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首页> 外文期刊>Journal of Biophotonics >Isotropic differential phase contrast microscopy for quantitative phase bio‐imaging
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Isotropic differential phase contrast microscopy for quantitative phase bio‐imaging

机译:针对定量相生物成像的各向同性差异相位对比度显微镜

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>Quantitative phase imaging (QPI) has been investigated to retrieve optical phase information of an object and applied to biological microscopy and related medical studies. In recent examples, differential phase contrast (DPC) microscopy can recover phase image of thin sample under multi‐axis intensity measurements in wide‐field scheme. Unlike conventional DPC, based on theoretical approach under partially coherent condition, we propose a new method to achieve isotropic differential phase contrast (iDPC) with high accuracy and stability for phase recovery in simple and high‐speed fashion. The iDPC is simply implemented with a partially coherent microscopy and a programmable thin‐film transistor (TFT) shield to digitally modulate structured illumination patterns for QPI. In this article, simulation results show consistency of our theoretical approach for iDPC under partial coherence. In addition, we further demonstrate experiments of quantitative phase images of a standard micro‐lens array, as well as label‐free live human cell samples.
机译: 已经研究了定量相片成像(QPI)以检测物体的光学相位信息并应用于生物显微镜和相关医学研究。在最近的示例中,差异相位对比度(DPC)显微镜可以在宽场方案中的多轴强度测量下恢复薄样品的相位图像。与常规DPC不同,基于部分相干条件下的理论方法,我们提出了一种新的方法,以实现具有高精度和稳定性的各向同性差异相位对比(IDPC),以简单而高速时尚的相位恢复。 IDPC简单地利用部分相干的显微镜和可编程薄膜晶体管(TFT)屏蔽以数字调制用于QPI的结构化照明模式。在本文中,仿真结果显示了我们在部分连贯性下IDPC理论方法的一致性。另外,我们进一步证明了标准微透镜阵列的定量相位图像的实验,以及无标记的活人细胞样品。

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