Axial artifact suppression and precise characterization of three-dimensional optical coherence tomography microangiograms.

IF 3.1 2区 物理与天体物理 Q2 OPTICS
Optics letters Pub Date : 2025-06-15 DOI:10.1364/OL.563108
Lingxi Zhou, Jia Meng, Shuhao Qian, Zhihua Ding, Zhiyi Liu
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引用次数: 0

Abstract

Optical coherence tomography angiography (OCTA) is a label-free imaging technique widely used in ophthalmology. However, the presence of vascular axial tail artifacts makes it challenging to utilize the three-dimensional (3D) information from OCTA data. Herein, we proposed a method combining morphology-based filtering and vascular thickness characteristics to effectively suppress tail artifacts in 3D retinal OCTA images. Compared to traditional tail artifact suppression methods such as mean subtraction and Hessian filtering, our method exhibited superior performance, enabling more accurate extraction of 3D vascular architecture. Post artifact removal, the vascular structures exhibited more concentrated distributions in morpho-structural features compared to those acquired from regular OCTA data. Finally, leveraging these advantages, we achieved the differentiation between normal and diabetic retinopathy retinas through precise characterization.

三维光学相干断层微血管成像的轴向伪影抑制和精确表征。
光学相干断层血管造影(OCTA)是一种广泛应用于眼科的无标签成像技术。然而,血管轴向尾伪影的存在使得利用OCTA数据中的三维(3D)信息具有挑战性。在此,我们提出了一种结合形态学滤波和血管厚度特征的方法来有效地抑制3D视网膜OCTA图像中的尾部伪影。与传统的尾部伪影抑制方法(如均值减法和Hessian滤波)相比,我们的方法具有更好的性能,可以更准确地提取三维血管结构。去除伪影后,与常规OCTA数据相比,血管结构在形态结构特征上表现出更集中的分布。最后,利用这些优势,我们通过精确的表征实现了正常视网膜和糖尿病视网膜病变的区分。
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来源期刊
Optics letters
Optics letters 物理-光学
CiteScore
6.60
自引率
8.30%
发文量
2275
审稿时长
1.7 months
期刊介绍: The Optical Society (OSA) publishes high-quality, peer-reviewed articles in its portfolio of journals, which serve the full breadth of the optics and photonics community. Optics Letters offers rapid dissemination of new results in all areas of optics with short, original, peer-reviewed communications. Optics Letters covers the latest research in optical science, including optical measurements, optical components and devices, atmospheric optics, biomedical optics, Fourier optics, integrated optics, optical processing, optoelectronics, lasers, nonlinear optics, optical storage and holography, optical coherence, polarization, quantum electronics, ultrafast optical phenomena, photonic crystals, and fiber optics. Criteria used in determining acceptability of contributions include newsworthiness to a substantial part of the optics community and the effect of rapid publication on the research of others. This journal, published twice each month, is where readers look for the latest discoveries in optics.
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