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Scattering of light waves by biological cells and in tissues.

机译:生物细胞和组织中的光波散射。

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摘要

Studies of optical properties of biological cells and tissues have attracted intensive research efforts due to its fundamental importance in a wide range of biomedical optics problems. The aims of this dissertation research are to construct various experimental systems to determine the distribution of refractive index on the cellular scale and the refractive index for turbid and skin samples as well as the theoretical modeling.; A goniometer system with a photoelastic modulation scheme was employed to determine Mueller matrix elements of B-cell and HL-60 cell suspension samples. The angular dependence of the sixteen elements has been determined from the scattered light signals at three wavelengths of 442, 633 and 850 (or 862) nm. A finite-difference-time-domain method and coated sphere model have been used to investigate the effect of intracellular refractive index on the angle-resolved Mueller elements at different wavelengths using the 3D structures of selected B-cells reconstructed from confocal images. With these results, we demonstrated the usefulness of light scattering method in obtaining the cell morphology information.; An automated reflectometry system was constructed and calibrated for accurate measurement of coherent reflectance curves of turbid samples and the presence of coherent and diffuse reflection near the specular reflection angle has been analyzed. The complex refractive indices of turbid samples have been determined based on the nonlinear regression of the coherent reflectance curves by the Fresnel's equations. The complex refractive indices of fresh porcine skin epidermis and dermis tissues, human skin epidermis and dermis tissues and other turbid samples were determined at 8 wavelengths between 325 and 1550nm. Dispersion relations of the real refractive index have been obtained and compared in the same spectral region.
机译:由于生物细胞和组织的光学性质在生物医学光学问题的广泛领域中具有根本重要性,因此对生物细胞和组织的光学性质的研究吸引了广泛的研究工作。本论文的研究目的是建立各种实验系统,以确定折射率在细胞尺度上的分布,浊度和皮肤样品的折射率以及理论模型。使用具有光弹性调制方案的测角仪系统确定B细胞和HL-60细胞悬浮液样品的Mueller矩阵元素。已经从442、633和850(或862)nm的三个波长处的散射光信号确定了十六个元素的角度依赖性。有限差分时域方法和涂层球面模型已被用于研究共聚焦图像重建的选定B细胞的3D结构,从而研究了细胞内折射率对不同波长的角度分辨Mueller元素的影响。利用这些结果,我们证明了光散射方法在获得细胞形态信息中的有用性。构建并校准了自动反射仪系统,以准确测量混浊样品的相干反射率曲线,并分析了镜面反射角附近存在相干和漫反射。根据菲涅耳方程,通过相干反射率曲线的非线性回归,可以确定浑浊样品的复数折射率。在325至1550nm之间的8个波长下测定新鲜猪皮肤表皮和真皮组织,人皮肤表皮和真皮组织以及其他混浊样品的复折射率。已经获得了真实折射率的色散关系,并在同一光谱区域中进行了比较。

著录项

  • 作者

    Ding, Huafeng.;

  • 作者单位

    East Carolina University.;

  • 授予单位 East Carolina University.;
  • 学科 Engineering Biomedical.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;光学;
  • 关键词

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