View clinical trials related to Spinal Cord Injuries.
Filter by:The purpose of this research is to test the feasibility of an intervention using biofeedback to treat stress and anxiety among individuals with tetraplegia. The expected duration of participation in this study is about 5 hours over the course of about 5 weeks. Participants will be randomly assigned to either a biofeedback training intervention or a control group. After completing questionnaires, participants will undergo physiological monitoring for the purpose of measuring heart rate and breathing. Those assigned to the biofeedback group will undergo 20 minutes of physiological monitoring while also participating in biofeedback training twice a week for 4 weeks (8 sessions) from home. Those assigned to the control group will undergo 20 minutes of physiological monitoring twice a week for 4 weeks (8 sessions) from home, but will not receive biofeedback training. Each session is expected to last 30 minutes to allow for completion of questionnaires over the the phone prior to and following each training session. It is hypothesized that the biofeedback intervention will demonstrate high feasibility and compared to those in the control group, participants who receive the biofeedback intervention will attain greater pre-post reductions in both physiological and self-reported stress.
The study is designed to assess the role of functional neural regeneration collagen scaffold transplantation combined with epidural electrical stimulation in spinal cord injury patients.
Most patients with spinal cord injury (SCI) develop neurogenic lower urinary tract dysfunction (NLUTD), one of the most devastating sequelae of SCI which ultimately can lead to renal failure. We urgently need an intervention that prevents NLUTD before irreversible damage occurs. Neuromodulation procedures are a promising avenue so that we investigate the effect of transcutaneous tibial nerve stimulation (TTNS) in patients with acute SCI. This nationwide randomized, sham-controlled, double-blind multicentre clinical trial includes all SCI centres in Switzerland (Basel, Nottwil, Sion, Zürich). Patients are randomly assigned to VERUM TTNS (active stimulation, n=57) and SHAM stimulation (n=57) groups in a 1:1 allocation using computer-generated permuted block randomisation lists stratified on study centre and lower extremity motor score. Daily 30-minute sessions are performed five times a week during an intervention period of 6-9 weeks. The primary outcome of this study is the success of TTNS to prevent neurogenic DO jeopardizing the upper urinary tract, assessed by urodynamics at 1 year after SCI or any earlier time point if DO treatment is necessary (study end). Secondary outcome measures are bladder diary parameters, clinical symptom scores assessed by standardized and validated questionnaires. Furthermore, neurophysiological and neuroimaging outcome measures are assessed as well as, biochemical and molecular changes. Tertiary outcome measure is the safety of TTNS. Before the actual start of the TASCI RCT, start-up activities will include a piloting phase on groups of healthy volunteers and patients. The goal during this phase is to evaluate the feasibility of the experimental setup, in particular for the TTNS and SHAM intervention, but also to test the setup of the different pre and post assessments (e.g. neurophysiology and neuroimaging tests). Groups of up to 15 participants each will be enrolled in a few consecutive pilot studies allowing for fine tuning and small adaptations in between, if appropriate.
Turkish version of the Neurogenic Bladder Symptom Score questionnaire: a cross-cultural adaptation, reliability and validity study
In Canada the prevalence of spinal cord injury (SCI) is approximately 85,556, with incidence rates of traumatic and non-traumatic SCI at 1,785 and 2,286 cases per year, respectively. Common secondary health conditions experienced by individuals with SCI include psychological distress and pain. Appropriate management of these secondary conditions, through a multidisciplinary approach, is imperative as they have been shown to contribute to slower recovery, increased negative outcomes, and greater rates of rehospitalizations and health care utilization. However, resource limitations can restrict the ability of service providers to deliver these integrative biopsychosocial approaches in the community. Guided internet delivered cognitive behavioural therapy (ICBT) program offers an alternative approach for psychosocial service delivery in the community. The program provides online structured self-help modules based on the principles of cognitive behavioural therapy (CBT) in combination with guidance from a coach through weekly emails and telephone calls. ICBT was shown to have similar effects to face-to-face CBT. Results from the investigator's pilot pre-post study (ClinicalTrials.gov: NCT03457714), found significant effects of guided ICBT on primary outcome of depression (d=1.20, p=.02) post-intervention and gains were maintained at 3-month follow-up among persons with SCI. Significant improvements in secondary outcomes including pain interference, resilience, positive affect, self-efficacy, ability to participate, and grief were also found.These studies demonstrate that guided ICBT is a safe and effective alternative to face-to-face interventions and it may be beneficial for underserviced populations. In the proposed trial, the investigators will examine the efficacy of the Guided ICBT Chronic Conditions Course for persons with SCI versus an online SCI Rehabilitation Education program. All participants will complete questionnaires prior to the start of the program, before each lesson of the program, once they have completed the program, and 3 months after completing the program. The primary outcome measures include anxiety and depression. As part of the battery of questionnaires administered after the completion of the program, clients will be asked to rate the program content, the overall service, and their satisfaction with the program.
This study tests using a wheelchair back that supports the spine in a neutral position and one that allows the spine and pelvis to fall into a posterior pelvic tilt.
Purpose of the study: To analyse the effectiveness of aquatic physiotherapy on spinal cord injuries (LMi) in the improvement of balance and gait, in the inflammatory profile, and the impact on the quality of life. Main objective: To analyse if there are differences in the recovery of the balance, in incomplete subacute spinal cord injuries, with lesion level T1-L5 and ASIA (American Spinal Injury Association) C and D . Secondary objectives: 1. functional gait 2. To evaluate if the time from the injury to the start of the aquatic therapy influences the results on balance and functional gait. 3. To study the effect of aquatic therapy on serum markers of systemic inflammation. 4. Quality of life related to health. Design: Crossed, controlled and randomized clinical trial, with blind evaluation of the response variables. Scope of the study: National Hospital of Paraplegics. Toledo (Spain). Population: Subjects with incomplete spinal cord injury ASIA C and D. n = 50 (25 in each arm randomly). Intervention: 6 weeks of specific Aquatic Physiotherapy (3 times a week). Group 1 will perform aquatic physiotherapy at the time of entering the study, and group 2 will perform it 6 weeks later. Outcomes: Static and dynamic balance (Berg test and Time Up and Go). Speed of the gait (test of 10 m.). Gait resistance (6 min. Test). Functional capacity of the gait (WISCI II). Biomechanical analysis (sensorial-dynamic, rhythmic and directional control, and gait test) by posturography. Questionnaires EuroQol-5Dimensions-5Level (EQ-5D-5L) and the Spanish Version of the Quality of Life Index (SV-QLI) in spinal cord injury (SCI). Biomarkers of inflammation: 20 cytokines. Analysis of results: The main outcome measure will be the percentage of patients who have improved. Considering improvement when the difference between the groups is, at least, a 10% of their score in the Berg test between V0 and V1 (with their corresponding 95% confidence intervals). It will be adjusted for confounding and interaction factors with a multivariate analysis using logistic regression. All analyses will be performed according to the intention to treat principle.
The purpose of this study is to examine the immediate effects of a single exercise session or a high fat/high carbohydrate meal on the physical and mental health of people with a spinal cord injury (SCI). Specifically, we want to better understand the responses in people with SCI when they conduct exercise or eat an unhealthy meal, when looking at inflammation levels, the number and function of immune cells, brain function, pain and how one feels (affect). If we can understand these responses, then clinicians, sports practitioners and dieticians can provide better advice to people with SCI.
This study will examine a form of non-invasive brain stimulation applied with intensive therapy of the arm and hand. The goal of the study is to determine if arm and hand function can be improved in people with incomplete cervical spinal cord injury (neck spinal cord injury, tetraplegia). Participants will be assigned to receive either active or inactive non-invasive brain stimulation.
Background: Patient engagement is a cornerstone of patient-centered care. Studies show that an increased level of patient engagement in medical rehabilitation is associated with greater functional recovery. To achieve higher levels of patient engagement, it is important to improve therapists' techniques for goal setting and clinician-therapist communication. Thus, we have developed a manualized intervention for post-acute rehabilitation, Enhanced Medical Rehabilitation (EMR), which is an evidence-based program to increase patient engagement and achieve a greater intensity of therapy, thereby optimizing the patient's functional and psychosocial recovery. EMR is an integrated set of skills for occupational and physical therapists that transform rehabilitation through (1) a patient-directed, interactive approach; (2) increased treatment intensity; and (3) frequent feedback to patients on effort and progress. We have developed training and supervision methods to enable therapists to carry out these skills with high fidelity. In our previous EMR study of older adults in skilled nursing facilities, patients treated by EMR-trained therapists had greater engagement in therapy, higher-intensity therapy sessions, and better functional outcomes. Due to the complexity of the inpatient spinal cord injury (SCI) rehabilitation environment, it is unknown whether the EMR program will be clinically relevant to inpatient rehabilitation settings and acceptable to SCI populations. Therefore, it is necessary to conduct a systematic adaptation approach to address all hospital- and provider-level barriers, and test this adapted program to a new setting (inpatient rehabilitation) and a new population (patients with SCI), without compromising the core elements of the original EMR. Objective: We propose to adopt the EMR program for use in inpatient SCI rehabilitation settings using an implementation science-driven approach. We also propose a randomized trial of 80 patients with SCI to test the effects of EMR on improving engagement and treatment intensity, as well as functional and psychosocial outcomes over standard of care (SOC) rehabilitation. Methods: We will randomize patients into EMR or SOC groups. For the EMR group, four therapists will be trained and supervised in EMR and will incorporate EMR techniques into therapy sessions. In the SOC group, four therapists will carry out therapy sessions as usual. Expected Outcomes: With respect to EMR intervention adaptions, we hypothesize that the EMR program, including a treatment manual and other materials, will be customized with input from our Spinal Cord Injury-Community Advisory Board (SCI-CAB). Patients randomized to EMR will have greater engagement and intensity and greater functional and psychosocial recovery compared to those randomized to SOC rehabilitation. Significance: The impact is high. EMR is patient-centered rehabilitation, and it is designed for real-world clinical practice. Success in this line of research will improve therapists' skills working with patients and optimizing patient outcomes, ensuring that inpatient SCI rehabilitation is more patient-centered, to the benefit of individuals with SCI.