Deep learning for detecting retinal detachment and discerning macular status using ultra-widefield fundus images

Author:

Li Zhongwen,Guo Chong,Nie Danyao,Lin Duoru,Zhu Yi,Chen ChuanORCID,Wu Xiaohang,Xu Fabao,Jin Chenjin,Zhang Xiayin,Xiao Hui,Zhang KaiORCID,Zhao Lanqin,Yan Pisong,Lai Weiyi,Li Jianyin,Feng Weibo,Li Yonghao,Wei Ting Daniel Shu,Lin HaotianORCID

Abstract

AbstractRetinal detachment can lead to severe visual loss if not treated timely. The early diagnosis of retinal detachment can improve the rate of successful reattachment and the visual results, especially before macular involvement. Manual retinal detachment screening is time-consuming and labour-intensive, which is difficult for large-scale clinical applications. In this study, we developed a cascaded deep learning system based on the ultra-widefield fundus images for automated retinal detachment detection and macula-on/off retinal detachment discerning. The performance of this system is reliable and comparable to an experienced ophthalmologist. In addition, this system can automatically provide guidance to patients regarding appropriate preoperative posturing to reduce retinal detachment progression and the urgency of retinal detachment repair. The implementation of this system on a global scale may drastically reduce the extent of vision impairment resulting from retinal detachment by providing timely identification and referral.

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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