Zhang Anqi, Zhang Qinqin, Chen Chieh-Li, Wang Ruikang K
J Biomed Opt. 2015 Oct;20(10):100901. doi: 10.1117/1.JBO.20.10.100901.
Optical coherence tomography (OCT)-based angiography is increasingly becoming a clinically useful and important imaging technique due to its ability to provide volumetric microvascular networks innervating tissue beds in vivo without a need for exogenous contrast agent. Numerous OCT angiography algorithms have recently been proposed for the purpose of contrasting microvascular networks. A general literature review is provided on the recent progress of OCT angiography methods and algorithms. The basic physics and mathematics behind each method together with its contrast mechanism are described. Potential directions for future technical development of OCT based angiography is then briefly discussed. Finally, by the use of clinical data captured from normal and pathological subjects, the imaging performance of vascular networks delivered by the most recently reported algorithms is evaluated and compared, including optical microangiography, speckle variance,phase variance, split-spectrum amplitude decorrelation angiography, and correlation mapping. It is found that the method that utilizes complex OCT signal to contrast retinal blood flow delivers the best performance among all the algorithms in terms of image contrast and vessel connectivity. The purpose of this review is to help readers understand and select appropriate OCT angiography algorithm for use in specific applications.
基于光学相干断层扫描(OCT)的血管造影术正日益成为一种临床有用且重要的成像技术,因为它能够在无需外源性造影剂的情况下,在体内提供支配组织床的容积性微血管网络。最近,为了对比微血管网络,人们提出了许多OCT血管造影算法。本文对OCT血管造影方法和算法的最新进展进行了综述。描述了每种方法背后的基本物理和数学原理及其对比机制。然后简要讨论了基于OCT的血管造影术未来技术发展的潜在方向。最后,通过使用从正常和病理受试者获取的临床数据,对最近报道的算法(包括光学微血管造影、散斑方差、相位方差、分裂谱幅度去相关血管造影和相关映射)所呈现的血管网络成像性能进行了评估和比较。结果发现,在所有算法中,利用复OCT信号对比视网膜血流的方法在图像对比度和血管连通性方面表现最佳。本综述的目的是帮助读者理解并选择适用于特定应用的OCT血管造影算法。