Bousi Evgenia, Charalambous Ismini, Pitris Costas
KIOS Research Center for Intelligent Systems and Networks, Department of Electrical and Computer Engineering, University of Cyprus, 1678 Nicosia, Cyprus.
Opt Express. 2010 May 24;18(11):11877-90. doi: 10.1364/OE.18.011877.
A novel technique for axial resolution improvement of Optical Coherence Tomography (OCT) systems is proposed. The technique is based on step-frequency encoding, using frequency shifting, of the OCT signal. A resolution improvement by a factor of approximately 7 is achieved without the need for a broader bandwidth light source. This method exploits a combination of two basic principles: the appearance of beating, when adding two signals of slightly different carrier frequencies, and the resolution improvement by deconvolution of the interferogram with an encoded autocorrelation function. In time domain OCT, step-frequency encoding can be implemented by performing two scans, with different carrier frequencies, and subsequently adding them to create the encoded signal. When the frequency steps are properly selected, deconvolution of the resulting interferogram, using appropriate kernels, results in a narrower resolution width.
提出了一种用于提高光学相干断层扫描(OCT)系统轴向分辨率的新技术。该技术基于对OCT信号进行频移的步进频率编码。无需更宽带宽的光源即可实现约7倍的分辨率提高。该方法利用了两个基本原理的组合:当添加两个载波频率略有不同的信号时出现拍频,以及通过用编码自相关函数对干涉图进行反卷积来提高分辨率。在时域OCT中,可以通过执行两次具有不同载波频率的扫描,然后将它们相加来创建编码信号,从而实现步进频率编码。当正确选择频率步长时,使用适当的内核对所得干涉图进行反卷积会导致分辨率宽度变窄。