对信仰的早期发现,即持久一致性血管造影的新机遇

K. Rohrschneider
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摘要

目的:利用光学相干断层血管成像技术评估预周(PPG)、原发性开角型青光眼(POAG)和正常眼的乳头状、乳头周围和黄斑血管,并评估血管和结构损伤的诊断能力和相关性。方法:这是一项观察性横断面研究。获取视网膜神经纤维层(RNFL)、神经节细胞复合体厚度、全像(wiVD)、盘内(idVD)、乳头周围(ppVD)、黄斑血管密度。采用方差分析、事后检验和Pearson系数。计算了接收机工作特性曲线(AUC)下面积和截止点。结果:健康眼13只,PPG眼39只,POAG眼19只。在分析的所有参数中,POAG眼的乳头状和乳头周围VD均较低。PPG组wiVD(52.37±5.04%)明显低于正常组(58.02±2.02%,p < 0.05)。AUC范围为0.62 ~ 0.90;wiVD的临界值为56%,idVD为55%,ppVD为62%。Pearson相关系数显示乳头状或乳头周围VD与RNFL厚度直接相关。结论:POAG眼血管密度明显低于正常眼,具有良好的区分能力。与PPG相比,POAG眼微血管网络减少与RNFL变薄的关系更强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neue Chancen bei der Glaukom-Früherkennung mit der optischen Kohärenztomographie-Angiographie
Purpose: To evaluate papillary, peripapillary, and macular vasculature with optical coherence tomography angiography in preperimetric (PPG), primary open-angle glaucoma (POAG), and normal eyes, and to assess diagnostic ability and associations among the vasculature and structural damage. Methods: This was an observational, cross-sectional study. Retinal nerve fiber layer (RNFL), ganglion cell complex thickness, whole-image (wiVD), inside disc (idVD), peripapillary (ppVD), and macular vessel densities were obtained. Analysis of variance, post hoc test, and Pearson coefficient were used. The areas under the receiver operating characteristic curve (AUC) and cut-offs were calculated. Results: Thirteen healthy, 39 PPG, and 19 POAG eyes were included. Papillary and peripapillary VD were lower in POAG eyes in all parameters analyzed. wiVD in PPG eyes (52.37 ± 5.04%) was significantly decreased compared to healthy eyes (58.02 ± 2.02%, p < 0.05). AUC ranged from 0.62 to 0.90; the established cut-off values were 56% for wiVD, 55% for idVD, and 62% for ppVD. Pearson's correlation coefficient showed a direct correlation between the papillary or peripapillary VD and RNFL thickness. Conclusions: Vessel densities in POAG eyes are significantly lower than in healthy eyes, and they show good discriminatory abilities. A diminished microvascular network is associated with RNFL thinning more strongly in POAG than in PPG eyes.
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