Department of Ophthalmology, Ewha Womans University College of Medicine, Ewha Womans University Seoul Hospital, Seoul, Korea.
Department of Machine Learning and Computer Vision, Sungkyunkwan University, Suwon, Korea.
Sci Rep. 2023 May 17;13(1):8040. doi: 10.1038/s41598-023-34794-5.
Myopia is one of the risk factors for glaucoma, making accurate diagnosis of glaucoma in myopic eyes particularly important. However, diagnosis of glaucoma in myopic eyes is challenging due to the frequent associations of distorted optic disc and distorted parapapillary and macular structures. Macular vertical scan has been suggested as a useful tool to detect glaucomatous retinal nerve fiber layer loss even in highly myopic eyes. The present study was performed to develop and validate a deep learning (DL) system to detect glaucoma in myopic eyes using macular vertical optical coherence tomography (OCT) scans and compare its diagnostic power with that of circumpapillary OCT scans. The study included a training set of 1416 eyes, a validation set of 471 eyes, a test set of 471 eyes, and an external test set of 249 eyes. The ability to diagnose glaucoma in eyes with large myopic parapapillary atrophy was greater with the vertical than the circumpapillary OCT scans, with areas under the receiver operating characteristic curves of 0.976 and 0.914, respectively. These findings suggest that DL artificial intelligence based on macular vertical scans may be a promising tool for diagnosis of glaucoma in myopic eyes.
近视是青光眼的一个危险因素,因此准确诊断近视眼中的青光眼尤为重要。然而,由于近视眼的视盘和视盘周围及黄斑结构经常扭曲,因此诊断青光眼具有挑战性。黄斑垂直扫描已被建议作为一种有用的工具,即使在高度近视眼中也可用于检测青光眼性视网膜神经纤维层丢失。本研究旨在开发和验证一种深度学习(DL)系统,使用黄斑垂直光学相干断层扫描(OCT)扫描来检测近视眼中的青光眼,并比较其与环周 OCT 扫描的诊断能力。该研究包括一个包含 1416 只眼的训练集、一个包含 471 只眼的验证集、一个包含 471 只眼的测试集和一个包含 249 只眼的外部测试集。垂直 OCT 扫描比环周 OCT 扫描更能诊断大的近视性视盘周围萎缩眼中的青光眼,其受试者工作特征曲线下面积分别为 0.976 和 0.914。这些发现表明,基于黄斑垂直扫描的深度学习人工智能可能是诊断近视眼中青光眼的一种有前途的工具。