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层析定量相成像中拼接过程的数值折射率校正

Numerical refractive index correction for the stitching procedure in tomographic quantitative phase imaging.

作者信息

Stępień Piotr, Ziemczonok Michał, Kujawińska Małgorzata, Baczewska Maria, Valenti Luca, Cherubini Alessandro, Casirati Elia, Krauze Wojciech

机构信息

Warsaw University of Technology, Institute of Micromechanics and Photonics, ul. Sw. A. Boboli 8, Warsaw, 02-525, Poland.

Università degli Studi di Milano, Department of Pathophysiology and Transplantation, Milan, Italy.

出版信息

Biomed Opt Express. 2022 Oct 11;13(11):5709-5720. doi: 10.1364/BOE.466403. eCollection 2022 Nov 1.

Abstract

Tomographic quantitative phase imaging (QPI) lacks an absolute refractive index value baseline, which poses a problem when large dense objects extending over multiple fields of view are measured volume by volume and stitched together. Some of the measurements lack the natural baseline value that is provided by the mounting medium with a known refractive index. In this work, we discuss the problem of the refractive index (RI) baseline of individual reconstructed volumes that are deprived of access to mounting medium due to the extent of the object. The solution of this problem is provided by establishing the RI offsets based on the overlapping regions. We have proven that the process of finding the offset RI values may be justifiably reduced to the analogous procedure in the 2D baseline correction (2D-BC). Finally, we proposed the enhancement of the state-of-the-art 2D-BC procedure previously introduced in the context of 2D QPI. The processing is validated at the examples of a synthetic dataset and a liver organoid.

摘要

断层扫描定量相位成像(QPI)缺乏绝对折射率值基线,当对跨越多个视野的大型致密物体逐个视野进行测量并拼接在一起时,这就带来了一个问题。一些测量缺少由具有已知折射率的 mounting 介质提供的自然基线值。在这项工作中,我们讨论了由于物体的范围而无法接触到 mounting 介质的各个重建体积的折射率(RI)基线问题。通过基于重叠区域建立 RI 偏移来解决这个问题。我们已经证明,找到偏移 RI 值的过程可以合理地简化为二维基线校正(2D-BC)中的类似过程。最后,我们提出了对先前在二维 QPI 背景下引入的最新二维 BC 过程的改进。该处理在一个合成数据集和一个肝脏类器官的示例中得到了验证。

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