海德堡视网膜断层扫描随访青光眼视盘改变的图像分析

来源 :世界核心医学期刊文摘.眼科学分册 | 被引量 : 0次 | 上传用户:theone2005
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Background:The Heidelberg Retina Tomograph(HRT)is a commercially available instrument for the detection of glaucomatous damage by analysis of optic nerve head topography.The main purpose of the study was to investigate the ability of HRT to detect changes in optic disc topography indicating progression of optic neuropathy in eyes with open-angle glaucoma or,in eyes with ocular hypertension,conversion to open-angle glaucoma.Methods:Fifty-nine subjects(34 with ocular hypertension,25 with glaucoma)from the glaucoma service at Sahlgrenska University Hospital were included in this study.One eye of each patient was selected.All participants underwent thorough clinical examination,including HRT,high-pass resolution perimetry(HRP),and optic disk photography.After a mean follow-up time of 50 months,patients were re-examined.Based on analyses of optic disc photographs and HRP,eyes were classified into one of two groups:progressive or stable.Methods:The differences between baseline and follow-up HRT parameters in the two groups were analysed.The topographic HRT change images were also compared after digital image processing.A pixel ratio was calculated defined as the ratio between the area of pixels representing deepening of the disc surface and the total disc area.Receiver operating characteristic(ROC)curves for HRT parameters and pixel ratio were compared.Results:In the group judged to have progressive optic neuropathy,a statistically significant change between baseline and follow-up examination was found for the following HRT parameters:cup shape measurement,classification index,the third moment in contour,cup/disc ratio,cup area,rim area,and area below reference.In the stable group no HRT parameters had changed significantly.A well-defined distinction between the two groups was found by comparing digitally processed HRT change images.The area under the ROC curve was larger for pixel ratio than for any of the HRT parameters.Conclusions:The HRT is a useful tool for long-term follow-up of glaucomatous optic neuropathy.Digital image processing of HRT change images could facilitate the detection of progressive change. Background: The Heidelberg Retina Tomograph (HRT) is a commercially available instrument for the detection of glaucomatous damage by analysis of optic nerve head topography. The main purpose of the study was to investigate the ability of HRT to detect changes in optic disc topography indicating progression of optic neuropathy in eyes with open-angle glaucoma or, in eyes with ocular hypertension, conversion to open-angle glaucoma. Methods: Fifty-nine subjects (34 with ocular hypertension, 25 with glaucoma) from the glaucoma service at Sahlgrenska University Hospital were included in this study. One eye of each patient was selected. All participants underwent thorough clinical examination, including HRT, high-pass resolution perimetry (HRP), and optic disk photography. After a mean follow-up time of 50 months, patients were re-examined. Based on analyzes of optic disc photographs and HRP, eyes were classified into one of two groups: progressive or stable. Methods: The differences between baseline and follow-up HRT parameters in the two groups were analyzed. The topographic HRT change images were also compared after digital image processing. A pixel ratio was calculated defined as the ratio between the area of ​​pixels representing deepening of the disc surface and the total disc area. Receiver operating characteristic (ROC) curves for HRT parameters and pixel ratio were compared. Results: In the group judged to have progressive optic neuropathy, a significant significant change between baseline and follow-up examination was found for the following HRT parameters: cup shape measurement, classification index, the third moment in contour, cup / disc ratio, cup area, rim area, and area below reference. the stable group no HRT parameters had changed significantly. A well-defined distinction between the two groups was found by comparing digitally processed HRT change images. The area under the ROC curve was larger for pixel ratio than for any of the HRT parameters. Conclusions: The HRT is a useful tool for long-termfollow-up of glaucomatous optic neuropathy. Digital image processing of HRT change images could facilitate the detection of progressive change.
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