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自适应光学视网膜成像。

Adaptive optics imaging of the human retina.

机构信息

800E. Atwater S, School of Optometry, Indiana University, Bloomington, IN, United States.

800E. Atwater S, School of Optometry, Indiana University, Bloomington, IN, United States.

出版信息

Prog Retin Eye Res. 2019 Jan;68:1-30. doi: 10.1016/j.preteyeres.2018.08.002. Epub 2018 Aug 27.

DOI:10.1016/j.preteyeres.2018.08.002
PMID:30165239
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6347528/
Abstract

Adaptive Optics (AO) retinal imaging has provided revolutionary tools to scientists and clinicians for studying retinal structure and function in the living eye. From animal models to clinical patients, AO imaging is changing the way scientists are approaching the study of the retina. By providing cellular and subcellular details without the need for histology, it is now possible to perform large scale studies as well as to understand how an individual retina changes over time. Because AO retinal imaging is non-invasive and when performed with near-IR wavelengths both safe and easily tolerated by patients, it holds promise for being incorporated into clinical trials providing cell specific approaches to monitoring diseases and therapeutic interventions. AO is being used to enhance the ability of OCT, fluorescence imaging, and reflectance imaging. By incorporating imaging that is sensitive to differences in the scattering properties of retinal tissue, it is especially sensitive to disease, which can drastically impact retinal tissue properties. This review examines human AO retinal imaging with a concentration on the use of the Adaptive Optics Scanning Laser Ophthalmoscope (AOSLO). It first covers the background and the overall approaches to human AO retinal imaging, and the technology involved, and then concentrates on using AO retinal imaging to study the structure and function of the retina.

摘要

自适应光学(AO)视网膜成像是一种革命性的工具,为科学家和临床医生研究活体眼睛的视网膜结构和功能提供了帮助。从动物模型到临床患者,AO 成像正在改变科学家研究视网膜的方式。通过提供无需组织学的细胞和亚细胞细节,现在可以进行大规模研究,也可以了解单个视网膜随时间的变化。由于 AO 视网膜成像是非侵入性的,并且当使用近红外波长进行时,对患者既安全又易于耐受,因此有望被纳入临床试验,为监测疾病和治疗干预提供特定于细胞的方法。AO 被用于增强 OCT、荧光成像和反射率成像的能力。通过结合对视网膜组织散射特性差异敏感的成像,它对疾病特别敏感,而疾病会极大地影响视网膜组织的特性。本综述检查了人类 AO 视网膜成像,重点是使用自适应光学扫描激光检眼镜(AOSLO)。它首先涵盖了人类 AO 视网膜成像的背景和总体方法,以及所涉及的技术,然后集中讨论使用 AO 视网膜成像来研究视网膜的结构和功能。

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本文引用的文献

1
Noninvasive characterization of erythrocyte motion in human retinal capillaries using high-speed adaptive optics near-confocal imaging.使用高速自适应光学近共焦成像技术对人视网膜毛细血管中红细胞运动进行无创表征。
Biomed Opt Express. 2018 Jul 12;9(8):3653-3677. doi: 10.1364/BOE.9.003653. eCollection 2018 Aug 1.
2
Confocal Retinal Imaging Using a Digital Light Projector with a Near Infrared VCSEL Source.使用带近红外垂直腔面发射激光器(VCSEL)光源的数字光投影仪进行共焦视网膜成像。
Proc SPIE Int Soc Opt Eng. 2018 Feb;10546. doi: 10.1117/12.2290286.
3
Sub-Airy Confocal Adaptive Optics Scanning Ophthalmoscopy.亚艾里共焦自适应光学扫描检眼镜
Transl Vis Sci Technol. 2018 Apr 4;7(2):17. doi: 10.1167/tvst.7.2.17. eCollection 2018 Apr.
4
Enhanced retinal vasculature imaging with a rapidly configurable aperture.采用快速可配置孔径实现增强型视网膜血管成像。
Biomed Opt Express. 2018 Feb 23;9(3):1323-1333. doi: 10.1364/BOE.9.001323. eCollection 2018 Mar 1.
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Volumetric imaging of rod and cone photoreceptor structure with a combined adaptive optics-optical coherence tomography-scanning laser ophthalmoscope.利用自适应光学-光学相干断层扫描-扫描激光检眼镜对杆状和锥状光感受器结构进行容积成像。
J Biomed Opt. 2018 Mar;23(3):1-15. doi: 10.1117/1.JBO.23.3.036003.
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Distribution of cone density, spacing and arrangement in adult healthy retinas with adaptive optics flood illumination.成人健康视网膜中视锥细胞密度、间距及排列在自适应光学泛光照明下的分布情况
PLoS One. 2018 Jan 16;13(1):e0191141. doi: 10.1371/journal.pone.0191141. eCollection 2018.
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Measuring polarization changes in the human outer retina with polarization-sensitive optical coherence tomography.使用偏振敏感光学相干断层扫描测量人眼外层视网膜的偏振变化。
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Optical coherence tomography angiography.光学相干断层扫描血管造影术。
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