Publications by authors named "E Denion"

Purpose: Lacking a standard technique, the surgical management of aphakia without capsular support remains to be optimized. The goal of this study is to analyze results for the Carlevale FIL-SSF intraocular lens and propose surgical recommendations.

Patients And Methods: The P1.

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Purpose: To compare the rate of posterior synechiae of the iris (PSI) occurrence after phacovitrectomy between a group with lens-in-the-bag (LIB) implantation, that is, implantation in the capsular bag, and a group with bag-in-the-lens (BIL) implantation.

Setting: CHU de Caen, Department of Ophthalmology, Caen, France.

Design: Comparative retrospective study.

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Purpose: To evaluate the different mechanisms of retinal detachment recurrence after retinectomy for rhegmatogenous retinal detachment (RD) complicated by proliferative vitreoretinopathy (PVR) and to study its outcome and prognosis.

Methods: Retrospective, multicenter study conducted between January 2009 and November 2016. Retrospective review of 56 patients with recurrent RD (RRD) after a first relaxing retinectomy.

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Purpose: The etiology of torpedo maculopathy remains unknown, but it has been recently suggested that it could represent a persistent defect in the development of the retinal pigment epithelium. As retinal pigment epithelium and photoreceptors form a functional unit, an alteration of photoreceptor distribution or function is predictable. The aim of this study is to describe multimodal imaging, including adaptive optics, in three cases of torpedo maculopathy, and discuss its pathogenesis.

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Sclerotic scatter involves the scattering of incident light by the limbal sclera followed by entry of part of the scattered light into the cornea, where some of the light travels through total internal reflection to the other side, where it scatters a second time in the limbal sclera. It is then visible in the form of a limbal scleral arc of light. Sclerotic scatter has been used for decades to spot and delineate corneal opacities, which disrupt and scatter the light travelling through total internal reflection.

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