Macular and peripapillary Choroidal Vascularity Index in children with different refractive status

医学 眼科 正视 脉络膜 眼压 糖尿病性视网膜病变 折射误差 象限(腹部) 血管性 视网膜 检影 眼病 外科 视网膜 糖尿病 物理 光学 内分泌学
作者
Ziyi Qi,Xiaoxiao Liu,Shuyu Xiong,Jingjing Wang,Jun Chen,Zhuoting Zhu,Grace Brochert,Bo Zhang,Junjie Deng,Tianyu Cheng,Xiangui He,Xun Xu
出处
期刊:Eye [Springer Nature]
卷期号:38 (3): 606-613 被引量:1
标识
DOI:10.1038/s41433-023-02743-1
摘要

Abstract Objectives To characterize choroidal vascular changes in children with different refractive status. Methods A study including 5864 children aged 6–9 years was performed to investigate the choroidal vascular index (CVI) in myopic, emmetropic and hyperopic eyes. Each participant had a comprehensive ocular examination with cycloplegic autorefraction performed, axial length (AL) measured and Swept Source-Optical Coherence Tomography (SS-OCT) scans acquired. Choroidal thickness (ChT) was measured by built-in software, and CVI was calculated using a previously validated self-developed algorithm. Results The mean ChT and CVI were 275.88 ± 53.34 μm and 34.91 ± 3.83 in the macula region, and 191.96 ± 46.28 μm and 32.35 ± 4.21 in the peripapillary region. CVI was significantly lowest for myopes, followed by emmetropes and hyperopes ( P < 0.001). CVI varied between different sectors separated by the Early Treatment of Diabetic Retinopathy Study (ETDRS) grid ( P < 0.001). Macular CVI decreased horizontally from nasal to temporal quadrant with lowest in center fovea, and vertically from superior to inferior quadrants. Peripapillary CVI was highest in the nasal and lowest in the inferior sector. Multiple regression showed that spherical equivalent (SE), AL, intraocular pressure (IOP), ChT, age, and gender were significantly related to CVI ( P < 0.05). Conclusions In children, the distribution of CVI in the posterior pole is not uniform. A decreased CVI was observed from hyperopia to myopia and was associated with decreased SE, elongated AL, and choroidal thinning. Further study of changes in CVI during myopia onset and progression is required to better understand the role of the choroidal vasculature in myopia development.

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