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非散瞳超广角衍射极限视网膜成像。

Non-mydriatic ultra-widefield diffraction-limited retinal imaging.

出版信息

Opt Lett. 2024 Jul 15;49(14):3902-3905. doi: 10.1364/OL.525364.

Abstract

We demonstrate a new non-mydriatic ultra-widefield optical coherence tomography retinal imaging system, designed with custom optics to improve the imaging field of view, lateral resolution, and patient comfort. The key motivation is to address the challenge with conventional systems that require pupillary dilation, adding time, expense, discomfort, and medical risk to the examination of the retina. Our system provides an ultrawide 100° field of view (beam scanning angle at the scanning pivot point) and maintains a lateral resolution of 20 µm on the center. It also allows a generous working distance of 16 mm, 2-3 times longer than existing ultra-widefield OCT imaging systems. This advanced system was able to avoid iris vignetting artifacts without pharmacological dilation and ensure diffraction-limited ultra-widefield imaging under a generalized eye model. This enables a comprehensive evaluation of retina diseases, especially those affecting the peripheral regions.

摘要

我们展示了一种新的非散瞳超广角光相干断层扫描视网膜成像系统,该系统采用定制光学设计,可改善成像视场、横向分辨率和患者舒适度。主要动机是解决传统系统的挑战,这些系统需要瞳孔扩张,给视网膜检查增加时间、费用、不适和医疗风险。我们的系统提供了 100°的超广角视场(在扫描枢轴点的光束扫描角度),并在中心保持 20 µm 的横向分辨率。它还允许 16 mm 的大工作距离,是现有超广角 OCT 成像系统的 2-3 倍。该先进系统能够在不进行药物散瞳的情况下避免虹膜遮挡伪影,并确保在广义眼模型下实现衍射极限的超广角成像。这使得对视网膜疾病的全面评估成为可能,特别是那些影响周边区域的疾病。

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