Objective quantification of lens nuclear opacities using swept-source anterior segment optical coherence tomography

Background/aimsThe primary objective is to quantify the lens nuclear opacity using swept-source anterior segment optical coherence tomography (SS-ASOCT) and to evaluate its correlations with Lens Opacities Classification System III (LOCS-III) system and surgical parameters. The secondary objective i...

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Veröffentlicht in:British journal of ophthalmology 2022-06, Vol.106 (6), p.790-794
Hauptverfasser: Wang, Wei, Zhang, Jiaqing, Gu, Xiaoxun, Ruan, Xiaoting, Chen, Xiaoyun, Tan, Xuhua, Jin, Guangming, Wang, Lanhua, He, Mingguang, Congdon, Nathan, Liu, Zhenzhen, Luo, Lixia, Liu, Yizhi
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Sprache:eng
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Zusammenfassung:Background/aimsThe primary objective is to quantify the lens nuclear opacity using swept-source anterior segment optical coherence tomography (SS-ASOCT) and to evaluate its correlations with Lens Opacities Classification System III (LOCS-III) system and surgical parameters. The secondary objective is to assess the diagnostic performance for hard nuclear cataract.MethodsThis cross-sectional study included 1222 patients eligible for cataract surgery (1222 eyes). The latest SS-ASOCT (CASIA-2) was used to obtain high-resolution lens images, and the average nuclear density (AND) and maximum nuclear density (MND) were measured by a custom ImageJ software. Spearman’s correlations analysis was used to assess associations of AND/MND with LOCS-III nuclear scores, visual acuity and surgical parameters. The subjects were then split randomly (9:1) into the training dataset and validating dataset. Receiver operating characteristic curves and calibration curves were constructed for the classification on hard nuclear cataract.ResultsThe AND and MND from SS-ASOCT images were significantly correlated with nuclear colour scores (AND: r=0.716; MND: r=0.660; p
ISSN:0007-1161
1468-2079
DOI:10.1136/bjophthalmol-2020-318334