Choroidal vascular changes in early-stage myopic maculopathy from deep learning choroidal analysis: a hospital-based SS-OCT study

The objective of this study is to illustrate the changes in the choroidal vasculature in individuals with diffuse chorioretinal atrophy (DCA, early-stage myopic maculopathy) and investigate the association between them. This study included 1418 highly myopic eyes from 720 participants aged 18 - 60 y...

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Veröffentlicht in:Eye and vision (Novato, Calif.) Calif.), 2024-08, Vol.11 (1), p.32-13, Article 32
Hauptverfasser: Li, Yan, Li, Haoer, Rui, Xue, Wang, Yuan, Zhu, Shenju, Huang, Mengge, Liang, Jianqiang, Zhu, Yangfeifei, Shi, Jiajia, Yu, Le, Huang, Shenghai, Yang, Chun, Dong, Mengmeng, Gao, Hebei, Shen, Meixiao, Wu, Hao, Zhou, Xiangtian
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Sprache:eng
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Zusammenfassung:The objective of this study is to illustrate the changes in the choroidal vasculature in individuals with diffuse chorioretinal atrophy (DCA, early-stage myopic maculopathy) and investigate the association between them. This study included 1418 highly myopic eyes from 720 participants aged 18 - 60 years from the Wenzhou High Myopia Cohort Study. These participants underwent comprehensive ophthalmic assessments. Myopic maculopathy classification followed the Meta-PM system, with pathological myopia defined as myopic maculopathy of DCA or severer. Eyes with myopic maculopathy categorized as no macular lesions (C0), tessellated fundus (C1), and DCA (C2) were enrolled in the analysis. Choroidal images were obtained from swept-source optical coherence tomography (SS-OCT), and the images were processed with a deep learning-based automatic segmentation algorithm and the Niblack auto-local threshold algorithm. DCA was detected in 247 eyes (17.4%). In comparison to eyes with C0, those with C2 exhibited significant reductions in choroidal thickness (ChT), luminal area (LA), and stromal area (SA) across all evaluated regions (all P 
ISSN:2326-0254
2326-0254
DOI:10.1186/s40662-024-00398-x