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Noise-bias and polarization-artifact corrected optical coherence tomography by maximum a-posteriori intensity estimation

机译:通过最大后验强度估计对噪声偏向和偏振伪像校正的光学相干断层扫描

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摘要

We propose using maximum a-posteriori (MAP) estimation to improve the image signal-to-noise ratio (SNR) in polarization diversity (PD) optical coherence tomography. PD-detection removes polarization artifacts, which are common when imaging highly birefringent tissue or when using a flexible fiber catheter. However, dividing the probe power to two polarization detection channels inevitably reduces the SNR. Applying MAP estimation to PD-OCT allows for the removal of polarization artifacts while maintaining and improving image SNR. The effectiveness of the MAP-PD method is evaluated by comparing it with MAP-non-PD, intensity averaged PD, and intensity averaged non-PD methods. Evaluation was conducted in vivo with human eyes. The MAP-PD method is found to be optimal, demonstrating high SNR and artifact suppression, especially for highly birefringent tissue, such as the peripapillary sclera. The MAP-PD based attenuation coefficient image also shows better differentiation of attenuation levels than non-MAP attenuation images.
机译:我们建议使用最大后验(MAP)估计来提高偏振分集(PD)光学相干断层扫描中的图像信噪比(SNR)。 PD检测可消除偏振伪影,当对高度双折射的组织成像或使用柔性纤维导管时,偏振伪影很常见。但是,将探头功率分配给两个极化检测通道不可避免地会降低SNR。将MAP估计应用于PD-OCT可以消除偏振伪影,同时保持并改善图像SNR。通过将MAP-PD方法与MAP-non-PD方法,强度平均PD和强度平均非PD方法进行比较来评估其有效性。用人眼在体内进行评估。发现MAP-PD方法是最佳方法,它显示出高SNR和伪影抑制效果,尤其是对于高度双折射的组织(如乳头周围巩膜)。与非MAP衰减图像相比,基于MAP-PD的衰减系数图像还显示出更好的衰减级别差异。

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