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Polarization state tracing method to map local birefringent properties in samples using polarization sensitive optical coherence tomography

机译:使用偏振敏感光学相干断层扫描来映射样品中局部双折射性质的偏振态跟踪方法

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摘要

We propose a method that utilizes the trajectory of output polarization states on the Poincaré sphere to derive depth-resolved birefringent information within samples using a fiber-based polarization sensitive optical coherence tomography. The apparent (or intermediate) optic axis and the local phase retardation are first obtained by fitting a plane to the adjacent output polarization states along depths in the Poincare sphere. A sequence of 3D rotation operation determined by the local birefringent property of the upper layers is then applied to the apparent axis to finally determine the local optic axis. This method requires only one input polarization state and is compatible with both free-space and fiber-based PSOCT systems, simplifying the imaging system setup. The theoretical framework is presented to derive the local phase retardation and optic axis from the output polarization states and then demonstrated by mapping local birefringent information of the mouse thigh tissue in vitro.
机译:我们提出了一种方法,该方法利用Poincaré球体上的输出偏振状态的轨迹,以使用基于光纤的偏振敏光学相干断层扫描来源的样本内的深度分辨的双折射信息。首先通过将平面沿着Poincare球体中的深度装配到相邻的输出偏振状态来获得表观(或中间)光轴和局部相位延迟。然后将通过上层的局部双折射性确定的3D旋转操作序列施加到表观轴上,以最终确定局部光轴。该方法只需要一个输入偏振状态,并且与自由空间和基于光纤的PSOCT系统兼容,简化了成像系统设置。提出理论框架以导出来自输出偏振态的局部相位延迟和光学轴,然后通过体外映射小鼠大腿组织的局部双折射信息来证明。

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