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Image restoration method based on Hilbert transform for full-field optical coherence tomography

机译:基于希尔伯特变换的全场光学相干层析成像图像恢复方法

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摘要

A full-field optical coherence tomography (FF-OCT) system utilizing a simple but novel image restoration method suitable for a high-speed system is demonstrated. An en-face image is retrieved from only two phase-shifted interference fringe images through using the mathematical Hilbert transform. With a thermal light source, a high-resolution FF-OCT system having axial and transverse resolutions of 1 and 2.2 (mu)m, respectively, was implemented. The feasibility of the proposed scheme is confirmed by presenting the obtained en-face images of biological samples such as a piece of garlic and a gold beetle. The proposed method is robust to the error in the amount of the phase shift and does not leave residual fringes. The use of just two interference images and the strong immunity to phase errors provide great advantages in the imaging speed and the system design flexibility of a high-speed high-resolution FF-OCT system.
机译:展示了一种适用于高速系统的,采用简单但新颖的图像恢复方法的全场光学相干断层扫描(FF-OCT)系统。通过使用数学希尔伯特变换,仅从两个相移的干涉条纹图像中检索出一个面部图像。利用热光源,实现了轴向和横向分辨率分别为1和2.2μm的高分辨率FF-OCT系统。提出的方案的可行性通过呈现获得的生物样品(如一片大蒜和金甲虫)的正面图像得到证实。所提出的方法对于相移量的误差是鲁棒的,并且不留下残余条纹。仅使用两个干涉图像,以及对相位误差的强抵抗力,在高速高分辨率FF-OCT系统的成像速度和系统设计灵活性方面提供了巨大优势。

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