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Diffuse Correlation Tomography for Femoral Graft Blood Flow Monitoring

机译:弥散相关层析成像用于股骨移植血流监测

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摘要

Near-infrared light has been widely used in tissue optics due to low absorption. However, multiple scattering dominates light propagation at large distances, making it a challenge to use an optical method to image deep-tissue activities (> 1mm) directly. In the limit of multiple scattering, a diffusion approximation can be used to describe photon propagation inside the bulk tissue. When a long-coherence-length laser is used as an illumination source, speckles form on the tissue surface. The intensity of a single speckle fluctuates due to the motion of red blood cells inside the tissue. The fluctuation, quantified by an intensity temporal autocorrelation function (a measure of temporal coherence), is directly related to the average speed of red blood cells.;In this thesis, I first introduce the theory on how to reconstruct 3D blood flow distribution in deep tissue (> 1 mm) by measuring the temporal coherence of light on the tissue surface: namely, a technique called diffuse correlation tomography (DCT). Then, I describe how I constructed a DCT system and validated its performance through computer simulations and tissue phantom experiments. Finally, I present the results from the application of DCT to monitor blood flow changes in a healing mouse femoral graft, demonstrating the potential to non-invasively monitor deep tissue with a combination of optics and numerical computation.
机译:由于吸收率低,近红外光已广泛用于组织光学。然而,多重散射控制了远距离光的传播,这使得使用光学方法直接成像深层组织活动(> 1mm)成为一个挑战。在多重散射的极限下,扩散近似可以用来描述光子在大块组织内部的传播。当使用长相干长度的激光作为照明源时,在组织表面会形成斑点。由于组织内红细胞的运动,单个斑点的强度会发生波动。用强度时间自相关函数(时间相干性的量度)量化的波动与红细胞的平均速度直接相关。;在本文中,我首先介绍如何重建深层3D血流分布的理论通过测量组织表面上的光的时间相干性来检测组织(> 1 mm):即称为扩散相关断层扫描(DCT)的技术。然后,我描述了如何构建DCT系统并通过计算机仿真和组织体模实验验证其性能。最后,我介绍了DCT应用于监测愈合的小鼠股骨的血流变化的结果,展示了结合光学和数值计算非侵入性监测深部组织的潜力。

著录项

  • 作者

    Han, Songfeng.;

  • 作者单位

    University of Rochester.;

  • 授予单位 University of Rochester.;
  • 学科 Optics.;Biomedical engineering.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 214 p.
  • 总页数 214
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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