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Three-Dimensional Quantitative Phase Imaging: Current and Future Perspectives

机译:三维定量相位成像:当前和未来的观点

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摘要

Great effort has been made in the recent past to develop new non-destructive imaging modalities for both two and three dimensional objects, based on the phase properties of a specimen. Quantitative phase tomography (QPT) is a hybrid technique that has been proposed to provide three-dimensional (3D) refractive index (RI) profiling of irregular phase objects by combining transverse phase measurements with traditional tomographic reconstruction techniques. This profiling is accomplished through measurements of sets of projections which are ultimately related to the RI values of the object's transverse cross-section. This is particularly useful for 3D refractive index determination of specimens where staining is not appropriate or for materials that cannot be stained and is essential to many applications in photonics and biotechnology. This article reviews recent developments in quantitative phase tomography as they are presently available and suggests future applications based on current research on the 3D RI. The enabling elements for 3D QPT in the context of four key areas are discussed: the effect of the refractive index of the surrounding matching fluid, spatial resolution, phase accuracy and optimal defocus. Recent progress and future perspectives related to each of these areas is presented with regard to various test objects of known optical properties.
机译:近年来,根据标本的相位特性,为开发二维和三维物体的新非破坏性成像模态做出了巨大努力。定量相层析成像(QPT)是一种混合技术,已提出通过将横向相测量与传统层析重建技术相结合来提供不规则相物体的三维(3D)折射率(RI)轮廓图。通过测量与最终与对象横截面的RI值相关的一组投影来完成此轮廓分析。这对于不适合染色的标本的3D折射率测定或无法染色的材料特别有用,该材料对于光子学和生物技术中的许多应用都是必不可少的。本文回顾了目前在定量相层析成像技术方面的最新进展,并根据对3D RI的最新研究提出了未来的应用建议。讨论了四个关键领域中3D QPT的实现要素:周围匹配流体的折射率,空间分辨率,相位精度和最佳散焦的影响。关于已知光学特性的各种测试对象,介绍了与这些领域有关的最新进展和未来观点。

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