Quantitative phase imaging techniques for measuring scattering properties of cells and tissues: a review-part II.

IF 3 3区 医学 Q2 BIOCHEMICAL RESEARCH METHODS Journal of Biomedical Optics Pub Date : 2024-06-01 Epub Date: 2024-07-27 DOI:10.1117/1.JBO.29.S2.S22714
Neha Goswami, Mark A Anastasio, Gabriel Popescu
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Abstract

Significance: Quantitative phase imaging (QPI) is a non-invasive, label-free technique that provides intrinsic information about the sample under study. Such information includes the structure, function, and dynamics of the sample. QPI overcomes the limitations of conventional fluorescence microscopy in terms of phototoxicity to the sample and photobleaching of the fluorophore. As such, the application of QPI in estimating the three-dimensional (3D) structure and dynamics is well-suited for a range of samples from intracellular organelles to highly scattering multicellular samples while allowing for longer observation windows.

Aim: We aim to provide a comprehensive review of 3D QPI and related phase-based measurement techniques along with a discussion of methods for the estimation of sample dynamics.

Approach: We present information collected from 106 publications that cover the theoretical description of 3D light scattering and the implementation of related measurement techniques for the study of the structure and dynamics of the sample. We conclude with a discussion of the applications of the reviewed techniques in the biomedical field.

Results: QPI has been successfully applied to 3D sample imaging. The scattering-based contrast provides measurements of intrinsic quantities of the sample that are indicative of disease state, stage of growth, or overall dynamics.

Conclusions: We reviewed state-of-the-art QPI techniques for 3D imaging and dynamics estimation of biological samples. Both theoretical and experimental aspects of various techniques were discussed. We also presented the applications of the discussed techniques as applied to biomedicine and biology research.

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用于测量细胞和组织散射特性的定量相位成像技术:综述--第二部分。
意义重大:定量相位成像(QPI)是一种非侵入性的无标记技术,可提供所研究样本的内在信息。这些信息包括样品的结构、功能和动态。QPI 克服了传统荧光显微镜在样品光毒性和荧光团光漂白方面的局限性。因此,QPI 在估计三维(3D)结构和动态方面的应用非常适合从细胞内细胞器到高散射多细胞样本的一系列样本,同时允许更长的观察窗口。目的:我们旨在全面回顾 3D QPI 和相关的基于相位的测量技术,同时讨论估计样本动态的方法:方法:我们介绍了从 106 篇出版物中收集的信息,这些出版物涵盖了三维光散射的理论描述以及用于研究样品结构和动态的相关测量技术的实施。最后,我们讨论了这些技术在生物医学领域的应用:QPI 已成功应用于三维样品成像。基于散射的对比度可测量样品的固有数量,这些数量可指示疾病状态、生长阶段或整体动态:我们回顾了用于生物样本三维成像和动态估计的最新 QPI 技术。我们讨论了各种技术的理论和实验方面。我们还介绍了所讨论技术在生物医学和生物学研究中的应用。
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来源期刊
CiteScore
6.40
自引率
5.70%
发文量
263
审稿时长
2 months
期刊介绍: The Journal of Biomedical Optics publishes peer-reviewed papers on the use of modern optical technology for improved health care and biomedical research.
期刊最新文献
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