Optical Coherence Tomography in the Diagnosis and Monitoring of Retinal Diseases

S. Ţălu
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引用次数: 23

Abstract

Optical coherence tomography (OCT) allows the visualization of the retinal microarchitecture as cross-sectional or tomographic volumetric data. The usefulness of OCT in the management of various retinal diseases is validated by the possibility to allow early diagnosis and to help in the decision-making process. OCT is applied by two main methods: time domain (TD-OCT) and spectral domain (SD-OCT). The advantages of SD-OCT over TD-OCT are significant improvement of the image axial resolution, decreased acquisition times, reduction of motion artifacts, increased area of retinal sampling, and the possibility to create topographic maps by the three-dimensional evaluation of tissues. OCT is the most precise method to measure the central macular thickness (which is the most important practical parameter) in vivo. It has been demonstrated that there are differences in the retinal thickness measurements between OCT models, explained by the higher axial and transverse resolutions of the newer devices. Further research has led to significant improvements in OCT technology represented by ultrahigh resolution OCT (UHR-OCT), swept source OCT (SS-OCT), enhanced depth imaging OCT (EDI-OCT), and adaptive optics. Technological progress in OCT imaging offered new perspectives for better understanding the retinal diseases, opening new avenues for the fundamental and clinical research. This is a review of the data in the literature concerning the evolution of OCT technology in the field of retinal imaging.
光学相干断层扫描在视网膜疾病诊断和监测中的应用
光学相干断层扫描(OCT)可以将视网膜微结构可视化为横截面或层析体积数据。OCT在各种视网膜疾病的治疗中的有用性通过允许早期诊断和帮助决策过程的可能性得到验证。OCT主要有两种应用方法:时域(TD-OCT)和谱域(SD-OCT)。与TD-OCT相比,SD-OCT的优势在于显著提高了图像轴向分辨率,减少了采集时间,减少了运动伪影,增加了视网膜采样面积,并且可以通过组织的三维评估来创建地形图。OCT是体内测量黄斑中心厚度(这是最重要的实用参数)最精确的方法。已经证明OCT模型之间的视网膜厚度测量存在差异,这是由于新设备具有更高的轴向和横向分辨率。随着研究的深入,以超高分辨率OCT (UHR-OCT)、扫源OCT (SS-OCT)、增强深度成像OCT (edii -OCT)和自适应光学为代表的OCT技术取得了显著进步。OCT成像技术的进步为更好地认识视网膜疾病提供了新的视角,为基础和临床研究开辟了新的途径。这是一篇关于OCT技术在视网膜成像领域发展的文献综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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