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Inversion-free image recovery from strong aberration using a minimally sampled transmission matrix

机译:使用最少采样的传输矩阵从强像差中进行无反转图像恢复

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摘要

A transmission matrix (TM), a characteristic response for an input-output relation of an optical system, has been used for achieving diffraction-limited and aberration-free images through highly-aberrant imaging systems. However, its requirement of acquiring a huge-size TM along with its heavy computational load limit its widespread applications. Here we propose a method for TM-based image reconstruction, which is more efficient in terms of data manipulation and computational time. Only 10% of the TM elements for a fish-eye (FE) lens with strong aberration were sampled compared to that required for the image reconstruction by the conventional inversion method. The missing information was filled in by an iterative interpolation algorithm working in k-space. In addition, as a replacement of the time-consuming matrix inversion process, a phase pattern was created from the minimally sampled TM in order to compensate for the angle-dependent phase retardation caused by the FE lens. The focal distortion could be corrected by applying the phase correction pattern to the angular spectrums of the measured object images. The remaining spatial distortion could also be determined through the geometrical transformation also determined by the minimally sampled TM elements. Through the use of these procedures, the object image can be reconstructed 55 times faster than through the use of the usual inversion method using the full-sized TM, without compromising the reconstruction performances.
机译:传输矩阵(TM)是光学系统输入输出关系的特征响应,已被用于通过高像差成像系统获得衍射受限和无像差的图像。然而,其获取大型TM的要求及其繁重的计算负荷限制了其广泛的应用。在这里,我们提出了一种基于TM的图像重建方法,该方法在数据处理和计算时间方面更为有效。与通过常规反演方法进行图像重建所需的相比,仅对具有强像差的鱼眼(FE)镜头的TM元素进行了10%的采样。缺失的信息由在k空间中工作的迭代插值算法填充。此外,作为耗时的矩阵求逆过程的替代,从最小采样的TM创建了一个相位模式,以补偿由FE透镜引起的与角度有关的相位延迟。可以通过将相位校正图案应用于所测量的对象图像的角谱来校正焦点失真。剩余的空间失真也可以通过几何变换确定,该几何变换也由最小采样的TM元素确定。通过使用这些过程,可以比使用使用全尺寸TM的常规反转方法将对象图像重建快55倍,而不会影响重建性能。

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