG and hand-held dynamometry of the dominant-side quadriceps muscle during maximum volitional contraction (MVC) and measurement of gait speed. Subjects will be tested in both TSCS and sham conditions. Aim 2: Determine the impact of TSCS and gait training on walking function. The investigators hypothesize that concurrent TSCS and gait training will augment walking function in subjects with iSCI, as compared to gait training alone. Subjects will participate in an eight-week program of gait training with TSCS and be assessed with clinically relevant outcome measures, to include the Timed Up and Go, 10-Meter Walk Test, Walking Index for Spinal Cord Injury II, and 6-Minute Walk Test.
This study is a prospective national survey of body mass index, and includes all patients with a new spinal cord injury hospitalized at Clinic for Spinal Cord Injuries, Rigshospitalet and Spinal Cord Injury Center of Western Denmark during a period of 9 months. Informed consent is retrieved from all participants.
The investigators propose to understand the role of lumbosacral spinal cord epidural stimulation (scES) in recovery of autonomic nervous system function, voluntary movement, and standing in individuals with severe spinal cord injury (SCI). Thirty-six individuals with severe SCI who have cardiovascular and respiratory dysfunction and who are unable to voluntarily move the legs or stand will receive scES for cardiovascular function, voluntary movement, or standing with and/or without weight-bearing standing. Training will consist of practicing voluntary movements or standing in the presence of specific scES configurations designed for the voluntary movements of the legs and trunk (Vol-scES), or epidural stimulation configurations specific for standing (Stand-scES). Specific configurations epidural stimulation for cardiovascular function (CV-scES) will be provided during sitting and supine and during maneuvers of orthostatic or cardiovascular stress. The ability to move voluntarily, stand, as well as cardiovascular, respiratory, bladder, bowel and sexual function will be assessed in these individuals with chronic severe spinal cord injury. Quality of life and costs of health care also will be assessed.
The present study will analyze if exercise is able to elicit the well-known anti-atherogenic effects in patients with SCI. This will be evaluated by measuring vascular parameters such as endothelial and inflammatory blood markers, echocardiography of the heart and peripheral vessels, as well as blood pressure and arterial stiffness, in subjects performing either wheelchair dancing, wheelchair marathon or no sports. Further, it will be investigated, whether there is an association between neuroplasticity and cardiovascular health, as measured by electroencephalography (EEG), transcranial magnetic stimulation (TMS) and blood levels of the brain-derived neurotrophic factor (BDNF). We hypothesize that the cardiovascular, physical and psychological benefits of wheelchair dancing and/or wheelchair marathon parallel improved neuroplasticity in SCI-patients
Denervation following spinal cord injury (SCI) limits beneficial application of neuromuscular electrical stimulation (NMES). SCI with denervation results in extensive muscle atrophy that is accompanied with several cardio-metabolic health risks. The current proposal provides a novel intervention by examining the effects of long pulse width stimulation (LPWS) and testosterone replacement therapy (TRT) on restoring muscle size and leg lean mass after denervation in persons with SCI. This intervention will be rewarding for Veterans and Civilians with SCI who do not benefit from exercising their lower extremity muscles because denervation has limited the response to standard surface NMES. The investigators will study the biochemical mechanisms that contribute to changes in muscle size following this novel training. Combing both pharmaceutical and physical-therapeutic interventions will optimize restoration of muscle size after SCI.
Adaptive gait assessements will be evaluated as a potential new marker for tracking locomotor recovery throughout rehabilitation of spinal cord injury subjects. To this end, controls, subacute and chronic patients will be assessed at two timepoints with 3 month standard rehabilitation inbetween. The specific assessments will require the participant to acitvely modulate their gait pattern to fullfill specific task constraints. Their performance will be assessed via 3D kinematics, kinetics and EMG and these measures will be used to describe the adaptive capacity that the patient retains. Sensitivity and specificity of these markers will be determined. With more sensitive descriptors of gait function and quality, locomotor rehabilitation for SCI can be better designed and smaller effects can be accurately measured.
The present study aims to investigate the effects of ReWalk exoskeleton robot training on various physiological and psychological parameters among subjects with spinal cord injury, including body composition and bone mineral mass, balance ability, bowel and bladder symptoms, severity of pain, psychological well-being, and quality of life. Ten patients with paraplegia caused by spinal cord injury will be recruited from the out-patient clinic of Department of Physical Medicine and Rehabilitation at the China Medical University hospital. All participants will undergo dual X-ray absorptiometry to evaluate the baseline bone mineral density. Eligible participants will then take ReWalk training sessions comprises of 3 x 1-hour sessions per week for 40 sessions. A comprehensive battery of outcome measures, including body composition and bone mineral mass, balance ability, bowel and bladder symptoms, severity of pain, psychological well-being, and quality of life, will be utilized for comparison after 40 sessions of ReWalk ambulation training.
The objective of the study is to explore and understand how urodynamic parameters are affected when emptying the bladder with an intermittent catheter.