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1.
Indian J Ophthalmol ; 2022 Aug; 70(8): 2981-2985
Article | IMSEAR | ID: sea-224527

Résumé

Purpose: To describe clinical and imaging characteristics of the outer retinal folds (ORF) in cases of retinitis, retinochoroiditis, and chorioretinitis. Methods: Retrospective review of retinitis cases with presence of ORFs either at presentation or during follow up. Results: ORFs were seen adjacent to retinitis lesions in 16 eyes of 14 cases (retinitis post-febrile illness n = 10, toxoplasma retinochoroiditis n = 2, fungal chorioretinitis n = 2) either at presentation (n = 2) or during follow up (n = 14). Optical coherence tomography (OCT) appearance was outer retinal vertical stout lesions involving ellipsoid, external limiting membrane, and outer nuclear layer. All the cases had a presence of past or concurrent subretinal fluid and/or subretinal hyperreflective material when ORF was seen. ORF resolved with variable outer retinal atrophy over a mean period of 2.86 months. Conclusion: ORF is observed in cases of retinitis with subretinal fluid either at presentation or during resolution. It is not specific to any etiological disease. Differentiation of this sign from vertical outer retinal stripes in viral retinitis on OCT is important to avoid misinterpretation.

2.
Indian J Ophthalmol ; 2022 Apr; 70(4): 1270-1277
Article | IMSEAR | ID: sea-224244

Résumé

Purpose: To analyze the weekly rate of retinal vascular growth in treatment?na飗e babies with various stages of retinopathy of prematurity (ROP) and validate if this could be a predictor of treatment need. Methods: Retrospective review of medical charts and retinal images of babies with various stages of ROP. The images were enhanced using red?green image enhancement software. Using the length of the horizontal disc diameter (DD) of each eye, the vessel growth was measured from the disc margin up to the vessel tip in fixed quadrants. The rate of vessel growth was the ratio of vessel length to the number of weeks it took to reach this length. The babies were divided into treatment warranting ROP (group 1), low?risk pre?threshold (type II) ROP (group 2,), and no?ROP (group 3) for analysis. The 搉o?ROP� group acted as normal control. Group 1 was further subdivided into 1A (threshold ROP), IB (aggressive posterior ROP), 1C (hybrid ROP), and ID (high?risk pre?threshold ROP). Results: Out of 436 eyes, groups 1, 2, and 3 had 238, 108, and 90 eyes, respectively. The mean rate of vascular outgrowth along with 95% confidence interval (CI) was 0.490 [0.487,0.520], 0.612 [0.599, 0.638], and 0.719 [0.703, 0.740] DD/week, respectively, for babies with 搕reatment warranting,� 搇ow risk pre?threshold� and 搉o ROP� groups, respectively. In our estimate, more than 80% of eyes with a vessel growth rate of 0.54 DD/week or less required treatment. Conclusion: A rate of retinal vascular growth less than 0.54 DD/week can be used to determine treatment requirements in babies with ROP

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