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Quantitative phase imaging of live cells with near on-axis digital holographic microscopy using constrained optimization approach

机译:使用约束优化方法的近轴数字全息显微镜对活细胞进行定量相成像

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We demonstrate a single-shot near on-axis digital holographic microscope that uses a constrained optimization approach for retrieval of the complex object function in the hologram plane. The recovered complex object is back-propagated from the hologram plane to image plane using the Fresnel back-propagation algorithm. A numerical aberration compensation algorithm is employed for correcting the aberrations in the object beam. The reference beam angle is calculated automatically using the modulation property of Fourier transform without any additional recording. We demonstrate this approach using a United States Air Force (USAF) resolution target as an object on our digital holographic microscope. We also demonstrate this approach by recovering the quantitative phase images of live yeast cells, red blood cells and dynamics of live dividing yeast cells.
机译:我们展示了一种单轴近轴数字全息显微镜,它使用约束优化方法来检索全息图平面中的复杂对象函数。使用菲涅耳反向传播算法将恢复的复杂对象从全息图平面反向传播到图像平面。数值像差补偿算法用于校正物镜光束中的像差。参考光束角是使用傅立叶变换的调制属性自动计算的,无需任何其他记录。我们使用美国空军(USAF)分辨率目标作为数字全息显微镜上的对象,演示了这种方法。我们还通过恢复活酵母细胞,红细胞和活分裂酵母细胞动力学的定量相图像来证明这种方法。

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