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基于蓝宝石球透镜的共路光纤探头及其在角膜和视网膜成像中的应用。

Sapphire ball lens-based fiber probe for common-path optical coherence tomography and its applications in corneal and retinal imaging.

机构信息

Department of Electrical and Computer Engineering, 3400 N. Charles Street, Barton 105, Baltimore, Maryland 21218, USA.

出版信息

Opt Lett. 2012 Dec 1;37(23):4835-7. doi: 10.1364/OL.37.004835.

Abstract

We describe a common-path swept source optical coherence tomography fiber probe design using a sapphire ball lens for cross-sectional imaging and sensing for retina vitrectomy surgery. The high refractive index (n=1.75) of the sapphire ball lens improves the focusing power and enables the probe to operate in the intraocular space. The highly precise spherical shape of the sapphire lens also reduces astigmatism and coma compared to fused nonspherical ball lenses. A theoretical sensitivity model for common-path optical coherence tomography (CP-OCT) was developed to assess its optimal performance based on an unbalanced photodetector configuration. Two probe designs-with working distances 415 and 1221 μm and lateral resolution 11 and 18 μm-were implemented with sensitivity up to 88 dB, which is significantly higher than previously reported CP-OCT probes. We assessed the performances of the fiber probes by cross-sectional imaging a bovine cornea and retina in air and in vitreous gel with a 1310 nm swept source OCT system. To the best of our knowledge, this is the first demonstration of sapphire ball lens-based CP-OCT probes directly inserted into the vitreous gel of a bovine eyeball for ocular imaging with a sensitivity approaching the theoretical limitation of CP-OCT.

摘要

我们描述了一种共光路扫频源光相干断层扫描光纤探头设计,该设计使用蓝宝石球透镜进行横截面成像和感测,用于视网膜玻璃体切除术。蓝宝石球透镜的高折射率(n=1.75)提高了聚焦能力,使探头能够在眼内空间中工作。蓝宝石透镜的高精度球形形状也比非球形融合球透镜减少了像散和慧差。我们开发了一种共光路光相干断层扫描(CP-OCT)的理论灵敏度模型,以根据不平衡光电探测器配置评估其最佳性能。我们实现了两种探头设计,工作距离分别为 415 μm 和 1221 μm,横向分辨率分别为 11 μm 和 18 μm,灵敏度高达 88 dB,这明显高于之前报道的 CP-OCT 探头。我们通过使用 1310nm 扫频源 OCT 系统在空气中和玻璃体液中对牛角膜和视网膜进行横截面成像,评估了光纤探头的性能。据我们所知,这是首次在牛眼球的玻璃体液中直接插入蓝宝石球透镜的 CP-OCT 探头进行眼部成像的演示,其灵敏度接近 CP-OCT 的理论极限。

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