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Quantitative phase recovery from asymmetric illumination on an LED array microscope

机译:LED阵列显微镜上非对称照明的定量相恢复

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Differential phase contrast (DPC) is a quantitative phase imaging technique which measures the sample's phase derivative by taking two images from complementary asymmetric illumination patterns. Distinct from coherent techniques, DPC relies on partially coherent illumination, providing 2 × better lateral resolution, better optical sectioning, and immunity to speckle noise. In this paper, we derive the weak object transfer function to quantify how sample's phase is converted into our DPC measurements, then develop quantitative inversion methods. Phase reconstructions from single-axis DPC measurements suffer from missing frequencies along the axis of asymmetry. We measure the missing frequency information by taking DPC measurements from other axes. Our phase reconstruction method provides a unified framework for both single and multi-axis DPC measurements. We implement our DPC measurements in real-time and along arbitrary axes of asymmetry by computational illumination on an LED array microscope.
机译:差分相位对比(DPC)是一种定量相位成像技术,通过从互补的不对称照明图案中获取两个图像来测量样品的相位导数。与相干技术不同,DPC依靠部分相干照明,可提供2倍更好的横向分辨率,更好的光学切片以及对斑点噪声的抵抗力。在本文中,我们推导了弱对象传递函数,以量化如何将样品的相转换为DPC测量值,然后开发定量反演方法。从单轴DPC测量获得的相位重建会沿着不对称轴缺少频率。我们通过从其他轴进行DPC测量来测量丢失的频率信息。我们的相位重建方法为单轴和多轴DPC测量提供了一个统一的框架。我们通过在LED阵列显微镜上进行计算照明,实时并沿着任意不对称轴实施DPC测量。

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