Optic nerve head analysis of superior segmental optic hypoplasia using Heidelberg retina tomography

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Optic nerve head analysis of superior segmental optic hypoplasia using Heidelberg retina tomography

PURPOSE To evaluate the optic disc characteristics of eyes with superior segmental optic hypoplasia (SSOH) using the Heidelberg retina tomograph (HRT). PATIENTS AND METHODS Thirteen eyes of 13 Japanese patients with SSOH were studied with the HRT (software version: 3.0). The group included six males and seven females, with a mean age of 34.7 years. Six optic disc parameters in the six sectors...

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CLINICAL SCIENCE Optical coherence tomography of superior segmental optic hypoplasia

Aim: To describe optical coherence tomography (OCT) images of superior segmental optic hypoplasia (SSOH). Methods: Five patients (two men and three women, ages 10–45 years) presented with ophthalmoscopic features and visual field defects of SSOH. All affected eyes had good visual acuity and inferior altitudinal or inferonasal visual field loss. The mothers of three patients had type 1 diabetes ...

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Optical coherence tomography of superior segmental optic hypoplasia.

AIM To describe optical coherence tomography (OCT) images of superior segmental optic hypoplasia (SSOH). METHODS Five patients (two men and three women, ages 10-45 years) presented with ophthalmoscopic features and visual field defects of SSOH. All affected eyes had good visual acuity and inferior altitudinal or inferonasal visual field loss. The mothers of three patients had type 1 diabetes ...

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Heidelberg Retina Tomography Analysis in Optic Disks with Anatomic Particularities

Due to its objectivity, reproducibility and predictive value confirmed by many large-scale statistical clinical studies, Heidelberg Retina Tomography has become one of the most used computerized image analysis of the optic disc in glaucoma. It has been signaled, though, that the diagnostic value of Moorfieds Regression Analyses and Glaucoma Probability Score decreases when analyzing optic discs...

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Comparison between Optic Nerve Head Topography – Using the Heidelberg Retina Tomograph – and Resolution Visual Fields

Early diagnosis is probably essential for the outcome of glaucoma treatment, and a number of methods for detecting glaucomatous damage have been developed and evaluated1. Resolution perimetry (HRP)2,3, measuring spatial resolution, is one of the methods with the highest sensitivity1. It has been found to be reliable and useful in the management and follow-up of glaucoma4-10. Another way of dete...

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ژورنال

عنوان ژورنال: Clinical Ophthalmology

سال: 2010

ISSN: 1177-5483

DOI: 10.2147/opth.s13864