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Non-iterative numerical method for laterally superresolving Fourier domain optical coherence tomography

机译:横向超分辨傅里叶域光学相干层析成像的非迭代数值方法

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摘要

A numerical deconvolution method to cancel lateral defocus in Fourier domain optical coherence tomography (FD-OCT) is presented. This method uses a depth-dependent lateral point spread function and some approximations to design a deconvolution filter for the cancellation of lateral defocus. Improved lateral resolutions are theoretically estimated; consequently, the effect of lateral superresolution in this method is derived. The superresolution is experimentally confirmed by a razor blade test, and an intuitive physical interpretation of this effect is presented. The razor blade test also confirms that this method enhances the signal-to-noise ratio of OCT. This method is applied to OCT images of medical samples, in vivo human anterior eye segments, and exhibits its potential to cancel the defocusing of practical OCT images. The validity and restrictions involved in each approximation employed to design the deconvolution filter are discussed. A chromatic and a two-dimensional extensions of this method are also described.
机译:提出了一种消除傅里叶域光学相干断层扫描(FD-OCT)横向偏焦的数值解卷积方法。该方法使用依赖于深度的横向点扩展函数和一些近似值来设计去卷积滤波器,以消除横向散焦。从理论上估计改进的横向分辨率;因此,得出了该方法中横向超分辨率的效果。超分辨率通过剃须刀测试通过实验确认,并给出了对该效果的直观物理解释。剃须刀测试还证实了该方法增强了OCT的信噪比。该方法适用于医学样品,体内人眼前节的OCT图像,并具有消除实际OCT图像散焦的潜力。讨论了设计反卷积滤波器所采用的每个近似方法的有效性和局限性。还描述了该方法的彩色和二维扩展。

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