View clinical trials related to Edema.
Filter by:Cardiogenic pulmonary edema (CPE) is a common medical emergency and noninvasive ventilation (NIV) in addition to conventional medical treatment might be beneficial for patients with CPE.
This study will assess the efficacy and safety of ranibizumab (intravitreal injections) versus laser treatment in patients with visual impairment due to diabetic macular edema.
The purpose of this study is to determine the efficacy of ocular topic antiinflammatory therapy (sodic nepafenac at 0.1% or ketorolac at 0.5%) to treat center point thickness secondary to selective photocoagulation in diabetics with clinically significant macular edema.
Cystoids macular edema (CME) is one of the most common causes of low vision due to uveitis. The treatment for reducing the intra-ocular inflammation can decrease the macular edema. In some patients, CME persists even after inflammation control, and additional treatment is needed for better vision. Oral steroid, periocular and intravitreal Triamcinolone are the principles in treatment, but some complications like cataracts and increased ocular pressure have been seen. Diclophenac is a non-steroid anti-inflammatory drug that improves the vision and decreases the macular thickness by slowing down the prostaglandin E2 (PGE2) ending in vascular endothelial growth factor (VEGF) inhibition. In this study, the investigators are going to compare the therapeutic affect of intravitreal Diclophenac and Triamcinolone in persistent uveitic cystoids macular edema. Since diclophenac is a cheap and accessible drug in all curative centers it could be applied instead of Triamcinolone.
The goal of the study is to evaluate the safety and tolerability of 4 different doses of iCo-007 Intravitreal Injection in patients with diffuse diabetic macular edema.
The purpose of this study is to identify the severity level distribution at the moment of diagnosis, in diabetic patients with macular edema from a Mexico City sample, and to identify the rate with severe macular edema that needed immediate treatment.
Diabetic maculopathy is the leading cause of visual impairment in the working-age population in developed countries. Diabetic macular edema can cause impaired visual acuity and so far is treated by laser, vitreous surgery, and intravitreal cortisone application. Still 50% of the cases do not respond to the treatment. Recently intraocular anti-VEGF-treatment with ranibizumab (Lucentis®, Novartis) in diabetic macular edema has proven efficacy to last over a period of 3 to 6 months. Still, the optimal dosage for those intravitreal injections still has to be found, because frequent injections are necessary. The measurement of visual acuity is inadequate to quantify in detail the visual impairment. Using the newest technology of a high-definition optical coherence tomography (Cirrus-OCT, Carl Zeiss Meditec Inc.) to determine the retinal thickness, and a miroperimetry (MP-1, Nidek Technologies) to determine retinal sensitivity, we hope to find the optimal dosage of intravitreal anti-VEGF treatment in diabetic macular edema. Study objective: To determine the dose response of 0.5mg and 1.0mg ranibizumab (Lucentis®, Novartis Pharma) intravitreal injection in subjects with resistant diabetic macular edema and evaluate safety and tolerability.
The purpose of this study is to compare a single intravitreal injection of 4.0 mg of triamcinolone acetonide and 1.25 mg of bevacizumab for the treatment of diabetic macular edema.
This is a pilot study to investigate the safety and efficacy of intravitreally administered ranibizumab (Lucentis) compared to steroid injection for the treatment of macular edema due to chronic non-infectious uveitis. There is currently no FDA-approved therapy for this condition, however intravitreal injection of corticosteroids, in conjunction with oral steroids and/or immunomodulatory drug agents, has become the mainstay of therapy. Ranibizumab is a recombinant monoclonal antibody antigen-binding fragment that neutralizes the active forms of vascular endothelial growth factor (VEGF), which is believed to contribute to the etiology of inflammation and neovascularization. Ranibizumab is FDA-approved for the treatment of neovascular age-related macular degeneration.
Summary of Study Rationale Near-infrared light (NIR) via light-emitting diodes (LED) treatment promotes retinal healing and improve visual function following high intensity laser retinal injury by augmenting cellular energy metabolism, enhances mitochondrial function, increases cytochrome C oxidase activity, stimulates antioxidant protective pathways, and promotes cell survival. LED directly benefits injured neurons in the retina, the lateral geniculate nucleus, and the visual cortex, where perception occurs. From a public health perspective, a Light-Emitting Diode (LED) Array study is important to conduct because it has been approved as a non-significant risk (NSR) device for treatment of eye disorders, it has a low cost of treatment, and it may serve as an effective, non-invasive alternative or adjunctive treatment to laser photocoagulation, the current standard of care for DME. Study Objectives and Hypotheses 1. To determine the effects of short term (3 month) near-infrared light (NIR) therapy on anatomic and functional abnormalities of diabetic macular edema as assessed by visual acuity, optical coherence tomography, multifocal electroretinography (mERG) and fundus bimicroscopy. 2. To assess safety of short term near-infrared light therapy in eyes with diabetic macular edema.