View clinical trials related to Edema.
Filter by:Cerebral edema is seen heterogenous group of neurological disease states that mainly fall under the categories of metabolic, infectious, neoplasia, cerebrovascular, and traumatic brain injury disease states. Regardless of the driving force, cerebral edema is defined as the accumulation of fluid in the brain's intracellular and extracellular spaces. This occurs secondary to alterations in the complex interplay between four distinct fluid compartments within the cranium. In any human cranium; fluid is contained in the blood, the cerebrospinal fluid, interstitial fluid of the brain parenchyma, and the intracellular fluid of the neurons and glia. Fluid movement occurs normally between these compartments and depends on specific concentrations of solutes (such as sodium) and water. In brain-injured states, the normal regulation of this process is disturbed and cerebral edema can develop. Cerebral edema leads to increased intracranial pressure and mortality secondary to brain tissue compression, given the confines of the fixed-volume cranium. Additionally, secondary neuronal dysfunction or death can occur at the cellular level secondary to the disruption of ion gradients that control metabolism and function. While studies utilizing bolus dosing of hyperosmolar therapy to target signs or symptoms of increased intracranial pressure secondary to cerebral edema are numerous, there is a paucity of studies relating to continuous infusion of hyperosmolar therapy for targeted sustained hypernatremia for the prevention and treatment of cerebral edema. The investigators hypothesize that induced, sustained hypernatremia following traumatic brain injury will decrease the rate of cerebral edema formation and improve patient outcomes.
The aim of this study is to test the effect of Hyperbaric Oxygen Therapy) HBOT (100% oxygen; 2.0 ATA; 90 minute total exposure) and compare against a hyperbaric sham treatment (HBST) (patient's breathing room air; 2.0 ATA; 90 minute exposure) in reducing edema and ecchymosis. HBOT will be applied as a single pre-operative and a single post-operative treatment for patients undergoing eyelid surgery. Briefly, patients will be exposed to HBOT 2-4 hours prior to undergoing surgery, 2-4 hours post-surgery and healing will be assessed at day 3, 10, 21, 30 & 90 days after surgery. Edema and ecchymosis will be assessed in a time series to determine the extent that HBOT reduces these clinical signs. The primary null hypothesis to test will be that no differences in scores will exist between treatment and control at day 3, 10 & 21 post-surgery. A secondary null hypothesis to test is the time required to change a score will be no different between the two groups. HBOT=hyperbaric oxygen therapy; HBST=hyperbaric sham treatment
The main aim of the present study was to investigate the effect of preemptive dexamethasone and methylprednisolone to prevent pain, swelling and limitation in mouth opening following third molar extraction.
The purpose of this study is to test the safety and feasibility of the Prima-Temp Thermometer Patch in determining baseline temperatures of research subjects in a hospital intensive care unit (ICU). Primary Objective: Assess safety of the Prima-Temp temperature patch with nursing staff skin site assessments. Secondary Objective: Establish individual subject baseline temperature using intermittent temperature measurements (every 5 minutes) with the Prima-Temp thermometer patch and wireless transmission of the data to a receiver box and HIPAA compliant, centrally located personal computer (PC) and compare research subject's baseline temperature with temperatures taken in the ICU in the normal course of care.
Volumetry is essential for the diagnosis and follow-up of patients with limb edema. The objective of this project is the validation of real-time reconstruction and calculation of limb volume using a 3D laser scanner. Water - displacement volumetry (water-filled boot) is the reference method with known accuracy and reproducibility, but is not commonly used in clinical practice because it is cumbersome, difficult, and time-consuming. The most commonly used method remains segmental limb perimetry with a tape measure, followed by volume calculation using the truncated cones formula, thus excluding de facts extremities (hands and feet) which can neither be likened to cones nor easily measured. Quantification limb volume and volume changes is essential for the diagnosis and follow-up of patients with chronic venous insufficiency or lymphedema, two very common pathological conditions. It is mandatory for the evaluation of therapeutic approaches. The present study will use an innovative technology of volume acquisition by freehand laser scanning with a hand-held camera with Quantification limb volume and volume changes is essential for the diagnosis and follow-up of patients with chronic venous insufficiency or lymphedema, two very common pathological conditions. It is mandatory for the evaluation of therapeutic approaches. The present study will use an innovative technology of volume acquisition by freehand laser scanning with a hand-held camera with real-time 3D reconstruction. Its advantages are non-contact, accurate and detailed quantification of edema, including extremities, allowing to assess the magnitude and topography of physiological, pathological, or treatment - induced volume changes. This approach will ultimately provide data that will used for designing personalized limb compression ortheses.
This clinical trial is designed to investigate differences in terms of efficacy (mean change in best corrected visual acuity obtained after 12 months of treatment) and safety, of 3 therapeutic estrategies for non-tractional macular edema in diabetic patients: a) laser alone; b) laser plus tiramcinolon; and c) laser plus bevacizumab.
This study will evaluate the relationship between time since onset of macular oedema symptoms and the achievement of vision gain in patients prescribed OZURDEX®. All care and diagnostic procedures provided are at the discretion of the participating physicians according to their clinical judgment and local standard of medical care.
The purpose of this study is to test the efficacy of an 0.7 mg intravitreal dexamethasone implant (Ozurdex®) on macular leakage and visual acuity for patients with recalcitrant diabetic macular edema.
Mechanisms underlying high-altitude intolerance as well as exercise performance limitation in hypoxia still remain to be fully understood. Recent data suggest that sleep disturbances on one hand and cerebral perturbations on teh other hand may be key mechanisms. The investigators evaluated 12 healthy subjects at sea level and at 4400 m of altitude for 7 days in order to better describe sleep and cerebral responses. The investigators hypothesized that sleep and cerebral disturbances play a critical role for the developement of acute mountain sickness and for exercise performance limitation during acute high-altitude exposure.
- To assess the safety of repeated iCo-007 intravitreal injections in treatment of subjects with diabetic macular edema as monotherapy and in combination with ranibizumab or laser photocoagulation - To assess the change in visual acuity and retinal thickness on OCT from baseline to month 8 and month 12