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Demodicosis clinical trials

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NCT ID: NCT04204954 Completed - Cataract Clinical Trials

Evaluation of Treatment Option for Demodicosis in Patients Undergoing Cataract Surgery

Start date: May 6, 2019
Phase: Phase 2/Phase 3
Study type: Interventional

Demodex blepharitis is a prevalent cause of comorbid infection among individuals undergoing cataract surgery. Several complications may arise in the postsurgical period from Staphylococcus or Streptococcus co-infections, as Demodex is a vector for these pathogens. Hence, prophylactic treatments before cataract surgery may lead to a reduction in complication rates. Since Demodex infestation and cataract surgery are two prevalent coexisting conditions in the general population, this study aims to test the effect of four combined treatments to eradicate or improve the Demodex infestation index before surgery. The investigators are conducting a single-blinded randomized trial of four therapies in participants undergoing cataract surgery. All participants will or are receiving daily eyelid cleansing bid and topical 0.3% ciprofloxacin q4h for three days added to the allocated treatment arm. Our four intervention groups are: [1] Blephaclean eye scrubs; [2] 50% dilution baby shampoo; [3] tea tree oil shampoo; [4]: topical 0.3% ciprofloxacin alone. To assess treatment efficacy, the investigators will perform eyelash hair epilation pre and postoperatively. The primary outcome is a change in the mean Demodex spp. infestation index. Also, a change in the crude number of Demodex (egg, larvae, nymph, or adult-form) spp. in eyelashes after one-week of therapy.

NCT ID: NCT03461978 Enrolling by invitation - Cataract Clinical Trials

Ultrahigh-resolution Optical Coherence Tomography Imaging of the Anterior Eye Segment Structures

Start date: July 12, 2017
Phase: N/A
Study type: Interventional

The development of optical coherence tomography (OCT) and its application for in vivo imaging has opened entirely new opportunities in ophthalmology. The technology allows for both noninvasive visualization of the morphology and measurement of functional parameters within ocular tissues to a depth of a few millimetres even in nontransparent media. Until now the resolution of commercially available OCT systems is, however, much lower than that provided by light microscopy. Recently, an ultrahigh-resolution OCT system was developed by our group providing resolutions of 1.7 and 17 µm in axial and lateral direction, respectively. This axial resolution is about four times better than that provided by standard OCT systems. It allows to perform in vivo imaging with a resolution close to biopsy of tissue and to visualize structures of the anterior eye segment with a remarkable richness of detail. The prototype was applied for in vivo imaging of the cornea including the precorneal tear film. The goal of the planned pilot study is to apply this innovative imaging modality for visualization of the ultrastructure of the different parts of the anterior eye segment structures in diseased subjects, as well as in patients who underwent minimally invasive glaucoma surgery (MIGS). The obtained in vivo cross sectional images and three-dimensional data sets are hoped for contributing to the knowledge about the anatomy and physiology of the corresponding tissues. This could allow for a better interpretation of clinical features and findings obtained in slit lamp examination.