相位成像
相(物质)
显微镜
限制
极化(电化学)
材料科学
光学
差速器(机械装置)
差分相位
计算机科学
微分干涉显微术
干涉测量
生物系统
医学影像学
显微镜
相位展开
迭代重建
生物医学工程
相位恢复
生物标本
成像技术
计算机视觉
定量分析(化学)
人工智能
摘要
ABSTRACT Quantitative phase imaging enables non‐invasive acquisition of quantitative phase information from transparent cells, providing a powerful tool for morphological studies of biological samples, extraction of physical parameters, and cellular phenotype analysis. However, existing methods often rely on complex interferometric setups or require multiple axial scans, limiting their practicality. Here, we propose a quantitative phase imaging method based on spin‐Hall differential microscopy. By adjusting the incident polarization angle, differential operation in arbitrary directions can be achieved. Complete phase gradient information can be extracted by combining differential and biased imaging. Finally, the quantitative phase distribution of the sample can be reconstructed via the least‐squares method. Experimental results validate the efficacy of this scheme in transparent phase targets, label‐free cell imaging, and surface topography detection, exhibiting excellent phase reconstruction accuracy and high‐contrast imaging capability. The scheme features a simple structure, low cost, good stability, and compatibility with various wavelengths, which offers an effective way for quantitative phase microscopy with important applications in biomedical imaging and precision measurement.
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