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Jones-matrix imaging of biological tissues with quadruple-channel optical coherence tomography

机译:四通道光学相干断层扫描技术对生物组织的琼斯矩阵成像

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摘要

Two-dimensional depth-resolved Jones-matrix images of scattering biological tissues were measured with novel double-source double-detector polarization-sensitive optical coherence tomography (OCT). The Jones matrix can be determined in a single scan with this OCT system. The experimental results show that this system can be effectively applied to the measurement of soft tissues, which are less stable than hard tissues. Polarization parameters such as diattenuation, birefringence, and orientation of the fast axis can be extracted through decomposition of the measured Jones matrix. The Jones matrix of thermally treated porcine tendon showed a reduction of birefringence from thermal damage. The Jones matrices of porcine skin and bovine cartilage also revealed that the density and orientation of the collagen fibers in porcine skin and bovine cartilage are not distributed as uniformly as in porcine tendon. Birefringence is sensitive to changes in tissue because it is based on phase contrast.
机译:使用新型双源双探测器偏振敏感光学相干断层扫描(OCT)测量了散射生物组织的二维深度分辨琼斯矩阵图像。琼斯矩阵可以使用此OCT系统在单次扫描中确定。实验结果表明,该系统可以有效地应用于软组织的测量,该软组织比硬组织的稳定性差。偏振参数,例如双衰减,双折射和快速轴的方向,可以通过分解所测量的琼斯矩阵来提取。经过热处理的猪腱的琼斯矩阵显示出热损伤引起的双折射降低。猪皮肤和牛软骨的琼斯矩阵还显示,猪皮肤和牛软骨中胶原纤维的密度和取向不像猪腱中那样均匀分布。双折射对组织的变化很敏感,因为它基于相衬。

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