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傅里叶叠层成像术中的高效照明角度自校准

Efficient illumination angle self-calibration in Fourier ptychography.

作者信息

Eckert Regina, Phillips Zachary F, Waller Laura

出版信息

Appl Opt. 2018 Jul 1;57(19):5434-5442. doi: 10.1364/AO.57.005434.

Abstract

Fourier ptychography captures intensity images with varying source patterns (illumination angles) in order to computationally reconstruct large space-bandwidth-product images. Accurate knowledge of the illumination angles is necessary for good image quality; hence, calibration methods are crucial, despite often being impractical or slow. Here, we propose a fast, robust, and accurate self-calibration algorithm that uses only experimentally collected data and general knowledge of the illumination setup. First, our algorithm makes a fast direct estimate of the brightfield illumination angles based on image processing. Then, a more computationally intensive spectral correlation method is used inside the iterative solver to further refine the angle estimates of both brightfield and darkfield images. We demonstrate our method for correcting large and small misalignment artifacts in 2D and 3D Fourier ptychography with different source types: an LED array, a galvo-steered laser, and a high-NA quasi-dome LED illuminator.

摘要

傅里叶叠层成像通过捕获具有不同光源模式(照明角度)的强度图像,以便通过计算重建大空间带宽积图像。准确了解照明角度对于获得良好的图像质量至关重要;因此,校准方法至关重要,尽管它们通常不实用或速度慢。在此,我们提出一种快速、稳健且准确的自校准算法,该算法仅使用实验收集的数据和对照明设置的一般了解。首先,我们的算法基于图像处理对明场照明角度进行快速直接估计。然后,在迭代求解器内部使用计算量更大的光谱相关方法来进一步细化明场和暗场图像的角度估计。我们展示了我们的方法,用于校正二维和三维傅里叶叠层成像中不同光源类型(LED阵列、振镜扫描激光器和高数值孔径准穹顶LED照明器)下的大小失准伪影。

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