Zhu Lida, Makita Shuichi, Oida Daisuke, Miyazawa Arata, Oikawa Kensuke, Mukherjee Pradipta, Lichtenegger Antonia, Distel Martin, Yasuno Yoshiaki
Computational Optics Group, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Sky technology Inc., Tsukuba, Ibaraki, Japan.
Biomed Opt Express. 2022 Apr 22;13(5):2975-2994. doi: 10.1364/BOE.454975. eCollection 2022 May 1.
Here we demonstrate a long-depth-of-focus imaging method using polarization sensitive optical coherence tomography (PS-OCT). This method involves a combination of Fresnel-diffraction-model-based phase sensitive computational refocusing and Jones-matrix based PS-OCT (JM-OCT). JM-OCT measures four complex OCT images corresponding to four polarization channels. These OCT images are computationally refocused as preserving the mutual phase consistency. This method is validated using a static phantom, postmortem zebrafish, and porcine muscle samples. All the samples demonstrated successful computationally-refocused birefringence and degree-of-polarization-uniformity (DOPU) images. We found that defocusing induces polarization artifacts, i.e., incorrectly high birefringence values and low DOPU values, which are substantially mitigated by computational refocusing.
在此,我们展示了一种使用偏振敏感光学相干断层扫描(PS-OCT)的长景深成像方法。该方法涉及基于菲涅耳衍射模型的相敏计算重聚焦与基于琼斯矩阵的PS-OCT(JM-OCT)的结合。JM-OCT测量对应于四个偏振通道的四个复数OCT图像。这些OCT图像在保持相互相位一致性的情况下进行计算重聚焦。该方法通过静态体模、死后斑马鱼和猪肌肉样本进行了验证。所有样本均成功获得了计算重聚焦后的双折射和偏振度均匀性(DOPU)图像。我们发现散焦会导致偏振伪像,即双折射值过高和DOPU值过低,而通过计算重聚焦可大幅减轻这些伪像。