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使用1050纳米超高清眼科光学相干断层扫描增强脉络膜血管可视化。

Enhanced visualization of choroidal vessels using ultrahigh resolution ophthalmic OCT at 1050 nm.

作者信息

Povazay B, Bizheva K, Hermann B, Unterhuber A, Sattmann H, Fercher A, Drexler W, Schubert C, Ahnelt P, Mei M, Holzwarth R, Wadsworth W, Knight J, Russell P St J

出版信息

Opt Express. 2003 Aug 25;11(17):1980-6. doi: 10.1364/oe.11.001980.

Abstract

In this article the ability of ultrahigh resolution ophthalmic optical coherence tomography (OCT) to image small choroidal blood vessels below the highly reflective and absorbing retinal pigment epithelium is demonstrated for the first time. A new light source (lambdac= 1050 nm, Deltalambda = 165 nm, Pout= 10 mW), based on a photonic crystal fiber pumped by a compact, self-starting Ti:Al2O3 laser has therefore been developed. Ex-vivo ultrahigh resolution OCT images of freshly excised pig retinas acquired with this light source demonstrate enhanced penetration into the choroid and better visualization of choroidal vessels as compared to tomograms acquired with a state-of-the art Ti:Al2O3 laser (Femtolasers Compact Pro, lc= 780 nm, Deltalambda= 160 nm, Pout= 400 mW), normally used in clinical studies for in vivo ultrahigh resolution ophthalmic OCT imaging. These results were also compared with retinal tomograms acquired with a novel, spectrally broadened fiber laser (MenloSystems, lambdac= 1350 nm, Deltalambda= 470 nm, Pout = 4 mW) permitting even greater penetration in the choroid. Due to high water absorption at longer wavelengths retinal OCT imaging at ~1300 nm may find applications in animal ophthalmic studies. Detection and follow-up of choroidal neovascularization improves early diagnosis of many retinal pathologies, e.g. age-related macular degeneration or diabetic retinopathy and can aid development of novel therapy approaches.

摘要

在本文中,首次展示了超高分辨率眼科光学相干断层扫描(OCT)对高反射性且吸收性的视网膜色素上皮下方的小脉络膜血管进行成像的能力。因此,基于由紧凑、自启动的钛宝石激光器泵浦的光子晶体光纤,开发了一种新的光源(中心波长λc = 1050 nm,光谱带宽Δλ = 165 nm,输出功率Pout = 10 mW)。与使用常用于体内超高分辨率眼科OCT成像临床研究的先进钛宝石激光器(Femtolasers Compact Pro,中心波长lc = 780 nm,光谱带宽Δλ = 160 nm,输出功率Pout = 400 mW)所获取的断层扫描图像相比,用此光源获取的新鲜猪视网膜离体超高分辨率OCT图像显示出对脉络膜的穿透增强以及脉络膜血管的可视化更好。这些结果还与使用新型光谱展宽光纤激光器(MenloSystems,中心波长λc = 1350 nm,光谱带宽Δλ = 470 nm,输出功率Pout = 4 mW)获取的视网膜断层扫描图像进行了比较,该光纤激光器在脉络膜中的穿透性更强。由于在较长波长处水吸收较高,~1300 nm的视网膜OCT成像可能在动物眼科研究中得到应用。脉络膜新生血管的检测和随访可改善许多视网膜疾病的早期诊断,例如年龄相关性黄斑变性或糖尿病性视网膜病变,并有助于开发新的治疗方法。

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