View clinical trials related to Wounds and Injuries.
Filter by:Traumatic injury and inadequate follow-up care are a significant cause of morbidity and 10% of all deaths in sub-Saharan Africa (SSA). In Cameroon, ~50% of all emergency department (ED) visits are due to traumatic injury, which is likely only ~60% of all traumatic injuries. In the subset of patients who seek care, follow-up after discharge can save lives, yet is uncommon due to both supply-side (e.g., under-resourced health systems, poor data) and demand-side (e.g., poverty) barriers, resulting in preventable complications after discharge (e.g., sepsis, osteomyelitis). Consequently, better follow-up care of trauma patients is a neglected, but high-yield opportunity to improve injury outcomes, especially when coupled with mobile health technologies (mHealth) to better predict and implement post-discharge care, preventing disability and death. Thus, in this study, the investigators will scale up an existing trauma registry and expand use of a mHealth screening tool (triage tool). At 10 hospitals, the investigators will implement a trauma registry and mHealth tool and evaluate success in a mixed-methods study; a quantitative prospective cohort of all eligible injured patients will be followed for 6 months after discharge and an inductive qualitative study.
In patients with multiple myeloma-related acute kidney injury, compare the renal outcome of chemotherapy combined with HFR-SUPRA to chemotherapy combined with hemodialysis.
Paroxysmal sympathetic hyperactivity (PSH) is a syndrome that comprises a series of signs and symptoms reflecting exacerbated sympathetic activity, including arterial hypertension, fever, tachycardia, generalized perspiration, anomalous motor activity (dystonia, muscle stiffness, extension), tachypnea, mechanical ventilator maladjustment, hypoxemia, hypercapnia, and hyperglycemia. PSH episodes can be intense and prolonged and can occur several times a day and all of these can lead to secondary brain damage and are the main causes of a poor prognosis. Paroxysmal sympathetic hyperactivity also induces a hypermetabolic state with hypercatabolism and inflammation and increases vulnerability to infections, sepsis, and weight loss which in turn are associated with increased morbidity, longer hospital stay, and slower recovery. The marked and sustained increase in catecholamine levels predisposes to the development of cardiomyopathy, lung edema, arrhythmias, and cardiac and multisystemic dysfunction. The reported incidence of paroxysmal sympathetic hyperactivity ranges from 8% to 33% and has no particular age or gender predilection. 80% of these syndrome incidents developed with traumatic brain injury.
To assess the safety and efficacy of using oral Glyburide (Diabeta) as a neuroprotective agent in patients with acute cervical or thoracic traumatic spinal cord injury.
The aim of the study is to investigate the effect of subcutaneous administration of Botulinum toxin A on wound pain, wound healing and safety of treatment.
Despite the extensive research on prevention and prediction strategies, hamstrings strains injury (HSI) persists at a high rate in team sports and specifically in football. An initial injury increases the risk for re-injury and affects performance, whereas the financial cost for athletes and teams is crucial due to the time needed for appropriate rehabilitation. For that reason, it is critical to formulate better strategies in order to predict and prevent HSI. This study aims to develop a system dynamics (SD) model to evaluate HSI risk. First, a literature review will be carried out on the current approaches and identification of intrinsic and extrinsic risk factors of hamstrings strain injuries. Second, co-creation workshops based on the method of Group Modeling Building (GMB) will be applied to develop the SD for the HSI model. This co-creation process will involve stakeholders such as sports physiotherapists, doctors, and sports scientists. After creating the SD for HSI model, a one-year prospective cohort study will be performed to validate the model with real data and evaluate the ability of the model to predict HSIs. Sports teams will be invited to take part in the validation of the model. Multiple biomechanical parameters and other personal characteristics will be collected. Then, athletes will be monitored for the occurrence of injury and their exposure to injury risk during training and games. The factors' non-linear interaction will be assessed with the statistical method of structural equation modeling and factor analysis. In this way, the factors' interactions extracted for the qualitative phase of the study (group modeling building process) will be quantitatively evaluated. Validating the model with real data will provide a computer simulation platform to test plausible strategies for preventing hamstrings strain injuries prior to implementation and optimize intervention programs.
This study is conducted to investigate the effects of low load Blood Flow Resistance exercise to improve strength and transfer in lower cervical spinal cord injury patientsCervical Spinal Cord injury patients have very less window of opportunity towards functional mode of life. In complete cervical spinal cord injuries only few muscles of upper limb are completely innervated and it is a need to gain maximum output and advantage out of that. Through conventional strength training it is possible to make him do unsupported sitting and transfer But with BFR-RE it may have a possibility to do this procedure in less time than the conventional strength training and patient will save cost of hospital stay as he may timely discharge from hospital early
The study aims to evaluate the performance of the prediction algorithm NAVOY® AKI in a Swedish adult ICU patient population versus fulfilment of KDIGO diagnostic criteria.
This study is being performed to assess the effectiveness of Altrazeal(R) Transforming Powder Dressing (TPD) in patients with partial thickness burns compared to the current standard of care (SOC) dressing. Adult men and women 18-65 years old who are hospitalized with an acute (meaning the burn injury occurred less than 36 hours prior to enrollment in the study) partial thickness burn wound, less than 20 percent of total body surface area may be considered. Subjects will be randomized in a 1:1 ratio to either SOC or TPD. Subjects will be followed for up to 28 days after enrollment.
The goal of this research is to increase physical activity among individuals with a spinal cord injury (SCI) through a customized, interactive smartphone-based health app and e-coaching using three phases: (1) leading focus groups of potential app users and clinicians to gain information regarding health apps preferences for optimal consumer use, (2) conducting a usability study of the customized app to determine the quality and implement further changes for optimization, and (3) conducting a sequential multiple assignment randomized trial (SMART) to determine the most effective adaptive intervention to improve exercise adherence. A SMART trial will be used to determine when and how to adapt dosage, timing, and delivery to increase adherence and address low-response behaviors. In Stage-I, the investigators will compare outcomes among participants using a generic, non-interactive exercise app (Group 1) to a customized, interactive app that can gain information through frequent Ecological Momentary Assessments (EMA) that will be used to modify each participant's exercise programs (Group 2). After 12 weeks, participants who are not meeting the exercise guidelines at least 50% of the time will also be asked to participate in motivational interviewing-based e-coaching either two or four times per month in addition to their originally assigned intervention (Stage-II). By completing these three phases, this project addresses deficiencies in exercise levels and compliance by implementing an individualized exercise prescription, an adaptive intervention for low responders, a way to address barriers to exercise, and a free smartphone app for broad implementation.