Xiong Qiaozhou, Wang Nanshuo, Liu Xinyu, Chen Si, Liang Haitao, Chen Shufen, Liu Linbo
Opt Express. 2019 Mar 4;27(5):6910-6924. doi: 10.1364/OE.27.006910.
In single input state polarization-sensitive optical coherence tomography (PS-OCT) with high resolution, the imperfections of quarter-wave plate (QWP) and the sensitivity roll-off mismatch between the two detection channels cause unpredictable polarization distortion. We present a correction method based on the Jones matrix modeling of the system. In a single input PS-OCT system working at 840 nm with an axial resolution of ~2.3 μm, the method yielded better estimation of retardation and optic axis orientation with significantly reduced noise level, especially in weakly birefringent samples. Numerical simulations and quantitative imaging of a sample of known birefringence were performed to validate the performance. We further demonstrate the advantages of our approach with birefringence imaging of swine retina, rat aortic wall, and rat esophageal mucosa for potential clinical applications.
在具有高分辨率的单输入状态偏振敏感光学相干断层扫描(PS-OCT)中,四分之一波片(QWP)的缺陷以及两个检测通道之间的灵敏度滚降失配会导致不可预测的偏振失真。我们提出了一种基于系统琼斯矩阵建模的校正方法。在一个工作波长为840 nm、轴向分辨率约为2.3μm的单输入PS-OCT系统中,该方法能够更好地估计相位延迟和光轴方向,同时显著降低噪声水平,尤其是在弱双折射样本中。通过对已知双折射样本进行数值模拟和定量成像来验证该方法的性能。我们进一步通过对猪视网膜、大鼠主动脉壁和大鼠食管黏膜进行双折射成像,展示了我们方法在潜在临床应用中的优势。