Comprehensive assessment of the anterior segment in refraction corrected OCT based on multitask learning

Author:

Li KaiwenORCID,Yang GuangqianORCID,Chang Shuimiao1,Yao Jinhan1,He Chong2,Lu Fang2,Wang Xiaogang1,Wang ZhaoORCID

Affiliation:

1. Shanxi Eye Hospital Affiliated to Shanxi Medical University

2. University of Electronic Science and Technology of China

Abstract

Anterior segment diseases are among the leading causes of irreversible blindness. However, a method capable of recognizing all important anterior segment structures for clinical diagnosis is lacking. By sharing the knowledge learned from each task, we proposed a fully automated multitask deep learning method that allows for simultaneous segmentation and quantification of all major anterior segment structures, including the iris, lens, cornea, as well as implantable collamer lens (ICL) and intraocular lens (IOL), and meanwhile for landmark detection of scleral spur and iris root in anterior segment OCT (AS-OCT) images. In addition, we proposed a refraction correction method to correct for the true geometry of the anterior segment distorted by light refraction during OCT imaging. 1251 AS-OCT images from 180 patients were collected and were used to train and test the model. Experiments demonstrated that our proposed network was superior to state-of-the-art segmentation and landmark detection methods, and close agreement was achieved between manually and automatically computed clinical parameters associated with anterior chamber, pupil, iris, ICL, and IOL. Finally, as an example, we demonstrated how our proposed method can be applied to facilitate the clinical evaluation of cataract surgery.

Funder

National Natural Science Foundation of China

Shanxi Eye Hospital

Shanxi Scholarship Council of China

Sichuan Province Science and Technology Support Program

Medico-Engineering Cooperation Funds from University of Electronic Science and Technology of China

Fundamental Research Funds for the Central Universities

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Biotechnology

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