迭代重建
计算机科学
反褶积
算法
反问题
断层摄影术
光学
盲反褶积
相位恢复
重建算法
正规化(语言学)
人工智能
迭代法
图像处理
压缩传感
图像质量
断层重建
图像分辨率
图像复原
代数重建技术
傅里叶变换
点扩散函数
作者
Joshua M. Long,Ji Ye Chun,Thomas K. Gaylord
出处
期刊:Applied Optics
[The Optical Society]
日期:2021-09-20
卷期号:60 (27): 8485-8492
摘要
Tomographic deconvolution phase microscopy (TDPM) is a promising approach for 3D quantitative imaging of phase objects such as biological cells and optical fibers. In the present work, the alternating direction method of multipliers (ADMM) is applied to TDPM to shorten its image acquisition and processing times while simultaneously improving its accuracy. ADMM-TDPM is used to optimize the image fidelity by minimizing Gaussian noise and by using total variation regularization with the constraints of nonnegativity and known zeros. ADMM-TDPM can reconstruct phase objects that are shift variant in three spatial dimensions. ADMM-TDPM achieves speedups of 5x in image acquisition time and greater than 10x in image processing time with accompanying higher accuracy compared to TDPM.
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