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建立健康儿童黄斑光学相干断层扫描参数的正常眼间对称范围。

Establishing normal interocular symmetry range for macular optical coherence tomography parameters in healthy children.

作者信息

Zareei Athar, Razeghinejad Reza, Talebnejad Mohammad Reza, Khalili Mohammad Reza, Masoumpour Masoumeh Sadat, Shayan Zahra, Mahdaviazad Hamideh, Keshtkar Maryam, Mohammadi Elham, Tajbakhsh Zahra, Nowroozzadeh M Hossein

机构信息

Poostchi Ophthalmology Research Center, Department of Ophthalmology, School of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran.

Glaucoma service, Wills Eye Hospital, Philadelphia, PA, USA.

出版信息

Eye (Lond). 2025 Feb;39(3):563-569. doi: 10.1038/s41433-024-03591-3. Epub 2025 Jan 10.

Abstract

OBJECTIVE

The study aimed to evaluate the interocular symmetry of macular sublayer thickness among healthy children aged 6-12 years.

METHODS

The Shiraz Pediatric Eye Study included 500 randomly selected children who underwent SD-OCT of the macula and optical biometry using the IOLMaster-500. Exclusion criteria involved ocular abnormalities or axial lengths outside the 21.5-26.5 mm range. Software recorded total retinal thickness and sublayer thickness within each ETDRS subfield.

RESULTS

The study included 862 eyes from 431 healthy children, with 254 girls (59%). The anticipated variation in total retinal thickness between eyes was below 13 µm in the fovea and under 7 µm in the inner or outer ring for 95% of the population. For nerve fiber layer and inner plexiform layer, the expected variation ranged from 2 to 4 µm, and for the ganglion-cell layer, it ranged from 2.5 to 5 µm. Intraclass correlation coefficient (ICC) rankings for retinal topography were highest in the outer ring, followed by the inner ring and fovea. The highest ICC for individual layers was found in overall retinal thickness, followed by inner retinal layers, outer-nuclear layer, inner plexiform layer, and inner nuclear layer.

CONCLUSIONS

The study establishes a reliable reference range for interocular variances in macular sublayers, aiding clinical decision-making. The outer ring (3-6 mm) is most dependable for analysing most sublayers, while the inner ring is most suitable for examining the ganglion-cell layer.

摘要

目的

本研究旨在评估6至12岁健康儿童黄斑各亚层厚度的双眼对称性。

方法

设拉子儿童眼病研究纳入了500名随机选择的儿童,他们接受了黄斑区的光谱域光学相干断层扫描(SD-OCT)以及使用IOLMaster-500进行的光学生物测量。排除标准包括眼部异常或眼轴长度不在21.5 - 26.5毫米范围内。软件记录了每个早期糖尿病性视网膜病变研究(ETDRS)子区域内的视网膜总厚度和亚层厚度。

结果

该研究纳入了来自431名健康儿童的862只眼睛,其中女孩254名(59%)。95%的人群中,双眼之间视网膜总厚度在黄斑中心凹处的预期差异低于13微米,在内环或外环处低于7微米。对于神经纤维层和内网状层,预期差异范围为2至4微米,对于神经节细胞层,差异范围为2.5至5微米。视网膜地形图的组内相关系数(ICC)排名在外环最高,其次是内环和黄斑中心凹。各层中ICC最高的是视网膜总厚度,其次是视网膜内层、外核层、内网状层和内核层。

结论

本研究建立了黄斑各亚层双眼差异的可靠参考范围,有助于临床决策。外环(3 - 6毫米)对于分析大多数亚层最可靠,而内环最适合检查神经节细胞层。

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Retinal asymmetry in children measured with optical coherence tomography.光学相干断层扫描测量儿童的视网膜不对称性。
Am J Ophthalmol. 2013 Dec;156(6):1238-1243.e1. doi: 10.1016/j.ajo.2013.07.021. Epub 2013 Sep 25.
10
Association between ganglion cell complex and axial length.神经节细胞复合体与眼轴长度的关系。
Jpn J Ophthalmol. 2013 Sep;57(5):429-34. doi: 10.1007/s10384-013-0241-0. Epub 2013 Jun 8.

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