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基于光学相干断层扫描的血管造影术[特邀报告]

Optical coherence tomography based angiography [Invited].

作者信息

Chen Chieh-Li, Wang Ruikang K

机构信息

Department of Bioengineering, University of Washington, 3720 15th Ave NE, Seattle, WA 98195, USA; Department of Ophthalmology, University of Washington, 325 9th Ave, Seattle, WA 98104, USA.

出版信息

Biomed Opt Express. 2017 Jan 24;8(2):1056-1082. doi: 10.1364/BOE.8.001056. eCollection 2017 Feb 1.

Abstract

Optical coherence tomography (OCT)-based angiography (OCTA) provides , three-dimensional vascular information by the use of flowing red blood cells as intrinsic contrast agents, enabling the visualization of functional vessel networks within microcirculatory tissue beds non-invasively, without a need of dye injection. Because of these attributes, OCTA has been rapidly translated to clinical ophthalmology within a short period of time in the development. Various OCTA algorithms have been developed to detect the functional micro-vasculatures by utilizing different components of OCT signals, including phase-signal-based OCTA, intensity-signal-based OCTA and complex-signal-based OCTA. All these algorithms have shown, in one way or another, their clinical values in revealing micro-vasculatures in biological tissues , identifying abnormal vascular networks or vessel impairment zones in retinal and skin pathologies, detecting vessel patterns and angiogenesis in eyes with age-related macular degeneration and in skin and brain with tumors, and monitoring responses to hypoxia in the brain tissue. The purpose of this paper is to provide a technical oriented overview of the OCTA developments and their potential pre-clinical and clinical applications, and to shed some lights on its future perspectives. Because of its clinical translation to ophthalmology, this review intentionally places a slightly more weight on ophthalmic OCT angiography.

摘要

基于光学相干断层扫描(OCT)的血管造影(OCTA)通过将流动的红细胞用作内在造影剂来提供三维血管信息,从而能够在无需注射染料的情况下,非侵入性地可视化微循环组织床内的功能性血管网络。由于这些特性,OCTA在开发过程中短时间内就迅速应用于临床眼科。已经开发了各种OCTA算法,通过利用OCT信号的不同成分来检测功能性微血管,包括基于相位信号的OCTA、基于强度信号的OCTA和基于复数信号的OCTA。所有这些算法都以某种方式显示了它们在揭示生物组织中的微血管、识别视网膜和皮肤病变中的异常血管网络或血管损伤区域、检测年龄相关性黄斑变性患者眼睛以及皮肤和脑部肿瘤患者的血管模式和血管生成,以及监测脑组织对缺氧的反应等方面的临床价值。本文的目的是提供一份以技术为导向的OCTA发展及其潜在临床前和临床应用的概述,并对其未来前景有所启示。由于其在眼科的临床应用,本综述有意更侧重于眼科OCT血管造影。

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