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分辨率增强光学相干断层扫描和相干成像中信息容量和分辨率的扩展框架。

Resolution-enhanced OCT and expanded framework of information capacity and resolution in coherent imaging.

机构信息

Nancy E. and Peter C. Meinig School of Biomedical Engineering, Cornell University, Ithaca, NY, 14853, USA.

出版信息

Sci Rep. 2021 Oct 15;11(1):20541. doi: 10.1038/s41598-021-99889-3.

Abstract

Spatial resolution in conventional optical microscopy has traditionally been treated as a fixed parameter of the optical system. Here, we present an approach to enhance transverse resolution in beam-scanned optical coherence tomography (OCT) beyond its aberration-free resolution limit, without any modification to the optical system. Based on the theorem of invariance of information capacity, resolution-enhanced (RE)-OCT navigates the exchange of information between resolution and signal-to-noise ratio (SNR) by exploiting efficient noise suppression via coherent averaging and a simple computational bandwidth expansion procedure. We demonstrate a resolution enhancement of 1.5 × relative to the aberration-free limit while maintaining comparable SNR in silicone phantom. We show that RE-OCT can significantly enhance the visualization of fine microstructural features in collagen gel and ex vivo mouse brain. Beyond RE-OCT, our analysis in the spatial-frequency domain leads to an expanded framework of information capacity and resolution in coherent imaging that contributes new implications to the theory of coherent imaging. RE-OCT can be readily implemented on most OCT systems worldwide, immediately unlocking information that is beyond their current imaging capabilities, and so has the potential for widespread impact in the numerous areas in which OCT is utilized, including the basic sciences and translational medicine.

摘要

传统的光学显微镜的空间分辨率一直被视为光学系统的固定参数。在这里,我们提出了一种方法,在不改变光学系统的情况下,在光束扫描光学相干断层扫描(OCT)中增强横向分辨率,超出其无像差分辨率极限。基于信息容量不变性定理,分辨率增强(RE)-OCT 通过相干平均和简单的计算带宽扩展过程来有效地抑制噪声,从而在分辨率和信噪比(SNR)之间交换信息。我们在硅酮体模中证明了相对于无像差极限的 1.5 倍的分辨率增强,同时保持可比的 SNR。我们表明,RE-OCT 可以显著增强胶原凝胶和离体小鼠大脑中精细微观结构特征的可视化。除了 RE-OCT 之外,我们在空间频率域中的分析导致相干成像中的信息容量和分辨率的扩展框架,这为相干成像理论提供了新的启示。RE-OCT 可以很容易地在全球大多数 OCT 系统上实现,立即解锁超出其当前成像能力的信息,因此有可能在 OCT 广泛应用的众多领域产生广泛的影响,包括基础科学和转化医学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/015b/8521598/4010dda3546f/41598_2021_99889_Fig1_HTML.jpg

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