University Hospitals UZ Leuven, Department of Ophthalmology, Leuven, Belgium.
KU Leuven, Biomedical Sciences Group, Department of Neurosciences, Research Group Ophthalmology, Leuven, Belgium.
Transl Vis Sci Technol. 2020 Aug 5;9(9):9. doi: 10.1167/tvst.9.9.9. eCollection 2020 Aug.
Hyperspectral imaging is gaining attention in the biomedical field because it generates additional spectral information to study physiological and clinical processes. Several technologies have been described; however an independent, systematic literature overview is lacking, especially in the field of ophthalmology. This investigation is the first to systematically overview scientific literature specifically regarding retinal hyperspectral imaging.
A systematic literature review was conducted, in accordance with PRISMA Statement 2009 criteria, in four bibliographic databases: Medline, Embase, Cochrane Database of Systematic Reviews, and Web of Science.
Fifty-six articles were found that meet the review criteria. A range of techniques was reported: Fourier analysis, liquid crystal tunable filters, tunable laser sources, dual-slit monochromators, dispersive prisms and gratings, computed tomography, fiber optics, and Fabry-Perrot cavity filter covered complementary metal oxide semiconductor. We present a narrative synthesis and summary tables of findings of the included articles, because methodologic heterogeneity and diverse research topics prevented a meta-analysis being conducted.
Application in ophthalmology is still in its infancy. Most previous experiments have been performed in the field of retinal oximetry, providing valuable information in the diagnosis and monitoring of various ocular diseases. To date, none of these applications have graduated to clinical practice owing to the lack of sufficiently large validation studies.
Given the promising results that smaller studies show for hyperspectral imaging (e.g., in Alzheimer's disease), advanced research in larger validation studies is warranted to determine its true clinical potential.
由于能够产生额外的光谱信息来研究生理和临床过程,高光谱成象技术在生物医学领域受到关注。已经描述了几种技术;然而,缺乏独立的、系统的文献综述,特别是在眼科领域。这项研究首次系统地综述了专门关于视网膜高光谱成象的科学文献。
根据 PRISMA 声明 2009 标准,在四个文献数据库中进行了系统的文献回顾:Medline、Embase、Cochrane 系统评价数据库和 Web of Science。
发现 56 篇符合审查标准的文章。报道了一系列技术:傅里叶分析、液晶可调滤波器、可调谐激光源、双狭缝单色仪、色散棱镜和光栅、计算机断层扫描、光纤和法布里-珀罗腔滤波器覆盖互补金属氧化物半导体。我们对纳入的文章进行了叙述性综合和结果总结表,因为方法学的异质性和不同的研究主题使得无法进行荟萃分析。
在眼科的应用仍处于起步阶段。以前的大多数实验都是在视网膜血氧测定领域进行的,为各种眼部疾病的诊断和监测提供了有价值的信息。迄今为止,由于缺乏足够大的验证研究,这些应用都没有进入临床实践。
PRISMA:是一个专门针对系统综述和荟萃分析的报告规范。
Alzheimer's disease:阿尔茨海默病,一种起病隐匿的进行性发展的神经系统退行性疾病。