Tan Bingyao, McNabb Ryan P, Zheng Feihui, Sim Yin Ci, Yao Xinwen, Chua Jacqueline, Ang Marcus, Hoang Quan V, Kuo Anthony N, Schmetterer Leopold
SERI-NTU Advanced Ocular Engineering (STANCE), Singapore, Singapore.
Singapore Eye Research Institute, Singapore National Eye Centre, Singapore, Singapore.
Biomed Opt Express. 2021 Aug 23;12(9):5770-5781. doi: 10.1364/BOE.428430. eCollection 2021 Sep 1.
Ocular deformation may be associated with biomechanical alterations in the structures of the eye, especially the cornea and sclera in conditions such as keratoconus, congenital glaucoma, and pathological myopia. Here, we propose a method to estimate ocular shape using an ultra-wide field MHz swept-source optical coherence tomography (SS-OCT) with a Fourier Domain Mode-Locked (FDML) laser and distortion correction of the images. The ocular biometrics for distortion correction was collected by an IOLMaster 700, and localized Gaussian curvature was proposed to quantify the ocular curvature covering a field-of-view up to 65°×62°. We achieved repeatable curvature shape measurements (intraclass coefficient = 0.88 ± 0.06) and demonstrated its applicability in a pilot study with individuals (N = 11) with various degrees of myopia.
眼部变形可能与眼睛结构的生物力学改变有关,尤其是在圆锥角膜、先天性青光眼和病理性近视等情况下的角膜和巩膜。在此,我们提出一种方法,使用具有傅里叶域锁模(FDML)激光器的超广角兆赫兹扫频光学相干断层扫描(SS-OCT)以及图像失真校正来估计眼部形状。用于失真校正的眼部生物特征数据由IOLMaster 700收集,并提出了局部高斯曲率来量化覆盖高达65°×62°视野的眼部曲率。我们实现了可重复的曲率形状测量(组内系数=0.88±0.06),并在一项针对不同程度近视个体(N=11)的初步研究中证明了其适用性。