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Retina Arter Tıkanıklıkları ve Tedavisi...
Santral Retinal Ven Tıkanıklığı Güncel Tedavisi...
Central Retinal Artery Occlusion As the Cause of Unilateral Concentric Narrowing of Visual Field and Presence of Cilioretinal Artery...
Bilateral Optic Disc Drusen
Vascular Endothelial Growth Factor and Anti VEGF Agents...
Central Retinal Artery Occlusion As the Cause of Unilateral Concentric Narrowing of Visual Field and Presence of Cilioretinal Artery...
Retina Arter Tıkanıklıkları ve Tedavisi...
Morning Glory Syndrome Associated with Retinochoroidal Coloboma...
Santral Retinal Ven Tıkanıklığı Güncel Tedavisi...
Bilateral Optic Disc Drusen
PureSee Kesintisiz Yüksek Kalitede Görüş
Retina-Vitreous 2005 , Vol 13 , Num 1
Turkish Abstract Abstract Article PDF Similar Articles
Optical Coherence Tomography in Active Choroidal Neovascularization Secondary to Pathologic Myopia
Hakan ÖZDEMİR1, Murat KARAÇORLU1, Serra KARAÇORLU1
İstanbul Retina Enstitüsü Ltd., İstanbul Purpose: To determine morphologic changes in the eye with subfoveal choroidal neovascularization (CNV) secondary to pathologic myopia using optical coherence tomography (OCT).

Materials and Methods: OCT was performed in 15 eyes of 15 patients with active subfoveal CNV secondary to pathologic myopia. The characteristics of OCT findings were identified.

Results: In all eyes, OCT demonstrated CNV as a highly reflective elevation above the retina pigment epithelium. No eye had OCT findings of cystoid macular edema and pigment epithelium detachment. In one eye (6.6%) intraretinal fluid and in the other eye (6.6%) subretinal fluid accumulation were detected.

Conclusion: OCT is a valuable tool in the determination of active phase of myopic CNV. In particular, the absence of intraretinal fluid and subretinal fluid in most of the eyes are specific to active myopic CNV. These OCT findings also suggest the low activity of CNV in high myopia, which is consistent with angiographic findings. Keywords : Pathologic myopia, choroidal neovascularization, optical coherence tomography.

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