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Depth-resolved two-dimensional Stokes vectors of backscattered light and Mueller matrices of biological tissue measured with optical coherence tomography

机译:利用光学相干断层扫描测量的生物组织的深度分辨二维斯托克斯的背散射光和穆勒矩阵的载体

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摘要

Mueller matrices provide a complete characterization of the optical polarization properties of biological tissue. A polarization-sensitive optical coherence tomography (OCT) system was built and used to investigate the optical polarization properties of biological tissues and other turbid media. The apparent degree of polarization (DOP) of the backscattered light was measured with both liquid and solid scattering samples. The DOP maintains the value of unity within the detectable depth for the solid sample, whereas the DOP decreases with the optical depth for the liquid sample. Two-dimensional depth-resolved images of both the Stokes vectors of the backscattered light and the full Mueller matrices of biological tissue were measured with this system. These polarization measurements revealed some tissue structures that are not perceptible with standard OCT.
机译:Mueller矩阵提供了生物组织光学偏振特性的完整表征。建立了偏振敏感光学相干断层扫描(OCT)系统,并用于研究生物组织和其他混浊介质的光学偏振特性。使用液体和固体散射样品都测量了反向散射光的表观偏振度(DOP)。对于固体样品,DOP保持单位值,而对于液体样品,DOP随光学深度降低。使用该系统测量了背向散射光的斯托克斯向量和生物组织的完整穆勒矩阵的二维深度分辨图像。这些极化测量揭示了一些标准OCT无法感知的组织结构。

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