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用于亚扩散长度尺度下生物组织表征的偏振增强背向散射光谱学

Polarized Enhanced Backscattering Spectroscopy for Characterization of Biological Tissues at Subdiffusion Length-scales.

作者信息

Radosevich Andrew J, Rogers Jeremy D, Turzhitsky Vladimir, Mutyal Nikhil N, Yi Ji, Roy Hemant K, Backman Vadim

机构信息

Department of Biomedical Engineering, Northwestern University, Evanston, IL 60208 USA.

出版信息

IEEE J Sel Top Quantum Electron. 2012 Jul;18(4):1313-1325. doi: 10.1109/JSTQE.2011.2173659.

Abstract

Since the early 1980's, the enhanced backscattering (EBS) phenomenon has been well-studied in a large variety of non-biological materials. Yet, until recently the use of conventional EBS for the characterization of biological tissue has been fairly limited. In this work we detail the unique ability of EBS to provide spectroscopic, polarimetric, and depth-resolved characterization of biological tissue using a simple backscattering instrument. We first explain the experimental and numerical procedures used to accurately measure and model the full azimuthal EBS peak shape in biological tissue. Next we explore the peak shape and height dependencies for different polarization channels and spatial coherence of illumination. We then illustrate the extraordinary sensitivity of EBS to the shape of the scattering phase function using suspensions of latex microspheres. Finally, we apply EBS to biological tissue samples in order to measure optical properties and observe the spatial length-scales at which backscattering is altered in early colon carcinogenesis.

摘要

自20世纪80年代初以来,增强背向散射(EBS)现象已在多种非生物材料中得到充分研究。然而,直到最近,传统EBS用于生物组织表征的应用还相当有限。在这项工作中,我们详细阐述了EBS利用简单的背向散射仪器对生物组织进行光谱、偏振和深度分辨表征的独特能力。我们首先解释用于准确测量和模拟生物组织中全方位EBS峰形的实验和数值程序。接下来,我们探索不同偏振通道和照明空间相干性的峰形和高度依赖性。然后,我们使用乳胶微球悬浮液说明EBS对散射相函数形状的非凡敏感性。最后,我们将EBS应用于生物组织样本,以测量光学特性,并观察在早期结肠癌发生过程中背向散射发生改变的空间长度尺度。

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