Coupling Michelson-like lateral shear interferometric microscopy with self-referencing numerical phase calibration for quantitative measurement of 3D surface morphology of biological cells

Tengfei Sun, Shaoying Ke, Wentao Sui, Wenhao Zhang, Peng Lu, Dongfeng Qi, Bing Yang, Juan Wei, Wei Zhang, Hongyu Zheng
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Abstract

A Michelson interferometer is commonly used for evaluating the morphology of a cell. However, the interference imaging with reference and object beams is easily affected by external vibrations and environmental disturbances, leading to unstable interference patterns. In this paper, the three-dimensional surface morphology of the biological cell is evaluated by a new quantitative phase imaging method, which couples Michelson-like lateral shear interferometric microscopy with self-referencing numerical phase calibration. The Michelson-like lateral shear interferometric microscopy is constructed by replacing the two plane mirrors of the traditional Michelson interferometer with two common right-angle prisms and generates interference fringe patterns. The lateral shear is created and freely adjustable by simply translating/or rotating one right-angle prism. To calculate the phase information of the biological cells quantitatively, the classical Fourier transform method is used to process the recorded interferogram, and then the self-referencing numerical phase calibration method is utilized for acquiring accurate phase information. Successfully achieving quantitative phase imaging of a cell verifies the feasibility and practicability of the proposed method.
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将迈克尔逊式横向剪切干涉显微镜与自参照数值相位校准联用,定量测量生物细胞的三维表面形态
迈克尔逊干涉仪通常用于评估细胞的形态。然而,参考光束和目标光束的干涉成像容易受到外部振动和环境干扰的影响,导致干涉图不稳定。本文采用一种新的定量相位成像方法来评估生物细胞的三维表面形态,该方法将迈克尔逊类横向剪切干涉显微镜与自参考数值相位校准相结合。米克尔逊式横向剪切干涉显微镜是用两个普通直角棱镜取代传统米克尔逊干涉仪的两个平面镜,并产生干涉条纹图案。只需平移/或旋转一个直角棱镜,即可产生横向剪切并自由调节。为了定量计算生物细胞的相位信息,采用经典的傅里叶变换方法处理记录的干涉图,然后利用自参照数值相位校准方法获取准确的相位信息。成功实现细胞的定量相位成像验证了所提方法的可行性和实用性。
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