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中国物理学会期刊

基于分数阶螺旋相位片的定量相位显微成像

CSTR: 32037.14.aps.70.20201884

Quantitative phase microscopy imaging based on fractional spiral phase plate

CSTR: 32037.14.aps.70.20201884
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  • 螺旋相衬显微术利用螺旋相位滤波器实现了样品振幅和相位的定量测量, 可被广泛应用于生物医学成像、工业检测等领域. 然而, 传统的螺旋相衬显微术需要通过三步相移法进行相位恢复, 图像采集和处理过程相对复杂, 时间分辨率较低. 为了提升其特性, 本文提出了一种基于分数阶螺旋相位片的定量相位成像方法和系统, 通过一幅经分数阶螺旋相位滤波的样品强度图像, 利用改进的Gerchberg-Saxton迭代相位恢复算法实现了样品相位的定量重构, 简化了实验过程和相位重构步骤. 计算机模拟实验研究了基于不同拓扑荷数的螺旋相位片的相位成像和重构过程, 分析了其可行性. 最后, 通过对定制的相位型光栅和生物细胞样品进行了成像和相位重构, 验证了基于分数阶螺旋相位片的相衬显微方法可以有效地提高螺旋相衬显微成像的对比度, 能够定量获其样品的相位信息, 对于螺旋相衬显微术的发展具有重要的研究意义和应用价值.

     

    Quantitative phase imaging (QPI), which combines phase imaging with optical microscopy technology, provides a marker-free, fast, non-destructive, and high-resolution imaging method for observing transparent biological samples. It is widely used in life science, biomedicine, etc. As an emerging QPI technology, spiral phase contrast microscopy (SPCM) uses a spiral phase filter to achieve edge enhancement of amplitude or phase objects. Using the multi-step phase-shifting technology, a complex sample can be measured quantitatively, which has the advantages of high stability, high sensitivity and high precision. However, the SPCM requires at least three-step phase-shifted spiral phase filtered images to achieve the quantitative reconstruction of the amplitude and phase of a sample, and the image acquisition process and the reconstruction process are relatively complicated, which require high stability of system, and the SPCM has low temporal resolution. In order to further improve the performance of SPCM and increase the system stability, sensitivity and temporal resolution, in this paper a quantitative phase imaging method and system based on a fractional spiral phase plate is proposed. Through a sample intensity image filtered by a fractional spiral phase plate, the modified Gerchberg-Saxton iterative phase retrieval algorithm is used to quantitatively reconstruct the phase of a pure phase sample, which simplifies the experimental process and phase reconstruction steps of spiral phase contrast microsocopy. In the computer simulation experiments, the phase imaging process and the reconstruction process of spiral phase plates based on different topological charges are studied, the feasibility of which is analyzed. Finally, through imaging and phase reconstruction of the phase grating and biological cell sample, it is verified that the phase contrast microscopy method based on the fractional spiral phase plate can effectively improve the contrast of spiral phase contrast microscopy and can obtain a quantitative reconstruciton of a weak phase object. The phase information of a sample has significance in research and application for developing the spiral phase contrast microscopy.

     

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