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Generalized quantification of three-dimensional resolution in optical diffraction tomography using the projection of maximal spatial bandwidths

机译:最大空间带宽投影光衍射断层扫描中三维分辨率的广义量化

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摘要

Optical diffraction tomography (ODT) is a three-dimensional (3D) quantitative phase imaging technique, which enables the reconstruction of the 3D refractive index (RI) distribution of a transparent sample. Due to its fast, non-invasive, and quantitative imaging capability, ODT has emerged as a powerful tool for various applications. However, the spatial resolution of ODT has only been quantified along the lateral and axial directions for limited conditions; it has not been investigated for arbitrary-oblique directions. In this paper, we systematically quantify the 3D spatial resolution of ODT by exploiting the spatial bandwidth of the reconstructed scattering potential. The 3D spatial resolution is calculated for various types of systems, including the illumination-scanning, sample-rotation, and hybrid scanning-rotation methods. In particular, using the calculated 3D spatial resolution, we provide the spatial resolution as well as the arbitrary sliced angle. Furthermore, to validate the present method, the point spread function of an ODT system is experimentally obtained using the deconvolution of a 3D RI distribution of a microsphere and is compared with the calculated resolution. (C) 2018 Optical Society of America.
机译:光衍射断层扫描(ODT)是一种三维(3D)定量相成像技术,其能够重建透明样品的3D折射率(RI)分布。由于其快速,无侵入性和定量的成像能力,ODT已成为各种应用的强大工具。然而,ODT的空间分辨率沿着有限条件的横向和轴向的横向量化;它没有被调查任意倾斜方向。在本文中,我们通过利用重建散射电位的空间带宽来系统地量化ODT的3D空间分辨率。针对各种类型的系统计算3D空间分辨率,包括照明扫描,采样旋转和混合扫描旋转方法。特别地,使用计算出的3D空间分辨率,我们提供空间分辨率以及任意切片角度。此外,为了验证本方法,使用微球的3D RI分布的Deconvolulate实验地获得ODT系统的点扩散功能,并与计算的分辨率进行比较。 (c)2018年光学学会。

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