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Optical coherence tomography 3: Delineation of the outer neural retinal boundary and its influence on retinal thickness measurements

机译:光学相干断层扫描3:视网膜神经外边界的描绘及其对视网膜厚度测量的影响

摘要

PURPOSE. To investigate the automatic delineation of the outer limits of the macular neural retina, by using the optical coherence tomography (OCT)-3 built-in software, and to determine its influence in assessing retinal thickness in the normal macula.METHODS. Retrospective analysis of the OCT3 data at a tertiary-care referral center was performed to study the automatic delineation of the outer neural retina boundary generated by the OCT built-in software. in parallel, a cross-sectional study was designed to compare retinal thickness measurements obtained at specific macular regions of nine normal eyes by the automatic measurement tool with those obtained using a manual-caliper-assisted technique.RESULTS. OCT data from 121 eyes were evaluated. Two parallel, linear highly reflective layers (HRL) were visible at the level of the outer retinal boundary in normal macular regions. Disappearance of the inner and maintenance of the outer HRL was noted in the presence of eye conditions affecting the external retinal layers. the automated software delineation for the outer retinal border was primarily guided by the presence of the inner HRL, whereas the correlation of the OCT findings with the expected clinical and angiographic features on eyes presenting specific macular conditions pointed toward a deeper retinal pigment epithelium-retina interface occurring at the level of the outer HRL. There was a statistically significant difference between the retinal thickness in specific normal macular regions obtained by the automatic measurement tool and the caliper-assisted technique in which the outer retinal border delineation was based on the outer HRL (P = 0.008, Wilcoxon signed rank test).CONCLUSIONS. Incorrect delineation of the outer neural retina boundary is occurring with the automated retinal thickness measurement tool of the OCT3 software. At specific regions of the normal macula, retinal thicknesses were significantly underestimated due to such misalignment.
机译:目的。通过使用光学相干断层扫描(OCT)-3内置软件来研究黄斑神经视网膜外部界限的自动描绘,并确定其在评估正常黄斑视网膜厚度中的影响。在三级转诊中心对OCT3数据进行了回顾性分析,以研究由OCT内置软件生成的神经外视网膜边界的自动描绘。同时,设计了一项横断面研究,以比较通过自动测量工具在九只正常眼睛的特定黄斑区域获得的视网膜厚度测量结果与使用手动卡尺辅助技术获得的视网膜厚度测量结果进行比较。评价了来自121只眼睛的OCT数据。在正常黄斑区域中,在视网膜外边界的水平上可以看到两个平行的线性高反射层(HRL)。在存在影响外部视网膜层的眼部疾病的情况下,注意到内部HRL的消失和外部HRL的维持。视网膜外边界的自动化软件描述主要是由内部HRL指导的,而OCT发现与表现出特定黄斑状况的眼睛的预期临床和血管造影特征之间的相关性则指向更深的视网膜色素上皮-视网膜界面发生在外部HRL的水平。通过自动测量工具获得的特定正常黄斑区域的视网膜厚度与以外部HRL为基础进行视网膜外部边界描绘的卡尺辅助技术之间存在统计学上的显着差异(P = 0.008,Wilcoxon符号秩检验)结论。使用OCT3软件的自动视网膜厚度测量工具,会出现神经外视网膜边界的错误描绘。在正常黄斑的特定区域,由于这种未对准,视网膜厚度被大大低估了。

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