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On improving the use of OCT imaging for detecting glaucomatous damage

机译:改善OCT成像的使用以检测青光眼损伤

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Aims To describe two approaches for improving the detection of glaucomatous damage seen with optical coherence tomography (OCT). Methods The two approaches described were: one, a visual analysis of the high-quality OCT circle scans and two, a comparison of local visual field sensitivity loss to local OCT retinal ganglion cell plus inner plexiform (RGC+) and retinal nerve fibre layer (RNFL) thinning. OCT images were obtained from glaucoma patients and suspects using a spectral domain OCT machine and commercially available scanning protocols. A high-quality peripapillary circle scan (average of 50), a three-dimensional (3D) scan of the optic disc, and a 3D scan of the macula were obtained. RGC+ and RNFL thickness and probability plots were generated from the 3D scans. Results A close visual analysis of a high-quality circle scan can help avoid both false positive and false negative errors. Similarly, to avoid these errors, the location of abnormal visual field points should be compared to regions of abnormal RGC+ and RNFL thickness. Conclusions To improve the sensitivity and specificity of OCT imaging, high-quality images should be visually scrutinised and topographical information from visual fields and OCT scans combined.
机译:旨在描述两种方法,用于改善用光学相干断层扫描(OCT)看到所见的青光眼损伤。方法方法描述了这两种方法是:一,对高质量的OCT圈扫描的视觉分析,局部视野敏感性损失与局部八聚旋神经节细胞加上内部丛状(RGC +)和视网膜神经纤维层(RNFL )变薄。 OCT图像是从青光眼患者获得的,使用频谱域OCT机器和可商购的扫描方案获得。获得高质量的围际圆形扫描(平均为50),光盘的三维(3D)扫描以及黄斑的3D扫描。 RGC +和RNFL厚度和概率图是从3D扫描产生的。结果对高质量圆扫描的紧密视觉分析可以帮助避免误报和假阴性误差。类似地,为了避免这些错误,应将异常视场点的位置与异常RGC +和RNFL厚度的区域进行比较。结论改善了OCT成像的敏感性和特异性,高质量的图像应在视觉上仔细审查和来自视觉领域的地形信息和OCT扫描组合。

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