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结构光漫射光学成像综述。

Review of structured light in diffuse optical imaging.

机构信息

National Institute of Standards and Technology, Sensor Science Division, Gaithersburg, Maryland, United States.

Rensselaer Polytechnic Institute, Department of Biomedical Engineering, Troy, New York, United States.

出版信息

J Biomed Opt. 2018 Sep;24(7):1-20. doi: 10.1117/1.JBO.24.7.071602.

Abstract

Diffuse optical imaging probes deep living tissue enabling structural, functional, metabolic, and molecular imaging. Recently, due to the availability of spatial light modulators, wide-field quantitative diffuse optical techniques have been implemented, which benefit greatly from structured light methodologies. Such implementations facilitate the quantification and characterization of depth-resolved optical and physiological properties of thick and deep tissue at fast acquisition speeds. We summarize the current state of work and applications in the three main techniques leveraging structured light: spatial frequency-domain imaging, optical tomography, and single-pixel imaging. The theory, measurement, and analysis of spatial frequency-domain imaging are described. Then, advanced theories, processing, and imaging systems are summarized. Preclinical and clinical applications on physiological measurements for guidance and diagnosis are summarized. General theory and method development of tomographic approaches as well as applications including fluorescence molecular tomography are introduced. Lastly, recent developments of single-pixel imaging methodologies and applications are reviewed.

摘要

漫射光学成像是一种能够深入活体组织的成像技术,可以进行结构、功能、代谢和分子成像。最近,由于空间光调制器的出现,宽场定量漫射光学技术得到了实现,这得益于结构光方法。这种实现方式极大地促进了深度分辨光学和生理特性在厚组织和深部组织中的定量和表征,同时具有快速采集的优势。我们总结了当前在三种主要利用结构光的技术中的工作状态和应用:空间频域成像、光学层析成像和单像素成像。描述了空间频域成像的理论、测量和分析。然后,总结了先进的理论、处理和成像系统。总结了用于指导和诊断的生理测量的临床前和临床应用。介绍了层析成像方法的一般理论和方法开发以及包括荧光分子层析成像在内的应用。最后,回顾了单像素成像方法和应用的最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c910/6676045/1940acf67d77/JBO-024-071602-g001.jpg

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