He Chao, He Honghui, Chang Jintao, Chen Binguo, Ma Hui, Booth Martin J
Department of Engineering Science, University of Oxford, Parks Road, Oxford, OX1 3PJ, UK.
Guangdong Engineering Center of Polarisation Imaging and Sensing Technology, Tsinghua Shenzhen International Graduate School, Tsinghua University, 518055, Shenzhen, China.
Light Sci Appl. 2021 Sep 22;10(1):194. doi: 10.1038/s41377-021-00639-x.
Many polarisation techniques have been harnessed for decades in biological and clinical research, each based upon measurement of the vectorial properties of light or the vectorial transformations imposed on light by objects. Various advanced vector measurement/sensing techniques, physical interpretation methods, and approaches to analyse biomedically relevant information have been developed and harnessed. In this review, we focus mainly on summarising methodologies and applications related to tissue polarimetry, with an emphasis on the adoption of the Stokes-Mueller formalism. Several recent breakthroughs, development trends, and potential multimodal uses in conjunction with other techniques are also presented. The primary goal of the review is to give the reader a general overview in the use of vectorial information that can be obtained by polarisation optics for applications in biomedical and clinical research.
数十年来,许多偏振技术已被应用于生物学和临床研究,每种技术都基于对光的矢量特性或物体对光施加的矢量变换的测量。人们已经开发并应用了各种先进的矢量测量/传感技术、物理解释方法以及分析生物医学相关信息的方法。在本综述中,我们主要专注于总结与组织偏振测定法相关的方法和应用,重点是采用斯托克斯 - 米勒形式体系。还介绍了一些近期的突破、发展趋势以及与其他技术结合的潜在多模态用途。本综述的主要目标是让读者对利用偏振光学获取的矢量信息在生物医学和临床研究中的应用有一个总体概述。