View clinical trials related to Wounds and Injuries.
Filter by:Gastrointestinal microbiome dysfunction has been demonstrated to be a culprit of various systemic dysfunctions in peripheries such as cardiovascular, nervous, endocrine and musculoskeletal systems. The topic of microbiome dysfunction after sepsis and trauma injury is understudied but may be responsible for persistent systemic inflammation clinically observed in sepsis and trauma survivors. Therefore, the objective of this project is to investigate the gut microbiome after acute phase of sepsis or severe trauma injury and compare it with 108 age-matched healthy population controls
Spinal cord injury (SCI) is devastating event, the individual become significant burden on their family and society SCI is impairments of sensory, motor and autonomic functions. There is no proper cure and care after SCI, no proper assessment and treatment is present in under developed countries Cross sectional study design will be used and 75 patients included in this study. The population included age 21-55 years, both gender included, teraplegic with lesion level C5-C7, Mini Mental State of Examination ≥24, patient should be medically stable. The patient excluded with history of peripheral nerve lesion as brachial pluxes impairment. For assessment of hand function tools should be used tenodesis grip strength is assessed Graded Redefined Assessment of Strength sensibility and prehension (GRASSP test), and functional hand recovery assessed by jebsen_Taylor Hand function test (JTHFT_IT), hand dynamo meter for grip strength, Action Arm reach test for hand function and spinal cord independence measure will be used. Pearson correlation will be uses to find the association between hand grip strength and functional activities of hand. The collected data will be analyzed by using SPSS 23.
In Spain, major trauma continues to be the leading cause of death among young people. However, mortality rates represent only a relatively small part of the impact of trauma injuries on the health of the population. Pain and anxiety are two of the most poorly controlled factors that have a huge impact on a patient's quality of life.The type of therapy that has been shown to be most effective in treating post-traumatic pain is one that involves different specialists, given its multicausality, care should be multidisciplinary. This investigation project consists in an observational study performed by a multidisciplinary team in our center. Major trauma patients with moderate, severe or incapacitating pain will be referred to consultations specialized in chronic pain and psychology. One year after the trauma, patients will be evaluated in terms of quality of life. The aim of this study is to determinate the impact that multidisciplinary treatment of post-traumatic pain has on the perception of quality of life in severely injured patients.
The prevalence of autonomic dysfunction and sleep disordered breathing (SDB) is increased in individuals with spinal cord injury (SCI). The loss of autonomic control results in autonomic dysreflexia (AD) and orthostatic hypotension (OH) which explains the increase in cardiovascular related mortality in these Veterans. There is no effective prophylaxis for autonomic dysfunction. The lack of prophylactic treatment for autonomic dysfunction, and no best clinical practices for SDB in SCI, are significant health concerns for Veterans with SCI. Therefore, the investigators will investigate the effectiveness of mild intermittent hypoxia (MIH) as a prophylactic for autonomic dysfunction in patients with SCI. The investigators propose that MIH targets several mechanisms associated with autonomic control and the co-morbidities associated with SDB. Specifically, exposure to MIH will promote restoration of homeostatic BP control, which would be beneficial to participation in daily activities and independence in those with SCI.
ICI's have become the first-line treatment for patients with various malignancies. Although case studies represent fulminant myocarditis, there is uncertainty in prevalence of subclinical myocardial injury induced by ICI's. In this prospective study, ICI treatment naïve patients with no significant prior cardiovascular history were enrolled. Primary outcome was the prevalence and severity of cardiac Troponin I (cTnI) at 6 weeks following ICI. Secondary outcomes were change in global longitudinal strain (GLS) and right ventricular free wall strain (RV FWS) measured by echocardiography, myocardial injury as assessed by cardiovascular magnetic resonance (CMR) and major adverse cardiac events (MACE). MACE defined as composite of cardiovascular mortality, heart failure, hemodynamically significant arrhythmias or heart block at 3 months.
The purpose of this study is to examine the acute and chronic effects of high frequency electrical current transfer (frequently called "TECAR") on pain and functional movement in individuals with a musculoskeletal injury or pain. The participants will be assigned into an experimental or a control group and outcome measures will be measured prior to, after, 24 and 48 hours following a single intervention session (Acute effects) as well as 3 and 6 months after the intervention (chronic effects).
The subscapularis is part of the rotator cuff and is release as part of a reverse shoulder replacement. The decision to repair this tendon is controversial. This research is being done to help determine if rotator cuff repair improves or hinders shoulder replacement. A worrisome but rare complication after shoulder replacement is dislocation. Rotator cuff repair may help reduce this risk. The repair may hinder some of the range of motion afterwards or could help with internal rotation strength. There is a chance that the repair doesn't matter at all. The goal of this study is to delineate outcomes after reverse shoulder arthroplasty with the respect to management of the subscapularis tendon. Further information about rotator cuff repair after reverse shoulder replacement can help define complications, potentially decrease OR time, and improve functional outcomes. A total of 148 patients will be enrolled and the duration of the study will be 5 years. All patients will be required to follow-up at 2¬-week, 6-week, 3-month, 6-month, 1-year, and 2-year post-operative marks. Any time information is collected for a study there is a small risk of breach of confidentiality. There are no monetary costs or payments associated with this study. You may or may not benefit by taking part in this study. There is no guarantee that you will receive direct benefit from your participation in this study. To be clear, participation in this study is completely voluntary.
Competitive sport increases risk for musculoskeletal injury (e.g., traumatic knee injury) and may position former athletes for early onset of chronic diseases, chronic pain, poor health-related quality of life, and disability. Quantifying function in former athletes with and without a prior injury and non-athlete controls is critical to understanding long-term health trajectories in athletes and informing potential interventional studies. One modifiable factor that may be associated with long-term health in athletes is physical activity patterns. The purpose of this study is to evaluate strength, function, physical activity, dietary patterns, and cardiometabolic health among current and former competitive athletes and in nonathlete controls to evaluate the impact of prior knee injury and sedentary behavior as two potential determinants of later poor health and reduced function.
The study's main goal is to determine the efficacy of a therapy with brain-computer interface controlled functional electrical stimulation for neurorehabilitation of spinal cord injury patients' upper limbs. For this purpose, a randomized controlled trial will be performed to compare the clinical and physiological effects of the brain-computer interface therapy with those of a sham intervention comprised by the application of functional electrical stimulation independently of brain-computer interface control.
The investigators will combine state-of-the-art quantitative imaging, on-field biomechanics, and computational analytics into the largest-of-its-kind study to assess hamstring strain injury (HSI) risk and recovery in elite collegiate football players. The study will take place over 3 years and enroll up to 560 student athletes from Division I (D1) teams: University of Wisconsin-Madison, Brigham Young University and the University of North Carolina-Chapel Hill.