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Imaging and spectroscopy of tissue-like phantoms using photon density waves: Theory and experiments.

机译:使用光子密度波对类组织幻像进行成像和光谱:理论和实验。

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摘要

The determination of the optical properties of turbid biological media is of primary importance in several areas of medicine and biotechnology. In particular, the quantitative determination and spatial localization of the optical scattering and absorbing properties of biological tissue would allow for the non-invasive and non-ionizing imaging of tissue structure and the monitoring of physiology. Until recently, such characterization of thick, highly scattering biological tissues using visible and near infrared light has been thwarted because of the inability to determine the absolute optical properties of thick tissues.; This thesis presents the development of the concept, physical model, and experimental study of diffuse photon density waves in thick turbid media. The goal of this work is to determine the applicability of photon density waves to the optical tomography and spectroscopy of thick, multiply scattering media. Toward this end, analytic expressions based on the diffusion approximation to the Boltzmann transport equation are derived for the case of an isotropically emitting, sinusoidally intensity-modulated point source of light immersed in an infinite, macroscopically uniform, multiply scattering medium. These frequency-domain expressions are given in terms of the optical properties of the medium, and they predict that the photon density propagates outward from the light source as a spherical wave of constant phase velocity. Experiments are performed which support the validity of these frequency-domain expressions, and provide a basis for the understanding of photon transport in turbid media containing absorbing and/or reflecting objects. Further experiments demonstrate the feasibility of using frequency-domain data in conjunction with a frequency-domain diffusion model to determine the absolute optical parameters of thick, multiply scattering media.
机译:在医学和生物技术的几个领域中,确定混浊的生物介质的光学性质至关重要。特别地,对生物组织的光学散射和吸收特性的定量确定和空间定位将允许组织结构的非侵入性和非电离成像以及生理学监测。直到最近,由于无法确定厚组织的绝对光学性质,使用可见光和近红外光对厚的,高度散射的生物组织的这种表征一直受到阻碍。本文介绍了在厚混浊介质中扩散光子密度波的概念,物理模型和实验研究的进展。这项工作的目的是确定光子密度波在厚的多重散射介质的光学层析成像和光谱学中的适用性。为此,对于浸没在无限的,宏观上均匀的多重散射介质中的各向同性发射,正弦强度调制的点光源,可以得出基于玻尔兹曼输运方程的扩散近似的解析表达式。这些频域表达式是根据介质的光学特性给出的,它们预测光子密度会以恒定相速度的球形波从光源向外传播。进行的实验支持这些频域表达式的有效性,并为理解包含吸收和/或反射物体的混浊介质中的光子传输提供了基础。进一步的实验证明了结合使用频域数据和频域扩散模型来确定厚的多重散射介质的绝对光学参数的可行性。

著录项

  • 作者

    Fishkin, Joshua Ben.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Physics Optics.; Engineering Biomedical.; Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 139 p.
  • 总页数 139
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;生物医学工程;预防医学、卫生学;
  • 关键词

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