首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Iterative optimization in tomographic deconvolution phase microscopy
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Iterative optimization in tomographic deconvolution phase microscopy

机译:断层切断去卷积相显微镜中的迭代优化

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Tomographic deconvolution phase microscopy (TDPM) is a three-dimensional (3D) quantitative phase imaging (QPI) method using partially coherent light that can be implemented on a commercial microscope platform. However, the measurement procedure is relatively time-consuming because it requires many illumination angles. In the present work, an edge-preserving iterative optimization algorithm is presented and applied to TDPM, so that the required number of illumination angles is reduced from 15 to 3, while the measurement accuracy remains high. In addition, the iterative algorithm does not require matrix representation of operators, so the memory requirement is correspondingly reduced. (c) 2018 Optical Society of America
机译:断层切断折射相位显微镜(TDPM)是一种三维(3D)定量相成像(QPI)方法,其使用可以在商业显微镜平台上实现的部分相干光。 然而,测量程序相对耗时,因为它需要许多照明角度。 在本作本作中,呈现并施加到TDPM的边缘保留迭代优化算法,使得所需的照明角度从15到3减小,而测量精度仍然很高。 另外,迭代算法不需要运算符的矩阵表示,因此内存要求相应地减少。 (c)2018年光学学会

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