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高分辨率多模态临床眼科成像系统。

High resolution multimodal clinical ophthalmic imaging system.

作者信息

Mujat Mircea, Ferguson R Daniel, Patel Ankit H, Iftimia Nicusor, Lue Niyom, Hammer Daniel X

机构信息

Physical Sciences Inc., 20 New England Business Center, Andover MA 01810, USA.

出版信息

Opt Express. 2010 May 24;18(11):11607-21. doi: 10.1364/OE.18.011607.

Abstract

We developed a multimodal adaptive optics (AO) retinal imager which is the first to combine high performance AO-corrected scanning laser ophthalmoscopy (SLO) and swept source Fourier domain optical coherence tomography (SSOCT) imaging modes in a single compact clinical prototype platform. Such systems are becoming ever more essential to vision research and are expected to prove their clinical value for diagnosis of retinal diseases, including glaucoma, diabetic retinopathy (DR), age-related macular degeneration (AMD), and retinitis pigmentosa. The SSOCT channel operates at a wavelength of 1 microm for increased penetration and visualization of the choriocapillaris and choroid, sites of major disease activity for DR and wet AMD. This AO system is designed for use in clinical populations; a dual deformable mirror (DM) configuration allows simultaneous low- and high-order aberration correction over a large range of refractions and ocular media quality. The system also includes a wide field (33 deg.) line scanning ophthalmoscope (LSO) for initial screening, target identification, and global orientation, an integrated retinal tracker (RT) to stabilize the SLO, OCT, and LSO imaging fields in the presence of lateral eye motion, and a high-resolution LCD-based fixation target for presentation of visual cues. The system was tested in human subjects without retinal disease for performance optimization and validation. We were able to resolve and quantify cone photoreceptors across the macula to within approximately 0.5 deg (approximately 100-150 microm) of the fovea, image and delineate ten retinal layers, and penetrate to resolve features deep into the choroid. The prototype presented here is the first of a new class of powerful flexible imaging platforms that will provide clinicians and researchers with high-resolution, high performance adaptive optics imaging to help guide therapies, develop new drugs, and improve patient outcomes.

摘要

我们开发了一种多模态自适应光学(AO)视网膜成像仪,它是首个在单个紧凑型临床原型平台上结合了高性能AO校正扫描激光检眼镜(SLO)和扫频源傅里叶域光学相干断层扫描(SSOCT)成像模式的仪器。这类系统对于视觉研究变得越来越重要,并且有望证明其在诊断包括青光眼、糖尿病性视网膜病变(DR)、年龄相关性黄斑变性(AMD)和视网膜色素变性在内的视网膜疾病方面的临床价值。SSOCT通道工作在1微米的波长,以增加对脉络膜毛细血管层和脉络膜的穿透和可视化,这是DR和湿性AMD主要疾病活动的部位。该AO系统设计用于临床人群;双变形镜(DM)配置允许在大范围的屈光度和眼内介质质量条件下同时进行低阶和高阶像差校正。该系统还包括一个用于初始筛查、目标识别和全局定位的宽视野(33度)线扫描检眼镜(LSO),一个用于在存在眼球横向运动时稳定SLO、OCT和LSO成像视野的集成视网膜追踪器(RT),以及一个用于呈现视觉线索的基于高分辨率液晶显示器的注视目标。该系统在无视网膜疾病的人类受试者中进行了测试,以优化性能并进行验证。我们能够分辨并量化黄斑区整个区域的视锥光感受器,分辨率达到中央凹约0.5度(约100 - 150微米)范围内,成像并描绘出十个视网膜层,并且能够穿透到脉络膜深处分辨其特征。这里展示的原型是一类新型强大灵活成像平台中的首个,它将为临床医生和研究人员提供高分辨率、高性能的自适应光学成像,以帮助指导治疗、开发新药并改善患者预后。

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